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CN218193222U - Integrated cabinet, laser cutting equipment and integrated equipment - Google Patents

Integrated cabinet, laser cutting equipment and integrated equipment Download PDF

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Publication number
CN218193222U
CN218193222U CN202222066812.9U CN202222066812U CN218193222U CN 218193222 U CN218193222 U CN 218193222U CN 202222066812 U CN202222066812 U CN 202222066812U CN 218193222 U CN218193222 U CN 218193222U
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CN
China
Prior art keywords
cavity
frame
integrated cabinet
integrated
laser
Prior art date
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Application number
CN202222066812.9U
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Chinese (zh)
Inventor
任宇泽
李才东
刘光辉
许先孟
何纯贤
蔡建平
高云峰
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Han s Laser Technology Industry Group Co Ltd
Hans Laser Smart Equipment Group Co Ltd
Original Assignee
Han s Laser Technology Industry Group Co Ltd
Hans Laser Smart Equipment Group Co Ltd
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Filing date
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Application filed by Han s Laser Technology Industry Group Co Ltd, Hans Laser Smart Equipment Group Co Ltd filed Critical Han s Laser Technology Industry Group Co Ltd
Priority to CN202222066812.9U priority Critical patent/CN218193222U/en
Application granted granted Critical
Publication of CN218193222U publication Critical patent/CN218193222U/en
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Abstract

The embodiment of the application discloses an integrated cabinet, laser cutting equipment and integrated equipment, wherein the integrated cabinet comprises a first cavity and a second cavity connected with the first cavity, the first cavity is of a sealing structure, and the second cavity is of an air-permeable non-sealing structure; a first wiring port capable of being communicated with each other is formed between the first cavity and the second cavity, and a mounting frame is arranged in the first cavity. A laser can be placed in the first cavity, and then an air conditioner can be installed on the installation frame in the first cavity to adjust the temperature in the first cavity, so that the laser cannot be corroded by external dust and the like while the normal operation of the laser is ensured; the cooler and the stabilized voltage power supply for assisting the laser can be placed in the second cavity, and the second cavity can provide a protection effect and a reasonable convection environment for the cooler and the stabilized voltage power supply; the first wiring port can facilitate wiring connection of the laser, the cooler and the stabilized voltage power supply, and meanwhile, the sealing environment of the first cavity can be guaranteed.

Description

Integrated cabinet, laser cutting equipment and integrated equipment
Technical Field
The application relates to the technical field of mechanical structure integration, in particular to an integrated cabinet, laser cutting equipment and integrated equipment.
Background
With the development of laser technology, lasers are introduced into more and more fields to be applied, for example, a laser cutting machine needs to work in cooperation with a laser, a cooling machine and a stabilized voltage power supply in use, wherein the laser provides laser for cutting, the cooling machine provides a cooling effect for the laser, and the stabilized voltage power supply provides stable voltage input for the laser cutting machine, so that the three are very important.
Because the laser instrument needs relatively stable humidity and temperature in use, so only disclose the air conditioner cabinet that sets up for the laser instrument specially in the prior art, but neglected the cooler and the constant voltage power supply that are used for assisting the laser instrument, and in reality installation and use, often because of factors such as the installation place roughness is poor, the area is little, the dust is many, lead to cooler and constant voltage power supply installation stability relatively poor and collide with the removal and dust gets into the inside influence long-term production of device, increase maintenance cost and life reduce.
Therefore, how to reduce the maintenance cost and improve the service life of the laser and the cooler and the stabilized voltage supply for assisting the laser is to be solved.
SUMMERY OF THE UTILITY MODEL
The embodiment of the application relates to an integrated cabinet, laser cutting equipment and integrated equipment, which can reduce the maintenance cost of a laser and a cooler and a stabilized voltage power supply for assisting the laser and prolong the service life.
The embodiment of the application discloses an integrated cabinet, which comprises a first cavity and a second cavity connected with the first cavity, wherein the first cavity is of a sealing structure, and the second cavity is of an air-permeable non-sealing structure; a first wiring port which can be communicated with each other is arranged between the first cavity and the second cavity, and a mounting frame is arranged in the first cavity.
Optionally, the integrated cabinet further includes a third cavity, the first cavity is disposed between the second cavity and the third cavity, and the first cavity is connected to the second cavity and the third cavity respectively; and a second wiring port which can be communicated with each other is arranged between the first cavity and the third cavity.
Optionally, the first cavity is fixedly connected to the second cavity and the third cavity, and the first cavity, the second cavity and the third cavity are linearly arranged to form a rectangular integrated cabinet.
Optionally, the second cavity, the first cavity and the third cavity are sequentially arranged along the left side to the right side of the integrated cabinet; the side walls, facing the front of the integrated cabinet, of the second cavity and the third cavity are respectively provided with a visible window, and the side walls, facing the rear of the integrated cabinet, of the second cavity and the third cavity, the side wall, facing the left of the integrated cabinet, of the second cavity and the side wall, facing the right of the integrated cabinet, of the third cavity are respectively provided with an air vent.
Optionally, through holes are respectively formed in the side walls of the second cavity, the first cavity and the third cavity corresponding to the rear of the integrated cabinet.
Optionally, the first cavity includes a first frame and a sealing plate, the second cavity includes a second frame, a first door plate, and a baffle plate with a vent, the first frame is connected to the second frame, and the mounting rack is disposed on the first frame; the sealing plate is arranged on the first frame in a surrounding mode to form the first cavity, the first door plate, the baffle and the sealing plate of the first cavity are arranged on the second frame in a surrounding mode in a matching mode to form the second cavity, and a first wiring port capable of communicating the two cavities is formed in the common sealing plate of the first cavity and the second cavity.
Optionally, the third cavity includes a third frame, a second door panel, and a baffle provided with an air vent, the first frame is connected to the second frame and the third frame, and the first frame is disposed between the second frame and the third frame; the second door panel, the baffle and a sealing plate of the first cavity are matched and enclosed on the third frame to form the third cavity, and a second wiring port which can be communicated with the two cavities is arranged on the common sealing plate of the first cavity and the third cavity.
Optionally, the first frame, the second frame, and the third frame are linearly arranged, and the first cavity, the second cavity, and the third cavity form a rectangular integrated cabinet; the first door plate and the second door plate are respectively provided with a visible window, the first door plate and the second door plate are arranged towards the front of the integrated cabinet, the baffle plates are arranged towards the left, the right and the rear of the integrated cabinet respectively, and the sealing plate of the first cavity towards the rear and the baffle plates of the second cavity and the third cavity towards the rear are respectively provided with a through hole.
Optionally, the sealing plate and the baffle are respectively detachably mounted on corresponding frames, and the first door panel and the second door panel are respectively movably mounted on corresponding frames.
The embodiment of the application further discloses laser cutting equipment, laser cutting equipment includes laser instrument, cooler, constant voltage power supply, air conditioner and as above arbitrary integrated cabinet, the laser instrument the cooler constant voltage power supply and the air conditioner set up respectively in integrated cabinet.
The embodiment of the application also discloses an integrated equipment, integrated equipment includes processingequipment, auxiliary engine and as above arbitrary integrated cabinet, processingequipment with the auxiliary engine set up respectively in integrated cabinet.
The integrated cabinet adopted by the embodiment of the application comprises a first cavity and a second cavity, wherein a laser can be placed in the first cavity, and then an air conditioner can be installed on an installation rack in the first cavity to adjust the temperature in the first cavity, so that the laser cannot be eroded by external dust and the like while the normal operation is ensured; the cooler and the stabilized voltage power supply for assisting the laser can be placed in the second cavity, and the second cavity can provide a protection effect and a reasonable convection environment for the cooler and the stabilized voltage power supply; the first wiring port can facilitate wiring connection of the laser, the cooler and the stabilized voltage power supply, and meanwhile, the sealing environment of the first cavity can be guaranteed. And then overcome laser instrument, cooler and constant voltage power supply among the prior art and scattered the setting, the relatively poor and problem that the long-term production is influenced by colliding with the removal and dust entering inside of getting into of apparatus stability has reached and has reduced the laser instrument and be used for assisting its cooler and constant voltage power supply's maintenance cost and improve life's effect.
Drawings
The accompanying drawings, which are included to provide a further understanding of the embodiments of the application, are incorporated in and constitute a part of this specification, illustrate embodiments of the application and together with the description serve to explain the principles of the application. It is obvious that the drawings in the following description are only some embodiments of the application, and that for a person skilled in the art, other drawings can be derived from them without inventive effort. In the drawings:
fig. 1 is a schematic view of an integrated cabinet according to an embodiment of the present application;
fig. 2 is a schematic view of another perspective structure of an integrated cabinet disclosed in an embodiment of the present application;
fig. 3 is a schematic perspective view of an integrated cabinet frame disclosed in an embodiment of the present application;
fig. 4 is a block diagram of a laser cutting apparatus according to an embodiment of the present disclosure;
fig. 5 is a block diagram of an integrated device according to an embodiment of the present disclosure.
10, an integrated cabinet; 11. a first cavity; 12. a second cavity; 13. a first wiring port; 14. a mounting frame; 15. a third cavity; 16. a second wiring port; 17. a visual window; 18. a ventilation opening; 19. a through hole; 20. a first frame; 21. a sealing plate; 22. a second frame; 23. a first door panel; 24. a baffle plate; 25. a third frame; 26. a second door panel; 27. laser cutting equipment; 28. a laser; 29. a cooling machine; 30. a regulated power supply; 31. an air conditioner; 32. an integrated device; 33. a processing device; 34. and an auxiliary machine.
Detailed Description
It is to be understood that the terminology, the specific structural and functional details disclosed herein are for the purpose of describing particular embodiments only, and are representative, but that the present application may be embodied in many alternate forms and should not be construed as limited to only the embodiments set forth herein.
In the description of the present application, the terms "first", "second" are used for descriptive purposes only and are not to be construed as indicating relative importance or as implicitly indicating the number of technical features indicated. Thus, unless stated otherwise, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature; "plurality" means two or more. The terms "comprises" and "comprising," and any variations thereof, are intended to cover a non-exclusive inclusion, such that one or more other features, integers, steps, operations, elements, components, and/or combinations thereof may be present or added.
In addition, terms of orientation or positional relationship indicated by "vertical", "horizontal", and the like, are described based on the orientation or relative positional relationship shown in the drawings, and are only for convenience of simplifying the description of the present application, and do not indicate that the referred device or element must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present application.
Furthermore, unless expressly stated or limited otherwise, the terms "mounted," "connected," and "connected" are to be construed broadly and may include, for example, fixed connections, removable connections, and integral connections; can be mechanically or electrically connected; either directly or indirectly through intervening media, or through both elements. The specific meaning of the above terms in the present application can be understood by those of ordinary skill in the art as appropriate.
The present application is described in detail below with reference to the figures and alternative embodiments.
As shown in fig. 1 to fig. 3, an integrated cabinet 10 is disclosed in the embodiment of the present application, where the integrated cabinet 10 includes a first cavity 11 and a second cavity 12 connected to the first cavity 11, the first cavity 11 is a sealed structure, and the second cavity 12 is an air-permeable non-sealed structure; a first wiring port 13 which can be communicated with each other is arranged between the first cavity 11 and the second cavity 12, and an installation frame 14 is arranged in the first cavity 11.
The integrated cabinet 10 adopted by the embodiment of the application comprises a first cavity 11 and a second cavity 12, a laser can be placed in the first cavity 11, and then an air conditioner can be installed on an installation frame 14 in the first cavity 11 to adjust the temperature in the first cavity 11, so that the laser can not be corroded by external dust and the like while normal operation is ensured; a cooler and a stabilized voltage power supply for assisting the laser can be placed in the second cavity 12, and the second cavity 12 can provide a protection effect and a reasonable convection environment for the cooler and the stabilized voltage power supply; the first wiring port 13 can facilitate wiring connection between the laser and the cooler and between the laser and the stabilized voltage power supply, and meanwhile, a sealed environment of the first cavity 11 can be guaranteed. And then overcome laser instrument, cooler and constant voltage power supply among the prior art and scattered the setting, the relatively poor and problem that the dust gets into inside and leads to influencing long-term production that is collided with and removes of instrument stability has reached and has reduced the maintenance cost of laser instrument and the cooler that is used for assisting it and constant voltage power supply and improve life's effect.
Of course, the integrated cabinet 10 in the embodiment of the present application may further include a plurality of cavities for placing more auxiliary machines. The first cavity 11 is not absolutely sealed but is provided as hermetically as possible, for example, the first wiring opening 13 is much smaller than the first cavity 11, so that the first wiring opening 13 does not substantially affect the sealing of the first cavity 11.
It is understood that the integrated cabinet 10 may further include a non-sealed third cavity 15, the first cavity 11 is disposed between the second cavity 12 and the third cavity 15, and the first cavity 11 is connected to the second cavity 12 and the third cavity 15 respectively; a second wiring port 16 which can be communicated with each other is arranged between the first cavity 11 and the third cavity 15.
The third cavity 15 has been add in this application embodiment, and second cavity 12 and third cavity 15 all are the non-sealing and are the setting, and cooler and constant voltage power supply can place one in second cavity 12 like this, and another places in third cavity 15 to avoid mutual interference in the work, conveniently maintain the maintenance separately. The first cavity 11 is connected to the second cavity 12 and the third cavity 15 respectively, preferably, the first cavity 11 is disposed between the second cavity 12 and the third cavity 15, and a second routing port 16 capable of communicating with each other is disposed between the first cavity 11 and the third cavity 15, so that the built-in devices can be directly connected through routing, space is saved, and installation cost is saved. Of course, the integrated cabinet 10 may include more cavities according to actual needs, which will not be described in detail.
The first cavity 11, the second cavity 12 and the third cavity 15 are respectively and fixedly connected, and the first cavity 11, the second cavity 12 and the third cavity 15 are linearly arranged to form the rectangular integrated cabinet 10.
First cavity 11 and second cavity 12 and third cavity 15 in this application embodiment are fixed connection respectively, can make integrated cabinet 10's structural stability stronger like this, moreover, can set the integrated cabinet 10 that first cavity 11, second cavity 12 and third cavity 15 constitute to the shape of adaptation according to actual place needs, the integrated cabinet 10 that this application embodiment disclosed sets up rectangular solid column structure, can regularly place, make things convenient for the device in each cavity to maintain.
As shown in fig. 1, specifically, the second cavity 12, the first cavity 11, and the third cavity 15 are arranged along the left-right direction of the integrated cabinet 10; the side walls of the second cavity 12 and the third cavity 15 facing the front of the integrated cabinet 10 are respectively provided with a visible window 17, and the side walls of the second cavity 12 and the third cavity 15 facing the rear of the integrated cabinet 10, the side wall of the second cavity 12 facing the left of the integrated cabinet 10 and the side wall of the third cavity 15 facing the right of the integrated cabinet 10 are respectively provided with a ventilation opening 18.
The left of integrated cabinet 10 in this application embodiment is marked as Z, the right side is marked as Y, the place ahead is marked as Q, the back is marked as H, the top is marked as S and the below is marked as X, can be for second cavity 12, first cavity 11 and third cavity 15 in proper order along the left side to the right side of integrated cabinet 10, also can be for third cavity 15, first cavity 11 and second cavity 12, as long as first cavity 11 sets up between second cavity 12 and third cavity 15 can, can make things convenient for the walk line between the device that sets up in each cavity like this, practice thrift the space. Wherein, the front side walls of the second cavity 12 and the third cavity 15 are provided with visual windows 17 to facilitate the observation of the working conditions of the corresponding internal devices, thereby being capable of debugging and maintaining in time. Meanwhile, the left side wall and the rear side wall of the second cavity 12 and the right side wall and the rear side wall of the third cavity 15 are respectively provided with an air vent 18, the air vent 18 is preferably set to be of a louver structure, the blades incline downwards, and the air vent 18 can provide reasonable convection for corresponding cavity internal devices and can also shield dust from entering the cavity.
It should be noted that a sealing plate 21 is disposed above the first cavity 11, and the second cavity 12 and the third cavity 15 may be flexibly disposed as needed, where the second cavity 12 and the third cavity 15 may be disposed above in a sealing manner or in a non-sealing manner. And the lower sides of the first cavity 11, the second cavity 12 and the third cavity 15 can be flexibly arranged according to the requirement of an installation site, and if the site is flat, the lower sides of the cavities can be arranged in an opening mode.
The integrated cabinet 10 in the embodiment of the present application may further include an air conditioner, the air conditioner is disposed on the mounting frame 14 of the first cavity 11, and the temperature of the air conditioner is adjusted to be lower than the room temperature, so that the temperature of the working environment in which the laser device is installed in the first cavity 11 can be ensured, and thus a certain pressure difference exists between the inside and the outside of the first cavity 11 due to the temperature difference, that is, the air pressure inside the first cavity 11 is greater than the air pressure outside, so that the dust can be prevented from entering the first cavity 11 through the gap, and thereby the cleanliness inside the first cavity 11 can be ensured.
Further, through holes 19 are respectively formed in the side walls of the second cavity 12, the first cavity 11 and the third cavity 15 corresponding to the rear of the integrated cabinet 10. According to the embodiment of the application, the through holes 19 are respectively formed in the rear side walls of the first cavity 11, the second cavity 12 and the third cavity 15, and the through holes 19 can facilitate the routing of devices in each cavity with the outside. Wherein the through holes 19 are preferably arranged at the lower side edge of the rear side wall of each cavity, so that the lines can be prevented from obstructing the movement of personnel, vehicles and the like in the field during actual wiring.
As shown in fig. 3, it can be further understood that the first chamber 11 includes a first frame 20 and a sealing plate 21, the second chamber 12 includes a second frame 22, a first door panel 23, and a baffle plate 24 provided with an air vent 18, and the mounting frame 14 is disposed on the first frame 20; the sealing plate 21 is enclosed on the first frame 20 to form the first cavity 11, the first door panel 23, the baffle 24 and a sealing plate 21 of the first cavity 11 are cooperatively enclosed on the second frame 22 to form the second cavity 12, and the common sealing plate 21 of the first cavity 11 and the second cavity 12 is provided with a first wire-passing port 13 capable of communicating the two cavities.
The third cavity 15 comprises a third frame 25, a second door panel 26 and a baffle plate 24 provided with a ventilation port 18, the first frame 20 is connected with the second frame 22 and the third frame 25 respectively, and the first frame 20 is arranged between the second frame 22 and the third frame 25; the second door panel 26, the baffle 24 and a sealing plate 21 of the first cavity 11 are cooperatively enclosed on the third frame 25 to form the third cavity 15, and the common sealing plate 21 of the first cavity 11 and the third cavity 15 is provided with a second wiring port 16 capable of communicating the two cavities.
The cavities disclosed in the embodiment of the application are obtained by mounting a frame and a plate respectively, wherein the first cavity 11 is obtained by mounting a sealing plate 21 on a first frame 20, the second cavity 12 is obtained by mounting a first door plate 23 and a baffle plate 24 on a second frame 22, the third cavity 15 is obtained by mounting a second door plate 26 and a baffle plate 24 on a third frame 25, meanwhile, a sealing plate 21 is commonly used between the second cavity 12 and the first cavity 11, a sealing plate 21 is commonly used between the third cavity 15 and the first cavity 11, a first wire routing port 13 for communicating the two cavities is formed in the sealing plate 21 commonly used between the second cavity 12 and the first cavity 11, and a second wire routing port 16 for communicating the two cavities is formed in the sealing plate 21 commonly used between the third cavity 15 and the first cavity 11, so that the first cavity 11 can be wired with the second cavity 12 and the third cavity 15 respectively and can be sealed and isolated. The ventilation openings 18 of the baffle 24 are arranged in a louver shape, and the vanes are inclined downwards, so that the requirements of the respective convection environments of the second cavity 12 and the third cavity 15 can be met, and dust can be prevented from entering. And a mounting frame 14, which can be used to mount an air conditioner, is provided on the first frame 20.
The sealing plate 21 and the baffle 24 are detachably mounted on corresponding frames, and the first door panel 23 and the second door panel 26 are movably mounted on corresponding frames. The sealing plate 21 and the baffle plate 24 in the embodiment of the present application are respectively installed on the corresponding frame in a detachable manner, and may be specifically fixed by screws or fastened, and the first door panel 23 and the second door panel 26 are movably disposed, and the movement may be sliding or overturning, so that the corresponding second cavity 12 and the corresponding third cavity 15 can be opened, and the maintenance of the corresponding device is facilitated.
The first frame 20, the second frame 22 and the third frame 25 are linearly arranged, and the first cavity 11, the second cavity 12 and the third cavity 15 form a rectangular parallelepiped integrated cabinet 10; the first door panel 23 and the second door panel 26 are respectively provided with a visible window 17, the first door panel 23 and the second door panel 26 are arranged towards the front of the integrated cabinet 10, the baffle plates 24 are respectively arranged towards the left, the right and the rear of the integrated cabinet 10, and the sealing plate 21 of the first cavity 11 towards the rear and the baffle plates 24 of the second cavity 12 and the third cavity 15 towards the rear are respectively provided with a through hole 19.
In the embodiment of the present invention, the first frame 20, the second frame 22, and the third frame 25 are linearly disposed, but may be disposed in other shapes; the frames can be detachably connected with each other or can be arranged in an integral structure. The integrated cabinet 10 is rectangular, so that the integrated cabinet is more regular and convenient for planning and placing in actual positions. Visual window 17 is arranged on first door panel 23 of second cavity 12 and second door panel 26 of third cavity 15, and auxiliary device placed inside is conveniently observed, and baffle 24 is arranged towards left side, right side and rear side of integrated cabinet 10, so that ventilation and convection are facilitated, wherein through holes 19 are respectively arranged on baffle 24 and sealing plate 21 towards rear side of integrated cabinet 10, and subsequent wiring use is facilitated.
In particular, the sealing plate 21, the baffle plate 24 and the door panel in the embodiment of the present application are preferably made of sheet metal, so that the structural stability of the integrated cabinet 10 is higher.
As shown in fig. 4, the embodiment of the present application further discloses a laser cutting apparatus 27, where the laser cutting apparatus 27 includes a laser 28, a cooling machine 29, a regulated power supply 30, an air conditioner 31, and the integrated cabinet 10 as described above, and the laser 28, the cooling machine 29, the regulated power supply 30, and the air conditioner 31 are respectively disposed in the integrated cabinet 10. The laser 28 and the air conditioner 31 are disposed in the first cavity 11 of the integrated cabinet 10, and the cooling machine 29 and the regulated power supply 30 are both disposed in the second cavity 12 of the integrated cabinet 10 or both disposed in the third cavity 15 of the integrated cabinet 10 or disposed in the second cavity 12 and the third cavity 15 of the integrated cabinet 10, respectively.
As shown in fig. 5, the embodiment of the present application further discloses an integrated device 32, where the integrated device 32 includes a processing device 33, an auxiliary machine 34, and the integrated cabinet 10 as described above, and the processing device 33 and the auxiliary machine 34 are respectively disposed in the integrated cabinet 10. The processing device 33 is disposed in the first cavity 11 of the integrated cabinet 10, and the auxiliary devices 34 are disposed in the second cavity 12 of the integrated cabinet 10, or disposed in the third cavity 15 of the integrated cabinet 10, or disposed in the second cavity 12 and the third cavity 15 of the integrated cabinet 10, respectively.
The foregoing is a more detailed description of the present application in connection with specific alternative embodiments, and the specific implementations of the present application are not to be considered limited to these descriptions. For those skilled in the art to which the present application pertains, several simple deductions or substitutions can be made without departing from the concept of the present application, which should be considered as belonging to the protection scope of the present application.

Claims (11)

1. An integrated cabinet is characterized by comprising a first cavity and a second cavity connected with the first cavity, wherein the first cavity is a sealed structure, and the second cavity is an air-permeable non-sealed structure;
a first wiring port capable of being communicated with each other is formed between the first cavity and the second cavity, and a mounting frame is arranged in the first cavity.
2. The integrated cabinet according to claim 1, further comprising a non-sealed third cavity, wherein the first cavity is disposed between the second cavity and the third cavity, and the first cavity is connected to the second cavity and the third cavity respectively;
and a second wiring port which can be communicated with each other is arranged between the first cavity and the third cavity.
3. The integrated cabinet according to claim 2, wherein the first cavity is fixedly connected to the second cavity and the third cavity, and the first cavity, the second cavity and the third cavity are linearly arranged to form a rectangular parallelepiped integrated cabinet.
4. The integrated cabinet of claim 3, wherein the second cavity, the first cavity and the third cavity are arranged along the left-right direction of the integrated cabinet;
the second cavity and the third cavity face the side wall in front of the integrated cabinet and are respectively provided with a visible window, and the second cavity and the third cavity face the side wall behind the integrated cabinet, the second cavity faces the side wall on the left of the integrated cabinet and the third cavity faces the side wall on the right of the integrated cabinet and are respectively provided with a ventilation opening.
5. The integrated cabinet according to claim 4, wherein through holes are respectively provided on the side walls of the second cavity, the first cavity and the third cavity corresponding to the rear of the integrated cabinet.
6. The cabinet according to claim 2, wherein the first chamber comprises a first frame and a sealing plate, the second chamber comprises a second frame, a first door plate and a baffle plate with a ventilation opening, the first frame is connected with the second frame, and the mounting rack is arranged on the first frame;
the sealing plate is arranged on the first frame in a surrounding mode to form the first cavity, the first door plate, the baffle and the sealing plate of the first cavity are arranged on the second frame in a surrounding mode in a matching mode to form the second cavity, and a first wiring port capable of communicating the two cavities is formed in the common sealing plate of the first cavity and the second cavity.
7. The integrated cabinet according to claim 6, wherein the third cavity comprises a third frame, a second door panel, and a baffle plate provided with an air vent, the first frame is connected to the second frame and the third frame, respectively, and the first frame is disposed between the second frame and the third frame;
the second door panel, the baffle and a sealing plate of the first cavity are matched and enclosed on the third frame to form the third cavity, and a second wiring port which can be communicated with the two cavities is arranged on the common sealing plate of the first cavity and the third cavity.
8. The cabinet according to claim 7, wherein the first frame, the second frame and the third frame are arranged in a straight line, and the first cavity, the second cavity and the third cavity form a rectangular parallelepiped-shaped cabinet;
the integrated cabinet is characterized in that the first door plate and the second door plate are respectively provided with a visible window, the first door plate and the second door plate are arranged towards the front of the integrated cabinet, the baffle plates are respectively arranged towards the left, the right and the rear of the integrated cabinet, and the sealing plate of the first cavity towards the rear and the baffle plates of the second cavity and the third cavity towards the rear are respectively provided with a through hole.
9. The integrated cabinet of claim 7, wherein the sealing plate and the baffle are each removably mounted to a corresponding frame, and the first door panel and the second door panel are each movably mounted to a corresponding frame.
10. A laser cutting apparatus, characterized in that the laser cutting apparatus comprises a laser, a cooler, a regulated power supply, an air conditioner and an integrated cabinet according to any one of claims 1-9, wherein the laser, the cooler, the regulated power supply and the air conditioner are respectively arranged in the integrated cabinet.
11. An integrated equipment, characterized in that the integrated equipment comprises a processing device, an auxiliary machine and an integrated cabinet according to any one of claims 1-9, wherein the processing device and the auxiliary machine are respectively arranged in the integrated cabinet.
CN202222066812.9U 2022-08-05 2022-08-05 Integrated cabinet, laser cutting equipment and integrated equipment Active CN218193222U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222066812.9U CN218193222U (en) 2022-08-05 2022-08-05 Integrated cabinet, laser cutting equipment and integrated equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222066812.9U CN218193222U (en) 2022-08-05 2022-08-05 Integrated cabinet, laser cutting equipment and integrated equipment

Publications (1)

Publication Number Publication Date
CN218193222U true CN218193222U (en) 2023-01-03

Family

ID=84652999

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222066812.9U Active CN218193222U (en) 2022-08-05 2022-08-05 Integrated cabinet, laser cutting equipment and integrated equipment

Country Status (1)

Country Link
CN (1) CN218193222U (en)

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