CN214562475U - Insert embedding device of battery box - Google Patents

Insert embedding device of battery box Download PDF

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Publication number
CN214562475U
CN214562475U CN202120345524.XU CN202120345524U CN214562475U CN 214562475 U CN214562475 U CN 214562475U CN 202120345524 U CN202120345524 U CN 202120345524U CN 214562475 U CN214562475 U CN 214562475U
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China
Prior art keywords
rod
plate
cylinder
transverse
insert
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Active
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CN202120345524.XU
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Chinese (zh)
Inventor
曹如荣
邹定湖
胡元业
雷浩轩
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Zhejiang Junsheng Energy Technology Co ltd
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Zhejiang Junsheng Energy Technology Co ltd
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Abstract

The utility model relates to an inserts of battery case buries device, which comprises a fixing plate and i, be provided with the opening on the fixed plate, the fixed plate is provided with two horizontal mechanisms of burying in the horizontal bilateral symmetry of opening, the fixed plate is provided with two vertical mechanisms of burying in the vertical ascending bilateral symmetry of opening, horizontal mechanism of burying includes horizontal front bezel, vertically bury the mechanism including vertical front bezel, set up horizontal drive assembly and vertical drive assembly on the fixed plate, horizontal front bezel is provided with first rod cover, be provided with first chamber of placing on the first rod cover, be provided with first release subassembly between fixed plate and the horizontal front bezel, it is provided with the second rod cover to indulge the front bezel, it places the chamber to be provided with the second on the second rod cover, be provided with second release subassembly between fixed plate and the vertical front bezel. Through adopting above-mentioned scheme, it can be driven by outside manipulator, with the assigned position of the automatic mould of packing into of inserts to four inner chamber walls and the integrative injection moulding of inserts of next battery case have improved machining efficiency.

Description

Insert embedding device of battery box
Technical Field
The utility model belongs to the technical field of the battery case processing technique and specifically relates to an inserts of battery case buries device.
Background
Through mould injection moulding during the battery case, be provided with metal insert on the battery case, battery cover accessible screw is established the fixed connection who realizes battery cover and battery case on metal insert soon, consequently before every battery case injection moulding, need pack into the mould with metal insert earlier, make battery case and the integrative injection moulding of inserts, as shown in figure 11, be provided with connecting seat A1 on four inner chamber walls of battery case A respectively, consequently, need set up inserts B on each connecting seat A1 respectively, so that the subsequent assembly of battery case A is used, generally adopt manual operation, after the unloading of previous battery case, operating personnel is manual packs the inserts into the mould, make next battery case and the integrative injection moulding of inserts, nevertheless operating personnel need stretch into the injection molding machine with the hand like this, certain installation hidden danger has, and machining efficiency is low.
Disclosure of Invention
The utility model overcomes prior art's is not enough, provides a device is buried to inserts of battery case, and it can be driven by outside manipulator, with the automatic assigned position of the mould of packing into of inserts to four inner chamber walls and the integrative injection moulding of inserts of next battery case have improved machining efficiency.
In order to realize the purpose, the utility model discloses a technical scheme is: an insert embedding device of a battery box comprises a fixed plate connected with an external manipulator, wherein an opening for the battery box to penetrate through is arranged on the fixed plate, two transverse embedding mechanisms are symmetrically arranged on two sides of the fixed plate in the transverse direction of the opening, two longitudinal embedding mechanisms are symmetrically arranged on two sides of the fixed plate in the longitudinal direction of the opening, the transverse embedding mechanisms comprise transverse front plates arranged on the fixed plate in a transverse sliding manner, the longitudinal embedding mechanisms comprise longitudinal front plates arranged on the fixed plate in a longitudinal sliding manner, the transverse front plates and the longitudinal front plates are respectively parallel to the fixed plate, transverse driving components for driving the transverse front plates to move in the transverse direction and longitudinal driving components for driving the longitudinal front plates to move in the longitudinal direction are arranged on the fixed plate, a first rod sleeve is fixedly or integrally arranged on one side of the transverse front plates close to the opening, and is perpendicular to the transverse front plates, the utility model discloses a cavity is placed to the second pole cover perpendicular to, including fixed plate, horizontal front bezel, first pole cover, second pole cover, first pole cover is provided with the first chamber of placing that supplies the inserts to place on the first pole cover, be provided with between fixed plate and the horizontal front bezel and push away the inserts from the first subassembly of releasing in the first chamber of placing, indulge to be provided with the second pole cover of placing or an organic whole in one side near the open-ended front bezel, the vertical front bezel setting of second pole cover perpendicular to, it places the chamber to be provided with the second that supplies the inserts to place on the second pole cover, be provided with the second that can push away the inserts from the second between fixed plate and the vertical front bezel and release the subassembly in the chamber.
By adopting the scheme, the battery box can be jacked away from the position where the insert is required to be installed after being formed, before the insert is embedded, the metal insert is firstly respectively placed in the first placing cavity of the first rod sleeve and the second placing cavity of the second rod sleeve, the external mechanical arm can drive the device to enter the injection molding machine, so that the mold passes through the opening of the fixed plate, at the moment, the two transverse front plates and the two longitudinal front plates move to the position where the insert is placed on the four side surfaces of the mold, the corresponding transverse front plates are driven to move towards the direction close to the opening by the transverse driving assembly, the corresponding longitudinal front plates are driven to move towards the direction close to the opening by the longitudinal driving assembly, so that the first rod sleeves and the second rod sleeves are respectively moved into the mold, then the inserts of the first placing cavity and the second placing cavity are pushed to the designated position of the mold by the first pushing assembly and the second pushing assembly, so that the four inner cavity walls of the next battery box are integrally injection molded, the efficiency of machining is improved, after the insert all packed into the assigned position of mould, external mechanical arm drives the device and leaves the injection molding machine, and the opening part of fixed plate also can support the shaping battery case, can carry out the unloading operation in the same direction as the area to the shaping battery case, places the metal insert respectively this moment in the first chamber of placing of first rod cover and the intracavity is placed to the second of second rod cover, the follow-up shaping processing of being convenient for.
The utility model discloses a further setting is: first release subassembly includes first cylinder and first roof, first cylinder is fixed to be set up on the fixed plate, first roof slides along the axial of first rod cover and sets up on horizontal front bezel, the telescopic link of first cylinder can drive first roof and remove, the telescopic link of first cylinder and the cooperation of transversely sliding along first roof, first roof is fixed being provided with first ejector pin in the department of corresponding first rod cover, first ejector pin is parallel to each other with first rod cover, first rod cover is worn to locate by first ejector pin, first ejector pin can push away the inserts from first placing the chamber under the drive of first cylinder.
Through adopting above-mentioned scheme, first ejector pin guidable direction slides and sets up in first rod cover, first ejector pin just inserts under the initial condition and locates first rod cover, play certain limiting displacement when placing the inserts, when the telescopic link of first cylinder extends, can drive first ejector pin and push away the inserts from first placing the chamber, the axial displacement of first rod cover not only can be followed to first roof, can also follow horizontal front bezel along lateral shifting, therefore the telescopic link of first cylinder and the synchronous motion of first roof in the axial of first rod cover are connected, the telescopic link of first cylinder and the cooperation of sliding transversely of first roof, first cylinder can drive the ejecting inserts of first ejector pin like this, can not influence first roof again and remove along with horizontal front bezel, moreover, the steam generator is simple in structure, and reasonable design.
The utility model discloses a further setting is: the second release subassembly includes second cylinder and second roof, the second cylinder is fixed to be set up on the fixed plate, the second roof slides along the axial of second rod cover and sets up on vertical front bezel, the telescopic link of second cylinder can drive the second roof and remove, the telescopic link of second cylinder and the cooperation of transversely sliding along the second roof, the second roof is fixed in the department that corresponds the second rod cover and is provided with the second ejector pin, the second ejector pin is parallel to each other with the second rod cover, the second rod cover is worn to locate by the second ejector pin, the second ejector pin can push away the inserts from the second under the drive of second cylinder and place the chamber.
Through adopting above-mentioned scheme, but the direction setting of sliding of second ejector pin is in the second rod cover, the second ejector pin just inserts under the initial condition and locates the second rod cover, play certain limiting displacement when placing the inserts, when the telescopic link of second cylinder extends, can drive the second ejector pin and push away the inserts from the second and place the chamber, the axial displacement of second rod cover not only can be followed to the second roof, can also follow vertical front bezel along lateral shifting, therefore the telescopic link of second cylinder and the synchronous motion connection of second roof in the axial of second rod cover, the telescopic link and the cooperation of sliding of second roof transversely of second cylinder, the second cylinder can drive the ejecting inserts of second ejector pin like this, can not influence the second roof again and remove along vertical front bezel, moreover, the steam generator is simple in structure, and reasonable design.
The utility model discloses a further setting is: the transverse driving assembly comprises a first sliding table cylinder fixedly arranged on the fixing plate, a first telescopic portion of the first sliding table cylinder moves in a transverse telescopic mode, and the first telescopic portion of the first sliding table cylinder is fixedly connected with the transverse front plate.
Through adopting above-mentioned scheme, the pars contractilis of first slip table cylinder can drive and violently move along the horizontal direction to the front bezel, simple structure, and control is convenient.
The utility model discloses a further setting is: the longitudinal driving assembly comprises a second sliding table cylinder fixedly arranged on the fixing plate, a second telescopic portion of the second sliding table cylinder moves in a transverse telescopic mode, and the second telescopic portion of the second sliding table cylinder is fixedly connected with the longitudinal front plate.
Through adopting above-mentioned scheme, the pars contractilis of second slip table cylinder can drive indulges to the front bezel along the removal of horizontal direction, simple structure, and control is convenient.
The utility model discloses a further setting is: the transverse front plate is fixedly provided with a first guide rod, the first guide rod is arranged along the axial direction of a first rod sleeve, a first top plate is located between the fixed plate and the transverse front plate, the first top plate is in sliding fit with the first guide rod, a first T-shaped groove block is fixedly arranged at the position, close to the telescopic rod of the first air cylinder, of the transverse front plate, a first T-shaped head is arranged at the end portion of the telescopic rod of the first air cylinder, and the first T-shaped head is inserted into the first T-shaped groove block.
Through adopting above-mentioned scheme, first roof is located between fixed plate and the horizontal front bezel, and position reasonable in design fixedly is provided with the first uide bushing with first guide bar complex of sliding on the first roof, and first T type head can insert from the both ends department of first T type groove piece, simple to operate, and the telescopic link of first cylinder can drive first roof again along the axial displacement of first rod cover, can not influence the removal of first roof in the horizontal again.
The utility model discloses a further setting is: the longitudinal front plate is fixedly provided with a second guide rod, the second guide rod is arranged along the axial direction of a second rod sleeve, a second top plate is located between the fixed plate and the longitudinal front plate, the second top plate is in sliding fit with the second guide rod, a second T-shaped groove block is fixedly arranged at the position, close to the telescopic rod of the second air cylinder, of the longitudinal front plate, a second T-shaped head is arranged at the end portion of the telescopic rod of the second air cylinder, and the second T-shaped head is inserted into the second T-shaped groove block.
Through adopting above-mentioned scheme, the second roof is located between fixed plate and the vertical front bezel, and position reasonable in design fixedly is provided with the second uide bushing that slides the complex with the second guide bar on the second roof, and the both ends department that second T type groove piece can be followed to second T type head inserts, simple to operate, and the telescopic link of second cylinder can drive the axial displacement of second roof along the second pole cover again, can not influence the removal of second roof in transversely again.
The utility model discloses a further setting is: first ejector pin includes first installation department and first pole portion, and the diameter of first installation department is greater than the diameter of first pole portion, be provided with the first installation cavity that supplies first installation department to place on the first roof, be provided with the first through-hole that supplies first pole portion to wear to establish on the bottom surface of first installation cavity, the first clamp plate of fixedly connected with on the first roof, first installation cavity can be located with the first installation department pressure of each first ejector pin to first clamp plate.
Through adopting above-mentioned scheme, first ejector pin supports the mode of pressing through first clamp plate and installs on first roof, simple structure, and the dismouting of being convenient for does not influence first ejector pin again and removes along with first roof.
The utility model discloses a further setting is: the second ejector rod comprises a second installation part and a second rod part, the diameter of the second installation part is larger than that of the second rod part, a second installation cavity for the second installation part to be placed is formed in the second top plate, a second through hole for the second rod part to penetrate is formed in the bottom surface of the second installation cavity, a second pressing plate is fixedly connected to the second top plate, and the second pressing plate can press the second installation part of each second ejector rod to be located in the second installation cavity.
Through adopting above-mentioned scheme, the mode that the second ejector pin supported through the second clamp plate and pressed is installed on the second roof, simple structure, and the dismouting of being convenient for does not influence the second ejector pin again and removes along with the second roof.
The present invention will be further described with reference to the accompanying drawings.
Drawings
Fig. 1 is a schematic overall structure diagram of an embodiment of the present invention;
FIG. 2 is a schematic view of the mating arrangement of the first barrel and the first ejection assembly;
FIG. 3 is a schematic structural view of a transverse front plate;
FIG. 4 is a schematic view of the first top plate;
FIG. 5 is a schematic structural view of the first lift pin;
FIG. 6 is a schematic view of the mating structure of the second barrel and the second ejection assembly;
FIG. 7 is a schematic view of a longitudinal front plate;
FIG. 8 is a schematic structural view of the second top plate;
FIG. 9 is a schematic structural view of the second carrier rod;
FIG. 10 is a schematic structural view of a fixing plate;
fig. 11 is a schematic view of the structure of the battery case.
Detailed Description
In the description of the present invention, it is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplification of description, but do not indicate or imply that the device or element referred to must have a specific orientation, be constructed in a specific orientation, and be operated, and thus, should not be construed as limiting the present invention.
As shown in fig. 1 to 11, an insert embedding device for a battery box comprises a fixing plate 1 connected with an external manipulator, the fixing plate 1 is provided with an opening 11 for a battery box a to pass through, the fixing plate 1 is symmetrically provided with two transverse embedding mechanisms at two sides of the opening 11 in the transverse direction, the two transverse embedding mechanisms are similar in structure, so that only one transverse embedding mechanism is described herein, the fixing plate 1 is symmetrically provided with two longitudinal embedding mechanisms at two sides of the opening 11 in the longitudinal direction, the two longitudinal embedding mechanisms are similar in structure, so that only one longitudinal embedding mechanism is described herein, the transverse embedding mechanism comprises a transverse front plate 21 arranged on the fixing plate 1 in a sliding manner in the transverse direction, the longitudinal embedding mechanism comprises a longitudinal front plate 22 arranged on the fixing plate 1 in a sliding manner in the longitudinal direction, the transverse front plate 21 and the longitudinal front plate 22 are respectively parallel to the fixing plate 1, the fixed plate 1 is provided with a transverse driving component for driving the transverse front plate 21 to move transversely and a longitudinal driving component for driving the longitudinal front plate 22 to move longitudinally, the transverse front plate 21 is fixedly or integrally provided with a first rod sleeve 31 at one side close to the opening 11, the first rod sleeve 31 is perpendicular to the transverse front plate 21, the first rod sleeve 31 is provided with a first placing cavity 311 for placing an insert B, a first pushing component capable of pushing the insert B away from the first placing cavity 311 is arranged between the fixed plate 1 and the transverse front plate 21, the longitudinal front plate 22 is fixedly or integrally provided with a second rod sleeve 32 at one side close to the opening 11, the second rod sleeve 32 is perpendicular to the longitudinal front plate 22, the second rod sleeve 32 is provided with a second placing cavity 321 for placing the insert B, and a second pushing component capable of pushing the insert B away from the second placing cavity 321 is arranged between the fixed plate 1 and the longitudinal front plate 22. Wherein the transverse direction is the direction indicated by C in FIG. 1 and the longitudinal direction is the direction indicated by D in FIG. 1.
In this embodiment, the first push-out assembly includes a first cylinder 41 and a first top plate 42, the first cylinder 41 is fixedly disposed on the fixing plate 1, the first top plate 42 is slidably disposed on the transverse front plate 21 along the axial direction of the first rod sleeve 31, the telescopic rod of the first cylinder 41 can drive the first top plate 42 to move, the telescopic rod of the first cylinder 41 and the first top plate 42 are slidably engaged along the transverse direction, the first top plate 42 is fixedly disposed at a position corresponding to the first rod sleeve 31 and is provided with a first push rod 43, the first push rod 43 is parallel to the first rod sleeve 31, the first push rod 43 penetrates through the first rod sleeve 31, and the first push rod 43 can push the insert B away from the first placement cavity 311 under the driving of the first cylinder 41.
In this embodiment, the second pushing assembly includes a second cylinder 51 and a second top plate 52, the second cylinder 51 is fixedly disposed on the fixing plate 1, the second top plate 52 is slidably disposed on the longitudinal front plate 22 along the axial direction of the second rod sleeve 32, the telescopic rod of the second cylinder 51 can drive the second top plate 52 to move, the telescopic rod of the second cylinder 51 is slidably engaged with the second top plate 52 along the transverse direction, the second top plate 52 is fixedly disposed with a second push rod 53 at a position corresponding to the second rod sleeve 32, the second push rod 53 is parallel to the second rod sleeve 32, the second push rod 53 is inserted in the second rod sleeve 32, and the second push rod 53 can push the insert B away from the second placing cavity 321 under the driving of the second cylinder 51.
In this embodiment, the transverse driving assembly includes a first sliding table cylinder 61 fixedly disposed on the fixed plate 1, a first telescopic portion 611 of the first sliding table cylinder 61 moves in a transverse telescopic manner, and the first telescopic portion 611 of the first sliding table cylinder 61 is fixedly connected with the transverse front plate 21 through a first cushion block 62.
In this embodiment, the longitudinal driving assembly includes a second sliding table cylinder 63 fixedly disposed on the fixing plate 1, the second sliding table cylinder 63 is fixedly disposed on the fixing plate 1 through a second cushion block 64, a second telescopic portion 631 of the second sliding table cylinder 63 extends and retracts in the transverse direction, and the second telescopic portion 631 of the second sliding table cylinder 63 is fixedly connected to the longitudinal front plate 22.
In this embodiment, a first guide rod 71 is fixedly disposed on the horizontal front plate 21, the first guide rod 71 is disposed along the axial direction of the first rod sleeve 31, the first top plate 42 is located between the fixing plate 1 and the horizontal front plate 21, the first top plate 42 is in sliding fit with the first guide rod 71, a first guide sleeve 72 in sliding fit with the first guide rod 71 is fixedly disposed on the first top plate 42, a first T-shaped groove block 81 is fixedly disposed at a position of the horizontal front plate 21 close to the telescopic rod of the first cylinder 41, a first T-shaped head 82 is disposed at an end portion of the telescopic rod of the first cylinder 41, and the first T-shaped head 82 is inserted into the first T-shaped groove block 81.
In this embodiment, a second guide rod 73 is fixedly disposed on the longitudinal front plate 22, the second guide rod 73 is disposed along the axial direction of the second rod sleeve 32, the second top plate 52 is located between the fixing plate 1 and the longitudinal front plate 22, the second top plate 52 is in sliding fit with the second guide rod 73, the second guide sleeve 74 in sliding fit with the second guide rod 73 is fixedly disposed on the second top plate 52, a second T-shaped slot block 83 is fixedly disposed at a position of the longitudinal front plate 22 close to the telescopic rod of the second cylinder 51, a second T-shaped head 84 is disposed at an end portion of the telescopic rod of the second cylinder 51, and the second T-shaped head 84 is inserted into the second T-shaped slot block 83.
In this embodiment, the first push rod 43 includes a first mounting portion 431 and a first rod portion 432, the diameter of the first mounting portion 431 is greater than the diameter of the first rod portion 432, a first mounting cavity 421 for the first mounting portion 431 to be placed is provided on the first top plate 42, a first through hole 422 for the first rod portion 432 to be penetrated is provided on the bottom surface of the first mounting cavity 421, a first pressing plate 91 is fixedly connected to the first top plate 42, and the first pressing plate 91 can press the first mounting portion 431 of each first push rod 43 in the first mounting cavity 431.
In this embodiment, the second push rod 53 includes a second mounting portion 531 and a second rod portion 532, the diameter of the second mounting portion 531 is greater than the diameter of the second rod portion 532, a second mounting cavity 521 for placing the second mounting portion 531 is disposed on the second top plate 52, a second through hole 522 for the second rod portion 532 to penetrate is disposed on the bottom surface of the second mounting cavity 521, a second pressing plate 92 is fixedly connected to the second top plate 52, and the second pressing plate 92 can press the second mounting portion 431 of each second push rod 53 in the second mounting cavity 521.
The above embodiments are only preferred embodiments of the present invention, and the general changes and substitutions performed by those skilled in the art within the technical scope of the present invention are included in the protection scope of the present invention.

Claims (9)

1. An insert embedding device of a battery box, characterized in that: the device comprises a fixed plate connected with an external manipulator, wherein an opening for a battery box to penetrate through is arranged on the fixed plate, two transverse embedding mechanisms are symmetrically arranged on two sides of the fixed plate in the transverse direction of the opening, two longitudinal embedding mechanisms are symmetrically arranged on two sides of the fixed plate in the longitudinal direction of the opening, each transverse embedding mechanism comprises a transverse front plate arranged on the fixed plate in a transverse sliding manner, each longitudinal embedding mechanism comprises a longitudinal front plate arranged on the fixed plate in a longitudinal sliding manner, the transverse front plates and the longitudinal front plates are respectively parallel to the fixed plate, a transverse driving assembly for driving the transverse front plates to transversely move and a longitudinal driving assembly for driving the longitudinal front plates to longitudinally move are arranged on the fixed plate, a first rod sleeve is fixedly or integrally arranged on one side of each transverse front plate close to the opening and is perpendicular to the transverse front plates, and a first placing cavity for placing an insert is arranged on the first rod sleeve, the insert pushing device is characterized in that a first pushing assembly capable of pushing the insert away from a first placing cavity is arranged between the fixing plate and the transverse front plate, a second rod sleeve is fixedly or integrally arranged on one side, close to the opening, of the longitudinal front plate, the second rod sleeve is perpendicular to the longitudinal front plate, a second placing cavity for placing the insert is formed in the second rod sleeve, and a second pushing assembly capable of pushing the insert away from the second placing cavity is arranged between the fixing plate and the longitudinal front plate.
2. The insert-embedding device of a battery case according to claim 1, wherein: first release subassembly includes first cylinder and first roof, first cylinder is fixed to be set up on the fixed plate, first roof slides along the axial of first rod cover and sets up on horizontal front bezel, the telescopic link of first cylinder can drive first roof and remove, the telescopic link of first cylinder and the cooperation of transversely sliding along first roof, first roof is fixed being provided with first ejector pin in the department of corresponding first rod cover, first ejector pin is parallel to each other with first rod cover, first rod cover is worn to locate by first ejector pin, first ejector pin can push away the inserts from first placing the chamber under the drive of first cylinder.
3. The insert-embedding device of a battery case according to claim 1 or 2, wherein: the second release subassembly includes second cylinder and second roof, the second cylinder is fixed to be set up on the fixed plate, the second roof slides along the axial of second rod cover and sets up on vertical front bezel, the telescopic link of second cylinder can drive the second roof and remove, the telescopic link of second cylinder and the cooperation of transversely sliding along the second roof, the second roof is fixed in the department that corresponds the second rod cover and is provided with the second ejector pin, the second ejector pin is parallel to each other with the second rod cover, the second rod cover is worn to locate by the second ejector pin, the second ejector pin can push away the inserts from the second under the drive of second cylinder and place the chamber.
4. The insert-embedding device of a battery case according to claim 1 or 2, wherein: the transverse driving assembly comprises a first sliding table cylinder fixedly arranged on the fixing plate, a first telescopic portion of the first sliding table cylinder moves in a transverse telescopic mode, and the first telescopic portion of the first sliding table cylinder is fixedly connected with the transverse front plate.
5. The insert-embedding device of a battery case according to claim 1 or 2, wherein: the longitudinal driving assembly comprises a second sliding table cylinder fixedly arranged on the fixing plate, a second telescopic portion of the second sliding table cylinder moves in a transverse telescopic mode, and the second telescopic portion of the second sliding table cylinder is fixedly connected with the longitudinal front plate.
6. The insert-embedding device of a battery case according to claim 2, wherein: the transverse front plate is fixedly provided with a first guide rod, the first guide rod is arranged along the axial direction of a first rod sleeve, a first top plate is located between the fixed plate and the transverse front plate, the first top plate is in sliding fit with the first guide rod, a first T-shaped groove block is fixedly arranged at the position, close to the telescopic rod of the first air cylinder, of the transverse front plate, a first T-shaped head is arranged at the end portion of the telescopic rod of the first air cylinder, and the first T-shaped head is inserted into the first T-shaped groove block.
7. A battery case insert-embedding device according to claim 3, wherein: the longitudinal front plate is fixedly provided with a second guide rod, the second guide rod is arranged along the axial direction of a second rod sleeve, a second top plate is located between the fixed plate and the longitudinal front plate, the second top plate is in sliding fit with the second guide rod, a second T-shaped groove block is fixedly arranged at the position, close to the telescopic rod of the second air cylinder, of the longitudinal front plate, a second T-shaped head is arranged at the end portion of the telescopic rod of the second air cylinder, and the second T-shaped head is inserted into the second T-shaped groove block.
8. The insert-embedding device of a battery case according to claim 2, wherein: first ejector pin includes first installation department and first pole portion, and the diameter of first installation department is greater than the diameter of first pole portion, be provided with the first installation cavity that supplies first installation department to place on the first roof, be provided with the first through-hole that supplies first pole portion to wear to establish on the bottom surface of first installation cavity, the first clamp plate of fixedly connected with on the first roof, first installation cavity can be located with the first installation department pressure of each first ejector pin to first clamp plate.
9. A battery case insert-embedding device according to claim 3, wherein: the second ejector rod comprises a second installation part and a second rod part, the diameter of the second installation part is larger than that of the second rod part, a second installation cavity for the second installation part to be placed is formed in the second top plate, a second through hole for the second rod part to penetrate is formed in the bottom surface of the second installation cavity, a second pressing plate is fixedly connected to the second top plate, and the second pressing plate can press the second installation part of each second ejector rod to be located in the second installation cavity.
CN202120345524.XU 2021-09-23 2021-09-23 Insert embedding device of battery box Active CN214562475U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120345524.XU CN214562475U (en) 2021-09-23 2021-09-23 Insert embedding device of battery box

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120345524.XU CN214562475U (en) 2021-09-23 2021-09-23 Insert embedding device of battery box

Publications (1)

Publication Number Publication Date
CN214562475U true CN214562475U (en) 2021-11-02

Family

ID=78350465

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120345524.XU Active CN214562475U (en) 2021-09-23 2021-09-23 Insert embedding device of battery box

Country Status (1)

Country Link
CN (1) CN214562475U (en)

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Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
PE01 Entry into force of the registration of the contract for pledge of patent right
PE01 Entry into force of the registration of the contract for pledge of patent right

Denomination of utility model: An embedded device for battery boxes

Granted publication date: 20211102

Pledgee: Hangzhou Bank Co.,Ltd. Huzhou Changxing Branch

Pledgor: Zhejiang Junsheng Energy Technology Co.,Ltd.

Registration number: Y2024980017147