Shock absorber reservoir assembly transfer support tool
Patent Information
- Application Number
- CN202522054332.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-24
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-09-24
AI Technical Summary
现有技术中,通常将减震器总成的贮液筒组件通过工装竖直地牢牢固定在工装板上方进行运输,同时需要保证贮液筒方便取出,以保证装配顺利;但目前的工装适用性和灵活性较差,不便于根据贮液筒的外径、高度、连接环直径等参数进行相应的调整,因此对于不同尺寸的贮液筒组件就需要单独设置并固定相对应的工装,停线时间较长,成本较高
[0005]本实用新型的有益效果是:只需要将连接环套于下支撑组件的另一端上,并将贮液筒推入上支撑组件的定位槽内即可实现稳定安装,可快捷便利地实现贮液筒组件的放入取出,有效地提高的生产效率,降低了劳动强度;且,下支撑组件和上支撑组件均可拆卸连接于底座主体,便于根据待被转运的贮液筒和连接环的尺寸更换对应尺寸的下支撑组件和上支撑组件,并将更换后的下支撑组件和上支撑组件安装于底座主体上,可相对减少在针对于不同尺寸的贮液筒组件更换对应的工装的更换时间,缩短停线时间,且只需要更换部分结构,相对降低工装制作成本,节省了放置工装的空间。
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Figure CN224786259U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of tooling technology, and in particular to a transfer support tooling for a shock absorber reservoir assembly. Background Technology
[0002] During the assembly of the shock absorber assembly, the reservoir assembly needs to be transported. The reservoir assembly includes a reservoir and a connecting ring at the bottom of the reservoir. In the prior art, the reservoir assembly of the shock absorber assembly is usually transported by vertically and firmly fixing it above the tooling plate using tooling, while ensuring that the reservoir can be easily removed to ensure smooth assembly. However, the current tooling has poor applicability and flexibility, and it is not convenient to adjust it according to parameters such as the outer diameter, height, and connecting ring diameter of the reservoir. Therefore, different sizes of reservoir assemblies require separate tooling to be set up and fixed, resulting in long downtime and high cost. Utility Model Content
[0003] This utility model provides a transfer support fixture for a shock absorber reservoir assembly, which can reduce the replacement time for changing the corresponding fixture for reservoir assemblies of different sizes, shorten the downtime, and only require the replacement of a part of the structure, thereby reducing the cost of fixture manufacturing and saving space for placing the fixture.
[0004] The technical solution of this utility model to solve the above-mentioned technical problems is as follows: A transfer support fixture for a shock absorber reservoir assembly includes: The base body has its lower end designed for detachable connection to the tooling plate; The lower support assembly is arranged horizontally, with one end detachably connected to the base body and the other end provided with a support surface for supporting the connecting ring at the bottom of the liquid storage cylinder. The upper support assembly is detachably connected to the top of the base body and has a positioning groove. The groove wall is used to support the side wall of the liquid storage cylinder.
[0005] The beneficial effects of this utility model are as follows: Stable installation can be achieved simply by fitting the connecting ring onto the other end of the lower support assembly and pushing the liquid storage cylinder into the positioning groove of the upper support assembly. This allows for quick and convenient insertion and removal of the liquid storage cylinder assembly, effectively improving production efficiency and reducing labor intensity. Furthermore, both the lower and upper support assemblies are detachably connected to the base body, facilitating the replacement of lower and upper support assemblies of corresponding sizes according to the dimensions of the liquid storage cylinder and connecting ring to be transported. The replaced lower and upper support assemblies are then installed on the base body, relatively reducing the time required to change tooling for different sized liquid storage cylinder assemblies, shortening downtime, and requiring only partial structural replacement, thus reducing tooling manufacturing costs and saving space for tooling placement.
[0006] Based on the above technical solution, the present invention can be further improved as follows.
[0007] Furthermore, the base body has a through support hole; the lower support assembly includes a support rod, a fastener detachably connected to one end of the support rod, a limiting block abutting the other end of the support rod, and a first fastening screw connected to both the support rod and the limiting block. One end of the support rod is adapted to and extends through the support hole, the fastener abuts against the side wall of the base body, the shaft segment of the support rod located between the limiting block and the base body forms the support surface, and the limiting block has a limiting portion that protrudes upward from the support surface.
[0008] Furthermore, the support rod is circumferentially fixedly connected to a limiting platform, the limiting platform abuts against the base body, and the support surface is located between the limiting block and the limiting platform.
[0009] Furthermore, the base body has a first limiting groove that connects to the support hole, and the support rod has two opposing first limiting surfaces, which respectively abut against two opposing groove walls of the first limiting groove.
[0010] Furthermore, the limiting block has a through-hole with an eccentric countersunk hole. The first fastening screw is inserted into the eccentric countersunk hole and threaded to the support rod. The lower end of the limiting block is located in the axial projection plane of the shaft segment of the support rod that forms the support surface, and the upper end extends beyond the axial projection plane of the support rod to form the limiting part. The length of the limiting part is less than the difference between the diameter of the connecting ring and the diameter of the support rod.
[0011] Furthermore, the end of the support rod is provided with two upper and lower opposing second limiting surfaces, and the limiting block is provided with a second limiting groove, with the two opposite groove walls of the second limiting groove abutting against the two second limiting surfaces respectively.
[0012] Furthermore, the limiting block has a frustum-shaped structure, and the side of it that abuts against the support rod is the bottom surface of the cone.
[0013] Furthermore, the upper support assembly includes a support sleeve and at least two second fastening screws circumferentially spaced on the support sleeve. The support sleeve has at least two countersunk holes, and each of the second fastening screws is inserted into each of the countersunk holes. Each of the second fastening screws is threaded to the base body, and the positioning groove is formed in the support sleeve.
[0014] Furthermore, the support sleeve is also provided with at least two disassembly holes, the diameter of each disassembly hole is larger than the diameter of the head of the second fastening screw, and each disassembly hole is connected to each of the top countersunk holes.
[0015] Furthermore, the bottom of the base body is provided with an insertion hole, and a locking hole communicating with the insertion hole is provided through the side wall of the base body. A nut is fixedly connected to the base body, and a spring locking plunger with one end extending into the locking hole is threadedly connected to the nut. Attached Figure Description
[0016] Figure 1 This is a cross-sectional view of the present invention; Figure 2 For the present utility model Figure 1 First enlarged view of the area; Figure 3 For the present utility model Figure 1 Second enlarged view of the area; Figure 4 This is a structural diagram of the support rod of this utility model; Figure 5 This is a structural diagram of the base body and upper support assembly of this utility model; Figure 6 This is a partial structural diagram of the lower support component of this utility model; Figure 7 This is a top view of the upper support component of this utility model.
[0017] The attached diagram lists the components represented by each number as follows: 1. Base body; 11. Support hole; 12. First limiting groove; 13. Insertion hole; 14. Locking hole; 15. Nut; 2. Lower support assembly; 21. Support rod; 211. Limiting platform; 212. First limiting surface; 213. Second limiting surface; 22. Fastener; 23. Limiting block; 231. Limiting part; 232. Eccentric countersunk hole; 233. Second limiting groove; 24. First fastening screw; 3. Support surface; 4. Upper support assembly; 41. Support sleeve; 411. Top countersunk hole; 412. Mounting / removing hole; 42. Second fastening screw; 5. Positioning groove; 6. Spring-locking plunger; 7. Liquid storage cylinder; 71. Connecting ring. Detailed Implementation
[0018] The principles and features of this utility model are described below with reference to the accompanying drawings. The examples given are only for explaining this utility model and are not intended to limit the scope of this utility model.
[0019] Example 1 like Figures 1-7 A shock absorber reservoir assembly transfer support fixture, comprising: The base body 1 has its lower end detachably connected to the tooling plate; The lower support assembly 2 is arranged horizontally, and one end of it is detachably connected to the base body 1, while the other end is provided with a support surface 3 for supporting the connecting ring 71 at the bottom of the liquid storage cylinder 7. The upper support component 4 is detachably connected to the top of the base body 1 and has a positioning groove 5. The groove wall of the positioning groove 5 is used to support the side wall of the liquid storage cylinder 7.
[0020] The beneficial effects of this embodiment are as follows: the transfer process only requires fitting the connecting ring 71 onto the other end of the lower support component 2 and pushing the liquid storage cylinder 7 into the positioning groove 5 of the upper support component 4 to achieve stable installation. This allows for quick and convenient insertion and removal of the liquid storage cylinder component, effectively improving production efficiency and reducing labor intensity. Furthermore, both the lower support component 2 and the upper support component 4 can be detachably connected to the base body 1, making it easy to replace the lower support component 2 and the upper support component 4 with the corresponding size according to the size of the liquid storage cylinder 7 and the connecting ring 71 to be transferred. The replaced lower support component 2 and the upper support component 4 can then be installed on the base body 1, which can relatively reduce the time required to change the corresponding tooling for liquid storage cylinder components of different sizes, shorten the downtime, and only require the replacement of part of the structure, thus relatively reducing the tooling manufacturing cost and saving space for placing the tooling.
[0021] During transport, the base body 1 is connected to the tooling plate as the tooling base, and the connecting ring 71 is fitted onto the other end of the lower support component 2 to form support for the connecting ring 71 and the vertically upward liquid storage cylinder 7. At the same time, the liquid storage cylinder 7 is pushed into the positioning groove 5 of the upper support component 4, and the groove wall of the positioning groove 5 abuts against the side wall of the liquid storage cylinder 7 to form lateral positioning of the liquid storage cylinder 7, ensuring the stability of the liquid storage component during transport.
[0022] Example 2 like Figures 1-6 Based on Embodiment 1, the base body 1 has a through support hole 11; the lower support assembly 2 includes a support rod 21, a fastener 22 detachably connected to one end of the support rod 21, a limiting block 23 abutting against the other end of the support rod 21, and a first fastening screw 24 connected to both the support rod 21 and the limiting block 23. One end of the support rod 21 is adapted to and passes through the support hole 11, the fastener 22 abuts against the side wall of the base body 1, the shaft segment of the support rod 21 located between the limiting block 23 and the base body 1 forms a support surface 3, and the limiting block 23 has a limiting part 231 that protrudes upward from the support surface 3.
[0023] The beneficial effects of adopting the preferred solution in the above embodiments are that, in use, the connecting ring 71 is sleeved on the other end of the support rod 21 to support and transport the liquid storage cylinder assembly. At the same time, the limiting part 231 of the limiting block 23 forms a limit to prevent the connecting ring 71 from coming off the support rod 21 during transportation. When replacement is required, the fastener 22 can be removed to pull out and replace the support rod 21, realizing partial structural adaptability replacement, relatively shortening tooling change time and downtime, and reducing costs.
[0024] In this embodiment, the fastener 22 can be a nut or a ball-bearing quick-release pin. The support rod 21 is fixed by screwing the nut into the threaded connection to one end of the support rod 21, or by inserting the ball-bearing quick-release pin radially into one end of the support rod 21.
[0025] Example 3 like Figure 1 and Figure 2 Based on embodiments 1 and 2, the support rod 21 is circumferentially fixedly connected to the limiting platform 211, the limiting platform 211 abuts against the base body 1, and the support surface 3 is located between the limiting block 23 and the limiting platform 211.
[0026] The beneficial effect of adopting the preferred solution in the above embodiments is that, during transportation, the limiting platform 211 and the limiting part 231 together form a limiting effect on the connecting ring 71, preventing the connecting ring 71 from moving along the length direction of the support rod 21 during transportation.
[0027] Example 4 like Figure 1 , Figure 2 as well as Figure 5 Based on embodiments 1-3, the base body 1 has a first limiting groove 12 that connects to the support hole 11, and the support rod 21 has two opposing first limiting surfaces 212, which respectively abut against the two opposing groove walls of the first limiting groove 12.
[0028] The beneficial effect of adopting the preferred solution in the above embodiments is that, during the transfer process, the base body 1 forms a limit on the support rod 21 through the groove wall of the first limiting groove 12, so as to prevent the support rod 21 from rotating during the process of supporting the connecting ring 71, and to ensure the stability of the transfer.
[0029] Based on the above embodiment, the width of the first limiting surface 212 is less than the depth of the first limiting groove 12, so as to ensure that the limiting platform 211 abuts against the base body 1.
[0030] Example 5 like Figure 1 and Figure 2Based on embodiments 1-4, the limiting block 23 has an eccentric countersunk hole 232 through it. The first fastening screw 24 is inserted into the eccentric countersunk hole 232 and threaded to the support rod 21. The lower end of the limiting block 23 is located in the axial projection plane of the shaft segment of the support rod 21 that forms the support surface 3, and the upper end extends beyond the axial projection plane of the support rod 21 to form a limiting part 231. The length of the limiting part 231 is less than the difference between the diameter of the connecting ring 71 and the diameter of the support rod 21.
[0031] The beneficial effect of adopting the preferred solution in the above embodiments is that when the limiting block 23 is fixed to the support rod 21 by the first fastening screw 24, the limiting part 231 extends upward.
[0032] Since all other parts of the limiting block 23, except for the limiting part 231, are located within the axial projection plane of the support rod 21, and the length of the limiting part 231 is less than the difference in diameter between the connecting ring 71 and the support rod 21, when the connecting ring 71 is put on the support rod 21, the connecting ring 71 can be lifted directly and made to pass over the limiting block 23 and be put on the support rod 21. After being put on, under the action of the weight of the connecting ring 71 itself, the inner side of the connecting ring 71 falls down and abuts against the support surface 3. At the same time, the limiting part 231 forms a limit on the connecting ring 71.
[0033] Similarly, by using the limiting block 23, when removing the connecting ring 71, the connecting ring 71 can be lifted and moved in the opposite direction to pass over the limiting part 231 and be removed without removing the limiting block 23, which is more convenient.
[0034] Example 6 like Figure 1 , Figure 2 as well as Figure 6 Based on embodiments 1-5, the end of the support rod 21 is provided with two upper and lower opposing second limiting surfaces 213, and the limiting block 23 is provided with a second limiting groove 233, with the two opposite groove walls of the second limiting groove 233 respectively abutting against the two second limiting surfaces 213.
[0035] The beneficial effect of adopting the preferred solution in the above embodiments is that the support rod 21 limits the limiting block 23 through the second limiting surface 213, so as to ensure that the limiting part 231 of the limiting block 23 is always upward, thus forming a stable limit on the connecting ring 71 during transportation.
[0036] In this utility model, the support rod 21 has an overall stepped shaft structure, comprising five shaft segments. The first shaft segment passes through the support hole 11 and is connected to the fastener 22. The second shaft segment has first limiting surfaces 212 cut out on both sides. The first limiting surfaces 212 and the groove walls of the first limiting groove 12 cooperate to prevent the support rod 21 from rotating circumferentially. The length of the second shaft segment is less than the groove depth of the first limiting groove 12 to avoid interfering with the positioning between the third shaft segment and the base body 1. The third shaft segment is a limiting platform 211. The left side of the limiting platform 211 abuts against the base body 1, and together with the fastener 22, clamps the base body 1. It can, together with the fastener 22, restrict the axial displacement of the support rod 21. The shaft length of the third shaft segment is designed according to the width of the connecting ring 71 of the corresponding product, so that... After the liquid storage cylinder assembly is installed, ensure that the axis of the liquid storage cylinder 7 is concentric with the axis of the insertion hole 13 at the bottom of the base body 1. At the same time, the limiting platform 211 and the limiting part 231 can jointly limit the connecting ring 71. The fourth shaft segment forms a support surface 3, the length of which is consistent with the width of the connecting ring 71 of the corresponding product, and the diameter is slightly smaller. After the liquid storage cylinder assembly is placed in place, the connecting ring 71 of the liquid storage cylinder assembly directly contacts the third shaft segment to achieve positioning and support of the liquid storage cylinder assembly in the height direction. The outer circle of the fifth shaft segment is cut with horizontal second limiting surfaces 213, which cooperate with the groove wall of the second limiting groove 233. The shaft length of the fifth shaft segment is less than the groove depth of the second limiting groove 233 to avoid interference of the limiting surfaces. Threaded holes are opened on the axis of the fifth shaft segment for installing screws.
[0037] Example 7 like Figure 6 Based on embodiments 1-6, the limiting block 23 has a frustum-shaped structure, and the side of it that abuts against the support rod 21 is the bottom of the cone.
[0038] The beneficial effect of adopting the preferred solution in the above embodiments is that the circumferential side surface of the limiting block 23, which has a frustum-shaped structure, forms an inclined structure, which can provide guidance when the connecting ring 71 is fitted onto the support rod 21, making it convenient to fit the connecting ring 71.
[0039] Example 8 like Figure 1 , Figure 5 as well as Figure 7 Based on embodiments 1-7, the upper support assembly 4 includes a support sleeve 41 and at least two second fastening screws 42 circumferentially spaced on the support sleeve 41. The support sleeve 41 has at least two top countersunk holes 411. Each second fastening screw 42 is inserted into each top countersunk hole 411, and each second fastening screw 42 is threaded to the base body 1. The positioning groove 5 is opened in the support sleeve 41.
[0040] The advantage of adopting the preferred solution in the above embodiments is that when it is necessary to transport liquid storage cylinders 7 of different sizes, it is only necessary to unscrew the second fastening screw 42 and replace the support sleeve 41 with the positioning groove 5 of the corresponding size.
[0041] Example 9 like Figure 7 Based on embodiments 1-8, the support sleeve 41 is further provided with at least two disassembly holes 412, the diameter of each disassembly hole 412 is larger than the diameter of the head of the second fastening screw 42, and each disassembly hole 412 is connected to each top countersunk hole 411.
[0042] The beneficial effect of adopting the preferred solution in the above embodiments is that when the support sleeve 41 needs to be replaced, it is only necessary to loosen each of the second fastening screws 42 and then rotate the support sleeve 41 so that each of the second fastening screws 42 is located in the corresponding disassembly hole 412, and the support sleeve 41 can be pulled out without completely unscrewing each of the second fastening screws 42, which can improve the replacement efficiency.
[0043] After replacing and inserting the support sleeve 41 of the required size, rotate the support sleeve 41 in the opposite direction and then tighten each of the second fastening screws 42.
[0044] Example 10 like Figure 1 and Figure 3 Based on embodiments 1-9, the bottom of the base body 1 is provided with an insertion hole 13, and its side wall is provided with a locking hole 14 that connects to the insertion hole 13. The base body 1 is fixedly connected with a nut 15, and the nut 15 is threadedly connected with a spring locking plunger 6 that extends into the locking hole 14.
[0045] The beneficial effect of adopting the preferred solution in the above embodiments is that when the base body 1 is fixedly connected to the tooling plate as the tooling base, the spring locking plunger 6 is pulled up so that the transition cylinder on the tooling plate is inserted into the insertion hole 13. Then, the spring locking plunger 6 is released and the axial and lateral limiting fixation is achieved by inserting the spring locking plunger 6 into the measuring hole of the transition cylinder on the tooling plate, thereby realizing the rapid installation of the base body 1.
[0046] It should be noted that the spring-locking plunger 6 is a standard part in this field, and its working principle and installation method are commonplace. They are all conventional methods or common knowledge, and will not be described in detail here. Those skilled in the art can make any selection according to their needs or convenience.
[0047] In use, pull out the spring-locking plunger 6 and align the insertion hole 13 below the base body 1 with the transition cylinder above the tooling plate. Keep the base body 1 vertically lowered. After it falls into place, rotate the base body 1 so that the spring-locking plunger 6 is aligned with the opening on the transition cylinder. Rotate the release plunger so that the pin on the plunger pushes into the opening to fix the base body 1, thus firmly connecting the base body 1 to the tooling plate. When installing the oil reservoir assembly into the tooling, simply keep the oil reservoir assembly vertical so that the lower surface of the inner ring of the connecting ring 71 is against the support surface 3 of the fourth shaft section of the support rod 21. When removing it, lift the oil reservoir assembly so that the lower surface of the inner surface of the connecting ring 71 is against the lower surface of the support surface 3 of the fourth shaft section to remove it. This allows for quick and convenient insertion and removal of the liquid reservoir assembly, effectively improving production efficiency and reducing labor intensity.
[0048] When changing to produce liquid storage tank assemblies of different sizes, only the lower support assembly 2 and support sleeve 41 need to be replaced to achieve quick replacement and reduce tooling costs, tooling quantity, and site area occupation. The support rod 21 can be quickly replaced by removing the fasteners 22 on the lower support assembly 2 (by pulling out the quick-release pin or removing the nut). The support sleeve 41 can be removed by loosening the second fastening screws 42, then rotating it until the disassembly hole 412 aligns with the second fastening screws 42, and then lifting it. The new support sleeve 41's disassembly hole 412 is then aligned with the second fastening screw 42, and it is rotated in the opposite direction until the top countersunk hole 411 aligns with the second fastening screw 42. Finally, the second fastening screw 42 is tightened to complete the replacement. Replacing the lower support assembly 2 and support sleeve 41 can accommodate liquid storage tank assemblies of different sizes for the liquid storage tank 7 and connecting ring 71.
[0049] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.
[0050] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this utility model, "a plurality of" means at least two, such as two, three, etc., unless otherwise explicitly specified.
[0051] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise explicitly limited. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0052] In this utility model, unless otherwise explicitly specified and limited, "above" or "below" the second feature can mean that the first feature is in direct contact with the second feature, or that the first feature is in indirect contact with the second feature through an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.
[0053] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.
[0054] Although embodiments of the present invention have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting the present invention. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of the present invention.
Claims
1. A transfer support fixture for a shock absorber reservoir assembly, characterized in that, include: The base body (1) has its lower end detachably connected to the tooling plate; The lower support assembly (2) is arranged horizontally, and one end of it is detachably connected to the base body (1), and the other end is provided with a support surface (3) for supporting the connecting ring (71) at the bottom of the liquid storage cylinder (7). The upper support assembly (4) is detachably connected to the top of the base body (1) and has a positioning groove (5). The groove wall of the positioning groove (5) is used to support the side wall of the liquid storage cylinder (7).
2. The shock absorber reservoir assembly transfer support fixture according to claim 1, characterized in that, The base body (1) has a through support hole (11); the lower support assembly (2) includes a support rod (21), a fastener (22) detachably connected to one end of the support rod (21), a limiting block (23) abutting against the other end of the support rod (21), and a first fastening screw (24) connected to both the support rod (21) and the limiting block (23). One end of the support rod (21) is adapted to and passes through the support hole (11), the fastener (22) abuts against the side wall of the base body (1), and the shaft segment of the support rod (21) located between the limiting block (23) and the base body (1) forms the support surface (3). The limiting block (23) has a limiting part (231) that protrudes upward from the support surface (3).
3. The shock absorber reservoir assembly transfer support fixture according to claim 2, characterized in that, The support rod (21) is circumferentially fixedly connected to the limiting platform (211), the limiting platform (211) abuts against the base body (1), and the support surface (3) is located between the limiting block (23) and the limiting platform (211).
4. The shock absorber reservoir assembly transfer support fixture according to claim 3, characterized in that, The base body (1) has a first limiting groove (12) that connects to the support hole (11), and the support rod (21) has two opposing first limiting surfaces (212), which abut against the two opposing groove walls of the first limiting groove (12).
5. The shock absorber reservoir assembly transfer support fixture according to claim 2, characterized in that, The limiting block (23) has an eccentric countersunk hole (232) through it. The first fastening screw (24) is inserted into the eccentric countersunk hole (232) and threaded to the support rod (21). The lower end of the limiting block (23) is located in the axial projection plane of the shaft segment of the support rod (21) that forms the support surface (3). The upper end extends beyond the axial projection plane of the support rod (21) and forms the limiting part (231). The length of the limiting part (231) is less than the difference between the diameter of the connecting ring (71) and the diameter of the support rod (21).
6. The shock absorber reservoir assembly transfer support fixture according to claim 5, characterized in that, The end of the support rod (21) is provided with two upper and lower opposing second limiting surfaces (213), and the limiting block (23) is provided with a second limiting groove (233), and the two opposite groove walls of the second limiting groove (233) respectively abut against the two second limiting surfaces (213).
7. The shock absorber reservoir assembly transfer support fixture according to claim 5, characterized in that, The limiting block (23) has a frustum-shaped structure, and the side of it that abuts against the support rod (21) is the bottom surface of the cone.
8. The shock absorber reservoir assembly transfer support fixture according to claim 1, characterized in that, The upper support assembly (4) includes a support sleeve (41) and at least two second fastening screws (42) circumferentially spaced on the support sleeve (41). The support sleeve (41) has at least two top countersunk holes (411) through it. Each of the second fastening screws (42) is inserted into each of the top countersunk holes (411), and each of the second fastening screws (42) is threaded to the base body (1). The positioning groove (5) is formed in the support sleeve (41).
9. The shock absorber reservoir assembly transfer support fixture according to claim 8, characterized in that, The support sleeve (41) is also provided with at least two disassembly holes (412), the diameter of each disassembly hole (412) is larger than the diameter of the head of the second fastening screw (42), and each disassembly hole (412) is connected to each of the top countersunk holes (411).
10. A transfer support fixture for a shock absorber reservoir assembly according to any one of claims 1-9, characterized in that, The base body (1) has an insertion hole (13) at the bottom and a locking hole (14) that communicates with the insertion hole (13) through its side wall. The base body (1) is fixedly connected with a nut (15), and the nut (15) is threadedly connected with a spring locking plunger (6) that extends into the locking hole (14).