CN215797018U - Battery conveying device of helium detection system - Google Patents

Battery conveying device of helium detection system Download PDF

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Publication number
CN215797018U
CN215797018U CN202122363253.3U CN202122363253U CN215797018U CN 215797018 U CN215797018 U CN 215797018U CN 202122363253 U CN202122363253 U CN 202122363253U CN 215797018 U CN215797018 U CN 215797018U
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CN
China
Prior art keywords
support
mounting plate
chain
battery
sliding groove
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Active
Application number
CN202122363253.3U
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Chinese (zh)
Inventor
李智威
欧阳成
王金虎
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Suzhou Feimute Intelligent Equipment Co ltd
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Suzhou Feimute Intelligent Equipment Co ltd
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Priority to CN202122363253.3U priority Critical patent/CN215797018U/en
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Abstract

The utility model relates to a battery conveying device of a helium detection system, which comprises: a bracket (100) to which a chain (4) is provided; a first mounting plate (5) and a second mounting plate (6) are respectively arranged on the two sides of the chain (4) on the support (100), and a third mounting plate (7) is arranged on the top of the chain (4) on the support (100); a first pressing plate (9) is driven at the lower part of the third mounting plate (7); the first mounting plate (5) is provided with a cylinder (11); a horizontal sliding groove (12) and a vertical sliding groove (13) are arranged on the second mounting plate (6); a second conveying belt (15) positioned below the vertical sliding groove (13) is further arranged on the support (100), a group of guide plates (14) are arranged on the second conveying belt (15), and the guide plates (14) are positioned right below the vertical sliding groove (13); the top of the bracket (100) is also provided with a carrying mechanism for adsorbing the battery into the guide plate (14). This device can carry the battery after the helium detects.

Description

Battery conveying device of helium detection system
Technical Field
The utility model relates to a conveying device, in particular to a battery conveying device of a helium detection system.
Background
The power battery is high in manufacturing requirement and needs to pass through the leakproofness detection, after the leakproofness detection, the power battery needs to be collected in memorability and then packaged, and the power battery is still in a flat lying state after the detection in the prior art, and the power battery is cylindrical and cannot be well grabbed, so that the power battery needs to be reversed and then conveyed, and related equipment is not available in the prior art.
SUMMERY OF THE UTILITY MODEL
In order to solve the above technical problems, an object of the present invention is to provide a battery transportation device of a helium testing system.
The technical scheme of the utility model is as follows:
helium testing system's battery conveyor, its characterized in that includes: the battery storage rack comprises a support (100) and a chain (4) arranged on the support (100), wherein a plurality of placing blocks (401) used for placing batteries are connected to the chain (4);
a first mounting plate (5) and a second mounting plate (6) are respectively arranged on the two sides of the chain (4) on the support (100), and a third mounting plate (7) is arranged on the top of the chain (4) on the support (100);
the lower part of the third mounting plate (7) is connected with a first oil cylinder (8), and the driving end of the first oil cylinder (8) is connected with a first pressing plate (9);
a support (10) is arranged on the first mounting plate (5), and a plurality of air cylinders (11) facing the placing block (401) are arranged on the support (10);
a horizontal sliding groove (12) positioned on one side of the placing block (401) is formed in the second mounting plate (6), and a vertical sliding groove (13) is connected to the end portion of the horizontal sliding groove (12);
a second conveying belt (15) positioned below the vertical sliding groove (13) is further arranged on the support (100), a group of guide plates (14) are arranged on the second conveying belt (15), and the guide plates (14) are positioned right below the vertical sliding groove (13);
the top of the bracket (100) is also provided with a carrying mechanism for adsorbing batteries into the guide plate (14).
Furthermore, both ends of support (100) are provided with first drive shaft (2) and second drive shaft (3), be provided with first chain wheel (202) on first drive shaft (2), be provided with second chain wheel (301) on second drive shaft (3), chain (4) set up to first chain wheel (202) and second chain wheel (301).
Further, the bottom of support (100) still is provided with driving motor (1), the drive end of driving motor (1) is provided with drive gear (101), still be provided with driven gear (201) on first drive shaft (2), drive gear (101) pass through the chain connection driven gear (201).
Furthermore, a plurality of upright columns (901) are further arranged on the first mounting plate (7) and the second mounting plate (8), the tops of the upright columns (901) are connected with a connecting plate (903), the center of the connecting plate (903) is connected with a spring column (902), and the lower portion of the spring column (902) is connected with one end of the first pressing plate (9).
Further, the second conveyor belt (15) is driven by a conveyor motor (16).
Further, transport mechanism is including fixing to first straight line module (17) at support (100) top, the drive end of first straight line module (17) is connected with second hydro-cylinder (18) of vertical setting, the drive end of second hydro-cylinder (18) is connected with cylinder mounting panel (19), be provided with a plurality of adsorption cylinder (20) on cylinder mounting panel (19).
By the scheme, the utility model at least has the following advantages:
the device can adjust the battery from the horizontal direction to the vertical direction and can convey the battery through the adsorption mechanism.
The foregoing description is only an overview of the technical solutions of the present invention, and in order to make the technical solutions of the present invention more clearly understood and to implement them in accordance with the contents of the description, the following detailed description is given with reference to the preferred embodiments of the present invention and the accompanying drawings.
Drawings
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic view of another embodiment of the present invention;
FIG. 3 is a schematic view of another embodiment of the present invention;
in the figure:
100-a scaffold;
1-driving a motor; 101-a drive gear;
2-a first drive shaft; 201-driven gear; 202-a first chaining wheel;
3-a second drive shaft; 301-a second chaining wheel;
4-a chain; 401-placing a block;
5-a first mounting plate; 6-a second mounting plate; 7-a third mounting plate; 8-a first oil cylinder;
9-a first platen; 901-column; 902-a spring post; 903-connecting plate;
10-a support; 11-a cylinder; 12-a horizontal chute; 13-a vertical chute; 14-a guide plate; 15-a second conveyor belt; 16-a conveying motor; 17-a first linear module; 18-a second cylinder; 19-cylinder mounting plate; 20-adsorption cylinder.
Detailed Description
The following detailed description of embodiments of the present invention is provided in connection with the accompanying drawings and examples. The following examples are intended to illustrate the utility model but are not intended to limit the scope of the utility model.
Referring to fig. 1-3, a battery transportation device of a helium testing system according to a preferred embodiment of the present invention comprises: support 100 sets up chain 4 on support 100, is connected with a plurality of blocks 401 of placing that are used for placing the battery on chain 4, through the transport of chain 4, can realize placing the transport of block 401, and battery 100 detects through the helium in the transportation process, need right after carrying through the battery that detects.
The specific driving mode of the chain 4 is that the two ends of the bracket 100 are provided with a first driving shaft 2 and a second driving shaft 3, the first driving shaft 2 and the second driving shaft 3 are both existing mature mechanisms, the two ends are rotatably arranged on the bracket 100, the first driving shaft 2 is provided with a first chain wheel 202, the second driving shaft 3 is provided with a second chain wheel 301, and the chain 4 is arranged on the first chain wheel 202 and the second chain wheel 301. The bottom of the support 100 is further provided with a driving motor 1, a driving gear 101 is arranged at the driving end of the driving motor 1, a driven gear 201 is further arranged on the first driving shaft 2, and the driving gear 101 is connected with the driven gear 201 through a chain. The drive of the chain can be driven by the drive motor 1.
The two sides of the chain 4 on the support 100 are respectively provided with a first mounting plate 5 and a second mounting plate 6, the top of the chain 4 on the support 100 is provided with a third mounting plate 7, the three mounting plates are square plates, and the first mounting plate 5 and the second mounting plate 6 are connected to the support 100 through supporting pieces at the bottom.
The sub-unit connection of third mounting panel 7 has first hydro-cylinder 8, and the drive end of first hydro-cylinder 8 is connected with first clamp plate 9, and for better fixed of first clamp plate 9, still be provided with a plurality of stands 901 on first mounting panel 7 and second mounting panel 8, stand 901 top is connected with connecting plate 903, and the connecting plate 903 center is connected with spring post 902, the one end of first clamp plate 9 of spring post 902 sub-unit connection. Two upright columns 901 are respectively arranged on the first mounting plate 7 and the second mounting plate 8, the connecting plate 903 transversely spans the chain 4, and the conveying directions of the first pressing plate 9 and the chain 4 are consistent.
Be provided with support 10 on the first mounting panel 5, be provided with a plurality of orientation on the support 10 and place the cylinder 11 of piece 401, the quantity of cylinder 11 is a plurality of, through the output of cylinder 11, can push the battery of placing the inside of piece 401 forward, in and out to follow-up horizontal chute 12, at the in-process of propelling movement, first clamp plate 9 can downstream, plays the effect of upper portion direction.
The second mounting panel 6 is provided with a horizontal sliding groove 12 located on one side of the placing block 401, the end part of the horizontal sliding groove 12 is connected with a vertical sliding groove 13, and after the battery is pushed into the horizontal sliding groove 12, the battery can enter the vertical sliding groove 13, so that the battery is switched from a horizontal guide vertical state.
The support 100 is further provided with a second conveying belt 15 located below the vertical sliding groove 13, a group of guide plates 14 are arranged on the second conveying belt 15, the guide plates 14 are located right below the vertical sliding groove 13, the second conveying belt 15 plays a role in conveying the batteries after reversing, and the group of guide plates 14 play a role in guiding and conveying the batteries on the conveying belt 15 into a straight line.
The top of the rack 100 is also provided with a carrying mechanism for adsorbing the battery into the guide plate 14, and the carrying mechanism is used for carrying the battery to the outside.
The second conveyor belt 15 is driven by a conveyor motor 16, the second conveyor belt 15 generally also comprising rollers at both ends, a conveyor belt connecting the rollers, the conveyor motor 16 being intended to drive one of the rollers.
The carrying mechanism comprises a first linear module 17 fixed on the top of the support 100, the driving end of the first linear module 17 is connected with a vertically arranged second oil cylinder 18, the driving end of the second oil cylinder 18 is connected with an air cylinder mounting plate 19, a plurality of adsorption air cylinders 20 are arranged on the air cylinder mounting plate 19, the movement in the X-axis direction is realized through the first linear module 17, the movement in the Z-axis direction is realized through the second oil cylinder 18, and the adsorption on the battery is realized through the adsorption air cylinders 20.
The working principle of the utility model is as follows:
on the chain was placed to this device battery, interior helium detects after the mechanism detects, will remove unqualified product, qualified product continues to carry the below of first clamp plate, first clamp plate downwardly moving reaches the upper portion of battery, play the effect of upper portion direction, the cylinder plays and pushes the battery forward in the horizontal spout, then the battery can slide in the vertical spout, accomplish the switching-over in vertical spout, the below of carrying the mechanism is removed after the second conveyer belt is carried, through the absorption of adsorption cylinder, can adsorb the completion with the battery and carry.
The device has the following advantages:
the device can adjust the battery from the horizontal direction to the vertical direction and can convey the battery through the adsorption mechanism.
The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention, it should be noted that, for those skilled in the art, many modifications and variations can be made without departing from the technical principle of the present invention, and these modifications and variations should also be regarded as the protection scope of the present invention.

Claims (6)

1. Helium testing system's battery conveyor, its characterized in that includes: the battery storage rack comprises a support (100) and a chain (4) arranged on the support (100), wherein a plurality of placing blocks (401) used for placing batteries are connected to the chain (4);
a first mounting plate (5) and a second mounting plate (6) are respectively arranged on the two sides of the chain (4) on the support (100), and a third mounting plate (7) is arranged on the top of the chain (4) on the support (100);
the lower part of the third mounting plate (7) is connected with a first oil cylinder (8), and the driving end of the first oil cylinder (8) is connected with a first pressing plate (9);
a support (10) is arranged on the first mounting plate (5), and a plurality of air cylinders (11) facing the placing block (401) are arranged on the support (10);
a horizontal sliding groove (12) positioned on one side of the placing block (401) is formed in the second mounting plate (6), and a vertical sliding groove (13) is connected to the end portion of the horizontal sliding groove (12);
a second conveying belt (15) positioned below the vertical sliding groove (13) is further arranged on the support (100), a group of guide plates (14) are arranged on the second conveying belt (15), and the guide plates (14) are positioned right below the vertical sliding groove (13);
the top of the bracket (100) is also provided with a carrying mechanism for adsorbing batteries into the guide plate (14).
2. The battery transportation device of the helium testing system of claim 1, wherein: the two ends of the support (100) are provided with a first driving shaft (2) and a second driving shaft (3), the first driving shaft (2) is provided with a first chain wheel (202), the second driving shaft (3) is provided with a second chain wheel (301), and the chain (4) is arranged on the first chain wheel (202) and the second chain wheel (301).
3. The battery transportation device of the helium testing system of claim 2, wherein: the bottom of support (100) still is provided with driving motor (1), the drive end of driving motor (1) is provided with drive gear (101), still be provided with driven gear (201) on first drive shaft (2), drive gear (101) pass through the chain and connect driven gear (201).
4. The battery transportation device of the helium testing system of claim 1, wherein: the first mounting plate (5) and the second mounting plate (6) are further provided with a plurality of stand columns (901), the tops of the stand columns (901) are connected with a connecting plate (903), the center of the connecting plate (903) is connected with a spring column (902), and the lower portion of the spring column (902) is connected with one end of the first pressing plate (9).
5. The battery transportation device of the helium testing system of claim 1, wherein: the second conveyor belt (15) is driven by a conveyor motor (16).
6. The battery transportation device of the helium testing system of claim 1, wherein: transport mechanism is including fixing to first straight line module (17) at support (100) top, the drive end of first straight line module (17) is connected with second hydro-cylinder (18) of vertical setting, the drive end of second hydro-cylinder (18) is connected with cylinder mounting panel (19), be provided with a plurality of adsorption cylinder (20) on cylinder mounting panel (19).
CN202122363253.3U 2021-09-28 2021-09-28 Battery conveying device of helium detection system Active CN215797018U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122363253.3U CN215797018U (en) 2021-09-28 2021-09-28 Battery conveying device of helium detection system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122363253.3U CN215797018U (en) 2021-09-28 2021-09-28 Battery conveying device of helium detection system

Publications (1)

Publication Number Publication Date
CN215797018U true CN215797018U (en) 2022-02-11

Family

ID=80167456

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122363253.3U Active CN215797018U (en) 2021-09-28 2021-09-28 Battery conveying device of helium detection system

Country Status (1)

Country Link
CN (1) CN215797018U (en)

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