Anti-slip optical lens pressing ring fastening jig
By designing motor-driven loading and unloading components, the automated processing of optical lens clamping ring fastening fixtures was realized, solving the problems of time-consuming and labor-intensive processes and inconvenient loading and unloading in existing technologies, and improving production efficiency.
Patent Information
- Application Number
- CN202520257913.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2035-02-18
AI Technical Summary
Existing pressure ring fastening fixtures are time-consuming and labor-intensive to process, lack intelligence, and have cumbersome loading and unloading operations.
A non-slip optical lens retainer fastening fixture was designed. It adopts a motor-driven loading and unloading assembly to realize automated loading and unloading. Through the cooperation of clamps and suction cups, the raw materials are automatically put into the processing tank and automatically removed after processing.
The automated processing of the pressure ring fastening fixture has been achieved, which has improved production efficiency and simplified the loading and unloading operations.
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Figure CN223629842U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to press ring jig technical field especially relates to a antiskid optical lens press ring fastener. BACKGROUND
[0002] The press fixture usually refers to a kind of tooling fixture in manufacturing, assembly or machining process, and its main function is to carry out press, positioning, clamping and other operations to parts.This kind of jig is widely applied in manufacturing and assembly field, and can be used in various production processes, and the existing press ring fastener is usually processed by single press ring fastening treatment, which is time-consuming and laborious and not intelligent enough, and the feeding and discharging of original configuration are also relatively troublesome. UTILITY MODEL CONTENTS
[0003] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme:
[0004] An antiskid optical lens press ring fastener, comprising a bottom plate, a press ring mechanism is fixedly installed on the bottom plate, a plurality of machining grooves for press ring fastening machining are opened on the bottom plate, and a feeding assembly is installed at one end of the bottom plate.
[0005] The feeding assembly comprises a support one, the support one is fixedly installed on the bottom plate, a rotating shaft one is rotatably connected to the support one, a motor one is fixedly installed on the bottom plate, the output shaft of the motor one is fixedly connected with the rotating shaft one, a support two is fixedly connected to the rotating shaft one, a rotating plate one is fixedly connected to the support two, a fixed plate is fixedly connected to the rotating plate one, side plates are fixedly connected to both ends of the rotating plate one, a plurality of spring rods are fixedly connected to the side plates and the fixed plate, a plurality of clamping plates are fixedly connected to the ends of the plurality of spring rods, trigger plates are fixedly connected to both ends of the plurality of clamping plates, a plurality of contact blocks are fixedly installed on the bottom plate, the positions of the plurality of contact blocks are matched with the positions of the plurality of trigger plates respectively, a contact head is fixedly connected to one end of the fixed plate, and a press ring mechanism switch for controlling the press ring mechanism is fixedly installed on the bottom plate.
[0006] A discharging assembly is installed on the bottom plate.
[0007] Preferably, the discharging assembly comprises an extension plate, the extension plate is fixedly connected to the side wall of the bottom plate, a support plate one is fixedly connected to the extension plate, a rotating shaft two is rotatably connected to the support plate one, a motor two is fixedly installed on the extension plate, the output shaft of the motor two is fixedly connected with the rotating shaft two, a rotating plate two is fixedly connected to the rotating shaft two, a plurality of mounting plates are fixedly installed on the rotating plate two, and suction cups are fixedly installed on the plurality of mounting plates.
[0008] Preferably, a plurality of buffer pads are fixedly installed on the rotating plate two.
[0009] Preferably, the motor one and the motor two are both servo motors.
[0010] Preferably, a plurality of groups of the clamping plates are fixedly provided with anti-skid structure.
[0011] Preferably, a plurality of groups of screw holes are formed in the lower end of the bottom plate.
[0012] Compared with the prior art, the utility model has the beneficial effects that:
[0013] 1. The pressure ring mechanism and the feeding assembly are installed on the bottom plate, the raw material is placed on the rotating plate, the feeding assembly is driven to rotate by the motor, the rotating plate one drives the raw material to rotate to the processing groove, the trigger plate contacts the contact block, the clamp cancels the clamping of the raw material, the raw material enters the processing groove, the contact head contacts the pressure ring mechanism switch, the pressure ring mechanism is started, and the automatic processing of the device is realized.
[0014] 2. The discharging assembly is installed on the extension plate, the motor two is started when the pressure ring mechanism finishes processing the raw material, the motor two drives the rotating plate two to rotate, the rotating plate two drives a plurality of groups of suction cups to adsorb and move out the processed piece in the processing groove, the discharging treatment of the device is realized, and the intermittent rotation of the feeding assembly and the discharging assembly realizes the automatic feeding and discharging of the device. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is a structure schematic view of the anti-skid optical lens pressure ring fastening jig.
[0016] Figure 2 It is a structure schematic view of the anti-skid optical lens pressure ring fastening jig.
[0017] Figure 3 It is a structure schematic view of the feeding assembly in the embodiment of the utility model.
[0018] Figure 4 It is a structure schematic view of the discharging assembly in the embodiment of the utility model.
[0019] In the drawing: 1 bottom plate, 2 pressure ring mechanism, 3 processing groove, 4 feeding assembly, 41 support one, 42 rotating shaft one, 43 motor one, 44 support two, 45 rotating plate one, 46 side plate, 47 spring rod, 48 clamping plate, 49 trigger plate, 5 discharging assembly, 51 extension plate, 52 support plate one, 53 rotating shaft two, 54 motor two, 55 support plate two, 56 rotating plate two, 57 mounting plate, 58 suction cup, 6 contact block, 7 fixed plate, 8 contact head, 9 pressure ring mechanism switch, 10 buffer pad. DETAILED DESCRIPTION
[0020] Reference Figures 1-4The utility model provides an anti -skid optical lens compression ring fastener jig, including bottom plate 1, fixedly installed with compression ring mechanism 2 on bottom plate 1, and a plurality of processing grooves 3 for compression ring fastening processing are opened on bottom plate 1, and loading assembly 4 is installed at one end of bottom plate 1;
[0021] Loading assembly 4 includes support no. 41, support no. 41 is fixedly installed on bottom plate 1, and pivot shaft no. 42 is rotatably connected on support no. 41, motor no. 43 is fixedly installed on bottom plate 1, the output shaft of motor no. 43 is fixedly connected with pivot shaft no. 42, pivot shaft no. 42 is fixedly connected with support no. 44, support no. 44 is fixedly connected with rotating plate no. 45, rotating plate no. 45 is fixedly connected with fixed plate 7, both ends of rotating plate no. 45 are fixedly connected with side plate 46, a plurality of spring rods 47 are fixedly connected on both side plate 46 and fixed plate 7, a plurality of spring rods 47 are fixedly connected with clamping plate 48, a plurality of clamping plates 48 are fixedly connected with trigger plate 49, a plurality of contact blocks 6 are fixedly installed on bottom plate 1, and the positions of a plurality of contact blocks 6 are matched with the positions of a plurality of trigger plates 49 respectively, one end of fixed plate 7 is fixedly connected with contact 8, and the compression ring mechanism switch 9 for controlling compression ring mechanism 2 is fixedly installed on bottom plate 1, as shown in the initial state of device, Figure 2 As shown in the initial state of device, the raw blank is placed in clamping plate 48 to complete clamping and fixing, and then motor no. 43 is started, the output shaft of motor no. 43 drives pivot shaft no. 42 to rotate, pivot shaft no. 42 drives rotating plate no. 45 to rotate through the cooperation with support no. 44, and rotating plate no. 45 rotates to cover the upper surface of bottom plate 1, in the process, a plurality of contact blocks 6 contact a plurality of trigger plates 49 respectively and extrude trigger plate 49 to move and expand to the both sides, so that the fixing of the raw blank is cancelled, so that the raw blank enters processing groove 3, and contact 8 contacts the compression ring mechanism switch and starts the operation of compression ring mechanism, so that compression ring mechanism processes the raw blank in a plurality of processing grooves 3, and then motor no. 43 rotates reversely and drives rotating plate no. 45 to return to the original position;
[0022] Bottom plate 1 is installed with unloading assembly 5.
[0023] The blanking assembly 5 comprises an extension plate 51 fixedly connected to the side wall of the bottom plate 1, a supporting plate one 52 fixedly connected to the extension plate 51, a rotating shaft two 53 rotatably connected to the supporting plate one 52, a motor two 54 fixedly installed on the extension plate 51, the output shaft of the motor two 54 being fixedly connected with the rotating shaft two 53, a rotating plate two 56 fixedly connected to the rotating shaft two 53, a plurality of installation plates 57 fixedly installed on the rotating plate two 56, and a plurality of suction cups 58 fixedly installed on the plurality of installation plates 57. After the pressing ring mechanism 2 completes the pressing ring processing, the motor two 54 is started, the output shaft of the motor two 54 drives the rotating shaft two 53 to rotate, the rotating shaft two 53 drives the rotating plate two 56 to rotate through cooperation with the supporting plate two 55, the rotating plate two 56 drives the plurality of suction cups 58 to rotate and cover the upper surface of the bottom plate 1, so that the plurality of suction cups adsorb the workpieces in the plurality of processing grooves, and then the motor two 54 is reversely operated, so that the rotating plate two 56 moves the workpieces out of the processing grooves 3 through the plurality of suction cups, thereby facilitating subsequent feeding and processing.
[0024] A plurality of buffer pads 10 are fixedly installed on the rotating plate two 56, and the buffer pads 10 can buffer the rotating plate two 56.
[0025] The motor one 43 and the motor two 54 are both servo motors, and the servo motor is prior art, so no redundant description is made.
[0026] A plurality of anti-skid structures are fixedly installed on the plurality of clamping plates 48, the anti-skid structures can increase the friction between the clamping plates 48 and the raw materials, and avoid the situation that the raw materials are accidentally dropped during the rotation and placement of the feeding process.
[0027] A plurality of screw holes are formed in the lower end of the bottom plate 1, and the plurality of screw holes facilitate the installation and fixation of the bottom plate 1.
[0028] The utility model discloses, first, the raw blank is placed in the clamping plate 48 and is fixed, and the motor one 43 is started, and the output shaft of motor one 43 drives the rotation of the pivot one 42, and the pivot one 42 drives the rotation of the rotation plate one 45 through the cooperation with the support no.2 44, and the pivot one 45 rotates to cover the upper surface of the bottom plate 1, in this process, a plurality of contact blocks 6 respectively contact a plurality of trigger plates 49, and the trigger plate 49 is extruded to move and expand to two sides, and the fixation of the raw blank is cancelled, so that the raw blank enters the processing groove 3, and the contact 8 contacts the press ring mechanism switch, and the press ring mechanism is started to rotate, and the press ring mechanism processes the raw blank in a plurality of processing grooves 3, and then the motor one 43 reverses rotation and drives the rotation plate one 45 to restore to the original position, when the press ring mechanism 2 press ring processing is completed, the motor two 54 is started, and the output shaft of motor two 54 drives the rotation of the pivot two 53, and the pivot two 53 drives the rotation of the rotation plate two 56 through the cooperation with the support plate two 55, and the rotation plate two 56 drives a plurality of suction cups 58 to rotate and cover the upper surface of the bottom plate 1, so that a plurality of suction cups absorb the workpiece in a plurality of processing grooves, and then the motor two 54 reverses rotation, and the rotation plate two 56 removes the workpiece from the processing groove 3 through a plurality of suction cups, so that subsequent feeding and processing are facilitated, and the feeding assembly and the discharging assembly are alternately operated, so that the automatic processing production of the device is realized.
Claims
1. An anti-skid optical lens pressure ring fastening jig comprising a base plate (1), characterized in that, The bottom plate (1) is fixedly installed with a pressing ring mechanism (2), a plurality of processing grooves (3) for pressing ring fastening processing are opened on the bottom plate (1), and an upper feeding assembly (4) is installed at one end of the bottom plate (1); The upper feeding assembly (4) comprises a support one (41) fixedly installed on the bottom plate (1), a rotating shaft one (42) rotatably connected to the support one (41), a motor one (43) fixedly installed on the bottom plate (1), an output shaft of the motor one (43) fixedly connected with the rotating shaft one (42), a support two (44) fixedly connected to the rotating shaft one (42), a rotating plate one (45) fixedly connected to the support two (44), a fixed plate (7) fixedly connected to the rotating plate one (45), side plates (46) fixedly connected to both ends of the rotating plate one (45), a plurality of spring rods (47) fixedly connected to the fixed plate (7) and the side plates (46), a plurality of clamping plates (48) fixedly connected to the ends of the spring rods (47), a plurality of trigger plates (49) fixedly connected to both ends of the clamping plates (48), a plurality of contact blocks (6) fixedly installed on the bottom plate (1), and the positions of the contact blocks (6) are matched with the positions of the trigger plates (49), respectively, and a contact head (8) fixedly connected to one end of the fixed plate (7), and a pressing ring mechanism switch (9) for controlling the pressing ring mechanism (2) is fixedly installed on the bottom plate (1). A lower feeding assembly (5) is installed on the bottom plate (1).
2. The anti-slip optical lens pressure ring fastening jig according to claim 1, wherein, The lower feeding assembly (5) comprises an extension plate (51) fixedly connected to the side wall of the bottom plate (1), a support plate one (52) fixedly connected to the extension plate (51), a rotating shaft two (53) rotatably connected to the support plate one (52), a motor two (54) fixedly installed on the extension plate (51), an output shaft of the motor two (54) fixedly connected with the rotating shaft two (53), a rotating plate two (56) fixedly connected to the rotating shaft two (53), a plurality of mounting plates (57) fixedly installed on the rotating plate two (56), and a plurality of suction cups (58) fixedly installed on the mounting plates (57).
3. The anti-slip optical lens pressure ring fastening jig according to claim 2, wherein, A plurality of buffer pads (10) are fixedly installed on the rotating plate two (56).
4. The anti-slip optical lens pressure ring fastening jig according to claim 1, wherein, The motor one (43) and the motor two (54) are both servo motors.
5. The anti-slip optical lens pressure ring fastening jig according to claim 1, wherein, Anti-skid pattern structures are fixedly installed on the clamping plates (48).
6. The anti-slip optical lens pressure ring fastening jig according to claim 1, wherein, A plurality of screw holes are opened at the lower end of the bottom plate (1).