Hardware stamping die for high-quality non-alloy steel Q235C
Technical Field
The invention relates to the technical field of non-alloy steel Q235C, in particular to a hardware stamping die for high-quality non-alloy steel Q235C.
Background
Q235C is ordinary carbon structural steel which is also called ordinary carbon steel. The carbon content is 0.06-0.22%, and is most commonly less than 0.25%. Belonging to low carbon steels, each metal grade indicates the lowest yield point of the steel grade at a thickness of less than 16 mm. The high-quality non-alloy steel Q235C is the carbon steel optimized by common carbon steel, the carbon steel has relatively good brittle failure resistance, good cold forming performance and wider application range, the high-quality non-alloy steel Q235C needs to be punched and formed when being manufactured into a finished product, a stamping die on the market at present does not have a quick cooling function, time is needed for cooling after general stamping is completed, the production efficiency is reduced, economic loss is easily caused, and the design of the hardware stamping die of the high-quality non-alloy steel Q235C is necessary for overcoming the defects.
Disclosure of Invention
The invention aims to provide a hardware stamping die of high-quality non-alloy steel Q235C, which has the advantages of automatic stamping forming, quick cooling, automatic demoulding after stamping, and improvement of production efficiency, and can solve the problems in the prior art.
In order to achieve the purpose, the invention provides the following technical scheme: the utility model provides a high-quality non-alloy steel Q235C's five metals stamping die, includes mounting plate, mounting plate's both sides fixed mounting backup pad, the inboard of backup pad are equipped with the slide, the top fixed mounting connecting plate of backup pad, the below of connecting plate is equipped with flexible cylinder, the supporting shoe is connected to flexible cylinder's output, and the both ends of supporting shoe are equipped with the slider, and the below of supporting shoe is equipped with the bracing piece, the bottom fixed connection clamp plate of bracing piece.
Install buffer base between two backup pads, be equipped with buffer spring on the buffer base, fixed connection accepts the board on the buffer spring, and the both sides of accepting the board are equipped with the rectangle recess, and the rectangle recess internal fixation has the spout, and sliding connection has the slide rail on the spout, and slide rail fixed mounting mould becomes the die cavity, the outside fixed mounting driving motor of backup pad, driving motor's output connection telescopic link, the connection cooling tank of afterbody of telescopic link, the bottom fixed mounting cooling shower nozzle of cooling tank.
Preferably, be equipped with sealed lid on the cooler bin, and be equipped with booster pump and coolant liquid in the cooler bin, booster pump and driving motor electric connection, driving motor and flexible cylinder all with outside electric connection.
Preferably, the telescopic rod is fixed on the inner side of the supporting plate through a fixing piece, and the cooling spray head is positioned above the mold forming cavity.
Preferably, four groups of buffer springs are arranged and fixed at four corners of the upper surface of the buffer base, and the buffer base is fixed on the mounting bottom plate.
Preferably, the slide sets up two sets ofly altogether, and two sets of slides one-to-one, the size of slide and the size phase-match of slider, and slider and slide sliding connection.
Preferably, the size of the bearing plate is the same as that of the buffer base, the width of the die forming cavity is half of the width of the bearing plate, and the length of the sliding rail is half of the length of the sliding groove.
Preferably, the length of rectangle recess is unanimous with the length of spout, and the length of rectangle recess is less than the length of accepting the board, and the length of slide rail is less than the length of mould shaping chamber, the size and the size looks adaptation of clamp plate of mould shaping chamber.
Preferably, be equipped with the stripper plate in the mould shaping chamber, electric telescopic handle is connected to the bottom of stripper plate, and electric telescopic handle sets up in the inside in mould shaping chamber, and slide rail and electric telescopic handle all with outside electric connection.
Compared with the prior art, the invention has the following beneficial effects:
1. this hardware stamping die of high-quality non-alloy steel Q235C, the buffer spring who sets up has the effect of buffering, prevents that this mould from taking place to harm at the in-process pressure of punching press too big, leads to the mould to produce economic loss, and the slider slides in the slide, has certain limiting displacement, can control the position of clamp plate to a certain extent.
2. This hardware stamping die of high-quality non-alloy steel Q235C, the sealed lid that is equipped with on the cooler bin can be sealed with the cooler bin, has not only avoided the coolant liquid seepage or has volatilized, but also is convenient for pour into the coolant liquid into, and it is more convenient to use, sprays the coolant liquid through cooling shower nozzle and goes out, has accelerated the cooling of non-alloy steel Q235C for non-alloy steel Q235C rapid prototyping.
3. This hardware stamping die of high-quality non-alloy steel Q235C, the inside stripper plate that sets up of mould shaping chamber is ejecting through electric telescopic handle, and the non-alloy steel Q235C of being convenient for is demolded, has improved production efficiency.
Drawings
FIG. 1 is a right side schematic view of the present invention;
FIG. 2 is a schematic view of the upper structure of the present invention;
FIG. 3 is a schematic view of the left side of the present invention;
FIG. 4 is a schematic view of the lower structure of the present invention;
FIG. 5 is an enlarged view of a portion of the structure of the present invention;
FIG. 6 is a bottom view of a portion of the structure of the present invention;
FIG. 7 is a partial schematic structural view of the present invention;
fig. 8 is a cross-sectional view of a portion of the structure of the present invention.
In the figure: 1. mounting a bottom plate; 2. a support plate; 3. a slideway; 4. a connecting plate; 5. a telescopic cylinder; 6. a support block; 7. a slider; 8. a support bar; 9. pressing a plate; 10. a buffer base; 11. a buffer spring; 12. a bearing plate; 13. a rectangular groove; 14. a chute; 15. a slide rail; 16. a mold forming cavity; 17. a drive motor; 18. a telescopic rod; 19. a cooling tank; 20. cooling the spray head; 21. a sealing cover; 22. a fixing member; 23. a stripper plate; 24. an electric telescopic rod.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-2, a hardware stamping die for high-quality non-alloy steel Q235C comprises a mounting base plate 1, supporting plates 2 are fixedly mounted on two sides of the mounting base plate 1, slide ways 3 are arranged on the inner sides of the supporting plates 2, the slide ways 3 are arranged in two groups, the two groups of slide ways 3 correspond to one another, the size of each slide way 3 is matched with that of a slide block 7, the slide blocks 7 are connected with the slide ways 3 in a sliding mode, a connecting plate 4 is fixedly mounted on the top of each supporting plate 2, a telescopic cylinder 5 is arranged below each connecting plate 4, the output end of each telescopic cylinder 5 is connected with a supporting block 6, the slide blocks 7 are arranged at two ends of each supporting block 6, supporting.
Referring to fig. 3-8, a buffer base 10 is installed between two supporting plates 2, buffer springs 11 are arranged on the buffer base 10, four groups of buffer springs 11 are arranged on the buffer base 10, the buffer base 10 is fixed on four corners of the upper surface of the buffer base 10, a bearing plate 12 is fixedly connected on the buffer springs 11, rectangular grooves 13 are arranged on two sides of the bearing plate 12, the lengths of the rectangular grooves 13 and the sliding grooves 14 are the same, the length of the rectangular groove 13 is smaller than that of the bearing plate 12, the length of a sliding rail 15 is smaller than that of a mold forming cavity 16, the size of the mold forming cavity 16 is matched with that of a pressing plate 9, a demolding plate 23 is arranged in the mold forming cavity 16, the bottom of the demolding plate 23 is connected with an electric telescopic rod 24, the electric telescopic rod 24 is arranged in the mold forming cavity 16, the sliding rail 15 and the electric telescopic rod 24 are both electrically connected with the outside, the cooling device comprises a sliding chute 14, a sliding rail 15, a mold forming cavity 16, a bearing plate 12, a driving motor 17, a telescopic rod 18, a cooling spray nozzle 20, a cooling box 19, a sealing cover 21, a booster pump and cooling liquid, wherein the sliding rail 15 is connected with the sliding chute 14 in a sliding mode, the bearing plate 12 is the same as the buffer base 10 in size, the width of the mold forming cavity 16 is half of the width of the bearing plate 12, the length of the sliding rail 15 is half of the length of the sliding chute 14, the driving motor 17 is fixedly installed on the outer side of the supporting plate 2, the output end of the driving motor 17 is connected with the telescopic rod 18, the telescopic rod 18 is fixed on the inner side of the supporting plate 2 through a fixing part 22, the cooling spray nozzle 20 is located above the mold forming cavity 16, the tail part of the telescopic rod 18 is connected. During the use, the non-alloy steel Q235C that needs stamping forming is placed in the mould forming cavity 16, the device is electrified, the mould forming cavity 16 is located under the clamp plate 9 at this moment, the telescopic cylinder 5 starts to control the clamp plate 9 to press down, the non-alloy steel Q235C is stamped, the control slide rail 15 slides on the chute 14, the formed non-alloy steel Q235C slides to the cooling spray head 20 under, the position of the cooling spray head 20 is adjusted through the driving motor 17, then the cooling liquid is sprayed on the stamped non-alloy steel Q235C, the cooling is accelerated, the non-alloy steel Q235C is rapidly formed, the electric telescopic rod 24 is started, the stripper plate 23 is ejected, the stamped non-alloy steel Q235C is rapidly stripped, and the production efficiency is improved.
To sum up, this hardware stamping die of high-quality non-alloy steel Q235C, buffer spring 11 that sets up has the effect of buffering, prevent that this mould is too big at the in-process pressure of punching press, lead to the mould to take place the harm and produce economic loss, slider 7 slides in slide 3, certain limiting displacement has, can control the position of clamp plate 9 to a certain extent, sealed lid 21 that is equipped with on the cooler bin 19 can be sealed with cooler bin 19, not only avoided the coolant liquid seepage or volatilize, and still be convenient for pour into the coolant liquid into, it is more convenient to use, spray out the coolant liquid through cooling shower nozzle 20, the cooling of non-alloy steel Q235C has been accelerated, make non-alloy steel Q235C rapid prototyping, the inside stripper plate 23 that sets up in mould shaping chamber 16, be convenient for the drawing of patterns of non-alloy steel Q235C, and the production efficiency.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.