CN212221606U - Diversion conveyor - Google Patents

Diversion conveyor Download PDF

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Publication number
CN212221606U
CN212221606U CN202020762492.9U CN202020762492U CN212221606U CN 212221606 U CN212221606 U CN 212221606U CN 202020762492 U CN202020762492 U CN 202020762492U CN 212221606 U CN212221606 U CN 212221606U
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China
Prior art keywords
transmission
conveying
belt
longitudinal movement
longitudinal
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CN202020762492.9U
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Chinese (zh)
Inventor
赵起超
梁德利
刘鹏
李洋
李兆龙
张云玲
姜山
段会财
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Shandong Sanwei Hairong Technology Co.,Ltd.
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Beijing Sunway Hairong Technology Co ltd
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Priority to CN202020762492.9U priority Critical patent/CN212221606U/en
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Abstract

The utility model discloses a diversion conveyor, it sends transmission unit and longitudinal movement by the longitudinal movement who is used for realizing transmission case longitudinal movement and receives transmission unit, a lateral shifting transmission unit for realizing transmission case lateral shifting constitutes, longitudinal movement sends transmission unit and longitudinal movement and receives transmission unit and sets up respectively in lateral shifting transmission unit's both ends, set up first band conveyer on the lateral shifting transmission unit, longitudinal movement sends transmission unit and longitudinal movement receiving unit and all sets up the lifting device, the lifting device is including the lifting platform that is used for realizing the second band conveyer of transmission case lateral shifting on the lateral shifting transmission unit and is used for driving the lift of second band conveyer, the lifting platform drives second band conveyer and docks with first band conveyer, realize the smooth transition of transmission case. The utility model discloses realize high-efficient, stable, the safe switching-over transmission of transmission case, effectively solved the too much problem of blocking up that causes of transmission case on the water flat line.

Description

Diversion conveyor
Technical Field
The utility model belongs to transmission case transmission equipment field, specifically speaking relate to a diversion conveyor.
Background
The medical logistics transmission box is frequently required to be reversely transmitted during transmission, at present, a 90-degree reverser is often arranged on a transmission line for reversing transmission, and two 90-degree reversers are utilized for butt joint to realize transposition of the box between two parallel lines. However, the 90-degree commutator is complex in installation condition, complicated in alignment angle adjustment, large in occupied space and low in safety factor, and needs a specific working environment.
Accordingly, further developments and improvements are still needed in the art.
SUMMERY OF THE UTILITY MODEL
Aiming at various defects in the prior art, in order to solve the problems, a direction-changing conveying device is provided so as to realize efficient, stable and safe reversing transmission of a transmission box and effectively solve the problem of congestion caused by too many transmission boxes on a horizontal line.
In order to achieve the above object, the utility model provides a following technical scheme:
a direction-changing conveying device comprises a longitudinal movement sending and transmitting unit for realizing longitudinal movement of a transmission box, a longitudinal movement receiving and transmitting unit and a transverse movement transmitting unit for realizing transverse movement of the transmission box, the longitudinal mobile transmitting and transmitting unit and the longitudinal mobile receiving and transmitting unit are respectively arranged at two ends of the transverse mobile transmitting unit, the transverse moving transmission unit is provided with a first belt conveyor for realizing transverse movement of the transmission box, the longitudinal movement sending and transmitting unit and the longitudinal movement receiving unit are both provided with lifting devices, the lifting devices comprise a second belt conveyor used for realizing transverse transition of the transmission box to the transverse movement transmitting unit and a lifting platform used for driving the second belt conveyor to lift, and the lifting platform drives the second belt conveyor to be in butt joint with the first belt conveyor, so that smooth transition of the transmission box is realized.
Further, the longitudinal movement sends transmission unit or longitudinal movement receives transmission unit and includes the longitudinal movement skeleton, set up the third band conveyer that realizes transmission case longitudinal movement on the longitudinal movement skeleton, third band conveyer includes two vertical transmission belts that set up horizontally side by side, is used for driving vertical transmission belt moving first driving motor, the lifting device sets up on the longitudinal movement device skeleton and is located between two vertical transmission belts.
Further, the lifting device still includes the support frame that is used for supporting the lifting platform, lifting platform bottom sets up the uide bushing, the support frame top sets up the guide post, the lifting platform passes through uide bushing and guide post cooperation swing joint with the support frame, the support frame is fixed to be set up on the longitudinal movement skeleton.
Further, the second belt conveyor is including setting up in the inside first pivot of lifting platform, the horizontal transition transmission belt that is used for realizing the transmission case horizontal transition, be used for driving horizontal transition transmission belt moving second driving motor, horizontal transition transmission belt sets up two, and two horizontal transition transmission belts are the level respectively and set up on the both sides terminal surface of lifting platform, second driving motor sets up in the inside of lifting platform, the fixed first belt pulley that sets up in the first pivot, first belt pulley is connected with the transmission of second driving motor, horizontal transition transmission belt sends transmission unit by longitudinal movement and receives transmission unit direction operation to longitudinal movement.
Further, the second belt conveyor still includes two sets of transverse transition belt pulley groups, and two sets of transverse transition belt pulley groups are fixed to be set up on lifting platform both sides terminal surface, and every transverse transition belt pulley group of group comprises action wheel and follow driving wheel respectively, rotates through first pivot between the action wheel in two sets of transverse transition belt pulley groups to be connected, and the action wheel in each transverse transition belt pulley group of group and follow driving wheel between through transverse transition belt driven connection.
Furthermore, a tensioning device used for tensioning the transverse transition conveying belt is arranged at the joint of the driven wheel and the side end face of the lifting platform, and the tensioning device is located inside the lifting platform.
Further, the inside lifting mechanism that is used for controlling the lifting platform to rise that is provided with of lifting platform, lifting mechanism is including being fixed in the inside second pivot of lifting platform, fixed set up in the epaxial second belt pulley of second pivot, be connected with the second belt pulley transmission and be used for driving the rotatory third driving motor of second belt pulley, the both ends of second pivot set up the cam, correspond the cam and set up the bearing, the bearing is fixed to be set up on the support frame.
Furthermore, an ascending U-shaped photoelectric switch and a descending U-shaped photoelectric switch are arranged on the supporting frame, the ascending U-shaped photoelectric switch and the descending U-shaped photoelectric switch are arranged oppositely, an ascending U-shaped photoelectric blocking piece is arranged corresponding to the ascending U-shaped photoelectric switch, a descending U-shaped photoelectric blocking piece is arranged corresponding to the descending U-shaped photoelectric switch, and the ascending U-shaped photoelectric blocking piece and the descending U-shaped photoelectric blocking piece move up and down along with the rotation of the cam respectively.
Furthermore, a plurality of photoelectric switches for detecting the position of the transmission box are arranged on the longitudinal moving framework, and the photoelectric switches are arranged on the longitudinal moving framework at the outer side of the longitudinal conveying belt in parallel at intervals.
Further, lateral shifting transmission unit still includes the lateral shifting skeleton, first band conveyer sets up on the lateral shifting skeleton, first band conveyer includes that two levels set up side by side are used for realizing the lateral shifting's of transmission case lateral shifting's lateral shifting belt, are used for driving lateral shifting belt moving fourth driving motor, and two lateral shifting belt set up the height that sets up that highly is higher than vertical transmission belt, lateral shifting transmission belt rises to rise the back and docks with lateral shifting belt, lateral shifting belt sends transmission unit to longitudinal shifting by longitudinal shifting and receives transmission unit direction operation.
Advantageous effects
The utility model provides a diversion conveyor has following beneficial effect:
(1) by adopting the modular splicing method, the inconvenience factor caused by the volume problem during installation can be reduced, the proofreading in the horizontal and vertical directions can be conveniently realized, the construction period is reduced, and the construction period cost is saved; secondly, the modular design is maintained at the later stage, the modules can be maintained and replaced, and only the damaged modules can be disassembled, maintained and damaged, so that the waste of the whole machine is avoided, the maintenance difficulty is reduced, and thirdly, the modules are more convenient to install;
(2) the full-belt transmission is adopted, so that the transmission of the transmission box is more efficient, the transmission speed is higher, the waiting points of the transmission box are increased, the capacity of a horizontal line is larger, and the problem of congestion caused by excessive transmission boxes on the horizontal line is solved;
(3) the whole structure has higher safety factor, avoids the rotation process required by adopting a 90-degree commutator in the prior art, and improves the operation safety.
Drawings
FIG. 1 is a top view of a deflection conveyor according to an embodiment of the present invention;
FIG. 2 is a front view of a diversion conveyor in an embodiment of the present invention;
FIG. 3 is a schematic view of a part of the structure of a diversion conveying device in an embodiment of the present invention;
FIG. 4 is a schematic view of a portion of the structure of FIG. 3;
in the drawings: 110-a longitudinal moving framework, 121-a longitudinal transmission belt, 122-a first driving motor, 130-a photoelectric switch, 211-a transverse transition transmission belt, 212-a second driving motor, 213-a first rotating shaft, 214-a first belt pulley, 216-a driving wheel, 217-a driven wheel, 218-a tensioning device, 221-a lifting platform, 222-a guide sleeve, 223-a second rotating shaft, 224-a second belt pulley, 225-a third driving motor, 226-a cam, 227-a bearing, 228-a supporting frame, 229-a guide column, 310-an ascending U-shaped photoelectric barrier sheet, 312-a descending U-shaped photoelectric barrier sheet, 410-a transverse moving framework, 421-a transverse transmission belt and 422-a fourth driving motor.
Detailed Description
In order to make those skilled in the art better understand the technical solution of the present invention, the following description, together with the drawings of the present invention, clearly and completely describes the technical solution of the present invention, and based on the embodiments in the present application, other similar embodiments obtained by those skilled in the art without creative efforts shall all belong to the protection scope of the present application. In addition, directional terms such as "upper", "lower", "left", "right", etc. in the following embodiments are directions with reference to the drawings only, and thus, the directional terms are used for illustration and not for limitation of the present invention.
A turning conveying device is composed of a longitudinal movement sending and transmitting unit, a longitudinal movement receiving and transmitting unit and a transverse movement transmitting unit, wherein the longitudinal movement sending and transmitting unit and the longitudinal movement receiving and transmitting unit are used for achieving longitudinal movement of a transmission box, the transverse movement transmitting unit is used for achieving transverse movement of the transmission box, and the longitudinal movement sending and transmitting unit and the longitudinal movement receiving and transmitting unit are respectively arranged at two ends of the transverse movement transmitting unit.
Specifically, as shown in fig. 1 to 4, a first belt conveyor for realizing the lateral movement of the transmission box is arranged on the lateral movement transmission unit, the longitudinal movement transmission unit and the longitudinal movement receiving unit are both provided with lifting devices, each lifting device comprises a second belt conveyor for realizing the lateral transition of the transmission box to the lateral movement transmission unit and a lifting platform 221 for driving the second belt conveyor to lift, and the lifting platform 221 drives the second belt conveyor to be in butt joint with the first belt conveyor, so that the smooth transition of the transmission box is realized.
Specifically, the longitudinal movement transmitting and transmitting unit or the longitudinal movement receiving and transmitting unit comprises a longitudinal movement framework 110 and a third belt conveyor arranged on the longitudinal movement framework 110 to realize longitudinal movement of the transmission box, the third belt conveyor comprises two longitudinal transmission belts 121 arranged horizontally in parallel and a first driving motor 122 used for driving the longitudinal transmission belts 121 to operate, and the lifting device is arranged on the longitudinal movement device framework and located between the two longitudinal transmission belts 121.
Specifically, the lifting device further comprises a support frame 228 for supporting the lifting platform 221, the bottom of the lifting platform 221 is provided with a guide sleeve 222, a guide column 229 is arranged above the support frame 228, the lifting platform 221 and the support frame 228 are movably connected with the guide column 229 through the guide sleeve 222 in a matching manner, and the support frame 228 is fixedly arranged on the longitudinal moving framework 110.
Specifically, the second belt conveyor includes a first rotating shaft 213 disposed inside the lifting platform 221, a transverse transition transmission belt 211 for implementing transverse transition of the transmission box, a second driving motor 212 for driving the transverse transition transmission belt 211 to operate, the transverse transition transmission belt 211 is provided in two, the two transverse transition transmission belts 211 are horizontally disposed on end faces on two sides of the lifting platform 221 respectively, the second driving motor 212 is disposed inside the lifting platform 221, a first belt pulley 214 is fixedly disposed on the first rotating shaft 213, the first belt pulley 214 is in transmission connection with the second driving motor 212, and the transverse transition transmission belt 211 is operated from the longitudinal movement sending transmission unit to the longitudinal movement receiving transmission unit.
Specifically, the second belt conveyor further comprises two sets of transverse transition belt pulley sets, the two sets of transverse transition belt pulley sets are fixedly arranged on the end faces of the two sides of the lifting platform 221, each set of transverse transition belt pulley set is composed of a driving wheel 216 and a driven wheel 217 respectively, the driving wheels 216 in the two sets of transverse transition belt pulley sets are rotatably connected through a first rotating shaft 213, and the driving wheels 216 in the transverse transition belt pulley sets are in driven connection with the driven wheels 217 through transverse transition belts.
Specifically, a tensioning device 218 for tensioning the transverse transition conveying belt 211 is arranged at the joint of the driven wheel 217 positioned on the side end face of the lifting platform 221 and the side end face of the lifting platform 221, and the tensioning device 218 is positioned inside the lifting platform 221.
Preferably, all the belt conveyors are provided with tensioning devices 218 for tensioning transmission belts of the belt conveyors, and the tensioning devices 218 are all fixedly connected with driven wheels in the belt conveyors, and the driven wheels move along with the tensioning devices 218, so that the distance between the driven wheels and the driving wheels in the belt conveyors is adjusted, and further, the tensioning function of the transmission belts in the belt conveyors is realized.
Specifically, the top of the lifting platform 221 is provided with a cover plate, a lifting mechanism for controlling the lifting platform 221 to lift is arranged inside the lifting platform 221, the lifting mechanism comprises a second rotating shaft 223 fixed inside the lifting platform 221, a second belt pulley 224 fixedly arranged on the second rotating shaft 223, and a third driving motor 225 in transmission connection with the second belt pulley 224 and used for driving the second belt pulley 224 to rotate, two ends of the second rotating shaft 223 are provided with cams 226, a bearing 227 is arranged corresponding to the cams 226, and the bearing 227 is fixedly arranged on the supporting frame 228.
Specifically, the supporting frame 228 is provided with an ascending U-shaped photoelectric switch and a descending U-shaped photoelectric switch, the ascending U-shaped photoelectric switch and the descending U-shaped photoelectric switch are arranged oppositely, an ascending U-shaped photoelectric barrier 310 is arranged corresponding to the ascending U-shaped photoelectric switch, a descending U-shaped photoelectric barrier 320 is arranged corresponding to the descending U-shaped photoelectric switch, the ascending U-shaped photoelectric barrier 310 and the descending U-shaped photoelectric barrier 320 move up and down along with the rotation of the cam 226, respectively, and the ascending U-shaped photoelectric switch or the descending U-shaped photoelectric switch is in signal connection with the first driving motor 122 and the second driving motor 212 to control the operation and stop of the first driving motor 122 and the second driving motor 212.
Specifically, a plurality of photoelectric switches 130 for detecting the position of the conveying box are arranged on the longitudinal moving frame 110, and the photoelectric switches 130 are arranged on the longitudinal moving frame 110 outside the longitudinal conveying belt at intervals.
Specifically, the lateral shifting transmission unit further includes a lateral shifting framework 410, the first belt conveyer is arranged on the lateral shifting framework 410, the first belt conveyer includes two lateral transmission belts 421 which are arranged in parallel and horizontally and used for achieving lateral shifting of the transmission box, and a fourth driving motor 422 used for driving the lateral transmission belts 421 to operate, the two lateral transmission belts 421 are arranged at a height higher than that of the longitudinal transmission belt 121, the lateral transition transmission belt 211 is butted with the lateral transmission belts 421 after being lifted, and the lateral transmission belts 421 operate from the longitudinal sending transmission unit to the longitudinal receiving transmission unit.
When the device is used, the longitudinal moving sending transmission unit receives a transmission box received from a standard transmission receiving transmission unit, the position of the transmission box on the longitudinal transmission belt 121 is detected through the photoelectric switch 130 on the longitudinal moving framework 110, when the transmission box is positioned above the lifting device, the photoelectric switch 130 controls the first driving motor 122 to stop operating, meanwhile, the lifting mechanism lifts the lifting platform 221 and the transverse transition transmission belt 211 on two sides of the lifting platform 221, the transverse transition transmission belt 211 is butted with the transverse moving transmission belt of the transverse moving transmission unit after being lifted, the transverse transition transmission belt 211 is transmitted on the transverse transmission belt 421 under the driving of the second driving motor 212, the transverse transmission belt 421 operates under the driving of the fourth driving motor 422, at the moment, the transverse transition transmission belt 211 is butted with the transverse transition transmission belt 211 on the longitudinal moving receiving transmission unit, the transmission box smoothly transits from the transverse moving transmission unit to the longitudinal moving receiving transmission unit, the second motor drives the transverse transition conveyor belt 211 to descend, so that the conveying box descends to the longitudinal conveyor belt 121 in the longitudinal movement receiving and conveying unit and runs along with the running of the longitudinal conveyor belt 121. In the transmission process of the transmission box, the ascending U-shaped photoelectric switch, the descending U-shaped photoelectric switch and the photoelectric switch 130 arranged in the turning conveying device are responsible for determining the accurate position of the transmission box on the turning conveying device and realizing the acquisition and transmission of signals, so that the operation of the driving motor is controlled and the turning conveying function of the transmission box is realized.
When the running directions of the longitudinal transmission belts 121 of the longitudinal moving sending transmission unit and the longitudinal moving receiving transmission unit are the same, the transmission box realizes the same-direction transmission from the longitudinal moving sending transmission unit to the longitudinal moving receiving transmission unit, and simultaneously, the transmission box transits from the transmission line on which the longitudinal moving sending transmission unit is located to the horizontal line on which the longitudinal moving receiving transmission unit is located.
When the running directions of the longitudinal transmission belts 121 of the longitudinal moving sending transmission unit and the longitudinal moving receiving transmission unit are opposite, the transmission box realizes the reverse transmission from the longitudinal moving sending transmission unit to the longitudinal moving receiving transmission unit, and meanwhile, the transmission box is transited from the transmission line on which the longitudinal moving sending transmission unit is located to the horizontal line on which the longitudinal moving receiving transmission unit is located.
The utility model provides a diversion conveyor adopts serialization design, overall structure is fixed, lateral shifting unit length generally is the fixed value, can change according to environment and customer demand, the variable is the length that longitudinal movement in the diversion conveyor sent transmission unit and longitudinal movement received transmission unit, this longitudinal movement sends transmission unit and longitudinal movement to receive transmission unit's length can make reasonable design planning according to different users' demand, a series of length dimensions can satisfy the demand of user under various environment in the design. The utility model provides a diversion conveyor adopts the design theory of modular, divide into the triplex concatenation and form, and the triplex function is independent, and is small and exquisite, has had huge promotion to the installation and the construction on scene.
The above detailed description of the present invention is only a preferred embodiment of the present invention, and the scope of the present invention should not be limited thereto, i.e. all the equivalent changes and modifications made according to the scope of the present invention should be covered by the present invention.

Claims (10)

1. A turning conveying device is characterized by comprising a longitudinal movement sending and transmitting unit and a longitudinal movement receiving and transmitting unit for realizing longitudinal movement of a conveying box and a transverse movement conveying unit for realizing transverse movement of the conveying box, wherein the longitudinal movement sending and transmitting unit and the longitudinal movement receiving and transmitting unit are respectively arranged at two ends of the transverse movement conveying unit, a first belt conveyor for realizing transverse movement of the conveying box is arranged on the transverse movement conveying unit, lifting devices are respectively arranged on the longitudinal movement sending and transmitting unit and the longitudinal movement receiving unit, each lifting device comprises a second belt conveyor for realizing transverse transition of the conveying box to the transverse movement conveying unit and a lifting platform for driving the second belt conveyor to lift, and the lifting platform drives the second belt conveyor to be in butt joint with the first belt conveyor, and smooth transition of the transmission box is realized.
2. The turning conveying device according to claim 1, wherein the longitudinal movement transmitting and transmitting unit or the longitudinal movement receiving and transmitting unit comprises a longitudinal movement framework and a third belt conveyor arranged on the longitudinal movement framework and used for realizing longitudinal movement of the conveying box, the third belt conveyor comprises two longitudinal conveying belts which are horizontally arranged in parallel and a first driving motor used for driving the longitudinal conveying belts to run, and the lifting device is arranged on the longitudinal movement framework and located between the two longitudinal conveying belts.
3. The turning conveying device according to claim 2, wherein the lifting device further comprises a support frame for supporting the lifting platform, a guide sleeve is arranged at the bottom of the lifting platform, a guide column is arranged above the support frame, the lifting platform and the support frame are movably connected with the guide column through the guide sleeve in a matching mode, and the support frame is fixedly arranged on the longitudinal moving framework.
4. The turning conveying device according to claim 2, wherein the second belt conveyor comprises a first rotating shaft arranged inside the lifting platform, a transverse transition conveying belt for realizing transverse transition of the conveying box and a second driving motor for driving the transverse transition conveying belt to operate, the number of the transverse transition conveying belts is two, the two transverse transition conveying belts are respectively and horizontally arranged on the end faces of two sides of the lifting platform, the second driving motor is arranged inside the lifting platform, a first belt pulley is fixedly arranged on the first rotating shaft and is in transmission connection with the second driving motor, and the transverse transition conveying belt is operated from the longitudinal movement transmitting and transmitting unit to the longitudinal movement receiving and transmitting unit.
5. The turning conveying device according to claim 4, wherein the second belt conveyor further comprises two sets of transverse transition belt pulley sets, the two sets of transverse transition belt pulley sets are fixedly arranged on end faces on two sides of the lifting platform, each set of transverse transition belt pulley set is composed of a driving wheel and a driven wheel respectively, the driving wheels in the two sets of transverse transition belt pulleys are rotatably connected through a first rotating shaft, and the driving wheel and the driven wheel in each set of transverse transition belt pulley are in driven connection through a transverse transition belt.
6. The direction-changing conveying device as claimed in claim 5, wherein a tensioning device for tensioning the transverse transition conveying belt is arranged at the joint of the driven wheel on the side end face of the lifting platform and the side end face of the lifting platform, and the tensioning device is positioned in the lifting platform.
7. The turning conveying device according to claim 3, wherein a lifting mechanism for controlling lifting of the lifting platform is arranged inside the lifting platform, the lifting mechanism comprises a second rotating shaft fixed inside the lifting platform, a second belt pulley fixedly arranged on the second rotating shaft, and a third driving motor in transmission connection with the second belt pulley and used for driving the second belt pulley to rotate, cams are arranged at two ends of the second rotating shaft, bearings are arranged corresponding to the cams, and the bearings are fixedly arranged on the supporting frame.
8. The direction-changing conveying device according to claim 7, wherein the supporting frame is provided with an ascending U-shaped photoelectric switch and a descending U-shaped photoelectric switch, the ascending U-shaped photoelectric switch and the descending U-shaped photoelectric switch are arranged oppositely, an ascending U-shaped photoelectric barrier is arranged corresponding to the ascending U-shaped photoelectric switch, a descending U-shaped photoelectric barrier is arranged corresponding to the descending U-shaped photoelectric switch, and the ascending U-shaped photoelectric barrier and the descending U-shaped photoelectric barrier move up and down along with the rotation of the cam respectively.
9. The turning conveying device according to claim 2, characterized in that a plurality of photoelectric switches for detecting the position of the conveying box are arranged on the longitudinal moving framework, and the photoelectric switches are arranged on the longitudinal moving framework at intervals and in parallel outside the longitudinal conveying belt.
10. The turning conveyor device according to claim 4, wherein the lateral shifting transmission unit further comprises a lateral shifting framework, the first belt conveyor is arranged on the lateral shifting framework, the first belt conveyor comprises two lateral transmission belts which are arranged side by side and horizontally and used for achieving lateral shifting of the transmission box and a fourth driving motor used for driving the lateral transmission belts to run, the arrangement heights of the two lateral transmission belts are higher than that of the longitudinal transmission belt, the lateral transition transmission belts are butted with the lateral transmission belts after being lifted, and the lateral transmission belts run from the longitudinal shifting sending transmission unit to the longitudinal shifting receiving transmission unit.
CN202020762492.9U 2020-05-09 2020-05-09 Diversion conveyor Active CN212221606U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020762492.9U CN212221606U (en) 2020-05-09 2020-05-09 Diversion conveyor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020762492.9U CN212221606U (en) 2020-05-09 2020-05-09 Diversion conveyor

Publications (1)

Publication Number Publication Date
CN212221606U true CN212221606U (en) 2020-12-25

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Application Number Title Priority Date Filing Date
CN202020762492.9U Active CN212221606U (en) 2020-05-09 2020-05-09 Diversion conveyor

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CN (1) CN212221606U (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113387256A (en) * 2021-07-09 2021-09-14 山东三维海容科技有限公司 Lifting and transporting equipment and lifting and transporting method
CN113460619A (en) * 2021-07-15 2021-10-01 宁波四维尔汽车智能科技有限公司 Conveyer belt reversing device
WO2023173799A1 (en) * 2022-03-18 2023-09-21 苏州晟成光伏设备有限公司 Conveyor

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113387256A (en) * 2021-07-09 2021-09-14 山东三维海容科技有限公司 Lifting and transporting equipment and lifting and transporting method
CN113387256B (en) * 2021-07-09 2022-04-19 山东三维海容科技有限公司 Lifting and transporting equipment and lifting and transporting method
CN113460619A (en) * 2021-07-15 2021-10-01 宁波四维尔汽车智能科技有限公司 Conveyer belt reversing device
WO2023173799A1 (en) * 2022-03-18 2023-09-21 苏州晟成光伏设备有限公司 Conveyor

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Address after: No. 67-9, Huiquan West Road, Shizhong District, Zaozhuang City, Shandong Province

Patentee after: Shandong Sanwei Hairong Technology Co.,Ltd.

Address before: 102600 1602, 16th floor, building 4, No.19 courtyard, Xinghua street, Daxing District, Beijing

Patentee before: BEIJING SUNWAY HAIRONG TECHNOLOGY Co.,Ltd.

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