Tool structure capable of improving supporting performance
By introducing height and lateral adjustment mechanisms into the tooling structure to support the middle and side walls of the mobile pool, the deformation problem caused by pressure during the processing of the mobile pool is solved, and higher quality product output is achieved.
Patent Information
- Application Number
- CN202520582883.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2035-03-28
AI Technical Summary
When the existing tooling structure is used to move the swimming pool upside down, the pressure during processing can easily cause product deformation, affecting product quality.
A tooling structure including a base plate, an upper support assembly, and a side support assembly was designed. The middle and side walls of the mobile pool are supported by a height adjustment mechanism and a lateral adjustment mechanism, respectively, to ensure reduced deformation when subjected to pressure during transportation.
It effectively supports mobile swimming pools, reduces or avoids deformation, improves product quality, and adapts to the support needs of swimming pools of different sizes.
Smart Images

Figure CN223891505U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to mobile swimming pool production technical field, especially a kind of tooling structure that can improve supportability. BACKGROUND
[0002] In the manufacturing process of mobile swimming pool, the product that completes mould forming and stripping procedure needs to be carried by tooling structure, after mobile swimming pool is placed in the surface of tooling structure in upside-down state, it can enter subsequent processing and assembly link with conveying system.
[0003] However, the existing tooling structure adopts simple flat plate structure, when the outer peripheral edge of upside-down mobile swimming pool contacts with tooling structure and middle area is in suspended state, product deformation is easily caused under the action of pressure in subsequent processing and assembly process, which can lead to finished product quality defect. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a kind of tooling structure that can improve supportability, to solve the technical problem that mobile swimming pool is placed on tooling structure in prior art, processing is deformed under pressure, affects product quality.
[0005] To achieve the above-mentioned purpose, the utility model provides a kind of tooling structure that can improve supportability, comprising:
[0006] Base plate;
[0007] Upper support assembly, it is used to support the middle part of the inner side of mobile swimming pool, height adjusting mechanism is equipped on the base plate, height adjusting mechanism is drivingly connected with upper support assembly, height adjusting mechanism can drive upper support assembly to move up and down to adjust the up-down position of upper support assembly;
[0008] Side support assembly, it is equipped on the outer side of upper support assembly, side support assembly is used to support the inner side of the side plate of mobile swimming pool, transverse adjusting mechanism is equipped on the base plate, transverse adjusting mechanism is drivingly connected with side support assembly, transverse adjusting mechanism can drive side support assembly to move along the direction close to or away from upper support assembly to adjust the transverse position of side support assembly.
[0009] In the process of inverting the mobile swimming pool, the edge of the mobile swimming pool is placed on the upper side of the base plate, the upper support assembly is on the lower side of the middle part of the mobile swimming pool, and the height adjusting mechanism can drive the upper support assembly to move upward and support the middle part of the inner side of the mobile swimming pool; the side support assembly is on the inner side of the side plate of the mobile swimming pool, and the transverse adjusting mechanism can drive the side support assembly to be close to the side plate of the mobile swimming pool and support the inner side of the side plate of the mobile swimming pool; after being supported, the mobile swimming pool is conveyed with the base plate, so that, in the conveying process, the middle part of the mobile swimming pool is supported by the upper support assembly, and the side wall of the mobile swimming pool is supported by the side support assembly, so that the deformation of the mobile swimming pool can be reduced or avoided under the support of the upper support assembly and the side support assembly when the mobile swimming pool is processed under pressure, the product quality of the mobile swimming pool is improved, the height adjusting mechanism can adjust different heights, the side support assembly can adjust different transverse positions, and different specifications of the mobile swimming pool can be supported.
[0010] Preferably, the height adjusting mechanism comprises a lifting screw and a fork arm lifting assembly, the lifting screw extends in the front-rear direction and is arranged on the base plate, the side support assembly is arranged on the left side or the right side of the upper support assembly, the lifting screw is rotationally connected with the base plate, the lifting screw is provided with a lifting driving end for rotating the lifting screw, and the fork arm lifting assembly is connected between the lifting screw and the upper support assembly and is in transmission connection with the lifting screw, so that the lifting screw drives the upper support assembly to move up and down through the fork arm lifting assembly.
[0011] The lifting driving end of the lifting screw is connected with an external driving device to rotate the lifting screw, the rotation of the lifting screw drives the fork arm lifting assembly and the upper support assembly to move up and down, the upper support assembly supports the mobile swimming pool, different heights of the mobile swimming pool can be adapted, the adjustment is relatively simple, the screw thread self-locking characteristic of the lifting screw is utilized, the current height can be maintained in the conveying process after the external driving device is disconnected, and the structure of the tool structure is simplified.
[0012] Preferably, a lifting nut is threadedly connected to the lifting screw, the fork arm lifting assembly comprises a first lifting connecting rod and a second lifting connecting rod, the first lifting connecting rod and the second lifting connecting rod are arranged in cross and are rotationally connected, the lower side of the first lifting connecting rod is rotationally connected with the base plate and is slidingly connected in the front-rear direction, the lower side of the first lifting connecting rod is rotationally connected with the lifting nut, the upper side of the first lifting connecting rod is rotationally connected with the upper support assembly, the lower side of the second lifting connecting rod is rotationally connected with the base plate, and the upper side of the second lifting connecting rod is rotationally connected with the upper support assembly and is slidingly connected in the front-rear direction.
[0013] When the lifting screw is rotated, the lifting nut moves back and forth along the lifting screw, causing the first lifting connecting rod and the second lifting connecting rod to rotate, thereby driving the upper support assembly to move up and down.
[0014] Preferably, the upper support assembly includes an upper support frame and a telescopic frame. The upper support frame is drivenly connected to the height adjustment mechanism, and the telescopic frame is slidably connected to the upper support frame. The telescopic frame is capable of extending and retracting relative to the upper support frame in the front-rear direction.
[0015] The upper support frame and the telescopic frame can work together to support the mobile pool. The telescopic frame can extend and retract relative to the upper support frame in the front and back direction. This allows the position of the telescopic frame to be pulled out or retracted according to the length of different mobile pools, adjusting the overall length of the upper support frame and the telescopic frame to better support mobile pools of different lengths.
[0016] Preferably, there are two sets of side support components, with each set positioned on the left and right sides of the upper support component. These two sets of side support components support the left and right side panels of the mobile pool, improving its support.
[0017] Preferably, the side support assembly includes multiple side support strips arranged vertically, which support the side panels of the mobile pool at different heights. The multiple side support strips can support the side panels at different heights, improving their support and reducing deformation.
[0018] Preferably, the side support assembly includes a first side assembly and a second side assembly, both of which are provided with the side support strip. The side support strip in the first side assembly is located above the side support strip in the second side assembly. The lateral adjustment mechanism includes a first adjustment mechanism and a second adjustment mechanism. The first adjustment mechanism is driven to the first side assembly and can drive the first side assembly to move in the left-right direction. The second adjustment mechanism is driven to the second side assembly and can drive the second side assembly to move in the left-right direction.
[0019] The side support assembly includes a first side assembly and a second side assembly. The first side assembly and the second side assembly can be adjusted to the left and right positions respectively through a first adjustment mechanism and a second adjustment mechanism, thereby improving the flexibility of adjusting the multiple side support bars to different left and right positions.
[0020] Preferably, the first adjustment mechanism includes a first screw extending in a left-right direction, the first screw being rotatably connected to the substrate, a first nut being threaded onto the first screw, the first nut being fixedly connected to the first side assembly, and a first drive end for driving the first screw to rotate; the second adjustment mechanism includes a second screw extending in a left-right direction, the second screw being rotatably connected to the substrate, a second nut being threaded onto the second screw, the second nut being fixedly connected to the second side assembly, and a second drive end for driving the second screw to rotate.
[0021] Preferably, the first side assembly includes a first vertical frame, which is slidably connected to the substrate and drively connected to the first adjustment mechanism. The first vertical frame is provided with at least two side support bars, which are connected to the first vertical frame via a first position adjustment mechanism. The first position adjustment mechanism can adjust the left and right positions of the side support bars relative to the first vertical frame.
[0022] Preferably, the second side assembly includes a second crossbar, which is slidably connected to the substrate and drivenly connected to the second adjustment mechanism. The second crossbar is provided with a side support bar, which is connected to the second crossbar via a second position adjustment mechanism. The second position adjustment mechanism can adjust the vertical position of the side support bar relative to the second crossbar. Attached Figure Description
[0023] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0024] Figure 1 This is a schematic diagram of the overall structure of the tooling structure of this utility model;
[0025] Figure 2 This is a schematic diagram of the upper support component and height adjustment mechanism of this utility model;
[0026] Figure 3 This is a structural diagram of the upper support assembly of this utility model when the telescopic frame is pulled out.
[0027] Figure 4 This is a schematic diagram of the structure of the substrate and side support assembly of this utility model;
[0028] Figure 5for Figure 4 A magnified view of a section at point A in the middle;
[0029] Figure 6 This is a partial structural schematic diagram of the lateral adjustment mechanism of this utility model;
[0030] Figure 7 This is a side view of the tooling structure of this utility model;
[0031] Figure 8 This is a side view of the mobile swimming pool when it is just placed on the tooling structure and the upper support component and the side support component are not in contact with the mobile swimming pool.
[0032] Figure 9 This is a side view of the mobile swimming pool placed on the tooling structure, with the upper support component and the side support component supporting the mobile swimming pool in this utility model.
[0033] In the attached diagram: 1-Baseboard, 12-First slide rail, 2-Upper support assembly, 21-Upper support frame, 22-Telescopic frame, 23-Second slide rail, 31-Lifting screw, 311-Lifting drive end, 312-Lifting nut, 32-Fork arm lifting assembly, 321-First lifting connecting rod, 322-Second lifting connecting rod, 4-Side support assembly, 41-Side support bar, 42-First side assembly, 421-First vertical frame, 422-First position adjustment mechanism, 43-Second side assembly, 431-Second crossbar, 432-Second position adjustment mechanism, 5-Horizontal adjustment mechanism, 511-First screw, 5111-First drive end, 512-First nut, 521-Second screw, 5211-Second drive end, 522-Second nut, 6-Mobile swimming pool.
[0034] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0035] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.
[0036] It should be noted that if the embodiments of this utility model involve directional indicators, such as up, down, left, right, front, back, etc., the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.
[0037] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0038] like Figures 1 to 9 As shown, a tooling structure that can improve support includes a base plate 1, on which an upper support component 2 and a side support component 4 are provided.
[0039] The upper support assembly 2 is used to support the middle of the inner side of the mobile pool 6. The base plate 1 is provided with a height adjustment mechanism, which is connected to the upper support assembly 2 in a transmission manner. The height adjustment mechanism can drive the upper support assembly 2 to move up and down to adjust the upper and lower positions of the upper support assembly 2.
[0040] The side support assembly 4 is located on the outside of the upper support assembly 2. The side support assembly 4 is used to support the inner side of the side plate of the mobile pool 6. The base plate 1 is provided with a lateral adjustment mechanism 5. The lateral adjustment mechanism 5 is connected to the side support assembly 4 in a transmission manner. The lateral adjustment mechanism 5 can drive the side support assembly 4 to move in a direction close to or away from the upper support assembly 2 to adjust the lateral position of the side support assembly 4.
[0041] When the mobile pool 6 is inverted, its edge is placed on the upper side of the base plate 1. The upper support assembly 2 and the side support assembly 4 do not initially support the mobile pool 6. (Refer to...) Figure 8 The upper support assembly 2 is located on the lower side of the middle of the mobile pool 6. A height adjustment mechanism allows the upper support assembly 2 to move upwards and support the middle of the inner side of the mobile pool 6. The side support assembly 4 is located on the inner side of the side plate of the mobile pool 6. A lateral adjustment mechanism 5 allows the side support assembly 4 to move closer to the side plate of the mobile pool 6 and support the inner side of the side plate of the mobile pool 6. (Refer to...) Figure 9 After being properly supported, the mobile pool 6 is transported along with the base plate 1. During the transport process, the middle part of the mobile pool 6 is supported by the upper support component 2, and the side walls of the mobile pool 6 are supported by the side support components 4. This reduces or prevents deformation of the mobile pool 6 when it is under pressure during processing, thus improving the product quality of the mobile pool 6. In addition, the height adjustment mechanism can adjust different heights, and the side support components 4 can adjust different lateral positions, which can adapt to support mobile pools 6 of different specifications.
[0042] In some specific embodiments, reference is made to Figure 2 The height adjustment mechanism includes a lifting screw 31 and a fork arm lifting assembly 32. The lifting screw 31 extends in the front-to-back direction and is mounted on the base plate 1. The side support assembly 4 is located on the left or right side of the upper support assembly 2. The lifting screw 31 is rotatably connected to the base plate 1. The lifting screw 31 is provided with a lifting drive end 311, which is used to rotate the lifting screw 31. The fork arm lifting assembly 32 is connected between the lifting screw 31 and the upper support assembly 2. The fork arm lifting assembly 32 is drively connected to the lifting screw 31. The lifting screw 31 drives the upper support assembly 2 to move up and down through the fork arm lifting assembly 32.
[0043] The base plate 1 is provided with a lifting adjustment hole facing the lifting drive end 311 of the lifting screw 31, or the lifting drive end 311 protrudes from the base plate 1. When the tooling structure moves to the position of the external drive device or the operator uses the drive device, the drive shaft of the drive device is connected to the lifting drive end 311 of the lifting screw 31, which can rotate the lifting screw 31. The rotation of the lifting screw 31 can drive the fork lifting assembly 32 and the upper support assembly 2 to move up and down, so that the upper support assembly 2 supports the mobile pool 6 and adapts to different heights of the mobile pool 6. The adjustment is relatively simple. Moreover, by utilizing the thread self-locking characteristic of the lifting screw 31, the current height can be maintained during the conveying process after the external drive device is disengaged. The tooling structure does not need to be equipped with a drive device, which simplifies the structure of the tooling structure and reduces the cost of the tooling structure.
[0044] Furthermore, a lifting nut 312 is threaded onto the lifting screw 31, and the fork arm lifting assembly 32 includes a first lifting connecting rod 321 and a second lifting connecting rod 322. The first lifting connecting rod 321 and the second lifting connecting rod 322 are arranged crosswise and rotatably connected. The lower side of the first lifting connecting rod 321 is rotatably connected to the base plate 1 and slidably connected in the front-back direction. The lower side of the first lifting connecting rod 321 is rotatably connected to the lifting nut 312. The upper side of the first lifting connecting rod 321 is rotatably connected to the upper support assembly 2. The lower side of the second lifting connecting rod 322 is rotatably connected to the base plate 1, and the upper side of the second lifting connecting rod 322 is rotatably connected to the upper support assembly 2 and slidably connected in the front-back direction.
[0045] When the lifting screw 31 is rotated, the lifting nut 312 moves back and forth along the lifting screw 31, causing the first lifting connecting rod 321 and the second lifting connecting rod 322 to rotate, thereby driving the upper support assembly 2 to move up and down. Preferably, there are two of each of the first and second lifting connecting rods 321 and 322, with the two first lifting connecting rods 321 arranged horizontally and the two second lifting connecting rods 322 arranged horizontally, which can improve the stability of the structure. In some other embodiments, the lifting screw 31 has two opposing threaded sections, each connected to a nut. The lower sides of the first and second lifting connecting rods 321 and 322 are connected to two nuts respectively. Rotating the lifting screw 31 can cause the first and second lifting connecting rods 321 and 322 to move closer or further apart, which can also realize the up and down movement of the upper support assembly 2, or other existing forklift lifting assemblies 32 can be used.
[0046] Furthermore, the base plate 1 is provided with a first sliding groove 12, and a first pulley is connected to the lower side of the first lifting connecting rod 321. The first pulley is disposed in the first sliding groove 12 to achieve a sliding connection. The upper support assembly 2 is provided with a second sliding groove 23, and a second pulley is connected to the upper side of the second lifting connecting rod 322. The second pulley is disposed in the second sliding groove 23 to achieve a sliding connection.
[0047] In some specific embodiments, reference is made to Figure 2 and Figure 3 The upper support assembly 2 includes an upper support frame 21 and a telescopic frame 22. The upper support frame 21 is connected to the height adjustment mechanism, and the telescopic frame 22 is slidably connected to the upper support frame 21. The telescopic frame 22 can extend and retract relative to the upper support frame 21 in the front-back direction.
[0048] Portable swimming pools 6 may vary in length depending on their specifications. Some portable pools have swimming and massage areas, but the massage area is difficult to support. Therefore, to accommodate different portable pools, the length of the upper support assembly needs to be adjusted. The upper support frame 21 and the telescopic frame 22 can jointly support the portable swimming pool 6. The telescopic frame 22 can extend and retract relative to the upper support frame 21 in the front-to-back direction. This allows the position of the telescopic frame 22 to be pulled out or retracted according to the length of the portable swimming pool 6, adjusting the overall length of the upper support frame 21 and the telescopic frame 22 to better support portable swimming pools 6 of different lengths.
[0049] Furthermore, screws can be provided on the telescopic frame 22 and the upper support frame 21 to lock the telescopic frame 22 or loosen it to adjust the position of the telescopic frame 22.
[0050] In some specific embodiments, there are two sets of side support components 4, which are respectively located on the left and right sides of the upper support component 2. The two sets of side support components 4 support the left and right side plates of the mobile pool 6, improving the support for the mobile pool 6.
[0051] In some specific embodiments, the side support assembly 4 includes multiple side support bars 41 arranged vertically, which are used to support the side panels of the movable pool 6 at different height positions. The multiple side support bars 41 can support the side panels of the movable pool 6 at different height positions, improving the support for the side panels and reducing deformation of the side panels.
[0052] In some specific embodiments, reference is made to Figure 4 and Figure 5 The side support assembly 4 includes a first side assembly 42 and a second side assembly 43. Both the first side assembly 42 and the second side assembly 43 are provided with side support bars 41. The side support bars 41 in the first side assembly 42 are located on the upper side of the side support bars 41 in the second side assembly 43. The lateral adjustment mechanism 5 includes a first adjustment mechanism and a second adjustment mechanism. The first adjustment mechanism is connected to the first side assembly 42 and can drive the first side assembly 42 to move in the left and right direction. The second adjustment mechanism is connected to the second side assembly 43 and can drive the second side assembly 43 to move in the left and right direction.
[0053] The side wall shapes and slopes of mobile pools 6 of different specifications may be different. The side support assembly 4 includes a first side assembly 42 and a second side assembly 43. The first side assembly 42 and the second side assembly 43 can be adjusted to the left and right positions by the first adjustment mechanism and the second adjustment mechanism, respectively, thereby improving the flexibility of adjusting the multiple side support bars 41 to different left and right positions and improving the adaptability to mobile pools 6 of different specifications.
[0054] Furthermore, referring to Figure 6 The first adjustment mechanism includes a first screw 511 extending in the left-right direction, which is rotatably connected to the base plate 1. A first nut 512 is threaded onto the first screw 511 and fixedly connected to the first side assembly 42. The first screw 511 is provided with a first drive end 5111 for driving the first screw 511 to rotate. The second adjustment mechanism includes a second screw 521 extending in the left-right direction, which is rotatably connected to the base plate 1. A second nut 522 is threaded onto the second screw 521 and fixedly connected to the second side assembly 43. The second screw 521 is provided with a second drive end 5211 for driving the second screw 521 to rotate.
[0055] The substrate 1 has a first adjustment hole facing the first drive end 5111 of the first screw 511 and a second adjustment hole facing the second drive end 5211 of the second screw 521; or the first drive end 5111 and the second drive end 5211 protrude from the substrate 1. By rotating the first drive end 5111 and the second drive end 5211, the first screw 511 and the second screw 521 rotate, which can drive the first side assembly 42 and the second side assembly 43 to move left and right, so that the side support strips 41 on the first side assembly 42 and the second side assembly 43 support the side wall of the mobile pool 6, and adapt to mobile pools 6 of different widths. The adjustment is relatively simple.
[0056] Furthermore, the first side component 42 includes a first vertical frame 421, which is slidably connected to the base plate 1 and is drivenly connected to a first adjustment mechanism. The first vertical frame 421 is provided with at least two side support bars 41, which are connected to the first vertical frame 421 via a first position adjustment mechanism 422. The first position adjustment mechanism 422 can adjust the left and right positions of the side support bars 41 relative to the first vertical frame 421.
[0057] The multiple side support bars 41 on the first vertical frame 421 can be adjusted to their left or right positions using the first position adjustment mechanism 422, improving the flexibility of adjusting the positions of different side support bars 41 and adapting to more sizes of mobile swimming pools 6. Specifically, the first position adjustment mechanism 422 can be a screw fixed to the side support bar 41, with the screw passing through the first vertical frame 421, and the first vertical frame 421 locked to the screw by two nuts. In other embodiments, the multiple side support bars can also be directly fixed to the first vertical frame 421.
[0058] Furthermore, the second side assembly 43 includes a second crossbar 431, which is slidably connected to the base plate 1 and is drivenly connected to the second adjustment mechanism. A side support bar 41 is provided on the second crossbar 431, and the side support bar 41 is connected to the second crossbar 431 through a second position adjustment mechanism 432. The second position adjustment mechanism 432 can adjust the vertical position of the side support bar 41 relative to the second crossbar 431.
[0059] The side support bar 41 on the second crossbar 431 can be adjusted vertically via the second position adjustment mechanism 432, improving the flexibility of the side support bar 41 position adjustment and adapting to more sizes of mobile swimming pools 6. Specifically, the second position adjustment mechanism 432 can be a screw fixed to the side support bar 41, with the screw vertically passing through the second crossbar 431, and the second crossbar 431 locked to the screw by two nuts. In other embodiments, the side support bar can also be directly fixed to the second crossbar 431.
[0060] The above description is only a preferred embodiment of the present utility model and does not limit the patent scope of the present utility model. All equivalent structural transformations made under the inventive concept of the present utility model using the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present utility model.
Claims
1. A tooling structure that improves support, characterized in that, include: substrate(1); The upper support assembly (2) is used to support the middle of the inner side of the mobile pool (6). The base plate (1) is provided with a height adjustment mechanism. The height adjustment mechanism is connected to the upper support assembly (2) in a transmission manner. The height adjustment mechanism can drive the upper support assembly (2) to move up and down to adjust the upper support assembly (2) position. A side support assembly (4) is provided on the outside of the upper support assembly (2). The side support assembly (4) is used to support the inner side of the side plate of the mobile pool (6). A lateral adjustment mechanism (5) is provided on the base plate (1). The lateral adjustment mechanism (5) is connected to the side support assembly (4) in a transmission manner. The lateral adjustment mechanism (5) can drive the side support assembly (4) to move in a direction close to or away from the upper support assembly (2) to adjust the lateral position of the side support assembly (4).
2. The tooling structure as described in claim 1, characterized in that, The height adjustment mechanism includes a lifting screw (31) and a fork arm lifting assembly (32). The lifting screw (31) extends in the front-back direction and is disposed on the base plate (1). The side support assembly (4) is disposed on the left or right side of the upper support assembly (2). The lifting screw (31) is rotatably connected to the base plate (1). The lifting screw (31) is provided with a lifting drive end (311). The lifting drive end (311) is used to rotate the lifting screw (31). The fork arm lifting assembly (32) is connected between the lifting screw (31) and the upper support assembly (2). The fork arm lifting assembly (32) is drively connected to the lifting screw (31). The lifting screw (31) drives the upper support assembly (2) to move up and down through the fork arm lifting assembly (32).
3. The tooling structure as described in claim 2, characterized in that, The lifting screw (31) is threaded with a lifting nut (312). The fork arm lifting assembly (32) includes a first lifting connecting rod (321) and a second lifting connecting rod (322). The first lifting connecting rod (321) and the second lifting connecting rod (322) are arranged crosswise and rotatably connected. The lower side of the first lifting connecting rod (321) is rotatably connected to the base plate (1) and slidably connected in the front-back direction. The lower side of the first lifting connecting rod (321) is rotatably connected to the lifting nut (312). The upper side of the first lifting connecting rod (321) is rotatably connected to the upper support assembly (2). The lower side of the second lifting connecting rod (322) is rotatably connected to the base plate (1). The upper side of the second lifting connecting rod (322) is rotatably connected to the upper support assembly (2) and slidably connected in the front-back direction.
4. The tooling structure as described in claim 1, characterized in that, The upper support assembly (2) includes an upper support frame (21) and a telescopic frame (22). The upper support frame (21) is connected to the height adjustment mechanism. The telescopic frame (22) is slidably connected to the upper support frame (21). The telescopic frame (22) can extend and retract relative to the upper support frame (21) in the front-back direction.
5. The tooling structure as described in claim 1, characterized in that, The number of the side support components (4) is two sets, and the two sets of side support components (4) are respectively located on the left and right sides of the upper support component (2).
6. The tooling structure as described in claim 1, characterized in that, The side support assembly (4) includes multiple side support bars (41), which are arranged vertically and horizontally to support the side panels of the mobile pool (6) at different heights.
7. The tooling structure as described in claim 6, characterized in that, The side support assembly (4) includes a first side assembly (42) and a second side assembly (43). Both the first side assembly (42) and the second side assembly (43) are provided with the side support strip (41). The side support strip (41) in the first side assembly (42) is located on the upper side of the side support strip (41) in the second side assembly (43). The lateral adjustment mechanism (5) includes a first adjustment mechanism and a second adjustment mechanism. The first adjustment mechanism is connected to the first side assembly (42) and can drive the first side assembly (42) to move in the left and right direction. The second adjustment mechanism is connected to the second side assembly (43) and can drive the second side assembly (43) to move in the left and right direction.
8. The tooling structure as described in claim 7, characterized in that, The first adjustment mechanism includes a first screw (511) extending in the left-right direction. The first screw (511) is rotatably connected to the base plate (1). A first nut (512) is threaded onto the first screw (511). The first nut (512) is fixedly connected to the first side assembly (42). The first screw (511) is provided with a first drive end (5111) for driving the first screw (511) to rotate. The second adjustment mechanism includes a second screw (521) extending in the left-right direction. The second screw (521) is rotatably connected to the base plate (1). A second nut (522) is threaded onto the second screw (521). The second nut (522) is fixedly connected to the second side assembly (43). The second screw (521) is provided with a second drive end (5211) for driving the second screw (521) to rotate.
9. The tooling structure as described in claim 7, characterized in that, The first side assembly (42) includes a first vertical frame (421), which is slidably connected to the base plate (1). The first vertical frame (421) is drivenly connected to the first adjustment mechanism. At least two side support bars (41) are provided on the first vertical frame (421). The side support bars (41) are connected to the first vertical frame (421) through a first position adjustment mechanism (422). The first position adjustment mechanism (422) can adjust the left and right positions of the side support bars (41) relative to the first vertical frame (421).
10. The tooling structure as described in claim 7, characterized in that, The second side assembly (43) includes a second crossbar (431), which is slidably connected to the base plate (1) and is drivenly connected to the second adjustment mechanism. A side support bar (41) is provided on the second crossbar (431), and the side support bar (41) is connected to the second crossbar (431) through a second position adjustment mechanism (432). The second position adjustment mechanism (432) can adjust the vertical position of the side support bar (41) relative to the second crossbar (431).