Integrated tool base

Through the groove disc and stud structure of the integrated tooling base, the adaptability problem of screw head size fixation is solved, stable support and limit for materials of different sizes and shapes is achieved, and the adaptability and stability of tooling is improved.

CN223117419UActive Publication Date: 2025-07-18KUNSHAN SAIMING TECH CO LTD
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Patent Information

Application Number
CN202422433354.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-09
Publication Date
2025-07-18
Estimated Expiration
2034-10-09

AI Technical Summary

Technical Problem

The screw head size of the existing tooling plates is fixed, resulting in poor adaptability to the material and cannot effectively adapt to materials of different sizes and shapes.

Method used

An integrated tooling base is designed, adopting a rotatable groove disc and stud structure, combining the design of multiple studs and limit heads to adapt to materials of different sizes and shapes by adjusting the position and size of the studs and limit heads.

Benefits of technology

It improves the adaptability of the tool base, can stably support and limit materials of different sizes and shapes, and enhances the adaptability and stability of the tool base.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of tools, in particular to an integrated tool base which comprises a concave bottom plate formed by a bottom wall and two side walls extending upwards and a screw connected to the tops of the two side walls of the bottom plate in a threaded mode, and notches are oppositely formed in the bottom end wall of the bottom plate. A groove disc is rotatably connected into the notch, a screw penetrates through the end wall of one side of the top of the groove disc, a screw strip is arranged at the position, corresponding to the screw, of the end wall of the top of the groove disc, and a stud capable of moving in the axis direction of the stud and used for supporting a workpiece is installed at the top of the screw strip. A limiting head used for abutting against and limiting a workpiece is arranged at the end of the screw. The two sub-holes in the limiting head are different in size and used for being in threaded connection with the two sub-heads different in size respectively, the areas of contact points of the sub-heads different in size and the materials are different, the limiting head is further suitable for the materials different in size and side face shape, and the tool adaptability is higher.
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Description

Technical Field

[0001] The utility model relates to the technical field of tooling, in particular to an integrated tooling base. Background Art

[0002] Tooling parts, tooling plates for limiting material workpieces. For example, when attaching a label to a shell workpiece, a tooling is used to limit the shell workpiece, and then it is convenient to attach the label piece.

[0003] The structure of conventional tooling is generally relatively simple. A screw member is threadedly connected to the tooling plate. By rotating and displacing the screw member, the screw head abuts against the material to limit the material. However, since the sizes of materials are different, and the size of the tooling plate for limiting the screw head is fixed, the adaptability between the screw head and the tooling is poor. Summary of the Utility Model

[0004] The purpose of the utility model is to provide an integrated tooling base.

[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0006] An integrated tooling base includes a bottom plate in a concave shape formed by a bottom wall and two upwardly extending side walls, and screws threadedly connected to the tops of the two side walls of the bottom plate. Opposite notch openings are provided at the bottom end wall of the bottom plate. A groove disk is rotatably connected in the notch opening. A screw is inserted through one side end wall at the top of the groove disk. A screw bar is provided at a position corresponding to the screw on the top end wall of the groove disk. A stud for supporting a workpiece and displaceable along the axis of the screw is installed at the top of the screw bar. A limiting head for abutting against and limiting the workpiece is provided at the end of the screw. A sub-hole is provided at the end of the limiting head away from the screw, and a sub-head is provided in the sub-hole.

[0007] Preferably, four groove disks are provided, and the four groove disks are adjacent to and symmetrically distributed about the center of the bottom plate.

[0008] Preferably, the groove disk and the screw are threadedly connected, and the groove disk and the screw bar are fixedly connected.

[0009] Preferably, the screw bar and the stud are threadedly connected, and the stud is circular in shape. The circular end face at the top of the stud is used to support the workpiece.

[0010] Preferably, the limiting head is cylindrical, and the number of both the sub-holes and the sub-heads is twice the number of the limiting heads.

[0011] Preferably, two limiting heads are provided, and the two sub-holes on each limiting head have different sizes for respectively threadedly connecting two sub-heads of different sizes.

[0012] The utility model has at least the following beneficial effects:

[0013] 1. The two sub - holes on the limit head have different sizes and are used to thread - connect two sub - heads with different sizes respectively. The contact areas of the sub - heads with different sizes and the material are different, so as to adapt to materials with different sizes and side shapes, making the tooling more adaptable.

[0014] 2. The rotatable groove plate is used to change the position of the stud. Cooperating with the threaded strips and studs connected by threads, the height of the stud can be controlled and adjusted, so that the stud can adapt to the bottom end faces of materials with different sizes and shapes, and the adaptability during support is stronger. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the drawings in the following description are some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0016] Figure 1 It is a schematic diagram of the present utility model;

[0017] Figure 2 is Figure 1 a top - view schematic diagram of the notch and the groove plate of

[0018] Figure 3 is Figure 1 a schematic diagram of the threaded strip and the stud of

[0019] Figure 4 is Figure 1 a front - view schematic diagram of the sub - hole and the sub - head at the limit head of

[0020] In the figure: 1. bottom plate; 2. screw rod; 3. notch; 4. groove plate; 5. screw; 6. threaded strip; 7. stud; 8. limit head; 9. sub - hole; 10. sub - head. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0021] In order to make the purpose, technical solutions and advantages of the present utility model clearer, the following will further describe the present utility model in detail with reference to the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.

[0022] Please refer to Figures 1-4 , the present utility model provides a technical solution for an integrated tooling base:

[0023] As Figures 1-4As shown in the figure, an integrated tooling base includes a bottom plate 1 in a concave shape formed by a bottom wall and two upwardly extending side walls, and screw rods 2 threadedly connected to the tops of the two side walls of the bottom plate 1. At the bottom end wall of the bottom plate 1, notches 3 are oppositely provided. A groove plate 4 is rotatably connected in the notch 3. A screw 5 penetrates through one side end wall at the top of the groove plate 4. At the corresponding position of the top end wall of the groove plate 4 and the screw 5, a screw bar 6 is provided. At the top of the screw bar 6, a stud 7 for supporting a workpiece and capable of displacing along the axis direction of the stud 7 is installed. At the end of the screw rod 2, a limiting head 8 for abutting against and limiting the workpiece is provided. A sub-hole 9 is provided at the end of the limiting head 8 away from the screw rod 2, and a sub-head 10 is provided in the sub-hole 9.

[0024] Four groove plates 4 are provided. The four groove plates 4 are adjacent to the center of the bottom plate 1 and are symmetrically distributed about the center of the bottom plate 1.

[0025] The four groove plates 4 are respectively connected to four screw bars 6. The upper ends of the four screw bars 6 are respectively connected to four studs 7. When the stud 7 rotates, the stud 7 displaces along the axis direction of the screw bar 6, changing the height of the stud 7, so that the height of the stud 7 can adapt to the irregular bottom shape of the workpiece. For example, when the bottom heights of a volute part are different, and during use, the groove plate 4 in the notch 3 rotates to drive the displacement of the stud 7, changing the position of the stud 7, so that the positions of the four studs 7 can be flexibly adjusted. After adjustment, the studs 7 can adapt to the bottoms of shell materials of different sizes, adapt to and support the bottom of the shell material.

[0026] The groove plate 4 and the screw 5 are threadedly connected, and the groove plate 4 and the screw bar 6 are fixedly connected.

[0027] After the groove plate 4 rotates and adjusts to the proper position, tighten the screw 5 to limit the groove plate 4, so as to facilitate the stable support of materials and subsequent processing procedures such as attaching labels.

[0028] The screw bar 6 and the stud 7 are threadedly connected, and the stud 7 is circular. The circular end face at the top of the stud 7 is used to support the workpiece.

[0029] The limiting head 8 is cylindrical, and the number of the sub-holes 9 and the sub-heads 10 is twice the number of the limiting heads 8.

[0030] There are two sub-holes 9 on the same limiting head 8. The two sub-holes 9 are of different sizes and are both smaller than the size of the limiting head 8. A sub-head 10 of a corresponding size is threadedly connected in each sub-hole 9. There are two limiting heads 8. The two sub-holes 9 on each limiting head 8 are of different sizes and are used to respectively threadedly connect two sub-heads 10 of different sizes. During use, a sub-head 10 with the smallest size can be rotated to make the sub-head 10 protrude. At this time, after the screw rod 2 rotates and moves, the sub-head 10 at the end wall of the screw rod 2 will contact the material and limit the material. The contact point is small and is used to adapt to materials with small sizes and arc-shaped end walls, such as small-sized volutes.

[0031] When rotating the sub-head 10 with the largest dimension to make the sub-head 10 protrude outward, at this time, after the screw rod 2 rotates and moves, the sub-head 10 at the end wall of the screw rod 2 will contact the material and limit the material. The contact point is relatively large, which is used to adapt to materials with a relatively large size and a relatively large rectangular surface that can be contacted at the arc-shaped end wall, such as a volute with a slightly larger size;

[0032] When both sub-heads 10 are located inside the limit head 8, after the screw rod 2 rotates and moves, the limit head 8 at the end wall of the screw rod 2 will contact the material and limit the material. The contact point is large, which is used to adapt to materials with a large size, a large rectangular surface that can be contacted at the arc-shaped end wall or a rectangular-shaped material, such as a large-sized volute or a material with a rectangular surface on the side end face;

[0033] Wherein, circular holes are opened at the side end faces of both limit heads 8, which is convenient for inserting strip-shaped external connectors or finger-pulling to drive the limit head 8 to rotate.

[0034] Working principle: First, place the bottom end face of the material on the four stud bolts 7. At this time, rotate the two screw rods 2 to make the screw rods 2 move towards the central area of the bottom plate 1, and use the two screw rods 2 to contact the end wall of the material to limit the material. Specifically:

[0035] Each of the four groove plates 4 is respectively connected to four screw strips 6, and the upper ends of the four screw strips 6 are respectively connected to four stud bolts 7. When the stud bolts 7 rotate, the stud bolts 7 displace along the axial direction of the screw strips 6, changing the height of the stud bolts 7, so that the height of the stud bolts 7 can adapt to the irregularly shaped bottom of the workpiece. For example, when the bottom heights of volute parts are different, and during use, the groove plate 4 in the groove opening 3 rotates to drive the displacement of the stud bolts 7 and change the positions of the stud bolts 7, so that the positions of the four stud bolts 7 can be flexibly adjusted. The adjusted stud bolts 7 can adapt to the bottoms of shell materials with different sizes, adapt to and support the bottom of the shell material;

[0036] The groove plate 4 and the screw 5 are threadedly connected, and the groove plate 4 and the screw strip 6 are fixedly connected. After the groove plate 4 rotates and adjusts the position, tighten the screw 5 to limit the groove plate 4, so as to facilitate the stable support of the material and perform subsequent processing procedures such as attaching labels;

[0037] There are two sub-holes 9 on the same limit head 8. The two sub-holes 9 are of different sizes and are both smaller than the size of the limit head 8. A sub-head 10 with a suitable size is threadedly connected in each sub-hole 9. There are two limit heads 8, and the two sub-holes 9 on each limit head 8 are of different sizes, which are used to respectively threadedly connect two sub-heads 10 with different sizes. During use, a sub-head 10 with the smallest size can be rotated to make the sub-head 10 protrude outward. At this time, after the screw rod 2 rotates and moves, the sub-head 10 at the end wall of the screw rod 2 will contact the material and limit the material. The contact point is small, which is used to adapt to materials with a small size and an arc-shaped end wall, such as a small-sized volute;

[0038] When the sub-head 10 with the largest size is rotated to make the sub-head 10 convex, at this time, after the screw 2 rotates and moves, the sub-head 10 at the end wall of the screw 2 will contact the material and limit the material. The contact point is slightly larger, which is used to adapt to the slightly larger size and the slightly larger rectangular surface that can be contacted at the arc end wall, such as the volute of a slightly larger size;

[0039] When both sub-heads 10 are located in the limiting head 8, after the screw 2 rotates and moves, the limiting head 8 at the end wall of the screw 2 will contact the material and limit the material. The contact point is large, which is used to adapt to large-sized materials with large rectangular surfaces or rectangular shapes that can be contacted at the arc-shaped end wall, such as large-sized volutes or materials with rectangular surfaces on the side end surface;

[0040] Among them, round holes are opened on the side end surfaces of the two limit heads 8, which are convenient for inserting strip-shaped external parts or pressing with fingers to drive the limit heads 8 to rotate.

[0041] The above shows and describes the basic principle, main features and advantages of the utility model. Those skilled in the art should understand that the utility model is not limited by the above embodiments. The above embodiments and the specification only describe the principles of the utility model. The utility model may be subject to various changes and improvements without departing from the spirit and scope of the utility model. These changes and improvements fall within the scope of the utility model to be protected. The scope of protection claimed by the utility model is defined by the attached claims and their equivalents.

Claims

1. An integrated tooling base, comprising a bottom plate (1) in a concave shape formed by a bottom wall and two upwardly extending side walls, and screw rods (2) threadedly connected to the tops of the two side walls of the bottom plate (1), characterized in that, At the bottom wall of the bottom plate (1), notches (3) are oppositely provided. A groove plate (4) is rotatably connected in the notch (3). A screw (5) penetrates through one side end wall at the top of the groove plate (4). At a position corresponding to the screw (5) on the top end wall of the groove plate (4), a thread bar (6) is provided. At the top of the thread bar (6), a stud (7) for supporting a workpiece and displaceable along the axial direction of the stud (7) is installed. At the end of the screw rod (2), a limiting head (8) for abutting against and limiting the workpiece is provided. At one side end of the limiting head (8) away from the screw rod (2), a sub-hole (9) is provided. A sub-head (10) is provided in the sub-hole (9).

2. The integrated tooling base according to claim 1, characterized in that Four groove plates (4) are provided. The four groove plates (4) are adjacent to the center of the bottom plate (1) and symmetrically distributed about the center of the bottom plate (1).

3. An integrated tooling base according to claim 1, characterized in that, The groove plate (4) and the screw (5) are in threaded connection, and the groove plate (4) and the thread bar (6) are fixedly connected.

4. An integrated tooling base according to claim 1, characterized in that, The thread bar (6) and the stud (7) are in threaded connection, and the stud (7) is circular. The circular end face at the top of the stud (7) is used to support the workpiece.

5. An integrated tooling base according to claim 1, characterized in that, The limiting head (8) is cylindrical, and the number of the sub-holes (9) and the sub-heads (10) is twice the number of the limiting heads (8).

6. An integrated tooling base according to claim 1, characterized in that, Two limiting heads (8) are provided. The two sub-holes (9) on each limiting head (8) have different sizes and are used to be respectively in threaded connection with two sub-heads (10) of different sizes.