Connector press-fitting mechanism and connector production equipment
By designing a connector press-fitting mechanism with movable positioning and press-fitting components, the problem of adapting the press-fitting mechanism to various fixtures was solved, realizing diversified adaptation of the press-fitting mechanism and reducing cost and space occupation.
Patent Information
- Application Number
- CN202520218615.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-11
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-02-11
AI Technical Summary
Existing pressing mechanisms cannot be adapted to various fixtures, resulting in a wide variety of pressing mechanisms, high costs, space occupation, and management difficulties.
A connector pressing mechanism is designed, including a base, a support component, a positioning component, and a pressing component. The positioning component and the pressing component can move in different directions to adjust the position of the fixture and adapt the distance of the pressing head to meet the needs of different fixtures.
This reduces the variety of pressing mechanisms, lowers production space requirements and management complexity, and also reduces production costs.
Smart Images

Figure CN223957056U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of connector production, and particularly relates to a connector press-fitting mechanism and a connector production device. BACKGROUND
[0002] In the production process of automobile connectors, as product types are diversified and structural differences are increased, the types of jigs used for manual production and assembly are rapidly increased, so that the factory needs to customize a large number of various press-fitting mechanisms and jigs for use in combination. The various press-fitting mechanisms not only require a large amount of cost investment, but also increase the occupation of production space and the difficulty of production management. CONTENT OF THE UTILITY MODEL
[0003] The utility model aims to provide a connector press-fitting mechanism, which aims to solve the problem that the existing press-fitting mechanism cannot be adapted to various jigs, resulting in a large number of press-fitting mechanisms, high cost, occupation of production space, and great difficulty in management.
[0004] TECHNICAL SCHEME: The connector press-fitting mechanism provided in the embodiment of the application comprises:
[0005] a base;
[0006] a support assembly connected to one side of the base;
[0007] a positioning assembly arranged on the side of the base facing the support assembly and connected to the base; the positioning assembly can move in a first direction towards the direction of approaching or moving away from the support assembly;
[0008] a press-fitting assembly arranged in a second direction and spaced apart from the positioning assembly and connected to the support assembly; the press-fitting assembly can move in the second direction towards the direction of approaching or moving away from the positioning assembly;
[0009] The first direction intersects the second direction.
[0010] Correspondingly, the connector production device provided in the embodiment of the application comprises the connector press-fitting mechanism according to any one of the preceding embodiments.
[0011] Beneficial effects: compared with the prior art, the connector press-fitting mechanism of the embodiment of the application comprises a base, a supporting assembly, a positioning assembly and a press-fitting assembly, the supporting assembly is connected to one side of the base, the positioning assembly is arranged on the side of the base facing the supporting assembly and is connected with the base; the positioning assembly can move in a first direction towards the direction of approaching or moving away from the supporting assembly; the press-fitting assembly is arranged in a second direction and is spaced apart from the positioning assembly and is connected with the supporting assembly; the press-fitting assembly can move in the second direction towards the direction of approaching or moving away from the positioning assembly; the first direction intersects the second direction. The connector press-fitting mechanism of the application provides a supporting and fixing platform for the jig through the positioning assembly which can move in the first direction, thereby facilitating the adjustment of the position of the jig; the press-fitting assembly is used for fixing a press head, and the press-fitting assembly can move in the second direction, at this time, the distance between the press-fitting assembly and the jig can be adjusted, thereby adapting to different heights of different jigs; therefore, the positioning assembly and the press-fitting assembly which can adjust the position are arranged in the application, the demand that one press-fitting mechanism can adapt to multiple press-fitting jigs can be realized, the types of the press-fitting mechanism are effectively reduced, the occupation of the production space by the press-fitting mechanism is reduced, the management difficulty is reduced, and the production cost is reduced.
[0012] Compared with the prior art, the connector production equipment of the embodiment of the application comprises the connector press-fitting mechanism of any one of the preceding embodiments. It can be understood that the connector production equipment of the application comprises all the technical features and technical effects of the preceding connector press-fitting mechanism, which will not be described here. BRIEF DESCRIPTION OF DRAWINGS
[0013] In order to more clearly illustrate the technical solutions in the embodiments of the application, the drawings needed in the embodiment description will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the application, and other drawings can be obtained by those skilled in the art without creative effort.
[0014] Figure 1 is a whole structure schematic diagram of a connector press-fitting mechanism of the embodiment of the application;
[0015] Figure 2 is an exploded view of a connector press-fitting mechanism of the embodiment of the application;
[0016] Figure 3 is a top view of a connector press-fitting mechanism of the embodiment of the application;
[0017] Figure 4 is a structure schematic diagram of a press-fitting assembly of a connector press-fitting mechanism of the embodiment of the application;
[0018] Figure 5This is a schematic diagram of the positioning component of a connector press-fitting mechanism according to an embodiment of this application.
[0019] Reference numerals: 100, base; 200, support assembly; 210, first upright plate; 211, first guide groove; 220, second upright plate; 221, second guide groove; 230, screw; 240, nut; 250, first connector; 260, second connector; 270, adjusting handle; 280, support base; 300, press-fit assembly; 310, connecting component; 311, first guide member; 3111, first body; 3112, first guide slider; 3113, second guide slider; 3114, third guide groove; 312, first locking member; 313, second locking member; 314, second guide member; 3141, fourth guide groove; 31 42. Fifth guide groove; 320. Pressing component; 321. Third guide slider; 322. Press head connector; 323. First adjustment hole; 330. Drive component; 331. Bracket; 332. Drive handle; 333. First connecting rod; 334. Second connecting rod; 335. Elastic element; 400. Positioning assembly; 410. Positioning plate; 411. Second adjustment hole; 412. Positioning hole; 413. Sixth guide groove; 414. Seventh guide groove; 420. First sliding nut; 430. Second sliding nut; 440. First blocking plate; 450. Second blocking plate; 460. Third locking element; X, First direction; Z, Second direction; Y, Third direction. Detailed Implementation
[0020] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.
[0021] In the description of the present application, it should be understood that the terms "length", "width", "thickness", "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined as "first", "second" can explicitly or implicitly include one or more features. In the description of the present application, the meaning of "multiple" is two or more, at least one of which can be one, two or more, unless otherwise explicitly specified. In the description of the present application, "vertical" means completely vertical at 90° or almost completely vertical, for example, within an angle range of 80°-100°, it is considered as vertical, similarly, "parallel" means completely parallel or almost completely parallel, for example, within a range of 10° of complete parallel, it is considered as parallel.
[0022] It should be noted that the first direction X in the embodiments of the present application is the direction in which the positioning assembly 400 and the support assembly 200 are arranged, the second direction Z is the direction in which the positioning assembly 400 and the pressing assembly 300 are arranged, and the third direction Y is the extension direction of the seventh guide groove 414. The first direction X, the second direction Z and the third direction Y are introduced to facilitate the description of the specific structure of the connector pressing mechanism. Among them, the first direction X, the second direction Z and the third direction Y intersect with each other, preferably, the first direction X, the second direction Z and the third direction Y are perpendicular to each other.
[0023] Please refer to Figures 1-5 The embodiments of the present application provide a connector pressing mechanism, which comprises a base 100, a support assembly 200, a positioning assembly 400 and a pressing assembly 300. The support assembly 200 is connected to one side of the base 100, the positioning assembly 400 is arranged on the side of the base 100 facing the support assembly 200 and connected with the base 100; the positioning assembly 400 can move along the first direction X towards the direction of approaching or moving away from the support assembly 200; the pressing assembly 300 is arranged apart from the positioning assembly 400 along the second direction Z and connected with the support assembly 200; the pressing assembly 300 can move along the second direction Z towards the direction of approaching or moving away from the positioning assembly 400; the first direction X intersects with the second direction Z.
[0024] In the embodiment of the present application, the positioning assembly 400 provides a support fixing platform for the jig. By arranging the positioning assembly 400 to be movable along the first direction X, the position of the jig can be adjusted conveniently. The press-fitting assembly 300 is used to fix the press head. The press-fitting assembly 300 is movable along the second direction Z, so that the distance between the press-fitting assembly 300 and the jig can be adjusted, thereby adapting to different heights of different jigs. Therefore, the positioning assembly 400 and the press-fitting assembly 300 arranged in the present application can adjust the position, and can realize the requirement that one press-fitting mechanism adapts to multiple press-fitting jigs. In this way, the types of press-fitting mechanisms are effectively reduced, the production space occupied by the press-fitting mechanisms is reduced, the management difficulty is reduced, and the production cost is reduced.
[0025] Specifically, the positioning assembly 400 is connected with the base 100. The side of the positioning assembly 400 away from the base 100 provides a support platform surface for fixing different specifications of connector press-fitting jigs. The positioning assembly 400 is movable along the first direction X towards the direction of approaching or moving away from the support assembly 200. In this way, according to different specifications and sizes of the jigs and different required positions, the position of the jig can be adjusted by adjusting the position of the positioning assembly 400, the position to be press-fitted on the jig is made to correspond to the position of the press head, and the press-fitting production of the connector is facilitated. The support assembly 200 is arranged on one side of the positioning assembly 400 and connected with the base 100. The support assembly 200 has a large size along the second direction Z, so as to support the press-fitting assembly 300 and be arranged at intervals between the positioning assembly 400. Meanwhile, the press-fitting assembly 300 is used to fix the press head. The press head is fixed on the side of the press-fitting assembly 300 facing the positioning assembly 400, so as to facilitate the press head to press downward towards the jig when the press-fitting assembly 300 works, and press-fit the connector, thereby realizing the press-fitting production of the connector. The press-fitting assembly 300 is movable along the second direction Z towards the direction of approaching or moving away from the positioning assembly 400. According to different specifications and sizes of the jigs, the position of the press-fitting assembly 300 along the second direction Z can be adjusted reasonably, so as to ensure that the press-fitting assembly 300 is adjusted to a reasonable position, so that the press head can adapt to the height of the jig, and the press head can be docked with the jig for press-fitting operation when the press head presses downward.
[0026] As shown in Figure 2 and Figure 3 In some embodiments, the press-fitting assembly 300 includes a connecting member 310 and a press-fitting member 320. The connecting member 310 is connected with the support assembly 200 and is movable along the second direction Z towards the direction of approaching or moving away from the positioning assembly 400. The press-fitting member 320 is in sliding connection with the connecting member 310 and is movable along the second direction Z towards the direction of approaching or moving away from the positioning assembly 400.
[0027] In the embodiment of the present application, the connecting member 310 is used to connect with the support assembly 200, when the connecting member 310 is in the unlocked state, the connecting member 310 can slide on the support assembly 200 in the second direction Z, so that the connecting member 310 can move in the second direction Z towards the direction of approaching or moving away from the positioning assembly 400, the pressing member 320 is connected with the connecting member 310, the pressing member 320 can move with the movement of the connecting member 310, the driving member 330 is connected with the connecting member 310 and the pressing member 320, at this time, the driving member 330 also moves with the movement of the connecting member 310, so that the whole pressing assembly 300 moves in the third direction Y, thereby facilitating the reasonable adjustment of the position of the pressing head. In addition, the pressing member 320 is in sliding connection with the connecting member 310, after the connecting member 310 is adjusted to the appropriate position and is fixedly connected with the support assembly 200, the pressing member 320 is driven by the driving member 330 to move in the second direction Z towards the direction of approaching or moving away from the positioning assembly 400. Specifically, the pressing head is fixed on the side of the pressing member 320 which is towards the positioning assembly 400, when the pressing member 320 moves in the second direction Z towards the direction of approaching the positioning assembly 400, the pressing head moves towards the direction of approaching the positioning assembly 400 and contacts with the jig on the positioning assembly 400 to perform the pressing work; when the pressing member 320 moves in the second direction Z towards the direction of moving away from the positioning assembly 400, the pressing head moves towards the direction of moving away from the positioning assembly 400, and the pressing is completed, thereby providing the jig with the space for replacing the connector.
[0028] As Figure 2As shown, in some embodiments, the support assembly 200 comprises a first vertical plate 210 and a second vertical plate 220 oppositely arranged along a third direction Y, the first vertical plate 210 and the second vertical plate 220 are both connected with the base 100, a first guide slot 211 is arranged on a side of the first vertical plate 210 away from the second vertical plate 220, a second guide slot 221 is arranged on a side of the second vertical plate 220 away from the first vertical plate 210, the first guide slot 211 and the second guide slot 221 both extend along a second direction Z; the connecting member 310 comprises a first guide piece 311, a plurality of first locking pieces 312, a plurality of second locking pieces 313 and a second guide piece 314, the first guide piece 311 comprises a first body 3111, a first guide slider 3112 and a second guide slider 3113, a third guide slot 3114 is arranged on a side of the first body 3111 facing the first vertical plate 210 and the second vertical plate 220, the third guide slot 3114 penetrates through the first guide piece 311 along the second direction Z, part of the first vertical plate 210 and part of the second vertical plate 220 are arranged in the third guide slot 3114; the first guide slider 3112 and the second guide slider 3113 are oppositely arranged in the third guide slot 3114 along the third direction Y and are both connected with the first body 3111; the first guide slider 3112 is slidingly arranged in the first guide slot 211, the second guide slider 3113 is slidingly arranged in the second guide slot 221; the plurality of first locking pieces 312 are detachably connected with the first body 3111 and can abut against the first vertical plate 210; the plurality of second locking pieces 313 are detachably connected with the first body 3111 and can abut against the second vertical plate 220; the second guide piece 314 is connected with the first guide piece 311 on a side of the first guide piece 311 away from the support assembly 200 along a first direction X; a fourth guide slot 3141 is arranged on a side of the second guide piece 314 away from the first guide piece 311, the fourth guide slot 3141 penetrates through the second guide piece 314 along the second direction Z, the pressing member 320 is slidingly arranged in the fourth guide slot 3141; the third direction Y intersects with the first direction X and the second direction Z respectively.
[0029] In the embodiments of the present application, the first vertical plate 210 and the second vertical plate 220 are arranged to support and fix the press-fitting assembly 300; the first vertical plate 210 is provided with the first guide slot 211 for accommodating the first guide slider 3112 of the first guide member 311; the second vertical plate 220 is provided with the second guide slot 221 for accommodating the second guide slider 3113 of the first guide member 311; thus, the support assembly 200 can provide sliding guide for the press-fitting assembly 300, which facilitates the adjustment of the position of the press-fitting assembly 300, and meanwhile, the arrangement of the two vertical plates can reduce the weight of the entire support assembly 200, which facilitates the subsequent movement of the press-fitting mechanism and also helps to reduce the cost of the press-fitting mechanism. The third guide slot 3114 is used to accommodate part of the first vertical plate 210 and the second vertical plate 220, and cooperates with the first vertical plate 210 and the second vertical plate 220 to realize the guide in the second direction Z. The first locking member 312 and the second locking member 313 can be bolts, which are used to fix the press-fitting assembly and the support assembly 200 after the first guide member 311 is adjusted to a reasonable position. Specifically, by tightening the first locking member 312, the first locking member 312 is inserted into the third guide slot 3114 and abuts against the first vertical plate 210; by tightening the second locking member 313, the second locking member 313 is inserted into the third guide slot 3114 and abuts against the second vertical plate 220, thus realizing the connection and fixation of the press-fitting assembly 300 and the support assembly 200, and realizing the fixation of the position of the press-fitting assembly 300. In addition, the present application is provided with the second guide member 314 connected with the first guide member 311, and the fourth guide slot 3141 of the second guide member 314 is used to accommodate the press-fitting member 320 and provide a sliding track for the press-fitting member 320.
[0030] It should be noted that the present application is provided with the first guide member 311 and the second guide member 314, and the third guide slot 3114 and the fourth guide slot 3141 with opposite openings are respectively arranged on the first guide member 311 and the second guide member 314, thus realizing the sliding connection of the connecting member 310 with the support assembly 200 and the press-fitting member 320 respectively, facilitating the adjustment of the fixed position of the press-fitting assembly 300, and realizing the movement of the press-fitting member 320 in the second direction Z.
[0031] As shown in FIG. 1, Figure 2 In some embodiments, the support assembly 200 further includes a support seat 280, a screw rod 230, a nut 240, and a first connecting member 250. The support seat 280 is connected with the base 100, the screw rod 230 is arranged between the first vertical plate 210 and the second vertical plate 220 and is rotationally connected with the support seat 280, the nut 240 is threadedly connected with the screw rod 230, and the first connecting member 250 is connected with the nut 240 and the first guide member 311 respectively.
[0032] In the embodiment of the present application, the support base 280 is arranged to connect between the screw rod 230 and the base 100, so as to support the screw rod 230 and enable the screw rod 230 to rotate circumferentially. The support base 280 can be provided with a bearing (not shown in the figure), and the screw rod 230 is connected with the bearing and can rotate circumferentially. The nut 240 is fixedly connected with the first guide 311 through the first connecting piece 250. In this case, when the first locking piece 312 and the second locking piece 313 are loosened (i.e., the first locking piece 312 does not contact the first vertical plate 210, and the second locking piece 313 does not contact the second vertical plate 220), the screw rod 230 can drive the nut 240 to move in the second direction Z by rotating the screw rod 230. At this time, the nut 240 drives the press-fitting assembly 300 to move in the second direction Z.
[0033] By arranging the screw rod 230, the nut 240 and the press-fitting assembly 300, the position of the press-fitting assembly 300 in the second direction Z can be adjusted, and the position in the second direction Z in the uncontrolled state can be avoided, so as to realize accurate adjustment of the position of the press-fitting assembly 300. After adjustment, the first locking piece 312 and the second locking piece 313 are tightened, so as to realize adjustment and fixation of the position of the press-fitting assembly 300.
[0034] As shown in Figure 1 and Figure 2 In some embodiments, the support assembly 200 further includes a second connecting piece 260 and an adjusting handle 270. The second connecting piece 260 is arranged on the side of the first vertical plate 210 and the second vertical plate 220 away from the base 100, and is connected with the first vertical plate 210 and the second vertical plate 220, respectively. The end of the screw rod 230 away from the base 100 is rotatably arranged on the side of the second connecting piece 260 away from the base 100. The adjusting handle 270 is arranged on the side of the second connecting piece 260 away from the base 100, and is connected with the screw rod 230.
[0035] In the embodiment of the present application, the second connecting piece 260 is connected with the first vertical plate 210 and the second vertical plate 220, respectively, so as to improve the stability of the connection between the first vertical plate 210, the second vertical plate 220 and the base 100. Meanwhile, the screw rod 230 is arranged in the through hole of the second connecting piece 260 and can rotate in the through hole. At this time, the second connecting plate can limit and support the end of the screw rod 230 away from the base 100, so as to improve the stability of the fixation of the screw rod 230. The adjusting handle 270 is connected with the screw rod 230, so as to rotate the adjusting handle 270 to drive the screw rod 230 to rotate, which is more convenient for the rotation of the screw rod 230 and the adjustment of the position of the press-fitting assembly 300.
[0036] As shown in Figure 2 and Figure 4As shown in the figure, in some embodiments, the press-fitting assembly 300 further comprises a driving member 330, which comprises a bracket 331, a driving handle 332, a first connecting rod 333, a second connecting rod 334 and an elastic member 335. The bracket 331 is connected to one side of the first guide member 311 away from the positioning assembly 400. The driving handle 332 is hingedly connected to one end of the bracket 331 away from the first guide member 311. The first connecting rod 333 is fixedly connected to the driving handle 332. The second connecting rod 334 is hingedly connected to one end of the first connecting rod 333 away from the driving handle 332. One end of the second connecting rod 334 away from the first connecting rod 333 is hingedly connected to one end of the press-fitting member 320 away from the positioning assembly 400. The elastic member 335 is connected to the bracket 331. One end of the elastic member 335 away from the bracket 331 is connected to the press-fitting member 320.
[0037] In the embodiments of the present application, the bracket 331 is used to provide a fixed fulcrum for the driving handle 332 and the first connecting rod 333. The rotation of the first connecting rod 333 is driven by pulling the driving handle 332. The first connecting rod 333 is hingedly connected to the second connecting rod 334. At this time, the rotation of the first connecting rod 333 drives the movement of one end of the second connecting rod 334. The second connecting rod 334 drives the press-fitting member 320 to move along the second direction Z. In the production process, the press-fitting work is realized. The elastic member 335 is arranged with the bracket 331 and the press-fitting member 320, respectively. After the press-fitting member 320 is pressed to complete the press-fitting work, the effective reset of the press-fitting member 320 is realized by the self-resetting function of the elastic member 335. The elastic member 335 can be a tension spring or the like.
[0038] As shown in the figure, Figure 4 In some embodiments, the second guide member 314 has a fifth guide groove 3142 arranged on one side of the fourth guide groove 3141 close to the first guide member 311. The fifth guide groove 3142 is in communication with the fourth guide groove 3141. The fifth guide groove 3142 penetrates through the second guide member 314 along the second direction Z. Part of the elastic member 335 is arranged in the fifth guide groove 3142.
[0039] In the embodiments of the present application, the fifth guide groove 3142 is arranged in the second guide member 314. At this time, the elastic member 335 can be provided with accommodation and extension space, which facilitates the extension of the elastic member 335 to one end of the press-fitting member 320 close to the positioning assembly 400. Thus, the better reset effect of the press-fitting member 320 can be realized.
[0040] In some embodiments, the pressing member 320 comprises a third guide slider 321 and a pressing head connector 322, the third guide slider 321 is slidingly arranged in the fourth guide slot 3141 and is hingedly connected to an end of the second connecting rod 334 away from the first connecting rod 333; the pressing head connector 322 is connected to an end of the third guide slider 321 away from the second connecting rod 334, and the pressing head connector 322 has a plurality of first adjusting holes 323 extending along the third direction Y.
[0041] In the embodiments of the present application, the third guide slider 321 is arranged in the fourth guide slot 3141 and can slide in the fourth guide slot 3141, and at this time, the third guide slider can be driven to slide in the fourth guide slot 3141 along the second direction Z by driving the driving member. The pressing head connector 322 is used to connect pressing heads of various specifications, so as to realize the pressing work of connectors of different specifications and sizes. The pressing head connector 322 is provided with a plurality of first adjusting holes 323 extending along the third direction Y, and at this time, the fixing position of the pressing head can be adjusted according to different pressing heads and jigs, so as to realize the pressing of different connectors.
[0042] As shown in Figure 2 , Figure 3 and Figure 5 , in some embodiments, the positioning assembly 400 comprises a positioning plate member 410 and a plurality of third locking members 460, the positioning plate member 410 is connected with the base 100; the positioning plate member 410 has a plurality of arrayed second adjusting holes 411, the second adjusting holes 411 penetrate through the positioning plate member 410 along the second direction Z, and the second adjusting holes 411 extend along the first direction X; each third locking member 460 is arranged in one second adjusting hole 411 and is detachably connected with the base 100 and the positioning plate member 410 respectively.
[0043] In the embodiments of the present application, the positioning plate member 410 is used to fix and support jigs of different specifications. By arranging a plurality of second adjusting holes 411 extending along the first direction X and cooperating with the third locking members 460, the adjustment of the position of the positioning plate member 410 along the first direction X is realized, so as to realize the adjustment of the working position of the jig. Specifically, by loosening a plurality of third locking members 460, the positioning plate member 410 can be moved, and at this time, the positioning plate member 410 is adjusted to a suitable position by pushing the positioning plate member 410 along the first direction X, and then the third locking members 460 are tightened to realize the fixed connection between the positioning plate member 410 and the base 100. At this time, the jig can be fixed on the positioning plate member 410.
[0044] As shown in Figure 5 , in some embodiments, the positioning plate member 410 has a plurality of arrayed positioning holes 412 penetrating through the positioning plate member 410 along the second direction Z.
[0045] In the embodiment of the present application, by setting multiple positioning holes 412, the flexible setting of the fixed position of the jig on the positioning plate member 410 can be realized.
[0046] As shown in Figure 2 , Figure 3 and Figure 5 , in some embodiments, the positioning plate member 410 is provided with a sixth guide groove 413 and a seventh guide groove 414 on the side away from the base 100, the sixth guide groove 413 extends along the first direction X and penetrates through the positioning plate member 410, the seventh guide groove 414 extends along the third direction Y and penetrates through the positioning plate member 410, and the sixth guide groove 413 intersects with the seventh guide groove 414; the positioning assembly 400 further includes multiple first sliding nuts 420240, multiple second sliding nuts 430240, two first blocking plates 440, and two second blocking plates 450, the multiple first sliding nuts 420240 are slidably and spacedly arranged in the sixth guide groove 413, the multiple second sliding nuts 430240 are slidably and spacedly arranged in the seventh guide groove 414, and the two first blocking plates 440 are arranged on the two sides of the positioning plate member 410 along the first direction X; both of the two first blocking plates 440 are connected with the positioning plate member 410 and block the sixth guide groove 413; the two second blocking plates 450 are arranged on the two sides of the positioning plate member 410 along the third direction Y; both of the two second blocking plates 450 are connected with the positioning plate member 410 and block the seventh guide groove 414.
[0047] In the embodiment of the present application, by setting multiple first sliding nuts 420240 in the sixth guide groove 413 and multiple second sliding nuts 430240 in the seventh guide groove 414, the first sliding nuts 420240 can slide in the sixth guide groove 413 along the first direction X, and the second sliding nuts 430240 can slide in the seventh guide groove 414 along the third direction Y, at this time, the positions of the multiple first sliding nuts 420240 and the multiple second sliding nuts 430240 can be adjusted, which is more flexible in compatible with various specifications of jigs and facilitates the adjustment of the positions along the first direction X and the third direction Y.
[0048] The sixth guide groove 413 extends along the first direction X and penetrates through the positioning plate member 410, and the seventh guide groove 414 extends along the third direction Y and penetrates through the positioning plate member 410, at this time, it is convenient to install the first sliding nuts 420240 and the second sliding nuts 430240 into the corresponding guide grooves, by setting the first blocking plates 440 and the second blocking plates 450 to block the two ends of the sixth guide groove 413 and the two ends of the seventh guide groove 414, in this way, the first sliding nuts 420240 are prevented from sliding out of the sixth guide groove 413, and the second sliding nuts 430240 are prevented from sliding out of the seventh guide groove 414.
[0049] Among them, the sixth guide groove 413 and the seventh guide groove 414 can be T-shaped grooves (dovetail grooves), and the first sliding nut 420240 and the second sliding nut 430240 can be T-shaped nuts 240.
[0050] Correspondingly, the embodiment of the present application also provides a connector production equipment, comprising the connector press-fitting mechanism of any one of the preceding embodiments.
[0051] It can be understood that the connector production equipment of the present application comprises all the technical features and technical effects of the aforementioned connector press-fitting mechanism, which will not be described here.
[0052] In the above embodiments, the description of each embodiment has its own focus, and the parts not described in detail in a certain embodiment can be referred to the relevant description of other embodiments.
[0053] The above describes in detail a connector press-fitting mechanism and a connector production equipment provided by the embodiment of the present application, and the principle and implementation manner of the present application are described by applying specific examples. The above description of the embodiments is only used to help understand the technical solutions and core ideas of the present application; those skilled in the art should understand that the technical solutions recorded in the foregoing embodiments can still be modified, or some technical features can be replaced equivalently; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.
Claims
1. A connector press-fit mechanism characterized by, The connector press-fitting mechanism comprises a base (100), a support assembly (200) connected to one side of the base (100), a positioning assembly (400) arranged on the side of the base (100) facing the support assembly (200) and connected to the base (100), wherein the positioning assembly (400) is movable along a first direction (X) towards or away from the support assembly (200), a press-fitting assembly (300) arranged at a distance from the positioning assembly (400) along a second direction (Z) and connected to the support assembly (200), wherein the press-fitting assembly (300) is movable along the second direction (Z) towards or away from the positioning assembly (400), and the first direction (X) intersects the second direction (Z). The press-fitting assembly (300) comprises a connecting member (310) connected to the support assembly (200) and movable along the second direction (Z) towards or away from the positioning assembly (400), and a press-fitting member (320) slidingly connected to the connecting member (310) and movable along the second direction (Z) towards or away from the positioning assembly (400).
3. The connector press-fitting mechanism according to claim 2, wherein the support assembly (200) comprises a first vertical plate (210) and a second vertical plate (220) oppositely arranged along a third direction (Y), wherein the first vertical plate (210) and the second vertical plate (220) are both connected to the base (100), the first vertical plate (210) is provided with a first guide slot (211) on the side facing away from the second vertical plate (220), the second vertical plate (220) is provided with a second guide slot (221) on the side facing away from the first vertical plate (210), and the first guide slot (211) and the second guide slot (221) both extend along the second direction (Z). The connecting member (310) comprises a first guide (311) comprising a first body (3111), a first guide sliding block (3112) and a second guide sliding block (3113), wherein the first body (3111) is provided with a third guide slot (3114) on the side facing the first vertical plate (210) and the second vertical plate (220), the third guide slot (3114) penetrates through the first guide (311) along the second direction (Z), and part of the first vertical plate (210) and part of the second vertical plate (220) are arranged in the third guide slot (3114); the first guide sliding block (3112) and the second guide sliding block (3113) are oppositely arranged in the third guide slot (3114) along the third direction (Y) and are both connected to the first body (3111); the first guide sliding block (3112) is slidingly arranged in the first guide slot (211), and the second guide sliding block (3113) is slidingly arranged in the second guide slot (221). 2. The connector press-fit mechanism of claim 1, wherein, A plurality of first locking members (312) are detachably connected with the first body (3111) and capable of abutting against the first vertical plate (210); A plurality of second locking members (313) are detachably connected with the first body (3111) and capable of abutting against the second vertical plate (220); A second guide member (314) is connected to the first guide member (311) on the side away from the support assembly (200) along the first direction (X); the side away from the first guide member (311) of the second guide member (314) is provided with a fourth guide groove (3141) penetrating through the second guide member (314) along the second direction (Z), and the pressing member (320) is slidingly arranged in the fourth guide groove (3141); The third direction (Y) intersects with the first direction (X) and the second direction (Z) respectively.
4. The connector press-fit mechanism of claim 3, wherein, The support assembly (200) further comprises: A support seat (280) connected with the base (100); A screw rod (230) arranged between the first vertical plate (210) and the second vertical plate (220) and rotationally connected with the support seat (280); A nut (240) threadedly connected with the screw rod (230); A first connecting member (250) connected with the nut (240) and the first guide member (311) respectively.
5. The connector press mechanism of claim 4, wherein, The support assembly (200) further comprises: A second connecting member (260) arranged on the side away from the base (100) of the first vertical plate (210) and the second vertical plate (220) and connected with the first vertical plate (210) and the second vertical plate (220) respectively; one end of the screw rod (230) away from the base (100) rotationally penetrates through the side of the second connecting member (260) away from the base (100); An adjusting handle (270) arranged on the side of the second connecting member (260) away from the base (100) and connected with the screw rod (230).
6. The connector press-fit mechanism of claim 3, wherein, The pressing assembly (300) further comprises a driving member (330), and the driving member (330) comprises: A support (331) connected to the side of the first guide member (311) away from the positioning assembly (400); A driving handle (332) hingedly connected to one end of the support (331) away from the first guide member (311); A first connecting rod (333) fixedly connected with the driving handle (332), A second connecting rod (334) hingedly connected to one end of the first connecting rod (333) away from the driving handle (332); one end of the second connecting rod (334) away from the first connecting rod (333) is hingedly connected to one end of the pressing member (320) away from the positioning assembly (400); An elastic member (335) connected with the support (331), and one end of the elastic member (335) away from the support (331) is connected with the pressing member (320).
7. The connector press mechanism of claim 6, wherein, The second guide member (314) has a fifth guide slot (3142) disposed on the side of the fourth guide slot (3141) close to the first guide member (311), the fifth guide slot (3142) communicates with the fourth guide slot (3141), the fifth guide slot (3142) penetrates through the second guide member (314) along the second direction (Z), and part of the elastic member (335) is disposed in the fifth guide slot (3142).
8. The connector press-fit mechanism of claim 6, wherein, The press fitting member (320) comprises: A third guide sliding block (321) is slidingly disposed in the fourth guide slot (3141) and hinged to the end of the second connecting rod (334) away from the first connecting rod (333); A pressure head connecting member (322) is connected to the end of the third guide sliding block (321) away from the second connecting rod (334), and the pressure head connecting member (322) has a plurality of first adjusting holes (323) extending along the third direction (Y).
9. The connector press-fit mechanism of claim 1, wherein, The positioning assembly (400) comprises: A positioning plate member (410) connected with the base (100), the positioning plate member (410) has a plurality of arrayed second adjusting holes (411) penetrating through the positioning plate member (410) along the second direction (Z), and the second adjusting holes (411) extend along the first direction (X); A plurality of third locking members (460), each of which is arranged in one of the second adjusting holes (411) and detachably connected with the base (100) and the positioning plate member (410).
10. The connector press-fit mechanism of claim 9, wherein, The positioning plate member (410) has a plurality of arrayed positioning holes (412) penetrating through the positioning plate member (410) along the second direction (Z).
11. The connector press fitting mechanism according to claim 9, wherein The side of the positioning plate member (410) away from the base (100) is provided with a sixth guide slot (413) and a seventh guide slot (414), the sixth guide slot (413) extends along the first direction (X) and penetrates through the positioning plate member (410), the seventh guide slot (414) extends along the third direction (Y) and penetrates through the positioning plate member (410), and the sixth guide slot (413) intersects with the seventh guide slot (414); The positioning assembly (400) further comprises: A plurality of first sliding nuts (420) are slidingly and spacedly arranged in the sixth guide slot (413); A plurality of second sliding nuts (430) are slidingly and spacedly arranged in the seventh guide slot (414); Two first blocking plates (440) are arranged on the two sides of the positioning plate member (410) along the first direction (X), and the two first blocking plates (440) are connected with the positioning plate member (410) and block the sixth guide slot (413). Two second blocking plates (450) are arranged on both sides of the positioning plate member (410) along the third direction (Y); both of the two second blocking plates (450) are connected with the positioning plate member (410) and block the seventh guide groove (414).
12. A connector production apparatus characterized by comprising: A connector press fitting mechanism comprising the connector press fitting mechanism according to any one of claims 1 to 11.