CN212449517U - Automatic turning device of dense lead-acid storage battery - Google Patents

Automatic turning device of dense lead-acid storage battery Download PDF

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Publication number
CN212449517U
CN212449517U CN202022043469.7U CN202022043469U CN212449517U CN 212449517 U CN212449517 U CN 212449517U CN 202022043469 U CN202022043469 U CN 202022043469U CN 212449517 U CN212449517 U CN 212449517U
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storage battery
acid storage
dense lead
cross
dense
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CN202022043469.7U
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丁建中
朱成龙
陈金国
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Zhejiang Tianneng Battery Jiangsu Co Ltd
Tianneng Group Jiangsu Technology Co Ltd
Tianneng Group Jiangsu Special Power Supply Co Ltd
Zhejiang Tianneng Battery Jiangsu New Energy Co Ltd
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Zhejiang Tianneng Battery Jiangsu Co Ltd
Tianneng Group Jiangsu Technology Co Ltd
Tianneng Group Jiangsu Special Power Supply Co Ltd
Zhejiang Tianneng Battery Jiangsu New Energy Co Ltd
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Application filed by Zhejiang Tianneng Battery Jiangsu Co Ltd, Tianneng Group Jiangsu Technology Co Ltd, Tianneng Group Jiangsu Special Power Supply Co Ltd, Zhejiang Tianneng Battery Jiangsu New Energy Co Ltd filed Critical Zhejiang Tianneng Battery Jiangsu Co Ltd
Priority to CN202022043469.7U priority Critical patent/CN212449517U/en
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Abstract

An automatic turnover device for a dense lead-acid storage battery comprises a machine body, wherein groove steel frames are arranged on two sides of the top of the machine body, a roller is connected between the groove steel frames, and the roller is connected with a first motor through two rows of teeth arranged at two ends of the roller; the cross-shaped turnover mechanism and the stop mechanism are used for stopping the dense lead-acid storage battery to be turned over from being stopped and standing on the cross-shaped turnover mechanism after the dense lead-acid storage battery to be turned over contacts the fixed plate, and the cross-shaped turnover mechanism acts to turn over the dense lead-acid storage battery. The utility model has simple integral structure, realizes the automatic turnover of heavy dense lead-acid storage batteries, and has accurate in place and smooth and collision-free turnover process; the code marking operation of the dense lead-acid storage battery with the unaudible specification and size can be realized, and the bidirectional rotation of the cross-shaped turnover mechanism can be carried out according to the actual situation.

Description

Automatic turning device of dense lead-acid storage battery
Technical Field
The utility model relates to a close lead acid battery beats sign indicating number field, concretely relates to automatic turning device of close lead acid battery.
Background
The lead-acid storage battery is a chemical power supply widely used in the world at present, and has the advantages of stable voltage, safety, reliability, low price, wide application range, rich raw materials, high recycling rate and the like.
After the storage battery is processed, the storage battery is usually required to be marked with a code on the side surface, the two sides of the dense lead-acid storage battery obtained in the previous process are not provided with fixing devices, the code cannot be directly marked with the code, the storage battery needs to be turned over by 90 degrees after the code is marked with the code, so that the code marking surface faces to one side surface in the advancing direction.
Disclosure of Invention
According to the problem that the background art provided, the utility model provides an automatic turning device of dense lead acid battery solves, and is right next the utility model discloses do further to explain.
An automatic turning device of a dense lead-acid storage battery comprises:
the device comprises a machine body, wherein two sides of the top of the machine body are provided with channel steel frames, a roller is connected between the channel steel frames, and the roller is connected with a first motor through two rows of teeth arranged at two ends of the roller;
the cross turnover mechanism comprises bearing seats fixed on two sides of the machine body, a turnover shaft is connected to the bearing seats, a cross support is fixedly connected to the turnover shaft and forms four support edges, the turnover shaft is connected with a second motor through a gear arranged at the end part of the turnover shaft, and only one support edge of the cross support extends to the upper part of the roller from the interval between the rollers in the rotation process;
the position stopping mechanism comprises a fixed plate fixed on the machine body, the top of the fixed plate is connected with an adjusting rod, the adjusting rod penetrates through the fixed plate and is connected with a baffle, and a dense lead-acid storage battery to be turned is stopped from being static on the cross turning mechanism after contacting the fixed plate.
Preferably, the adjusting rod is provided with threads, the adjusting rod is in threaded connection with adjusting nuts positioned on two sides of the fixing plate, and the adjusting nuts are tightly attached to the fixing plate to fix the position of the adjusting rod; the extension length of the adjusting rod on the fixing plate is changed, so that adjustment can be performed according to the specification and size of the dense lead-acid storage battery with the coded mark.
Preferably, the edge of the bracket in the horizontal state before the turning action of the cross-shaped turning mechanism is coplanar with the running surface of the dense lead-acid storage battery on the roller, and the edge of the dense lead-acid storage battery is in contact with the cross corner of the adjacent bracket edge; before the dense lead-acid storage battery is turned over, the dense lead-acid storage battery is contacted in a corner space formed by adjacent support edges without a gap, and the relative rest of the cross-shaped turning mechanism and the dense lead-acid storage battery is ensured during turning over.
Preferably, the device further comprises an adjustable guardrail mechanism, the adjustable guardrail mechanism comprises a guardrail frame connected to the channel steel frame and a guide wheel connected to the guardrail frame, and the dense lead-acid storage battery is tightly attached to the guide wheel on one side and enters the cross-shaped turnover mechanism under the action of the guide wheel after entering the device from the previous process; the guide wheel enables the dense lead-acid storage battery to smoothly advance without rotating, avoids collision between the dense lead-acid storage battery and the machine body, and avoids scratches.
Preferably, the guardrail frame is provided with a plurality of comb teeth, the comb teeth are provided with adjusting grooves, the guardrail frame further comprises a handle and a fastening piece, the fastening piece penetrates through the channel steel frame and the adjusting grooves and then is connected with the handle, the width of the handle is larger than that of the adjusting grooves, and the guardrail frame is tightly pressed on the channel steel frame after being fastened; the adjustable guardrail mechanism also can adjust according to the specification and the size of the dense lead-acid storage battery.
Preferably, one side of the machine body opposite to the adjustable guardrail mechanism is provided with the adjustable guardrail mechanism, and the anti-collision limiting is carried out through comb teeth extending to the upper part of the roller and guide wheels connected to the comb teeth.
Preferably, the baffle is provided with a pressure sensor, the pressure sensor is triggered after the dense lead-acid storage battery collides with the baffle, and the pressure sensor triggers the second motor to act after delaying the preset time for giving the code marking identifier; the accuracy of the process action is ensured, and the turnover operation is carried out in the direction of the cross-shaped turnover mechanism after the dense lead-acid storage battery enters the turnover position.
Preferably, the stop mechanism can slide on the machine body, the adjustable guardrail mechanisms on two sides of the machine body are consistent in structure and have interchangeability, and the cross-shaped turnover mechanism can rotate in the positive and negative directions.
Has the advantages that: compared with the prior art, the utility model has simple integral structure, realizes the automatic turnover of heavy dense lead-acid storage batteries, and has accurate in place and smooth and collision-free turnover process; the code marking operation of the dense lead-acid storage battery with the unaudible specification and size can be realized, and the bidirectional rotation of the cross-shaped turnover mechanism can be carried out according to the actual situation.
Drawings
FIG. 1: the structure of the utility model is shown schematically;
FIG. 2: the structure schematic diagram of the cross turnover mechanism;
FIG. 3: the structure schematic diagram of the stop mechanism;
FIG. 4: the structure schematic diagram of the adjustable guardrail mechanism;
FIG. 5: the structure at A in FIG. 4 is enlarged schematically;
in the figure: the device comprises a machine body 1, a channel steel frame 2, a roller 3, double rows of teeth 31, a first motor 4, a bearing seat 5, a turnover shaft 6, a cross bracket 7, a bracket edge 71, a second motor 8, a fixing plate 9, an adjusting rod 10, a baffle plate 11, a guardrail frame 12, comb teeth 121, an adjusting groove 122, a handle 13, a fastener 14, a guide wheel 15, a pressure sensor 16 and a dense lead-acid storage battery 17.
Detailed Description
A specific embodiment of the present invention will be described in detail with reference to fig. 1-5.
An automatic turnover device of a dense lead-acid storage battery comprises a machine body 1 serving as a bearing main body, wherein two sides of the top of the machine body 1 are respectively provided with a slotted steel frame 2, a roller 3 is movably connected between the channel steel frames 2, two ends of the roller 3 are provided with two rows of teeth 31, the machine body 1 is also connected with a first motor 4, the first motor 4 is connected with the two rows of teeth 31 at the two ends of the roller 3 through chains, the roller 3 is driven to rotate by the first motor 4, and a dense lead-acid storage battery 17 is placed on the roller and moves along with the rotation of the roller 3; the middle part of the machine body 1 is connected with a cross-shaped turnover mechanism, and the dense lead-acid storage battery 17 is turned over for 90 degrees so as to enable the mark to be printed to be upward and then the code printing operation is completed.
Cross tilting mechanism is including fixing the bearing frame 5 in fuselage 1 both sides, be connected with trip shaft 6 on the bearing frame 5, three cross support 7 of fixedly connected with on the trip shaft 6, be formed with four support limit 71, treat that the dense lead acid battery 17 of upset places on cross support 7, the one end of trip shaft 6 is provided with the gear, still be provided with second motor 8 on the fuselage 1, the output of second motor 8 is connected with the gear chain of trip shaft 6, second motor 8 rotates and rotates with drive trip shaft 6, and only there is one support limit 71 at the rotation in-process and extends to cylinder 3 top by the interval between cylinder 3, trip shaft 6 rotates and then drives cross support 7 and rotate, make the upset of dense lead acid battery 17.
After dense lead acid battery 17 got into cross tilting mechanism, this embodiment still is provided with the stop mechanism that blocks dense lead acid battery 17, stop dense lead acid battery 17 on cross tilting mechanism in order to treat the upset, this stop mechanism is including fixing fixed plate 9 on fuselage 1, the top of fixed plate 9 is connected with adjusts pole 10, it has baffle 11 to adjust pole 10 to run through being connected with behind the fixed plate 9, treat that the dense lead acid battery 17 that overturns is stopped after contacting fixed plate 9 and is stopped static on current position also is cross tilting mechanism.
The stop mechanism can adjust according to the size of the compact lead-acid storage battery 17 with the coded mark, specifically, the adjusting rod 10 is provided with threads, the adjusting rod 10 is connected with adjusting nuts positioned on two sides of the fixing plate 9 through the threads, the adjusting nuts are tightly attached to the fixing plate 9, the position of the adjusting rod 10 is fixed, and the stop position of the baffle plate 11 can be adjusted and fixed by changing the extension length of the adjusting rod 10 on the fixing plate 9.
In this embodiment, in order to ensure the smoothness of the turnover of the dense lead-acid storage battery 17 by the cross-shaped turnover mechanism, the edge of the support edge 71 of the cross-shaped turnover mechanism in the horizontal state before the turnover action is coplanar with the traveling surface of the dense lead-acid storage battery 17 on the drum 3, and the edge of the dense lead-acid storage battery 17 is in contact with the cross corner of the adjacent support edge 71. Before the dense lead-acid storage battery 17 is turned over, the dense lead-acid storage battery 17 is in gapless contact with a corner space formed by adjacent support edges 71, and relative rest of the cross-shaped turning mechanism and the dense lead-acid storage battery 17 is guaranteed during turning over.
Dense lead acid battery 17 freely marchs and finally is stopped the position mechanism and is static under the drive of cylinder 3, for making dense lead acid battery 17 get into the upset position of cross tilting mechanism smoothly, this embodiment still is provided with adjustable guardrail mechanism, including connecting guardrail frame 12 on cell steel frame 2 and the guide pulley 15 of connection on guardrail frame 12, after dense lead acid battery 17 got into this device by last process, its guide pulley 15 of hugging closely one side got into cross tilting mechanism under the effect of guide pulley 15, the existence of guide pulley 15 makes marcing of dense lead acid battery 17 smooth and easy not take place the rotation, and avoided its and fuselage 1's collision, avoid the production of mar.
The adjustable guardrail mechanism described in this embodiment can also adjust according to the specification and size of the dense lead-acid battery 17, and the position of the code marking on the dense lead-acid battery 17 is also different due to the difference in specification and size, specifically, the guardrail frame 12 is provided with a plurality of comb teeth 121, the comb teeth 121 are provided with adjusting grooves 122, the adjustable guardrail mechanism further comprises a handle 13 and a fastening piece 14, the fastening piece 14 penetrates through the channel steel frame 2 and the adjusting grooves 122 and is connected with the handle 13, the width of the handle 13 is greater than the width of the adjusting grooves 122, the guardrail frame 12 is tightly pressed on the channel steel frame 2 after being fastened, the length of the comb teeth 121 extending to the roller 3 is changed by changing the position of the handle 13 in the adjusting grooves 122, the dense lead-acid battery 17 abuts against the adjusted guide wheel 15 during code marking, and the function of code marking on the dense lead-acid batteries 17 with different specification and size is realized.
In the overturning process of the cross-shaped overturning mechanism on the dense lead-acid storage battery 17, the dense lead-acid storage battery 17 has centrifugal force, and has displacement in the axial direction of the roller 3 after being intercepted by the roller 3, in order to avoid collision between the dense lead-acid storage battery 17 and the machine body 1, an anti-collision device is arranged on one side of the machine body 1 opposite to the adjustable guardrail mechanism, and the embodiment is taken as an optimal embodiment, the anti-collision device can adopt the adjustable guardrail mechanism, and is limited in anti-collision mode through the comb teeth 121 extending to the upper part of the roller 3 and the guide wheels 15 connected to the comb teeth 121.
In order to ensure the action accuracy of the working procedure, the cross-shaped turnover mechanism can perform turnover operation after the dense lead-acid storage battery 17 enters the turnover position, in the embodiment, the baffle 11 is provided with the pressure sensor 16, the pressure sensor 16 is triggered after the dense lead-acid storage battery 17 collides with the baffle 11, the pressure sensor 16 triggers the second motor 8 to act after the time delay preset for giving the code marking time, and the cross-shaped turnover mechanism turns over the dense lead-acid storage battery 17.
It is worth explaining that the utility model discloses can exchange the regulation according to the condition about actual process about, the dense lead acid battery 17 who comes from one process gets into the cylinder 3 after, its inertia makes it not necessarily near the adjustable guardrail mechanism side in upset position one side, in this embodiment, the stop mechanism can slide on fuselage 1, the adjustable guardrail mechanism structure of fuselage 1 both sides is unanimous has interchangeability, cross tilting mechanism can positive and negative both-way rotation.
The utility model discloses a protect dense lead acid battery surface, cylinder 3, 7 top layers of cross support cover have the rubber layer, guide pulley 15 adopts the rubber material.
The utility model has simple integral structure, realizes the automatic turnover of heavy dense lead-acid storage batteries, and has accurate in place and smooth and collision-free turnover process; the code marking operation of the dense lead-acid storage battery with the unaudible specification and size can be realized, and the bidirectional rotation of the cross-shaped turnover mechanism can be carried out according to the actual situation.
The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention, and various modifications and changes may be made by those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (9)

1. The utility model provides an automatic turning device of dense lead acid battery which characterized in that includes:
the device comprises a machine body (1), wherein groove steel frames (2) are arranged on two sides of the top of the machine body (1), a roller (3) is connected between the groove steel frames (2), and the roller (3) is connected with a first motor (4) through two rows of teeth (31) arranged at two ends;
the cross turnover mechanism comprises bearing seats (5) fixed on two sides of the machine body (1), a turnover shaft (6) is connected onto the bearing seats (5), a cross support (7) is fixedly connected onto the turnover shaft (6) to form four support edges (71), the turnover shaft (6) is connected with a second motor (8) through a gear arranged at the end part of the turnover shaft, and only one support edge (71) of the cross support (7) extends to the upper part of the roller (3) from the interval between the rollers (3) in the rotation process;
the position stopping mechanism comprises a fixing plate (9) fixed on a machine body (1), the top of the fixing plate (9) is connected with an adjusting rod (10), the adjusting rod (10) penetrates through the fixing plate (9) and then is connected with a baffle (11), and a dense lead-acid storage battery (17) to be turned is stopped and stopped to stand still on the cross-shaped turning mechanism after contacting the fixing plate (9).
2. The automatic overturning device for the dense lead-acid storage battery according to claim 1, characterized in that: the adjusting rod (10) is provided with threads, the adjusting rod (10) is connected with adjusting nuts positioned on two sides of the fixing plate (9) through the threads, and the adjusting nuts are tightly attached to the fixing plate (9) to fix the position of the adjusting rod (10).
3. The automatic overturning device for the dense lead-acid storage battery according to claim 1, characterized in that: the edge of the bracket edge (71) of the cross-shaped turnover mechanism in the horizontal state before the turnover action is coplanar with the running surface of the dense lead-acid storage battery on the roller (3), and the edge of the dense lead-acid storage battery is in contact with the cross corner of the adjacent bracket edge (71).
4. The automatic overturning device for the dense lead-acid storage battery according to any one of claims 1 to 3, characterized in that: the device also comprises an adjustable guardrail mechanism, wherein the adjustable guardrail mechanism comprises a guardrail frame (12) connected to the channel steel frame (2) and a guide wheel (15) connected to the guardrail frame (12), and after the dense lead-acid storage battery enters the device from the previous process, the dense lead-acid storage battery is tightly attached to the guide wheel (15) on one side and enters the cross-shaped turnover mechanism under the action of the guide wheel (15).
5. The automatic overturning device for the dense lead-acid storage battery according to claim 4, characterized in that: be provided with a plurality of broach (121) on guardrail frame (12), be equipped with adjustment tank (122) on broach (121), still including handle (13) and fastener (14), fastener (14) are connected with handle (13) after running through channel steel frame (2) and adjustment tank (122), and the width of handle (13) is greater than the width of adjustment tank (122), compresses tightly guardrail frame (12) on channel steel frame (2) after the fastening.
6. The automatic overturning device for the dense lead-acid storage battery according to claim 5, characterized in that: and an adjustable guardrail mechanism is arranged on one side of the machine body (1) opposite to the adjustable guardrail mechanism.
7. The automatic overturning device for the dense lead-acid storage battery according to claim 6, characterized in that: the baffle (11) is provided with a pressure sensor (16), the pressure sensor (16) is triggered after the dense lead-acid storage battery collides with the baffle (11), and the pressure sensor (16) triggers the second motor (8) to act after the time delay presetting of the code marking time length is given.
8. The automatic overturning device for the dense lead-acid storage battery according to claim 7, is characterized in that: the stop mechanism can slide on the machine body (1), the adjustable guardrail mechanisms on two sides of the machine body (1) are consistent in structure and have interchangeability, and the cross-shaped turnover mechanism can rotate in the positive and negative directions.
9. The automatic overturning device for the dense lead-acid storage battery according to claim 8, characterized in that: rubber layers cover the surface layers of the roller (3) and the cross-shaped bracket (7), and the guide wheel (15) is made of rubber.
CN202022043469.7U 2020-09-17 2020-09-17 Automatic turning device of dense lead-acid storage battery Active CN212449517U (en)

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Application Number Priority Date Filing Date Title
CN202022043469.7U CN212449517U (en) 2020-09-17 2020-09-17 Automatic turning device of dense lead-acid storage battery

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113353596A (en) * 2021-07-01 2021-09-07 山东蓝孚高能物理技术股份有限公司 Electron accelerator under-beam transmission line with automatic overturning function
CN113353586A (en) * 2021-06-30 2021-09-07 浙江昊杨新能源科技有限公司 Detection turnover mechanism based on battery production and detection method thereof

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113353586A (en) * 2021-06-30 2021-09-07 浙江昊杨新能源科技有限公司 Detection turnover mechanism based on battery production and detection method thereof
CN113353596A (en) * 2021-07-01 2021-09-07 山东蓝孚高能物理技术股份有限公司 Electron accelerator under-beam transmission line with automatic overturning function

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