Interference-free terminal implanting tool
By designing an interference-free terminal implant tool set, the lateral movement of the movable plate is achieved by using the combination of limit pins and resetting parts, the interference problem of traditional tool sets is solved, and the accuracy and efficiency of terminal implantation are improved.
Patent Information
- Application Number
- CN202311831084.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-28
- Publication Date
- 2025-07-08
AI Technical Summary
Traditional manual plugging accuracy is poor, making it difficult to meet the production needs of high-precision connectors. In addition, existing plugging tooling requires frequent adjustments, which is prone to interference between positioning parts and positioning holes.
An interference-free terminal implantation tool is designed, including a fixing frame, a lifting member, a clamping member and a movable member. The vertical movement of the movable plate is restricted through the limiting bolt, and the movable gap and resetting part of the movable plate are used to achieve lateral movement, which drives the lifting member and the clamping member to move simultaneously to avoid interference.
High-precision, non-interference terminal implantation is achieved, production efficiency and accuracy are improved, and interference problems between positioning parts and positioning holes are avoided.
Smart Images

Figure CN120280768A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of connector forming, and particularly to a non-interference terminal implanting tooling. Background Art
[0002] With the increasing degree of industrial automation and the increasingly strict and precise industrial control requirements, the usage of terminals has gradually increased. Especially with the development of the electronics industry, the scope of use of terminals is more and more extensive, and the types are also increasing. In the connector industry, almost all important components are realized through molds, which have the advantages of high efficiency and good precision.
[0003] When high-precision connectors are required, the traditional manual insertion has poor precision and cannot meet the requirements. Some factories and enterprises use relatively precise insertion tooling or insertion devices to replace manual insertion. However, since the insertion tooling or insertion device is basically designed according to the shape or specification of the terminal, each time different terminals are produced, it is necessary to readjust and calculate, so that the positioning part of the tooling is matched with the positioning hole of the mold, and the phenomenon of interference between the positioning part and the positioning hole is likely to occur.
[0004] Therefore, it is necessary to develop a non-interference terminal implanting tooling to solve the above problems. Summary of the Invention
[0005] The purpose of the present invention is to provide a non-interference terminal implanting tooling that avoids interference.
[0006] To achieve the above purpose, the present invention provides the following technical solution: A non-interference terminal implanting tooling that avoids interference, which includes:
[0007] A fixing frame for carrying a plurality of components;
[0008] A lifting member, which includes a support frame passing through the fixing frame and a movable moving seat;
[0009] A clamping member placed at the end of the moving seat for clamping the terminal;
[0010] A movable member installed on the surface of the fixing frame. The movable member includes a movable plate fixedly connected to the support frame, a limit bolt connecting the movable plate and the fixing frame, and a reset portion with a reset function. The movable plate has a movable hole penetrating its upper and lower surfaces. An activity gap is formed between the movable hole accommodating the limit bolt and the limit bolt, and the movable plate can move horizontally;
[0011] A positioning member installed on the lower surface of the movable plate.
[0012] Further, the reset portion includes an elastic colloid and a fixing block for fixing the elastic colloid. The top of the fixing block is fixedly connected to the lower surface of the movable plate.
[0013] Further, a receiving groove is formed by the fixed block recessing inward from its end surface, the top of the elastic colloid is located inside the movable plate, and its bottom is placed in the receiving groove.
[0014] Further, a contact portion is formed at the end of the positioning member, the contact portion extends vertically downward from the lower surface of the positioning member, and its diameter is smaller than that of the positioning member.
[0015] Further, the driving portion is a slide rail cylinder, a slide rail is formed on one outer side thereof, and the inner side of the moving seat is connected to the slide rail.
[0016] Further, the driving portion further has a lifting rod, the lifting rod extends vertically downward from the bottom of the driving portion and the end is fixedly connected to the moving seat, and the moving seat is driven by the lifting rod to move vertically along the slide rail.
[0017] Further, the clamping member includes a connecting plate fixed to the end of the moving seat, a clamping cylinder installed on the lower surface of the connecting plate, and a pair of clamping blocks driven by the clamping cylinder are arranged below the clamping cylinder.
[0018] Further, the lower surface of the clamping block has a clamping groove formed by recessing inward for clamping the terminal.
[0019] Further, a vertical plate is fixedly installed on the lower surface of the connecting plate, the vertical plate extends vertically downward from the lower surface of the connecting plate and the end forms a receiving groove recessing inward from its lower surface.
[0020] Further, an ejecting member is installed on one side of the clamping member, the ejecting member includes an ejecting cylinder and a plurality of ejecting rods connecting the ejecting cylinder, and the plurality of ejecting rods extend vertically downward through the vertical plate and the ends extend into the receiving groove.
[0021] Compared with the prior art, the beneficial effects of the present invention are as follows: The present invention is a non-interference terminal implanting tooling, which has the characteristic of avoiding interference. The movable plate is restricted below the fixed frame by a plurality of limit bolts so that it cannot move vertically. At the same time, the diameter of the movable hole opened on the movable plate is larger than that of the limit bolt, and the movable plate has a movable gap and can move horizontally. Then, it is reset by the reset portion. The movable plate can be changed according to the position change of the positioning member, so as to drive the lifting member and the clamping member to move synchronously. Description of the Drawings
[0022] To more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for the description of the embodiments. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings, where:
[0023] Figure 1 is a schematic perspective view of a non-interference terminal implanting tooling of the present invention;
[0024] Figure 2 is Figure 1 a schematic partial structure view of the non-interference terminal implanting tooling shown;
[0025] Figure 3 is Figure 2 a schematic bottom view structure view of the lifting member and the clamping member of the non-interference terminal implanting tooling shown;
[0026] Figure 4 is Figure 2 a schematic cross-sectional view of the movable member of the non-interference terminal implanting tooling shown;
[0027] Figure 5 is Figure 2 a schematic structure view of the movable member of the non-interference terminal implanting tooling shown from another angle.
[0028] In the figure: 1, fixed frame; 2, lifting member; 3, clamping member; 4, movable member; 5, positioning member; 11, top plate; 12, bottom plate; 13, side plate; 14, connecting block, 15, through hole; 21, support frame; 22, driving part; 23, moving seat; 24, lifting rod; 30, ejecting member; 31, connecting plate; 32, clamping cylinder; 33, clamping block; 331, clamping groove; 34, vertical plate; 341, receiving groove; 301, ejecting cylinder; 302, ejecting rod; 41, movable plate; 42, limiting bolt; 43, reset part; 411, through groove; 412, movable hole; 51, contact part. Detailed implementation manners
[0029] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.
[0030] Please refer to Figures 1 to 5 , the present invention is a non-interference terminal implanting tooling, which includes a fixed frame 1, a lifting member 2 installed in the fixed frame 1, a clamping member 3 provided at the end of the lifting member 2, and a movable member 4 located outside the clamping member 3.
[0031] Please refer to Figure 1 , the fixing bracket 1 includes a top plate 11, a bottom plate 12, and side plates 13 located on both sides of the top plate 11 and the bottom plate 12. The top plate 11 and the bottom plate 12 have the same shape and are parallel to each other. The top plate 11, the bottom plate 12, and the side plates 13 form a rectangular frame, that is, the fixing bracket 1. A connecting block 14 is installed at one end of the fixing bracket 1. The fixing bracket 1 is connected to a robotic arm (not shown) through the connecting block 14. Secondly, a plurality of through holes 15 are provided in the top plate 11, the bottom plate 12, and the side plates 13. The plurality of through holes 15 penetrate the upper and lower surfaces of the top plate 11 and the bottom plate 12. The shape and position of the through holes 15 are changed according to requirements.
[0032] Please refer to Figures 1 to 3 , the lifting member 2 includes a support frame 21 located in the through hole 15 provided in the bottom plate 12, a driving part 22 fixedly connected to the support frame 21, and a moving seat 23 pushed by the driving part 22. The bottom of the support frame 21 passes through the bottom plate 12 and the end is fixedly connected to a movable plate 41. The movable plate 41 is located below the bottom plate 12 and is movably connected to the bottom plate 12. The top of the support frame 21 extends vertically upward into the fixing bracket 1. The driving part 21 is fixed to one side of the support frame 21. In this embodiment, the driving part 21 is a certain slide rail cylinder, and a slide rail is formed on its outer side. The inner side of the moving seat 23 is connected to the slide rail. The driving part 21 also has a lifting rod 24. The lifting rod 24 extends vertically downward from the bottom of the driving part 21 and the end is fixedly connected to the moving seat 23. The moving seat 23 is driven by the lifting rod 24 to move vertically along the slide rail. Secondly, according to requirements, different lifting methods can be selected, such as lifting by a motor-driven lead screw, etc., and it is not limited to the above one lifting method.
[0033] Please refer to Figures 2 to 3 , the clamping member 3 includes a connecting plate 31 fixed to the end of the moving seat 23, a clamping cylinder 32 installed on the lower surface of the connecting plate 31, and a pair of clamping blocks 33 driven by the clamping cylinder 32. The connecting plate 31 is perpendicular to the moving seat 23, and a vertical plate 34 is fixedly installed on its lower surface. The vertical plate 34 extends vertically downward from the lower surface of the connecting plate 31 and the end forms a receiving groove 341 recessed inward from its lower surface for receiving terminals. The clamping cylinder 32 is fixed to the outside of the vertical plate 34 and its bottom is connected to the clamping blocks 33. The clamping cylinder 32 is a prior art and is used to drive a pair of clamping blocks 33 to move relative to or in the opposite direction. The bottoms of the pair of clamping blocks 33 both have a clamping groove 331 recessed inward from their lower surfaces for clamping terminals.
[0034] Please refer to Figure 3, a ejector is installed on one side of the clamping member 3. The ejector 30 includes an ejecting cylinder 301 and a plurality of ejector rods 302 connecting the ejecting cylinder 301. The ejecting cylinder 301 is located outside the moving seat 23, and its bottom is connected to the ejector rods 302. The plurality of ejector rods 302 vertically extend downward through the connecting plate 31 and the vertical plate 34, and their ends extend into the receiving groove 341. When inserting a terminal, it is convenient for the ejecting cylinder 301 to drive the plurality of ejector rods 302 to eject the terminal.
[0035] Please refer to Figures 4 to 5 , the movable member 4 includes a movable plate 41 and a plurality of limit bolts 42 connecting the movable plate 41 and the fixed frame 1. The upper surface of the movable plate 41 fits the lower surface of the bottom plate 12, and a through groove 411 is recessed inward from one side of it. The through groove 411 is used for the vertical movement of the lifting member 3. Secondly, the movable plate 41 has a plurality of movable holes 412 penetrating its upper and lower surfaces. The plurality of limit bolts 42 respectively penetrate the movable holes 412 of the bottom plate 12 and the movable plate 41 to vertically fix the bottom plate 12 and the movable plate 41. Secondly, since the diameter of the movable hole 412 is larger than the diameter of the limit bolt 42, a gap is formed between the inner wall of the movable hole 412 and the outer wall of the limit bolt 42, so the movable plate 41 can move slightly horizontally.
[0036] A reset portion 43 is provided between adjacent limit bolts 42. The reset portion 43 includes an elastic colloid 431 and a fixing block 432 fixing the elastic colloid 431. In this embodiment, the elastic colloid 431 is made of urethane rubber and can be replaced with other materials according to requirements, such as rubber, elastic glue, etc. The top of the fixing block 432 is fixedly connected to the lower surface of the movable plate 41, and a receiving groove is recessed inward from its end surface. The top of the elastic colloid 431 is located inside the movable plate 41, and its bottom is placed in the receiving groove.
[0037] Please refer to Figure 5 , a plurality of positioning members 5 are fixedly installed on the lower surface of the movable plate 41. The plurality of positioning members 5 vertically extend downward from the lower surface of the movable plate 41, and their ends form contact portions 51. The contact portions 51 vertically extend downward from the lower surface of the positioning members 5, and their diameters are smaller than the diameters of the positioning members 5.
[0038] When the non-interference terminal implanting tooling of the present invention is in use, the clamping cylinder 32 drives the clamping block 33 to clamp the terminal. The mechanical arm moves the present embodiment above the mold, making the lifting member 3 perpendicular to the mold, and then vertically descending, so that a plurality of positioning members 5 are inserted and matched with the positioning holes (not shown) of the mold. When there is an error in accuracy, the contact portion 51 at the end of the positioning member 5 fails to accurately insert into the above positioning hole, and the positioning member 5 and the movable plate 41 are offset, causing the positioning member 5 to enter the above positioning hole, and the position of the movable plate 41 changes. The lifting member 2 and the clamping member 3 fixedly connected to the movable plate 41 are placed at predetermined positions. The driving portion 22 drives the movable seat 23 to move vertically downward, and the clamping member 3 moves synchronously therewith. The ejecting cylinder 301 ejects the terminal through the ejecting rod 302 to complete the work of implanting the terminal. When the tooling is removed from the mold, the reset portion 43 pushes the movable plate 41 back to its original position through its own elasticity.
[0039] The present invention is a non-interference terminal implanting tooling, which has the characteristic of avoiding interference. The movable plate is restricted below the fixed frame by a plurality of limit bolts, so that it cannot move vertically. At the same time, the diameter of the movable hole opened in the movable plate is larger than the diameter of the limit bolt, and the movable plate has a movable gap and can move horizontally. Then, it is reset by the reset portion. The movable plate can change according to the position change of the positioning member, so as to drive the lifting member and the clamping member to move synchronously.
[0040] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present invention.
Claims
1. A non-interference terminal implanting tooling, characterized in that It includes: A fixing frame (1) for carrying a plurality of components; A lifting member (2), which includes a support frame (21) passing through the fixing frame (1) and a movable moving seat (23); A clamping member (3) placed at the end of the moving seat (23) for clamping terminals; A movable member (4) installed on the surface of the fixing frame (1). The movable member (4) includes a movable plate (41) fixedly connected to the support frame (21), a limit bolt (42) connecting the movable plate (41) and the fixing frame (1), and a reset portion (43) with a reset function. The movable plate (41) has a movable hole (411) penetrating through its upper and lower surfaces. An activity gap is formed between the movable hole (411) accommodating the limit bolt (42) and the limit bolt (42), and the movable plate (41) can move horizontally; A positioning member (5) installed on the lower surface of the movable plate (41).
2. The interference-free terminal implanting tooling according to claim 1, wherein, The reset portion (43) includes an elastic colloid (431) and a fixing block (432) fixing the elastic colloid (431). The top of the fixing block (432) is fixedly connected to the lower surface of the movable plate (41).
3. The interference-free terminal implanting tooling according to claim 2, characterized in that, The fixing block (432) is recessed inward from its end face to form a receiving groove. The top of the elastic colloid (431) is located inside the movable plate (41), and its bottom is placed in the receiving groove.
4. The interference-free terminal implanting tooling according to claim 1, wherein The end of the positioning member (5) forms a contact portion (51). The contact portion (51) extends vertically downward from the lower surface of the positioning member (5), and its diameter is smaller than the diameter of the positioning member (5).
5. The interference-free terminal implanting tooling according to claim 1, characterized in that, The driving portion (21) is a slide rail cylinder, and a slide rail is formed on one outer side thereof. The inner side of the moving seat (23) is connected to the slide rail.
6. The interference-free terminal implanting tooling according to claim 5, wherein, The driving portion (21) also has a lifting rod (24). The lifting rod (24) extends vertically downward from the bottom of the driving portion (21) and its end is fixedly connected to the moving seat (23). The moving seat (23) is driven by the lifting rod (24) to move vertically along the slide rail.
7. The interference-free terminal implanting tooling according to claim 1, wherein The clamping member (3) includes a connecting plate (31) fixed to the end of the moving seat (23), a clamping cylinder (32) installed on the lower surface of the connecting plate (31), and a pair of clamping blocks (33) driven by the clamping cylinder (32) below the clamping cylinder (32).
8. The non-interference terminal implanting tooling according to claim 7, wherein The lower surface of the clamping block (33) has a clamping groove (331) recessed inward for clamping terminals.
9. The interference-free terminal implanting tooling according to claim 1, wherein A vertical plate (34) is fixedly installed on the lower surface of the connecting plate (31). The vertical plate (34) extends vertically downward from the lower surface of the connecting plate (31) and its end forms a receiving groove (341) recessed inward from its lower surface.
10. The interference-free terminal implanting tooling according to claim 9, characterized in that, A ejecting member (30) is installed on one side of the clamping member (3). The ejecting member (30) includes an ejecting cylinder (301) and a plurality of ejecting rods (302) connecting the ejecting cylinder (301). The plurality of ejecting rods (302) extend vertically downward through the vertical plate (34) and their ends extend into the receiving groove (341).