CN212219100U - Battery cooling water pipe forming die - Google Patents

Battery cooling water pipe forming die Download PDF

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Publication number
CN212219100U
CN212219100U CN201922153981.4U CN201922153981U CN212219100U CN 212219100 U CN212219100 U CN 212219100U CN 201922153981 U CN201922153981 U CN 201922153981U CN 212219100 U CN212219100 U CN 212219100U
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China
Prior art keywords
lifting
groove
forming die
water pipe
cooling water
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CN201922153981.4U
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Chinese (zh)
Inventor
鲍仁德
郑海波
晏建炜
赵德生
刘建勋
陈亮
甘亚民
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Anhui Tesitong Pipeline Technology Co Ltd
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Anhui Tesitong Pipeline Technology Co Ltd
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Priority to CN201922153981.4U priority Critical patent/CN212219100U/en
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Abstract

The utility model belongs to the technical field of battery cooling system processing production technique and specifically relates to a battery cooling water pipe forming die, including the mould body, the shaping cavity has been seted up to mould body upper surface. The utility model discloses a battery condenser tube forming die unloads the groove through the inside dress of seting up built-in bottom lifting copper sheet on the bottom surface in the shaping cavity, the bottom lifting groove of seting up built-in lifting piece is put to bottom surface central point in inside dress unloads the inslot, the bottom that sets up built-in lifting screw is put internal thread through-hole and built-in indulges and put the leading hole of putting of transfer line of indulging at bottom lifting inslot bottom surface, can make things convenient for finished product and mould separation after the shaping through lifting screw control bottom lifting copper sheet, and through indulging the temperature that whole mould was adjusted in the heat conduction runner infusion of putting the transfer line to lifting piece inside, thereby promote processing production efficiency.

Description

Battery cooling water pipe forming die
Technical Field
The utility model belongs to the technical field of battery cooling system processing production technique and specifically relates to a battery cooling water pipe forming die.
Background
At present, the thermal management of the power battery system can be mainly divided into four types, namely natural cooling, air cooling, liquid cooling and direct cooling. The natural cooling is a passive heat management mode, and the air cooling, the liquid cooling and the direct current are active, and the main difference of the three modes is the difference of heat exchange media. Wherein the liquid cooling is used most extensively, and the cooling in the battery mainly transmits the heat through the cooling water pipe at present, and the cooling water pipe need use forming die in the course of working, and forming die on the market is most simple structure at present, can't control the regulation to the mould temperature in the course of working, and the separation is more troublesome after the shaping simultaneously.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is: in order to solve the problems existing in the background art, the improved battery cooling water pipe forming die is provided, and the problems that most forming dies on the market are simple in structure, the temperature of the die cannot be controlled and adjusted in the process of machining and forming, and the separation is troublesome after forming are solved.
The utility model provides a technical scheme that its technical problem adopted is: the utility model provides a battery condenser tube forming die, includes the mould body, mould body upper surface seted up the shaping cavity, the inside swing joint of shaping cavity have inside one-tenth shape piece, the shaping cavity in seted up inside dress on the bottom surface and unloaded the groove, inside dress unload inslot portion be provided with bottom lifting copper sheet, inside dress inslot bottom central point put and seted up bottom lifting groove, bottom lifting copper sheet lower extreme be located bottom lifting inslot portion and have a bellied integral structure lifting piece downwards, bottom lifting inslot bottom put the internal thread through-hole at the bottom of seting up built-in lifting screw on the bottom, lifting piece lower extreme set up with the spacing blind hole of lifting screw top matched with bottom lift.
Furthermore, in order to control lifting separation conveniently, the lower end of the lifting screw is located below the die body and is axially and fixedly connected with a bottom rotating rocking handle, and the top end of the lifting screw is located inside the bottom lifting limiting blind hole and is axially and fixedly connected with a top assembling head.
Further, in order to adjust the temperature conveniently, the lifting block is internally provided with a heat conduction flow channel, the lower end of the lifting block is provided with a longitudinally-arranged infusion tube communicated with the inside of the heat conduction flow channel, and the bottom lifting groove inner bottom surface is positioned at the bottom of the internally threaded through hole and is peripherally provided with a longitudinally-arranged guide hole matched with the longitudinally-arranged infusion tube.
Further, in order to improve stability and leakproofness, inside loading and unloading groove medial surface and bottom lifting copper sheet outside be connected between the face and bottom lifting groove medial surface and the lifting piece outside is connected between the face and is all from interior toward outer lifting to connecting the inclined plane gradually.
Further, in order to improve the lifting stability, the inner aperture size of the bottom lifting limiting blind hole is the same as the outer diameter size of the top assembling head.
Furthermore, in order to improve the guiding stability, the outer diameter of the longitudinally-arranged infusion tube is the same as the pore size in the longitudinally-arranged guiding hole.
The beneficial effects of the utility model are that, the utility model discloses a battery condenser tube forming die unloads the groove through the inside of seting up built-in bottom lifting copper sheet on the bottom surface in the shaping cavity, the bottom lifting groove of seting up built-in lifting piece is put to bottom central point in inside loading and unloading groove, the bottom that sets up built-in lifting screw is at bottom lifting inslot bottom central point puts internal thread through-hole and the built-in guiding hole of putting indulging of putting the transfer line of indulging, can make things convenient for finished product and mould separation after the shaping through lifting screw control bottom lifting copper sheet to through indulging the temperature that whole mould was adjusted in the heat conduction runner infusion of putting the transfer line to lifting piece inside, thereby promote processing production efficiency greatly.
Drawings
The present invention will be further explained with reference to the drawings and examples.
Fig. 1 is a schematic structural diagram of the present invention.
Figure 2 is a cross-sectional view of the interior of the lifting block of the present invention.
In the drawing, the die comprises a die body 1, a forming cavity 2, an internal forming block 3, an internal loading and unloading groove 4, a bottom lifting copper sheet 5, a bottom lifting groove 6, a lifting block 7, a lifting screw 8, a lifting screw 9, a bottom internal thread through hole 10, a bottom lifting limiting blind hole 11, a bottom rotary rocking handle 12, a top assembling head 13, a heat conduction flow passage 14, a longitudinal infusion tube 15 and a longitudinal guide hole 15.
Detailed Description
The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic drawings and illustrate the basic structure of the present invention only in a schematic manner, and thus show only the components related to the present invention.
The battery cooling water pipe forming die shown in fig. 1 and fig. 2 comprises a die body 1, a forming cavity 2 is arranged on the upper surface of the die body 1, an inner forming block 3 is movably connected inside the forming cavity 2, the forming cavity 2 and the inner forming block 3 are the prior art, the same with traditional forming mechanism on the market, inside dress has been seted up on the bottom surface in the shaping cavity 2 and has been unloaded groove 4, inside dress unloads that 4 insides in the groove are provided with bottom lifting copper sheet 5, bottom lifting groove 6 has been seted up to inside dress unloads 4 bottom central point and puts, bottom lifting copper sheet 5 lower extreme is located bottom lifting groove 6 inside and has a bellied body structure lifting piece 7 downwards, set up the bottom internal thread through-hole 9 of putting of built-in lifting screw 8 on the bottom surface in bottom lifting groove 6, lifting piece 7 lower extreme is seted up with 8 top matched with bottom lift spacing blind holes 10 of lifting screw.
Further, for convenient control lift separation, 8 lower extremes of lifting screw are located the rotatory rocking handle 11 in axial fixedly connected with bottom in mould body 1 below, 8 tops of lifting screw are located the inside axial fixedly connected with top assembly head 12 of the spacing blind hole 10 of bottom lift, furthermore, for convenient temperature regulation, heat conduction runner 13 has been seted up to lifting piece 7 inside, 7 lower extremes of lifting piece have with heat conduction runner 13 inside be linked together indulge put transfer line 14, two indulge put the transfer line and connect inlet tube and outlet pipe respectively, bottom lifting groove 6 inner bottom is located and sets up and indulge and put transfer line 14 matched with and indulge and put leading hole 15 in the bottom and put internal thread through-hole 9 periphery.
Further, for promoting stability and leakproofness, between 4 medial surfaces of inside loading and unloading groove and the 5 outside connection faces of bottom lifting copper sheet and between 6 medial surfaces of bottom lifting groove and the 7 outside connection faces of lifting piece are from interior toward outer lifting gradually to connecting the inclined plane, and further, for promoting the stability of lifting, aperture size is the same with top assembly head 12 external diameter size in the spacing blind hole 10 of bottom lift.
Further, in order to promote the direction stability, indulge and put 14 outer diameters of transfer line and indulge and put the aperture size the same in the guiding hole 15, the utility model discloses a battery condenser tube forming die is through offering the inside loading and unloading groove 4 of built-in bottom lifting copper sheet 5 on the bottom surface in shaping cavity 2, bottom central point puts the bottom lifting groove 6 of offering built-in lifting piece 7 in inside loading and unloading groove 4, the bottom of offering built-in lifting screw 8 is put internal thread through-hole 9 and the built-in guiding hole 15 of indulging of putting transfer line 14 of indulging at the bottom of bottom lifting groove 6 internal bottom surface, can make things convenient for finished product and mould separation after the shaping through lifting screw 8 control bottom lifting copper sheet 5 to through indulging the temperature that transfer line 14 adjusted whole mould to the inside heat conduction runner 13 infusion of lifting piece 7, thereby promote processing production efficiency greatly.
In light of the foregoing, it will be apparent to those skilled in the art from this disclosure that various changes and modifications can be made without departing from the spirit and scope of the invention. The technical scope of the present invention is not limited to the content of the specification, and must be determined according to the scope of the claims.

Claims (6)

1. The utility model provides a battery condenser tube forming die, includes mould body (1), characterized by: mould body (1) upper surface seted up shaping cavity (2), the inside swing joint of shaping cavity (2) have inside shaping piece (3), shaping cavity (2) in seted up inside dress on the bottom surface and unloaded groove (4), inside dress unload groove (4) inside be provided with bottom lifting copper sheet (5), inside dress unload groove (4) in bottom central point put and seted up bottom lifting groove (6), bottom lifting copper sheet (5) lower extreme be located bottom lifting groove (6) inside have bellied body structure lifting piece (7) downwards, bottom lifting groove (6) in the bottom set internal thread through-hole (9) of seting up built-in lifting screw (8) on the bottom, lifting piece (7) lower extreme set up with lifting screw (8) top matched with bottom spacing blind hole (10) that goes up and down.
2. The battery cooling water pipe forming die of claim 1, wherein: the lower end of the lifting screw rod (8) is located below the die body (1) and is axially and fixedly connected with a bottom rotary rocking handle (11), and the top end of the lifting screw rod (8) is located inside a bottom lifting limiting blind hole (10) and is axially and fixedly connected with a top assembling head (12).
3. The battery cooling water pipe forming die of claim 1, wherein: lifting piece (7) inside heat conduction runner (13) have been seted up, lifting piece (7) lower extreme have with heat conduction runner (13) inside be linked together indulge put transfer line (14), bottom lifting groove (6) in the bottom be located the bottom and put internal thread through-hole (9) periphery seted up with indulge put transfer line (14) matched with indulge and put leading hole (15).
4. The battery cooling water pipe forming die of claim 1, wherein: the inner side surface of the inner loading and unloading groove (4) and the outer side of the bottom lifting copper sheet (5) are connected between the surfaces and the inner side surface of the bottom lifting groove (6) and the outer side of the lifting block (7) are connected between the surfaces and are gradually lifted from the inside to the outside to be connected with the inclined surface.
5. The battery cooling water pipe forming die as claimed in claim 2, wherein: the inner aperture size of the bottom lifting limiting blind hole (10) is the same as the outer diameter size of the top assembling head (12).
6. The battery cooling water pipe forming die of claim 3, wherein: the outer diameter of the longitudinally-arranged infusion tube (14) is the same as the inner aperture of the longitudinally-arranged guide hole (15).
CN201922153981.4U 2019-12-04 2019-12-04 Battery cooling water pipe forming die Active CN212219100U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922153981.4U CN212219100U (en) 2019-12-04 2019-12-04 Battery cooling water pipe forming die

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922153981.4U CN212219100U (en) 2019-12-04 2019-12-04 Battery cooling water pipe forming die

Publications (1)

Publication Number Publication Date
CN212219100U true CN212219100U (en) 2020-12-25

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Application Number Title Priority Date Filing Date
CN201922153981.4U Active CN212219100U (en) 2019-12-04 2019-12-04 Battery cooling water pipe forming die

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CN (1) CN212219100U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110884057A (en) * 2019-12-04 2020-03-17 安徽中鼎胶管制品有限公司 Battery cooling water pipe forming die

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110884057A (en) * 2019-12-04 2020-03-17 安徽中鼎胶管制品有限公司 Battery cooling water pipe forming die

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