Liquid cooling plate positioning structure

By designing a liquid cooling plate positioning structure, utilizing positioning mounting slots and clamping devices, and combining them with auxiliary installation devices, the installation problem of liquid cooling plates in confined spaces was solved, achieving simple positioning and clamping fixation, and improving ease of use and functionality.

CN223519592UActive Publication Date: 2025-11-07NANTONG FUSION INNOVATION ENERGY CO LTD
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Patent Information

Application Number
CN202423083854.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2025-11-07
Estimated Expiration
2034-12-13

AI Technical Summary

Technical Problem

The installation and positioning of liquid cooling plates in energy storage containers is inconvenient, especially inside the relatively small space of the container, which makes installation difficult.

Method used

A liquid cooling plate positioning structure was designed, including a positioning mounting groove and a positioning clamping device. Combined with an auxiliary installation device, the liquid cooling plate is positioned and clamped by the coordinated work of components such as motors, screws, and gears, which can adapt to the synchronous tightening or loosening operation in narrow spaces.

Benefits of technology

This technology enables easy installation and positioning of liquid cooling plates, improves ease of use, meets the installation requirements of confined spaces, and reduces production costs and operational difficulty.

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Abstract

The utility model discloses a liquid cooling plate positioning structure, which relates to the technical field of heat dissipation and comprises a first positioning mounting groove, a first positioning clamping device, a second positioning clamping device, a second positioning mounting groove and an auxiliary mounting device. The liquid cooling plate positioning and clamping device has the advantages of being reasonable and simple in structure, low in production cost and convenient to install, positioning, clamping and fixing of the liquid cooling plate can be achieved through cooperation of the positioning and installing grooves and the positioning and clamping devices, and the installing requirement is met; according to the utility model, the auxiliary mounting device is arranged, the wrench head of the auxiliary mounting device can be inserted into the rotating head of the positioning and clamping device, so that the positioning and clamping device synchronously works, the alignment clamping or loosening operation of the liquid cooling plate is facilitated, synchronous tightening or loosening can be realized in a narrow space, and the use convenience is improved; according to the auxiliary installation device, through cooperative operation of the motor, the screw rod, the gear and other components, the position of the wrench head can be flexibly adjusted, rotation operation can be conducted, and the functionality and practicability of the device are further improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to heat dissipation technical field especially relates to a liquid cooling plate positioning structure. BACKGROUND

[0002] At present, the energy storage container as the extremely key energy storage equipment has wide application in power system, renewable energy power generation system and industry and commerce and many fields. For the energy storage container, the battery pack is undoubtedly the core energy storage unit, and the operation temperature of the battery pack has decisive key significance for the performance of the energy storage system and the service life. In the existing energy storage container system, in order to ensure that the battery pack can stably be in the suitable working temperature range, a large number of liquid cooling plates are usually relied on to perform the temperature management and control task. However, a large number of liquid cooling plates have many inconveniences and troubles in the installation and positioning process, especially when the installation and positioning work is carried out in the relatively narrow energy storage container, these problems are more prominent. UTILITY MODEL CONTENTS

[0003] The utility model discloses a liquid cooling plate positioning structure, solve the problem that a plurality of liquid cooling plates carry out installation and positioning in the container.

[0004] In order to solve the above problems, the utility model provides a technical scheme: a liquid cooling plate positioning structure, including liquid cooling plate, still including positioning installation groove one, positioning clamping device one, positioning clamping device two, positioning installation groove two and auxiliary installation device, positioning installation groove one and positioning installation groove two are respectively symmetrically opened in the both sides of liquid cooling plate side, positioning clamping device one is fixedly connected in the inside of positioning installation groove one, positioning clamping device two is fixedly connected in the inside of positioning installation groove two, positioning clamping device two and positioning clamping device one are identical and symmetrically arranged, and the specific structure of positioning clamping device two includes guide groove seat, guide groove, screw one, sliding block, positioning clamp block, fixed screw, transmission gear one, transmission gear two and rotary head, the central inside of guide groove seat is equipped with guide groove, screw one is movably connected in the center of guide groove, and the transmission gear one is fixedly connected on the right side outside of screw one, the sliding block is movably connected in the inside of guide groove, the threaded hole provided in the center of sliding block is connected with screw one, and the positioning clamp block is fixedly connected on the top of sliding block through fixed screw, transmission gear two is movably connected in the right side inside of guide groove seat, transmission gear two is connected with transmission gear one, the rotary head is fixedly connected on the outside center shaft of transmission gear two, and the rotary head is connected with auxiliary installation device.

[0005] As preferred, the specific structure of the auxiliary mounting device comprises a connecting arm, a handle, a motor one, a wrench head one, a driven gear one, a driving gear one, a sliding groove, a wrench head two, a driven gear two, a driving gear two, a spline shaft, a sliding seat, a screw two and a motor two; the handle is fixedly connected to the left side of the connecting arm, the sliding groove is horizontally arranged on the right side of the connecting arm, and the motor one is fixedly connected to the left side of the connecting arm; the spline shaft is movably connected in the sliding groove, the left side center of the spline shaft is fixedly connected to the right side output shaft of the motor one; the driving gear one is movably connected to the left side of the connecting arm, the central part of the driving gear one is fixedly connected to the left side of the spline shaft; the wrench head one is movably connected to the left side of the connecting arm, the driven gear one is fixedly connected to the inner side of the wrench head one, and the driven gear one is connected with the driving gear one; the motor two is fixedly connected to the left side of the connecting arm; the screw two is movably connected in the sliding groove, the left side center of the screw two is fixedly connected to the right side output shaft of the motor two; the sliding seat is movably connected in the sliding groove, the threaded hole arranged on the front side of the sliding seat is connected with the screw two, and the rear side of the sliding seat is movably connected in the spline shaft; the driving gear two is movably connected in the sliding seat, the spline hole arranged in the center of the driving gear two is connected with the spline shaft; the wrench head two is movably connected to the rear side of the sliding seat, the driven gear two is fixedly connected to the inner side of the wrench head two, and the driven gear two is connected with the driving gear two.

[0006] As preferred, the motor one and the motor two are both speed reduction motors.

[0007] As preferred, the wrench head one and the wrench head two are both hexagonal.

[0008] As preferred, the sliding groove is a T-shaped guide groove.

[0009] As preferred, the outer side of the rotating head is provided with an inner hexagonal hole.

[0010] The utility model discloses have the advantages that (1) the utility model has the characteristics of reasonable structure, low production cost and convenient installation, through the cooperation of the positioning installation groove and the positioning clamping device, the positioning and clamping of the liquid cooling plate can be realized, and the installation demand is satisfied.

[0011] (2) The auxiliary mounting device is arranged in the utility model, the wrench head can be inserted into the rotating head of the positioning clamping device, the positioning clamping device can work synchronously, the centering clamping or loosening operation of the liquid cooling plate is convenient, synchronous tightening or loosening can be realized in a narrow space, and the use convenience is improved.

[0012] (3) Through the cooperative operation of the motor, the screw, the gear and other components in the auxiliary mounting device, the position of the wrench head can be flexibly adjusted and rotated, and the functionality and practicability of the device are further improved. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 It is a structural schematic view of the utility model.

[0014] Figure 2 It is a structural schematic view of the positioning installation groove.

[0015] Figure 3 It is a structural schematic view of the auxiliary installation device.

[0016] 1-liquid cooling plate;2-positioning installation groove one;3-positioning clamping device one;4-positioning clamping device two;5-positioning installation groove two;6-auxiliary installation device;41-guide groove seat;42-guide groove;43-screw one;44-sliding block;45-positioning clamping block;46-fixing screw;47-driving gear one;48-driving gear two;49-rotary head;61-connecting arm;62-handle;63-motor one;65-wrench head one;66-driven gear one;67-driving gear one;68-sliding groove;69-wrench head two;610-driven gear two;611-driving gear two;612-spline shaft;613-sliding seat;614-screw two;615-motor two. DETAILED DESCRIPTION

[0017] As Figure 1 and Figure 2 shown, the present embodiment adopts the following technical scheme: a liquid cooling plate positioning structure, comprising a liquid cooling plate 1, further comprising a positioning installation groove one 2, a positioning clamping device one 3, a positioning clamping device two 4, a positioning installation groove two 5 and an auxiliary installation device 6;The positioning installation groove one 2 and the positioning installation groove two 5 are respectively symmetrically opened on both sides of the side surface of the liquid cooling plate 1;The positioning clamping device one 3 is fixedly connected inside the positioning installation groove one 2;The positioning clamping device two 4 is fixedly connected inside the positioning installation groove two 5, the positioning clamping device two 4 and the positioning clamping device one 3 are consistent in structure and symmetrically arranged, and the specific structure of the positioning clamping device two 4 comprises a guide groove seat 41, a guide groove 42, a screw one 43, a sliding block 44, a positioning clamping block 45, a fixing screw 46, a driving gear one 47, a driving gear two 48 and a rotary head 49;The guide groove 42 is arranged in the central part of the guide groove seat 41;The screw one 43 is movably connected in the center of the guide groove 42, and the driving gear one 47 is fixedly connected to the right side of the screw one 43;The sliding block 44 is movably connected outside the guide groove 42, the threaded hole arranged in the center of the sliding block 44 is connected with the screw one 43, and the positioning clamping block 45 is fixedly connected to the top of the sliding block 44 through the fixing screw 46;The driving gear two 48 is movably connected inside the right side of the guide groove seat 41, the driving gear two 48 is connected with the driving gear one 47, the rotary head 49 is fixedly connected to the outer center shaft of the driving gear two 48, and the rotary head 49 is connected with the auxiliary installation device 6.

[0018] As Figure 3 shown in the auxiliary installation device 6, the specific structure includes connecting arm 61, handle 62, motor 63, wrench head 65, driven gear 66, driving gear 67, chute 68, wrench head 69, driven gear 610, driving gear 611, spline shaft 612, slide 613, screw 614 and motor 615; The left side of the connecting arm 61 is fixedly connected with the handle 62, the right rear side of the connecting arm 61 is provided with a transverse chute 68, and the left side of the connecting arm 61 is fixedly connected with the motor 63; The spline shaft 612 is movably connected inside the chute 68, and the left side center of the spline shaft 612 is fixedly connected with the right side output shaft of the motor 63; The driving gear 67 is movably connected inside the left side of the connecting arm 61, and the central inside of the driving gear 67 is fixedly connected with the left side outside of the spline shaft 612; The wrench head 65 is movably connected to the left rear side of the connecting arm 61, the inner side of the wrench head 65 is fixedly connected with the driven gear 66, and the driven gear 66 is connected with the driving gear 67; The motor 615 is fixedly connected outside the left front side of the connecting arm 61; The screw 614 is movably connected inside the chute 68, and the left side center of the screw 614 is fixedly connected with the right side output shaft of the motor 615; The slide 613 is movably connected inside the chute 68, the threaded hole provided on the front side of the slide 613 is connected with the screw 614, and the rear inside of the slide 613 is movably connected inside the spline shaft 612; The driving gear 611 is movably connected inside the slide 613, and the spline hole provided in the center of the driving gear 611 is connected with the spline shaft 612; The wrench head 69 is movably connected to the rear side of the slide 613, the inner side end of the wrench head 69 is fixedly connected with the driven gear 610, and the driven gear 610 is connected with the driving gear 611.

[0019] Among them, the motor 63 and the motor 615 are all reduction motors; The wrench head 65 and the wrench head 69 are all hexagonal; The chute 68 is a T-shaped guide groove; The outer side of the rotating head 49 is provided with an inner hexagonal hole.

[0020] The utility model is used as follows: It features a reasonable and simple structure, low production cost, convenient installation, and complete functions. First, the liquid cooling plate 1 is placed near the desired location, with the sides having the positioning mounting groove 1 2 and positioning mounting groove 2 5 facing the corresponding installation part. Then, the wrench heads 1 65 and 2 69 in the auxiliary installation device 6 are respectively inserted into the rotating heads of the positioning clamping device 1 3 and positioning clamping device 2 4, thereby enabling the positioning clamping device 1 3 and positioning clamping device 2 4 to work synchronously. This allows the positioning clamps in the positioning clamping devices 1 3 and 2 4 to center and clamp the installation part, thus satisfying the positioning and clamping fixation requirements of the liquid cooling plate 1. The specific operation... First, adjust the position of the second wrench head 69, start the second motor 615, and fix the left center of the second screw 614 to the right output shaft of the second motor 615. The threaded hole on the front side of the slide 613 is connected to the second screw 14, and the slide 613 will move axially along the second screw 14 in the slide groove 68 (T-shaped guide groove). Since the spline hole in the center of the second drive gear 611 is connected to the spline shaft 612, and the driven gear 610 on the inner end of the second wrench head 69 is connected to the second drive gear 611, it is easy for the slide 613 to move to the appropriate position. Then, start the first motor 63. Since the left center of the spline shaft 612 is fixedly connected to the right output shaft of the first motor 63, the threaded hole in the center of the first drive gear 617 is connected to the spline shaft 612. The part is fixedly connected to the left side of the spline shaft 612, and the driven gear 66 inside the wrench head 65 is connected to the driving gear 67. The motor 63 drives the spline shaft 612 and the driving gear 67 to rotate, thereby causing the wrench head 65 to rotate, which can be used for tightening or loosening operations. At the same time, the spline shaft 612 also drives the wrench head 69 to rotate, so that the rotating heads in the positioning and clamping devices 3 and 4 can be rotated through the wrench head 65 and the wrench head 69. Here, the positioning and clamping device 4 is taken as an example (the positioning and clamping device 3 is similar and operates symmetrically). By rotating the rotating head 49, the internal hexagonal hole on the outside of the rotating head 49 can be rotated with a suitable internal hexagonal wrench. The rotating head 49 carries When the second transmission gear 48 rotates, it is connected to the first transmission gear 47, which in turn rotates and drives the first screw 43 to rotate in the center of the guide groove 42. Since the threaded hole in the center of the slider 44 is connected to the first screw 43, the rotation of the first screw 43 will cause the slider 44 to move axially along the first screw 43 inside the guide groove 42. The positioning clamp 45, which is fixedly connected to the top of the slider 44 by the fixing screw 46, will also move with the slider 44, thereby realizing the centering clamping or loosening operation of the liquid cooling plate 1. This allows the liquid cooling plate 1 to be installed in the required position. The auxiliary installation device 6 can meet the need for synchronous tightening or loosening in a narrow space, thus improving the convenience of use.

[0021] The control mode of the utility model is controlled through manual starting or through existing automation technology, and the wiring diagram of the power element and the provision of the power supply are common knowledge in the art, and the utility model is mainly used for protecting mechanical devices, so the control mode and wiring arrangement of the utility model will not be explained in detail.

[0022] In the description of the utility model, it is understood that the orientation or positional relationship indicated by the terms "coaxial", "bottom", "one end", "top", "middle", "the other end", "upper", "one side", "top", "inner", "front", "central", "both ends" and the like is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the utility model and simplifying the description, and does not indicate or imply that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the utility model.

[0023] In the utility model, unless otherwise explicitly specified and limited, the terms "mounting", "setting", "connecting", "fixing", "screw connection" and the like should be understood broadly, for example, can be fixed connection, can also be detachable connection, or integrated; can be mechanical connection, can also be electrical connection; can be directly connected, can also be indirectly connected through an intermediate medium, can be the internal communication of two elements or the interaction relationship of two elements, unless otherwise explicitly limited, the above-mentioned terms in the utility model can be understood according to the specific meaning of the above-mentioned terms in the utility model according to the specific circumstances.

[0024] The basic principle and main features of the utility model and the advantages of the utility model are shown and described above, and the person skilled in the art should understand that the utility model is not limited by the above-mentioned embodiments, the above-mentioned embodiments and the description in the specification are only to illustrate the principle of the utility model, under the premise of not departing from the spirit and scope of the utility model, the utility model will also have various changes and improvements, these changes and improvements all fall within the scope of the claimed utility model, and the scope of protection of the utility model is defined by the appended claims and their equivalents.

Claims

1. A liquid cold plate positioning structure comprising a liquid cold plate (1), characterized by: It also includes positioning installation slot one (2), positioning clamping device one (3), positioning clamping device two (4), positioning installation slot two (5) and auxiliary installation device (6); The positioning installation slot one (2) and the positioning installation slot two (5) are respectively symmetrically arranged on the two sides of the liquid cooling plate (1); The positioning clamping device one (3) is fixedly connected inside the positioning installation slot one (2); The positioning clamping device two (4) is fixedly connected inside the positioning installation slot two (5), the structure of the positioning clamping device two (4) is consistent with that of the positioning clamping device one (3) and is symmetrically arranged, and the specific structure of the positioning clamping device two (4) comprises a guide groove seat (41), a guide groove (42), a screw rod one (43), a sliding block (44), a positioning clamping block (45), a fixed screw (46), a transmission gear one (47), a transmission gear two (48) and a rotating head (49); The guide groove (42) is arranged in the central part of the guide groove seat (41); The screw rod one (43) is movably connected in the central part of the guide groove (42), and the transmission gear one (47) is fixedly connected to the right side of the screw rod one (43); The sliding block (44) is movably connected outside the guide groove (42), the threaded hole arranged in the central part of the sliding block (44) is connected with the screw rod one (43), and the positioning clamping block (45) is fixedly connected to the top of the sliding block (44) through the fixed screw (46); The transmission gear two (48) is movably connected inside the right side of the guide groove seat (41), the transmission gear two (48) is connected with the transmission gear one (47), the rotating head (49) is fixedly connected to the outer center shaft of the transmission gear two (48), and the rotating head (49) is connected with the auxiliary installation device (6).

2. The liquid cold plate positioning structure of claim 1, wherein: The specific structure of the auxiliary installation device (6) comprises a connecting arm (61), a handle (62), a motor one (63), a wrench head one (65), a driven gear one (66), a driving gear one (67), a sliding groove (68), a wrench head two (69), a driven gear two (610), a driving gear two (611), a spline shaft (612), a sliding seat (613), a screw rod two (614) and a motor two (615); The handle (62) is fixedly connected to the left side of the connecting arm (61), the sliding groove (68) is arranged in the right rear side of the connecting arm (61), and the motor one (63) is fixedly connected to the left side of the connecting arm (61); The spline shaft (612) is movably connected inside the sliding groove (68), and the left side center of the spline shaft (612) is fixedly connected with the right side output shaft of the motor one (63); The driving gear one (67) is movably connected inside the left side of the connecting arm (61), and the central part of the driving gear one (67) is fixedly connected with the left side of the spline shaft (612); The wrench head one (65) is movably connected to the left rear side of the connecting arm (61), and the driven gear one (66) is fixedly connected to the inner side of the wrench head one (65) and connected with the driving gear one (67); The motor two (615) is fixedly connected to the left front side of the connecting arm (61). The screw two (614) is movably connected in the sliding groove (68), and the left center of the screw two (614) is fixedly connected with the right output shaft of the motor two (615); The sliding seat (613) is movably connected in the sliding groove (68), the threaded hole arranged on the front side of the sliding seat (613) is connected with the screw two (614), and the rear side of the sliding seat (613) is movably connected in the spline shaft (612); The driving gear two (611) is movably connected in the sliding seat (613), and the spline hole arranged in the center of the driving gear two (611) is connected with the spline shaft (612); The wrench head two (69) is movably connected at the rear side of the sliding seat (613), the inner side end of the wrench head two (69) is fixedly connected with the driven gear two (610), and the driven gear two (610) is connected with the driving gear two (611).

3. The liquid cold plate positioning structure of claim 2, wherein: The motor one (63) and the motor two (615) are both speed reduction motors.

4. The liquid cold plate positioning structure of claim 2, wherein: The wrench head one (65) and the wrench head two (69) are both hexagonal.

5. The liquid cold plate positioning structure of claim 2, wherein: The sliding groove (68) is a T-shaped guide groove.

6. The liquid cold plate positioning structure of claim 1, wherein: The outer side of the rotating head (49) is provided with an inner hexagonal hole.