CN211034841U - Elevator with knapsack frame structure - Google Patents
Elevator with knapsack frame structure Download PDFInfo
- Publication number
- CN211034841U CN211034841U CN201921836830.2U CN201921836830U CN211034841U CN 211034841 U CN211034841 U CN 211034841U CN 201921836830 U CN201921836830 U CN 201921836830U CN 211034841 U CN211034841 U CN 211034841U
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- Prior art keywords
- guide rail
- car
- counterweight
- frame
- heavy
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- 238000010276 construction Methods 0.000 claims description 6
- 229910000831 Steel Inorganic materials 0.000 claims description 5
- 239000010959 steel Substances 0.000 claims description 5
- 238000009434 installation Methods 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000004804 winding Methods 0.000 description 1
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Abstract
The utility model discloses an elevator of knapsack frame structure, including car frame, counterweight frame, car, to heavy, a pair of car guide rail and a pair of heavy guide rail, the layer door setting of car is in the car is close to on the position of well front side, and is a pair of car guide rail follows the fore-and-aft direction of well sets up relatively, and is a pair of heavy guide rail is followed the fore-and-aft direction of well sets up relatively, car guide rail is located to the front side or the rear side of heavy guide rail, car guide rail with to heavy guide rail is located one of them side in the left side or the right side of car just is located same vertical plane, counterweight frame installs on the heavy guide rail and can follow counterweight guide rail up-and-down motion, car frame installs on the car guide rail and can follow car guide rail up-and-down motion. The utility model discloses an elevator of knapsack frame structure, car guide rail and to arranging around vertical in the well to the heavy guide rail, occupy the horizontal space of well and reduce, well space utilization is high.
Description
Technical Field
The utility model relates to an elevator technical field, concretely relates to elevator of knapsack frame structure.
Background
The elevator with the knapsack frame structure is of an unbalance loading structure and is suitable for the condition of small load. In a conventional backpack frame elevator, as shown in fig. 1, a car guide rail 1 and a counterweight guide rail 2 are arranged laterally side by side, and in this case, a car frame 3 and a counterweight 4 occupy a large lateral space of a hoistway 5, and have a large size requirement on the hoistway 5.
Disclosure of Invention
In view of this, in order to solve the problem of the prior art, the utility model provides an elevator of modified knapsack frame structure.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides an elevator of knapsack frame structure, includes car frame, counterweight frame, car, to heavy, a pair of car guide rail and a pair of heavy guide rail, the layer door setting of car is in the car is close to on the position of well front side, and is a pair of car guide rail follows the fore-and-aft direction of well sets up relatively, and is a pair of heavy guide rail is followed the fore-and-aft direction of well sets up relatively, car guide rail is located to the front side or the rear side of heavy guide rail, car guide rail with to heavy guide rail is located one of them side in the left side or the right side of car just is located same vertical plane, counterweight frame installs on the heavy guide rail and can follow counterweight guide rail up-and-down motion, car frame installs on the car guide rail and can follow car guide rail up-and-down motion. Through arranging a pair of car guide rail and a pair of heavy guide rail vertically around in the well, occupy the horizontal space of well and reduce, great improvement well space utilization, also fully reduce the elevator simultaneously to building appearance's influence, make the design of building more free with arranging, provide more creative spaces for architectural designer, reduced construction cost.
In the foregoing technical solution, preferably, the car frame includes an upper beam, a bottom beam, and a pair of pillars, and the bottom beam of the car frame is located on a side surface of the car guide rail. The bottom beam of the car frame is positioned on the side surface of the car guide rail, and the car guide rail and the counterweight guide rail are longitudinally arranged in the hoistway back and forth, so that the car is arranged on the side surface of the car guide rail and the counterweight guide rail, and the hoistway space utilization rate is greatly improved.
In the above technical solution, further preferably, the elevator further includes a traction machine, a traction sheave disposed on the traction machine, a car diversion sheave disposed on the car frame, a counterweight diversion sheave disposed on the counterweight frame, and a steel wire rope sequentially wound between the car diversion sheave, the traction sheave and the counterweight diversion sheave, wherein the traction sheave is located between the car diversion sheave and the counterweight diversion sheave, and the traction sheave, the car diversion sheave and the counterweight diversion sheave are located on the same vertical plane. By the design, the elevator can run more stably, and the utilization rate of the hoistway space is further improved.
In the above technical solution, preferably, both ends of the steel wire rope are fixed to the top of the hoistway.
In the above technical solution, preferably, the traction sheave, the car diverting pulley, the counterweight diverting pulley, the car guide rail, and the counterweight guide rail are located on the same vertical plane. By the design, the elevator can run more stably, and the utilization rate of the hoistway space is further improved.
In the foregoing technical solution, it is still further preferable that the car guide rail is located on a front side of the counterweight guide rail.
In the above technical solution, it is further preferable that the car guide rail further includes a plurality of guide rail brackets for fixedly mounting the car guide rail and the counterweight guide rail. The guide rail bracket fixes the car guide rail and the counterweight guide rail on the hoistway, and fixedly connects the car guide rail and the counterweight guide rail which are close to each other.
In the above-mentioned technical scheme, still further preferably, the guide rail bracket includes vertical portion and horizontal part, vertical portion be used for with the guide rail bracket is fixed on the lateral wall of well, the horizontal part is used for installing car guide rail or counter weight guide rail. According to the special structure that the car guide rail and the counterweight guide rail are longitudinally arranged in the hoistway back and forth, the vertical part of each guide rail bracket is fixed on the wall of the hoistway, and the horizontal part is used for installing the corresponding car guide rail or counterweight guide rail.
In the foregoing technical solution, and further preferably, the cross section of the horizontal portion is "U" shaped, the horizontal portion includes a bottom surface and two oppositely disposed mounting surfaces, and the mounting surfaces are used for mounting the car guide rail or the counterweight guide rail. The horizontal part is provided with two opposite mounting surfaces in a U shape, the two mounting surfaces can be used for mounting corresponding car guide rails or counterweight guide rails, the car guide rails and the counterweight guide rails are longitudinally arranged in the hoistway in a front-back mode, one mounting surface of a guide rail bracket between a pair of car guide rails and a pair of counterweight guide rails can be used for mounting one adjacent car guide rail, and the other mounting surface can be used for mounting one adjacent counterweight guide rail.
In the foregoing technical solution, it is still further preferable that the mounting surface is provided with a plurality of oblong holes for mounting the car guide rail or the counterweight guide rail along a longitudinal extending direction of the bottom surface, and the longitudinal extending direction of the oblong holes coincides with the longitudinal extending direction of the bottom surface. The number of the long round holes is multiple, the length extending direction of the long round holes is consistent with the length extending direction of the bottom surface, and the installation position of the counterweight guide rail or the car guide rail can be adjusted according to actual conditions.
Compared with the prior art, the utility model discloses an useful part lies in: the utility model discloses an elevator of knapsack frame structure through arranging a pair of car guide rail and a pair of heavy guide rail vertically around in the well, occupies the horizontal space of well and reduces, great improvement well space utilization, also fully reduce the influence of elevator to architectural appearance simultaneously, make the design of building more free with arranging, provide more creative spaces for architectural designer, reduced construction cost.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings needed to be used in the description of the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings without creative efforts.
Fig. 1 is a top view of a prior art backpack frame construction elevator;
fig. 2 is a schematic structural view of an elevator with a backpack frame structure according to a preferred embodiment of the present invention;
fig. 3 is a plan view of an elevator having a backpack frame structure according to a preferred embodiment of the present invention;
fig. 4 is a schematic structural view of a guide rail bracket in an elevator of a backpack frame structure according to a preferred embodiment of the present invention;
wherein: the elevator car comprises a car guide rail-1, a counterweight guide rail-2, a car frame-3, a counterweight-4, a hoistway-5, a car frame-10, a car diversion sheave-101, an upper beam-102, a bottom beam-103, a stand column-104, a counterweight frame-20, a counterweight diversion sheave-201, a traction sheave-40, a steel wire rope-50, a car guide rail-60, a counterweight guide rail-70, a guide rail bracket-80, a vertical part-801, a horizontal part-802, a bottom surface-8021, a mounting surface-8022, a slotted hole-8023 and a hoistway-90.
Detailed Description
In order to make the technical solution of the present invention better understood, the technical solution of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts shall belong to the protection scope of the present invention.
The present embodiment provides an elevator having a rucksack frame structure, which includes a hoisting machine, a car frame 10, a counterweight frame 20, a car, a counterweight, a pair of car guide rails 60, a pair of counterweight guide rails 70, a traction sheave 40 provided on the hoisting machine, a car return sheave 101 provided on the car frame 10, a counterweight return sheave 201 provided on the counterweight frame 20, and a wire rope 50 wound between the car return sheave 101, the traction sheave 40, and the counterweight return sheave 201, with reference to fig. 2 and 3, the car frame 10 including an upper beam 102, a bottom beam 103, and a pair of columns 104, the bottom beam 103 of the car frame 10 being located on a side surface of the car guide rails 60, the car being mounted on the bottom beam 103 of the car frame 10, and a landing door of the car being disposed at a position near a front side of a hoistway 90. A pair of car guide rails 60 are disposed to face each other in the front-rear direction of a hoistway 90, a pair of counterweight guide rails 70 are disposed to face each other in the front-rear direction of the hoistway 90, the pair of car guide rails 60 are disposed to the front side of the hoistway 90, the pair of counterweight guide rails 70 are disposed to the rear side of the hoistway 90, the car guide rails 60 and the counterweight guide rails 70 are disposed to the left side of the car and are disposed in the same vertical plane, a counterweight frame 20 is mounted on the counterweight guide rails 70 and is movable up and down along the counterweight guide rails 70, a car frame 10 is mounted on the car guide rails 60 and is movable up and down along the car guide rails 60, a traction sheave 40 is disposed between the car return sheave 101 and the counterweight return sheave 201, that is, the car return sheave 101 is disposed to the front side of the hoistway 90, the counterweight return sheave 201 is disposed to the rear side of the hoistway 90, the traction sheave 40 is disposed between the car return sheave 101 and the counterweight return, The car diverting pulley 101, the counterweight diverting pulley 201, the car guide rail 60 and the counterweight guide rail 70 are located on the same vertical plane. Through arranging a pair of car guide rails 60 and a pair of counter-weight guide rails 70 longitudinally in well 90, occupy the horizontal space of well 90 and reduce, great improvement well 90 space utilization, also fully reduce the influence of elevator to architectural appearance simultaneously, make the design of building more free with arranging, provide more creative spaces for architectural designer, construction cost has been reduced, and driving sheave 40, car diverting pulley 101, counter-weight diverting pulley 201, car guide rails 60 and counter-weight guide rails 70 are located same vertical plane, so design, not only make the operation of elevator more stable, and further improve the utilization ratio in well 90 space.
Wherein, a 2:1 rope winding mode is adopted, the steel wire rope 50 winds around the traction sheave 40 and then goes downwards from two sides, one side winds around the car diversion sheave 101 and then goes upwards to be fixed at the top of the hoistway 90 or a machine room, and the other side winds around the counterweight diversion sheave 201 and then goes upwards to be fixed at the top of the hoistway 90 or the machine room.
The rucksack-frame structured elevator of the present embodiment further includes a plurality of guide rail brackets 80 for mounting the car guide rails 60 and the counterweight guide rails 70, and with respect to the structure of the guide rail brackets 80, referring to fig. 4, the guide rail brackets 80 include vertical portions 801 and horizontal portions 802, the vertical portions 801 having a plurality of mounting holes, the vertical portions 801 being used to fix the guide rail brackets 80 to the side walls of the hoistway 90, and the horizontal portions 802 being used to mount the corresponding car guide rails 60 or the counterweight guide rails 70. The horizontal portion 802 has a U-shaped cross section, the horizontal portion 802 includes a bottom surface 8021 and two opposite mounting surfaces 8022, the mounting surfaces 8022 are used for mounting the car guide rail 60 or the counterweight guide rail 70, specifically, a plurality of oblong holes 8023 for mounting the car guide rail 60 or the counterweight guide rail 70 are arranged on the mounting surfaces 8022 along the length extending direction of the bottom surface 8021, the length extending direction of the oblong holes 8023 is consistent with the length extending direction of the bottom surface 8021, the number of the oblong holes 8023 is multiple, and the length extending direction is consistent with the length extending direction of the bottom surface 8021, so that the mounting position of the counterweight guide rail 70 or the car guide rail 60 can be adjusted according to actual conditions. Since the horizontal portion 802 is provided with a U-shaped cross section, it has two opposite mounting surfaces 8022, both mounting surfaces 8022 can be used for mounting the corresponding car guide rail 60 or counterweight guide rail 70, and the car guide rail 60 and the counterweight guide rail 70 are longitudinally arranged in the hoistway 90 in front and back, one mounting surface 8022 of the guide rail bracket 80 located between a pair of car guide rails 60 and a pair of counterweight guide rails 70 can be used for mounting one car guide rail 60 adjacent thereto, and the other mounting surface 8022 can be used for mounting one counterweight guide rail 70 adjacent thereto.
The elevator of the knapsack frame structure of this embodiment utilizes the regional counterweight that arranges of knapsack frame rear side well degree of depth to reduce the well width, increase well plane space utilization. Larger cars can be accommodated for the same hoistway size or smaller hoistway sizes are required for the same car size.
The above embodiments are only for illustrating the technical concept and features of the present invention, and the purpose thereof is to enable those skilled in the art to understand the contents of the present invention and to implement the present invention, so as not to limit the protection scope of the present invention, and all equivalent changes or modifications made according to the spirit of the present invention should be covered by the protection scope of the present invention.
Claims (10)
1. The utility model provides an elevator of knapsack frame structure, includes car frame, counterweight frame, car, to heavy, a pair of car guide rail and a pair of heavy guide rail, the layer door setting of car is in the car is close to on the position of well front side, its characterized in that, and is a pair of car guide rail follows the fore-and-aft direction of well sets up relatively, and is a pair of heavy guide rail is followed the fore-and-aft direction of well sets up relatively, car guide rail is located to the front side or the rear side of heavy guide rail, car guide rail with to heavy guide rail is located one of them side in the left side or the right side of car just is located same vertical plane, counterweight frame installs on the heavy guide rail and can follow counterweight guide rail up-and-down motion, car frame is installed on the car guide rail and can follow car guide rail up-and-down motion.
2. The backpack frame structured elevator of claim 1, wherein the car frame includes an upper beam, a sill beam, and a pair of uprights, the sill beam of the car frame being positioned to the side of the car guide rail.
3. The elevator with a knapsack frame structure according to claim 2, further comprising a traction machine, a traction sheave arranged on the traction machine, a car diverting pulley arranged on the car frame, a counterweight diverting pulley arranged on the counterweight frame, and a steel wire rope sequentially wound between the car diverting pulley, the traction sheave and the counterweight diverting pulley, wherein the traction sheave is positioned between the car diverting pulley and the counterweight diverting pulley, and the traction sheave, the car diverting pulley and the counterweight diverting pulley are positioned on the same vertical plane.
4. The rucksack frame structured elevator according to claim 3, wherein both ends of the wire rope are fixed to a top of the hoistway.
5. Elevator of the rucksack construction according to claim 3, characterized in that the traction sheave, car diverting pulley, counterweight diverting pulley, car guide rail and counterweight guide rail are located on the same vertical plane.
6. The rucksack construction elevator according to claim 3, characterized in that the car guide rail is located at the front side of the counterweight guide rail.
7. The rucksack-frame structured elevator according to claim 6, further comprising a plurality of guide rail brackets for fixedly mounting the car guide rail and counterweight guide rail.
8. The rucksack frame structured elevator according to claim 7, wherein the rail bracket includes a vertical portion for securing the rail bracket to a side wall of the hoistway and a horizontal portion for mounting the car guide rail or counterweight guide rail.
9. The rucksack-frame structured elevator according to claim 8, wherein the horizontal portion has a "U" shaped cross section, and the horizontal portion includes a bottom surface and two oppositely disposed mounting surfaces for mounting the car guide rail or the counterweight guide rail.
10. The rucksack-structured elevator according to claim 9, wherein a plurality of oblong holes for mounting the car guide rail or the counterweight guide rail are provided in the mounting surface along a longitudinal extension direction of the bottom surface, and the longitudinal extension direction of the oblong holes coincides with the longitudinal extension direction of the bottom surface.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921836830.2U CN211034841U (en) | 2019-10-29 | 2019-10-29 | Elevator with knapsack frame structure |
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CN201921836830.2U CN211034841U (en) | 2019-10-29 | 2019-10-29 | Elevator with knapsack frame structure |
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CN211034841U true CN211034841U (en) | 2020-07-17 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110683450A (en) * | 2019-10-29 | 2020-01-14 | 苏州江南嘉捷电梯有限公司 | Elevator with knapsack frame structure |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN110683450A (en) * | 2019-10-29 | 2020-01-14 | 苏州江南嘉捷电梯有限公司 | Elevator with knapsack frame structure |
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