CN203345593U - Slope-variable continuous-transporting rope chain system integrating guiding and power transmission - Google Patents

Slope-variable continuous-transporting rope chain system integrating guiding and power transmission Download PDF

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Publication number
CN203345593U
CN203345593U CN 201320394542 CN201320394542U CN203345593U CN 203345593 U CN203345593 U CN 203345593U CN 201320394542 CN201320394542 CN 201320394542 CN 201320394542 U CN201320394542 U CN 201320394542U CN 203345593 U CN203345593 U CN 203345593U
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CN
China
Prior art keywords
chain
guiding
transmission
rope
transported
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Withdrawn - After Issue
Application number
CN 201320394542
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Chinese (zh)
Inventor
曹国华
朱真才
王建通
秦健聪
康虹桥
付蓓蓓
李伟
周公博
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.)
China University of Mining and Technology CUMT
Dongnan Elevator Co Ltd
Original Assignee
China University of Mining and Technology CUMT
Dongnan Elevator Co Ltd
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Priority to CN 201320394542 priority Critical patent/CN203345593U/en
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Publication of CN203345593U publication Critical patent/CN203345593U/en
Anticipated expiration legal-status Critical
Withdrawn - After Issue legal-status Critical Current

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Abstract

The utility model discloses a slope-variable continuous-transporting rope chain system integrating guiding and power transmission. The slope-variable continuous-transporting rope chain system comprises a guiding roller seat, a driven chain wheel, a guiding device, a chain, a driving chain wheel and a driving device, the guiding device is arranged along a slope-variable transporting line track, the chain is arranged on the guiding device, two ends of the chain are meshed with the driving chain wheel and the driven chain wheel respectively, the chain, the driving chain wheel and the driven chain wheel form continuous circulation rope chain transmission, the driving device is connected with the driving chain wheel, and the guiding roller seat is connected with the driven chain wheel. The slope-variable continuous-transporting rope chain system can guide and can realize power transmission, so that slope-variable continuous transporting is realized; the system is simple in structure, stable in performance, safe and reliable.

Description

The change gradient that a kind of guiding is combined with transmission of power is transported the rope catenary system continuously
Technical field
The utility model relates to a kind of change gradient of being combined with transmission of power that leads and transports continuously the rope catenary system.
Background technology
Become gradient haulway occasion at underworkings, hillside, stair case etc., realize that the machine driven system that conveying arrangement moves on space tracking mainly contains roller chain drives, rope traction and rack-and-gear transmission etc., but roller chain drives and rack-and-gear transmission generally can only realize the turning on single direction, can't realize becoming the continuous transportation of the gradient, and rope traction needs failure-free tensile force and friction force.
The utility model content
The utility model purpose: the purpose of this utility model is to provide a kind of change gradient of being combined with transmission of power that leads and transports continuously the rope catenary system, to address the above problem.
The utility model has adopted following technical scheme:
The change gradient that a kind of guiding is combined with transmission of power is transported the rope catenary system continuously, comprise guiding roller seat, driven sprocket, guide piece, chain, drive sprocket and actuating device, described guide piece arranges along becoming gradient transportation route track, described chain is arranged on guide piece, the two ends of chain are meshed with drive sprocket and driven sprocket respectively, chain, drive sprocket and driven sprocket form the transmission of continuous circulation rope chain, described actuating device is connected with drive sprocket, and the guiding roller seat is connected with driven sprocket.
In the utility model, further, described guide piece comprises guide rail, column and crossbeam, described crossbeam fixes on the ground, and described column lower end is connected with crossbeam, and guide rail is set on column, the pipe fitting that described guide rail is hollow, described chain is arranged in guide rail.
In the utility model, further, the bottom of described guide rail has breach.
In the utility model, further, described chain is composed in series successively by some link components, and described link components mutually is socketed and forms by two joint elliptical rings, and on a joint elliptical ring, SDeflector is set therein.
In the utility model, further, described SDeflector comprises guiding hemisphere, bearing pin and middle fastener, and described bearing pin is fixed on elliptical ring by middle fastener, guiding hemisphere is set on bearing pin rotationally, and in the end of bearing pin, being provided with can be by the stop screw of guiding hemisphere axial restraint.
In the utility model, further, the gear teeth of described drive sprocket and driven sprocket are meshed with the elliptical ring of link components, and the teeth groove place between the gear teeth is provided with respectively and described SDeflector and suitable two grooves of elliptical ring.
The utility model has the advantages that:
(1) the change gradient of the present utility model is transported continuously the rope catenary system and not only can be led but also can realize transmission of power, has realized that the change gradient transports continuously;
(2) it is simple in structure that the change gradient of the present utility model is transported the rope catenary system continuously, and stable performance is safe and reliable.
The accompanying drawing explanation
Fig. 1 is the specific embodiment arrangement plan that the change gradient of the present utility model is transported the rope catenary system continuously;
Fig. 2 is the specific embodiment graphics that the change gradient of the present utility model is transported the rope catenary system continuously;
Fig. 3 is the guide rail B-B cross sectional view that the change gradient of the present utility model is transported the rope catenary system continuously;
The specific embodiment graphics that Fig. 4 is sprocket wheel horizontal arrangement of the present utility model;
The 3-D view that Fig. 5 is link components of the present utility model;
The front view that Fig. 6 is link components of the present utility model;
The cross sectional view that Fig. 7 is link components of the present utility model;
Fig. 8 is chain of the present utility model and sprocket engagement place schematic diagram;
Fig. 9 is chain sprocket structure schematic diagram of the present utility model.
In figure: 1, guiding roller seat; 2, driven sprocket; 3, guide piece; 4, chain; 5, drive sprocket; 6, actuating device; 7, shipping platform; 31, crossbeam; 32, column; 33, guide rail; 41, link components; 411, elliptical ring; 412, SDeflector; 413, guiding hemisphere; 414, bearing pin; 415, middle fastener.
The specific embodiment:
Below in conjunction with accompanying drawing, the utility model is done further and explained.
As shown in Figures 1 to 3, the change gradient that guiding of the present utility model is combined with transmission of power is transported continuously the rope catenary system and is comprised guiding roller seat 1, driven sprocket 2, guide piece 3, chain 4, drive sprocket 5 and actuating device 6.Guide piece 3 arranges along becoming gradient transportation route track, and chain 4 is arranged on guide piece 3, by guide piece 3, is limited the position of chains 4 and is led.In the present embodiment, guide piece 3 comprises guide rail 33, column 32 and crossbeam 31.Crossbeam 31 fixes on the ground, and column 32 lower ends are connected with crossbeam 31, and guide rail 33 is set on column 32, the pipe fitting that guide rail 33 is hollow, and chain 4 wears with in guide rail 33.For convenience of the installation and operation of shipping platform 7, the bottom of guide rail 33 has breach, and guide rail 33 cross sectional shapes are major arc.The two ends of chain 4 are meshed with drive sprocket 5 and driven sprocket 2 respectively, and chain 4, drive sprocket 5 and driven sprocket 2 form the transmission of continuous circulation rope chain.Actuating device 6 is connected with drive sprocket 5, and outputting power drives drive sprocket 5 runnings.Guiding roller seat 1 is connected with driven sprocket 2,2 guiding of driven sprocket and steering-effecting.Shipping platform 7 is fixed on chain 4, by chain 4, is led and transferring power, drives shipping platform 7 runnings, realizes becoming the gradient and transports continuously.
As shown in figs. 1 and 4, the utility model change gradient is transported continuously drive sprocket 5 and the driven sprocket 2 of rope catenary system and can be arranged on horizontal or vertical direction, in Fig. 1, is that vertical direction is arranged, in Fig. 4, is that horizontal direction is arranged.
As shown in Fig. 5 to 8, the chain 4 that the utility model change gradient is transported the rope catenary system is continuously composed in series successively by some link components 41, and link components 41 mutually is socketed and forms by two joint elliptical rings 411.Also be provided with SDeflector 412 on one of them elliptical ring 411 of link components 41.SDeflector 412 comprises two guiding hemisphere 413, bearing pin 414 and middle fasteners 415, bearing pin 414 is fixed on elliptical ring 411 by middle fastener 415, two guiding hemisphere 413 are set on bearing pin 414 rotationally, and at the two ends of bearing pin 414, being respectively equipped with can be by the stop screw of guiding hemisphere 413 axial restraints.Because two guiding hemisphere 413 can rotate freely around bearing pin 414 axis, therefore can in guide rail 33, form friction of rolling, reduce the friction drag between chain 4 and guide rail 33.
As shown in Figure 8-9, the utility model becomes that the gradient is transported the drive sprocket 5 of rope catenary system continuously and the gear teeth of driven sprocket 2 are meshed with the elliptical ring 411 of link components 41, and the teeth groove place between two sprocket teeths is provided with respectively and SDeflector 412 and suitable two grooves of elliptical ring 411.When the gear teeth are meshed with elliptical ring 411, elliptical ring 411 and SDeflector 412 just in time snap in two grooves.
The above is only preferred implementation of the present utility model; it should be pointed out that for those skilled in the art, under the prerequisite that does not break away from the utility model principle; can also make some improvements and modifications, these improvements and modifications also should be considered as protection domain of the present utility model.

Claims (6)

1. the change gradient that a guiding is combined with transmission of power is transported the rope catenary system continuously, it is characterized in that: comprise guiding roller seat (1), driven sprocket (2), guide piece (3), chain (4), drive sprocket (5) and actuating device (6), described guide piece (3) arranges along becoming gradient transportation route track, described chain (4) is arranged on guide piece (3), the two ends of chain (4) are meshed with drive sprocket (5) and driven sprocket (2) respectively, chain (4), drive sprocket (5) and driven sprocket (2) form the transmission of continuous circulation rope chain, described actuating device (6) is connected with drive sprocket (5), guiding roller seat (1) is connected with driven sprocket (2).
2. the change gradient that a kind of guiding according to claim 1 is combined with transmission of power is transported the rope catenary system continuously, it is characterized in that: described guide piece (3) comprises guide rail (33), column (32) and crossbeam (31), described crossbeam (31) fixes on the ground, described column (32) lower end is connected with crossbeam (31), guide rail (33) is set on column (32), the pipe fitting that described guide rail (33) is hollow, described chain (4) is arranged in guide rail (33).
3. the change gradient that a kind of guiding according to claim 2 is combined with transmission of power is transported the rope catenary system continuously, and it is characterized in that: the bottom of described guide rail (33) has breach.
4. the change gradient that a kind of guiding according to claim 1 is combined with transmission of power is transported the rope catenary system continuously, it is characterized in that: described chain (4) is composed in series successively by some link components (41), described link components (41) mutually is socketed and forms by two joint elliptical rings (411), and on a joint elliptical ring (411), SDeflector (412) is set therein.
5. the change gradient that a kind of guiding according to claim 4 is combined with transmission of power is transported the rope catenary system continuously, it is characterized in that: described SDeflector (412) comprises guiding hemisphere (413), bearing pin (414) and middle fastener (415), described bearing pin (414) is fixed on elliptical ring (411) by middle fastener (415), it is upper that guiding hemisphere (413) is set in bearing pin (414) rotationally, and in the end of bearing pin (414), being provided with can be by the stop screw of guiding hemisphere (413) axial restraint.
6. the change gradient that a kind of guiding according to claim 5 is combined with transmission of power is transported the rope catenary system continuously, it is characterized in that: the gear teeth of described drive sprocket (5) and driven sprocket (2) are meshed with the elliptical ring (411) of link components (41), and the teeth groove place between the gear teeth is provided with respectively and described SDeflector (412) and suitable two grooves of elliptical ring (411).
CN 201320394542 2013-07-04 2013-07-04 Slope-variable continuous-transporting rope chain system integrating guiding and power transmission Withdrawn - After Issue CN203345593U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201320394542 CN203345593U (en) 2013-07-04 2013-07-04 Slope-variable continuous-transporting rope chain system integrating guiding and power transmission

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201320394542 CN203345593U (en) 2013-07-04 2013-07-04 Slope-variable continuous-transporting rope chain system integrating guiding and power transmission

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CN203345593U true CN203345593U (en) 2013-12-18

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103350862A (en) * 2013-07-04 2013-10-16 东南电梯股份有限公司 Variable gradient continuous transportation rope chain system with guiding and power transmission combined

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103350862A (en) * 2013-07-04 2013-10-16 东南电梯股份有限公司 Variable gradient continuous transportation rope chain system with guiding and power transmission combined
CN103350862B (en) * 2013-07-04 2015-08-12 东南电梯股份有限公司 A kind of change gradient continuative transport rope catenary system be combined with transmission of power that leads

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AV01 Patent right actively abandoned

Granted publication date: 20131218

Effective date of abandoning: 20150812

AV01 Patent right actively abandoned

Granted publication date: 20131218

Effective date of abandoning: 20150812

RGAV Abandon patent right to avoid regrant