A plate buckle assembly device
By designing a plate buckle assembly equipment, the automated feeding and assembly of plate buckle parts has been achieved, solving the problems of low automation and low production efficiency in existing technologies and improving production efficiency.
Patent Information
- Application Number
- CN202210333087.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-03-30
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2042-03-30
AI Technical Summary
The current production process for snap fasteners has a low level of automation and low efficiency, requiring manual assembly of snap rings, torsion springs, and triggers.
Design a plate buckle assembly device, including a turntable, a fixture, a buckle feeding mechanism, a torsion spring feeding mechanism, and a trigger feeding mechanism. The turntable drives the fixture to rotate, realizing the automatic feeding and assembly of parts on the fixture. The assembly of the plate buckle is completed by a riveting mechanism.
It has improved the automation level and production efficiency of the plate buckle, adapting to the needs of technological and economic development.
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Figure CN114619245B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of hardware machining, in particular to a plate buckle assembling equipment. BACKGROUND
[0002] The key ring is a commonly used part, and the plate buckle is one of the key rings. The existing plate buckle is usually assembled by a buckle ring, a torsion spring and a trigger.
[0003] With the development of science and technology and economy, more and more factories begin to use machines to produce plate buckles, thereby improving production efficiency. However, in the prior art, the production of plate buckles still needs to manually place the buckle ring, the torsion spring and the trigger on certain specific jigs for assembly, and there are problems such as low degree of automation and production efficiency. SUMMARY
[0004] In order to overcome the shortcomings and deficiencies in the prior art, the purpose of the present application is to provide a plate buckle assembling equipment, which solves the problems of low degree of automation and production efficiency of the plate buckle.
[0005] The present application is realized by the following technical solutions:
[0006] A plate buckle assembling equipment, comprising a rack, a turntable and a plurality of jigs arranged on the circumference of the turntable; the rack is provided with a buckle ring feeding mechanism, a torsion spring feeding mechanism and a trigger feeding mechanism around the turntable in sequence, the buckle ring feeding mechanism is used for feeding the buckle ring to the jigs, the torsion spring feeding mechanism is used for feeding the torsion spring to the jigs, and the trigger feeding mechanism is used for feeding the trigger to the jigs.
[0007] The buckle ring feeding mechanism comprises a buckle ring tray, a buckle ring channel, a buckle ring base and a buckle ring pushing driving member, the buckle ring tray, the buckle ring channel and the buckle ring base are arranged on the rack, the two ends of the buckle ring channel are connected with the discharge end of the buckle ring tray and the buckle ring base respectively, and the buckle ring pushing driving member is arranged on one side of the buckle ring base.
[0008] The torsion spring feeding mechanism comprises a torsion spring tray, a torsion spring channel, a torsion spring base, a torsion spring transfer mechanism, a torsion spring rotating mechanism and a torsion spring pushing mechanism. The torsion spring tray, the torsion spring channel, the torsion spring transfer mechanism, the torsion spring rotating mechanism and the torsion spring base are arranged on the rack. One end of the torsion spring channel is connected with the discharge end of the torsion spring tray. The torsion spring transfer mechanism is used for transferring the torsion spring from the other end of the torsion spring channel to the torsion spring rotating mechanism. The vertical direction of the jig is slidably provided with a first sliding table. The top end of the first sliding table is provided with a torsion spring guide groove. The rack is provided with a first sliding table ejection mechanism on one side of the torsion spring feeding mechanism. The corresponding positions of the rotating disc and the jig are provided with ejection holes. When the output end of the first sliding table ejection mechanism passes through the ejection hole to eject the first sliding table, the torsion spring rotating mechanism drives the torsion spring to rotate to one side of the first sliding table, and the torsion spring pushing mechanism pushes the torsion spring from the torsion spring rotating mechanism to the torsion spring guide groove.
[0009] The trigger feeding mechanism comprises a trigger tray, a trigger channel, a trigger base, a first trigger pushing mechanism, a second trigger pushing mechanism and a trigger rotating mechanism, which are arranged on the rack. The two ends of the trigger channel are respectively connected with the discharge end of the trigger tray and the trigger base. The output end of the trigger rotating mechanism is arranged in the trigger base. The trigger rotating mechanism is used for driving the trigger in the trigger base to rotate. The first trigger pushing mechanism and the second trigger pushing mechanism are arranged at an included angle. The second trigger pushing mechanism is arranged in parallel with the conveying direction of the trigger channel. The first trigger pushing mechanism is used for pushing the trigger from the output end of the trigger rotating mechanism to one side of the trigger base. The second trigger pushing mechanism is used for pushing the trigger from one side of the trigger base to the jig.
[0010] The vertical direction of the jig is slidably provided with a second sliding table. The rack is provided with a second sliding table ejection mechanism on one side of the trigger feeding mechanism. The corresponding positions of the rotating disc and the jig are provided with second ejection holes. The output end of the second sliding table ejection mechanism abuts against the bottom end of the second sliding table by passing through the second ejection hole.
[0011] The plate buckle assembly device further comprises a torsion spring pushing mechanism. The torsion spring pushing mechanism comprises a torsion spring pushing base, a first torsion spring pushing driving member, a second torsion spring pushing driving member and a pushing member. The torsion spring pushing base is arranged on the rack. The first torsion spring pushing driving member is arranged on the rack. The second torsion spring pushing driving member is arranged on the output end of the first torsion spring pushing driving member. The pushing member is arranged on the output end of the second torsion spring pushing driving member. The driving direction of the first torsion spring pushing driving member is parallel to the rotating disc. The driving direction of the second torsion spring pushing driving member is perpendicular to the rotating disc.
[0012] The plate buckle assembly equipment further comprises a riveting mechanism, the riveting mechanism comprises a riveting device, a rivet channel and a rivet disc which are arranged on the rack, and two ends of the rivet channel are connected with a discharging end of the rivet disc and the riveting device respectively.
[0013] The plate buckle assembly equipment further comprises a discharging mechanism, the discharging mechanism comprises a discharging driving element and a discharging push rod, the discharging driving element is arranged on the rack, and the discharging push rod is arranged on an output end of the discharging driving element; one side of the jig close to the center of the rotating disc is provided with a push hole, and the position of the push hole corresponds to the position of the push rod.
[0014] The rack is further provided with a sliding channel, and the sliding channel is located on the same straight line as the output direction of the discharging driving element.
[0015] The plate buckle assembly equipment provided by the present application has the following beneficial effects:
[0016] The plate buckle assembly equipment provided by the present application has the following beneficial effects: BRIEF DESCRIPTION OF DRAWINGS
[0017] The present application is further described with reference to the accompanying drawings, but the embodiments in the drawings do not constitute any limitation on the present application, and other drawings can be obtained by those skilled in the art without creative labor on the basis of the following drawings.
[0018] Figure 1 The present application is further described with reference to the accompanying drawings, but the embodiments in the drawings do not constitute any limitation on the present application, and other drawings can be obtained by those skilled in the art without creative labor on the basis of the following drawings.
[0019] Figure 2 The present application is further described with reference to the accompanying drawings, but the embodiments in the drawings do not constitute any limitation on the present application, and other drawings can be obtained by those skilled in the art without creative labor on the basis of the following drawings.
[0020] Figure 3 The present application is further described with reference to the accompanying drawings, but the embodiments in the drawings do not constitute any limitation on the present application, and other drawings can be obtained by those skilled in the art without creative labor on the basis of the following drawings.
[0021] Figure 4 The present application is further described with reference to the accompanying drawings, but the embodiments in the drawings do not constitute any limitation on the present application, and other drawings can be obtained by those skilled in the art without creative labor on the basis of the following drawings.
[0022] Figure 5 The present application is further described with reference to the accompanying drawings, but the embodiments in the drawings do not constitute any limitation on the present application, and other drawings can be obtained by those skilled in the art without creative labor on the basis of the following drawings.
[0023] Figure 6 The present application is further described with reference to the accompanying drawings, but the embodiments in the drawings do not constitute any limitation on the present application, and other drawings can be obtained by those skilled in the art without creative labor on the basis of the following drawings.
[0024] Figure 7 The present application is further described with reference to the accompanying drawings, but the embodiments in the drawings do not constitute any limitation on the present application, and other drawings can be obtained by those skilled in the art without creative labor on the basis of the following drawings.
[0025] Figure 8 For Figure 7 Enlarged view of the middle A area.
[0026] Reference signs
[0027] Rack - 100, Turntable - 101, Jig - 102, First sliding table - 103, Torsion spring guide groove - 104, First sliding table ejection mechanism - 105, Second sliding table - 106, Second sliding table ejection mechanism - 107,
[0028] Snap ring feeding mechanism - 200, Snap ring tray - 201, Snap ring material channel - 202, Snap ring base - 203, Snap ring push-out driving element - 204,
[0029] Torsion spring feeding mechanism - 300, Torsion spring tray - 301, Torsion spring material channel - 302, Torsion spring base - 303, Torsion spring transfer mechanism - 304, Torsion spring rotating mechanism - 305, Torsion spring push-out mechanism - 306,
[0030] Trigger feeding mechanism - 400, Trigger tray - 401, Trigger material channel - 402, Trigger base - 403, First trigger push-out mechanism - 404, Second trigger push-out mechanism - 405, Trigger rotating mechanism - 406,
[0031] Torsion spring push-in mechanism - 500, Torsion spring push-in base - 501, First torsion spring push-in driving element - 502, Second torsion spring push-in driving element - 503, Push-in element - 504,
[0032] Riveting mechanism - 600, Rivet material channel - 601, Rivet tray - 602, Riveting device - 603,
[0033] Discharging mechanism - 700, Discharging driving element - 701, Discharging push rod - 702, Slide - 703. DETAILED DESCRIPTION
[0034] In order to make the above objectives, features and advantages of the present application more apparent, specific embodiments of the present application will be described in detail below with reference to the accompanying drawings. In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present application. It will be apparent, however, to one skilled in the art that the present application can be practiced without some or all of these specific details. In other instances, well known process steps have not been described in detail in order to avoid unnecessarily obscuring the present application. Therefore, the specific embodiments disclosed below are not intended to limit the scope of the present application, but merely to illustrate exemplary embodiments of the present application.
[0035] In the description of this invention, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," and "circumferential" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.
[0036] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this invention, "a plurality of" means at least two, such as two, three, etc., unless otherwise explicitly specified.
[0037] like Figures 1 to 8 As shown, this embodiment discloses a plate buckle assembly device, which includes a frame 100, a turntable 101, and a plurality of fixtures 102 disposed on the circumference of the turntable 101. Around the turntable 101, the frame 100 is sequentially provided with a buckle feeding mechanism 200, a torsion spring feeding mechanism 300, a trigger feeding mechanism 400, a torsion spring pushing mechanism 500, a riveting mechanism 600, and a discharge mechanism 700. The buckle feeding mechanism 200 is used to feed buckles to fixtures 102, the torsion spring feeding mechanism 300 is used to feed torsion springs to fixtures 102, the trigger feeding mechanism 400 is used to feed triggers to fixtures 102, the torsion spring pushing mechanism 500 is used to push the torsion spring from fixtures 102 into the plate buckle, and the riveting mechanism 600 is used to feed rivets to the plate buckle and rivet the rivets. After the riveting is completed, the plate buckle rotates with the turntable 101 to one side of the discharge mechanism 700, and the discharge mechanism 700 pushes out the trigger to discharge the material.
[0038] Specifically, the buckle feeding mechanism 200 includes a buckle tray 201, a buckle channel 202, a buckle base 203, and a buckle ejection drive 204. The buckle tray 201, buckle channel 202, and buckle base 203 are all mounted on the frame 100. The two ends of the buckle channel 202 are connected to the discharge end of the buckle tray 201 and the buckle base 203, respectively. The buckle ejection drive 204 is located on one side of the buckle base 203. The buckle tray 201 feeds buckles, which are conveyed to the buckle base 203 via the buckle channel 202, and then pushed into the fixture 102 by the buckle ejection drive 204. In this embodiment, the buckle ejection drive 204 is preferably a cylinder.
[0039] Specifically, the torsion spring loading mechanism 300 comprises a torsion spring tray 301, a torsion spring channel 302, a torsion spring base 303, a torsion spring transfer mechanism 304, a torsion spring rotating mechanism 305 and a torsion spring pushing mechanism 306. The torsion spring tray 301, the torsion spring channel 302, the torsion spring transfer mechanism 304, the torsion spring rotating mechanism 305 and the torsion spring base 303 are all arranged on the rack 100. One end of the torsion spring channel 302 is connected with the discharging end of the torsion spring tray 301. The torsion spring transfer mechanism 304 is used for transferring the torsion spring from the other end of the torsion spring channel 302 to the torsion spring rotating mechanism 305. The vertical direction of the jig 102 is slidingly provided with a first sliding table 103. The top end of the first sliding table 103 is provided with a torsion spring guide groove 104. The rack 100 is provided with a sliding table ejection mechanism 105 on one side of the torsion spring loading mechanism 300. The corresponding positions of the rotating disc 101 and the jig 102 are both provided with ejection holes. When the output end of the sliding table ejection mechanism 105 passes through the ejection hole to eject the first sliding table 103, the torsion spring rotating mechanism 305 drives the torsion spring to rotate to one side of the first sliding table 103. The torsion spring pushing mechanism 306 pushes the torsion spring from the torsion spring rotating mechanism 305 to the torsion spring guide groove 104.
[0040] In actual use, the initial shape of the torsion spring is too long to be directly placed in the jig 102. Therefore, the first sliding table 103 which can be raised and lowered is arranged in the jig 102. The top end of the first sliding table 103 is provided with a torsion spring guide groove 104. The width of the torsion spring guide groove 104 is adapted to the width of the snap ring. After the torsion spring is loaded on the torsion spring base 303 through the torsion spring tray 301 and the torsion spring channel 302, the torsion spring is transferred to the torsion spring rotating mechanism 305 by the torsion spring transfer mechanism 304. When the first sliding table ejection mechanism 105 ejects the first sliding table 103, the torsion spring rotating mechanism 305 drives the torsion spring to rotate to one side of the first sliding table 103. The torsion spring pushing mechanism 306 pushes the torsion spring from the torsion spring rotating mechanism 305 to the torsion spring guide groove 104. During the process of pushing the torsion spring to the torsion spring guide groove 104, the two ends of the torsion spring are in contact with the inner side of the torsion spring guide groove 104, so that the torsion spring is compressed and fixed in the torsion spring guide groove 104. In this embodiment, the torsion spring transfer mechanism 304 is a double-shaft driving structure composed of two air cylinders, a material taking rod and a plurality of bottom plates. The torsion spring pushing mechanism 306 is also a double-shaft driving structure composed of two air cylinders, a material pushing piece and a plurality of bottom plates. The combination of the two air cylinders drives the material taking rod or the material pushing piece to move in the horizontal and vertical directions, so as to realize the transfer of the torsion spring from the torsion spring base 303 to the torsion spring rotating mechanism 305. In addition, the torsion spring rotating mechanism 305 is composed of a rotating air cylinder and a temporary storage channel. The temporary storage channel is arranged on the output end of the rotating air cylinder and is driven to rotate by the rotating air cylinder.
[0041] Specifically, the trigger feeding mechanism 400 includes a trigger tray 401, a trigger channel 402, a trigger base 403, a first trigger pushing mechanism 404, a second trigger pushing mechanism 405, and a trigger rotating mechanism 406, all arranged on the rack 100. The two ends of the trigger channel 402 are respectively connected with the discharge end of the trigger tray 401 and the trigger base 403. The output end of the trigger rotating mechanism 406 is arranged in the trigger base 403, and the trigger rotating mechanism 406 is used to drive the trigger in the trigger base 403 to rotate. The first trigger pushing mechanism 404 and the second trigger pushing mechanism 405 are arranged at an angle. The second trigger pushing mechanism 405 is arranged parallel to the conveying direction of the trigger channel 402. The first trigger pushing mechanism 404 is used to push the trigger from the output end of the trigger rotating mechanism 406 to one side of the trigger base 403. The second trigger pushing mechanism 405 is used to push the trigger from one side of the trigger base 403 to the jig 102.
[0042] Specifically, the jig 102 is vertically slidably arranged with a second sliding table 106. The rack 100 is arranged with a second sliding table ejection mechanism 107 on one side of the trigger feeding mechanism 400. The corresponding positions of the rotating disc 101 and the jig 102 are both arranged with a second ejection hole. The output end of the second sliding table ejection mechanism 105 passes through the second ejection hole to abut against the bottom end of the second sliding table 106.
[0043] In actual use, due to the shape of the retaining ring and the trigger, the trigger cannot be directly pushed into the retaining ring from the front. Therefore, the first trigger pushing mechanism 404 and the second trigger pushing mechanism 405 are arranged at an angle, and the second trigger pushing mechanism 405 is arranged parallel to the conveying direction of the trigger channel 402. During processing, the trigger tray 401 first conveys the trigger to the trigger rotating mechanism 406 of the trigger base 403 through the trigger channel 402. The trigger rotating mechanism 406 rotates the trigger by a certain angle so that the trigger is parallel to the output direction of the second trigger pushing mechanism 405. Then the second trigger pushing mechanism 405 pushes the trigger to the output end of the first trigger pushing mechanism 404, and the first trigger pushing mechanism 404 pushes the trigger to the jig 102. At the same time, under the abutment of the first sliding table 103, the trigger is abutted at the complementary matching position of the trigger and the retaining ring along the edge of the first sliding table 103. When the trigger is matched with the retaining ring, the second sliding table 106 is pushed out by the second sliding table ejection mechanism 107, and the trigger can abut against the second sliding table 106 to prevent the trigger from being displaced.
[0044] It should be noted that the first trigger push-out mechanism 404 and the second trigger push-out mechanism 405 in the embodiment are both composed of a driving structure of a cylinder, a push rod and a plurality of fixed plates, and the trigger rotating mechanism 406 is composed of a rotating cylinder and a temporary storage channel, the temporary storage channel is arranged at the output end of the rotating cylinder and rotates by the driving of the rotating cylinder; the first sliding table 103 and the second sliding table 106 are both provided with corresponding fixed structures (such as protrusions and grooves) between the first sliding table 103 and the jig 102, so that the first sliding table 103 and the second sliding table 106 remain at a certain position without external force.
[0045] In addition, it should be noted that the plate buckle assembly equipment in the embodiment is provided with the first trigger push-out mechanism 404 and the trigger rotating mechanism 406 for better space and conventional settings, so as to change the direction of the feeding of the trigger, in addition, the trigger can also be directly pushed out by the separate second trigger push-out mechanism 405, but the positions of the trigger tray 401 or the trigger channel 402 need to be redesigned. Both of the above two schemes belong to the scope of the embodiment, and will not be described here.
[0046] Specifically, the torsion spring push-in mechanism 500 includes a torsion spring push-in base 501, a first torsion spring push-in driving member 502, a second torsion spring push-in driving member 503 and a push-in member 504, the torsion spring push-in base 501 is arranged on the rack 100, the first torsion spring push-in driving member 502 is arranged on the torsion spring push-in base 501, the second torsion spring push-in driving member 503 is arranged on the output end of the first torsion spring push-in driving member 502, and the push-in member 504 is arranged on the output end of the second torsion spring push-in driving member 503; the driving direction of the first torsion spring push-in driving member 502 is parallel to the rotating disc 101, and the driving direction of the second torsion spring push-in driving member 503 is perpendicular to the rotating disc 101. Since the first sliding table 103 is lifted during the torsion spring feeding process, the second torsion spring push-in driving member 503 first drives the push-in member 504 to lift the first sliding table 103 back into the jig 102, so that the torsion spring and the buckle ring are located on the same horizontal plane, and then the first torsion spring push-in driving member 502 drives the push-in member 504 to push the torsion spring from the torsion spring guide groove 104 to the buckle ring. It should be noted that the first torsion spring push-in driving member 502 and the second torsion spring push-in driving member 503 in the embodiment are preferably cylinders.
[0047] Specifically, the plate buckle assembly equipment further includes a riveting mechanism 600, the riveting mechanism 600 includes a riveting device 603 arranged on the rack 100, a rivet channel 601 and a rivet tray 602, and the two ends of the rivet channel 601 are respectively connected with the discharge end of the rivet tray 602 and the riveting device 603. When the buckle ring, the torsion spring and the trigger are assembled, the riveting device 603 is used to rivet the rivet through the buckle ring to complete the assembly. In the embodiment, the working principle of the riveting device 603 is the prior art, which will not be described here.
[0048] Specifically, the plate buckle assembling device further comprises a discharging mechanism 700, the discharging mechanism 700 comprises a discharging driving member 701 and a discharging push rod 702, the discharging driving member 701 is arranged on the rack 100, and the discharging push rod 702 is arranged on the output end of the discharging driving member 701; the jig 102 is provided with a push hole on the side close to the center of the rotating disc 101, and the position of the push hole corresponds to the position of the push rod. In addition, the rack 100 is further provided with a slide 703 on one side of the rotating disc 101, and the slide 703 is located on the same straight line with the output direction of the discharging driving member 701. In the embodiment, the discharging driving member 701 is preferably a pneumatic cylinder, the discharging driving member 701 drives the discharging push rod 702 to pass through the push hole to push the plate buckle out of the jig 102, and then the plate buckle slides along the slide 703 to be discharged.
[0049] In conclusion, the plate buckle assembling device of the embodiment is provided with the rotating disc 101, the jig 102, the buckle ring feeding mechanism 200, the torsion spring feeding mechanism 300 and the trigger feeding mechanism 400, the rotating disc 101 drives the jig 102 to rotate, the jig 102 sequentially passes through the buckle ring feeding mechanism 200, the torsion spring feeding mechanism 300, the trigger feeding mechanism 400, the torsion spring pushing mechanism 500 and the riveting mechanism 600 to automatically feed, assemble and process, so as to automatically assemble each part on the jig 102 into a plate buckle, and the buckle ring is pushed out and discharged by the discharging mechanism 700. The automatic degree and production efficiency of the plate buckle assembling device are higher, and the plate buckle assembling device is more suitable for the development of science and economy.
[0050] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, and are not limited to the scope of the present application. Although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or replaced by equivalents without departing from the essence and scope of the present application.
Claims
1. A plate fastener assembly apparatus comprising a frame (100), characterised in that: Also include a turntable (101) and a plurality of fixtures (102) on the circumference of the turntable (101); The rack (100) is provided with a buckle ring feeding mechanism (200), a torsion spring feeding mechanism (300) and a trigger feeding mechanism (400) in sequence around the turntable (101), the buckle ring feeding mechanism (200) is used for feeding the buckle ring to the fixture (102), the torsion spring feeding mechanism (300) is used for feeding the torsion spring to the fixture (102), and the trigger feeding mechanism (400) is used for feeding the trigger to the fixture (102); The torsion spring feeding mechanism (300) comprises a torsion spring tray (301), a torsion spring channel (302), a torsion spring base (303), a torsion spring transfer mechanism (304), a torsion spring rotating mechanism (305) and a torsion spring pushing mechanism (306), the torsion spring tray (301), the torsion spring channel (302), the torsion spring transfer mechanism (304), the torsion spring rotating mechanism (305) and the torsion spring base (303) are all arranged on the rack (100), one end of the torsion spring channel (302) is connected with the discharge end of the torsion spring tray (301), and the torsion spring transfer mechanism (304) is used for transferring the torsion spring from the other end of the torsion spring channel (302) to the torsion spring rotating mechanism (305); The vertical direction of the fixture (102) is slidably provided with a first sliding table (103), a top end of the first sliding table (103) is provided with a torsion spring guide groove (104), one side of the torsion spring feeding mechanism (300) is provided with a sliding table ejection mechanism (105), and the corresponding positions of the turntable (101) and the fixture (102) are provided with ejection holes; when the output end of the sliding table ejection mechanism (105) passes through the ejection hole to eject the first sliding table (103), the torsion spring rotating mechanism (305) drives the torsion spring to rotate to one side of the first sliding table (103), and the torsion spring pushing mechanism (306) pushes the torsion spring from the torsion spring rotating mechanism (305) to the torsion spring guide groove (104); The trigger feeding mechanism (400) comprises a trigger tray (401), a trigger channel (402), a trigger base (403), a first trigger pushing mechanism (404), a second trigger pushing mechanism (405) and a trigger rotating mechanism (406), both ends of the trigger channel (402) are connected with the discharge end of the trigger tray (401) and the trigger base (403) respectively, the output end of the trigger rotating mechanism (406) is arranged in the trigger base (403), and the trigger rotating mechanism (406) is used for driving the trigger in the trigger base (403) to rotate. The first trigger push-out mechanism (404) is arranged at an angle between the second trigger push-out mechanism (405), the first trigger push-out mechanism (404) is arranged in parallel with the conveying direction of the trigger channel (402), the second trigger push-out mechanism (405) is used to push the trigger from the output end of the trigger rotating mechanism (406) to one side of the trigger base (403), the first trigger push-out mechanism (404) is used to push the trigger from one side of the trigger base (403) to the jig (102), and under the resistance of the first sliding table (103), the trigger is resisted at the complementary matching position of the trigger and the retaining ring along the edge of the first sliding table (103). The jig (102) is vertically slidably arranged with a second sliding table (106); located on one side of the trigger feeding mechanism (400), the rack (100) is provided with a second sliding table ejection mechanism (107), and the corresponding positions of the rotating disc (101) and the jig (102) are provided with second ejection holes. The output end of the second sliding table ejection mechanism (107) passes through the second ejection hole to resist the bottom end of the second sliding table (106).
2. A plate fastener assembly apparatus according to claim 1, wherein: The retaining ring feeding mechanism (200) comprises a retaining ring tray (201), a retaining ring channel (202), a retaining ring base (203), and a retaining ring push-out driving element (204). The retaining ring tray (201), the retaining ring channel (202), and the retaining ring base (203) are all arranged on the rack (100). The two ends of the retaining ring channel (202) are respectively connected with the discharging end of the retaining ring tray (201) and the retaining ring base (203). The retaining ring push-out driving element (204) is arranged on one side of the retaining ring base (203).
3. The plate fastener assembly apparatus of claim 1, wherein: The plate buckle assembly equipment further comprises a torsional spring push-in mechanism (500), the torsional spring push-in mechanism (500) comprises a torsional spring push-in base (501), a first torsional spring push-in driving element (502), a second torsional spring push-in driving element (503), and a push-in element (504). The torsional spring push-in base (501) is arranged on the rack (100). The first torsional spring push-in driving element (502) is arranged on the rack (100). The second torsional spring push-in driving element (503) is arranged on the output end of the first torsional spring push-in driving element (502). The push-in element (504) is arranged on the output end of the second torsional spring push-in driving element (503). The driving direction of the first torsional spring push-in driving element (502) is parallel to the rotating disc (101). The driving direction of the second torsional spring push-in driving element (503) is perpendicular to the rotating disc (101).
4. The plate fastener assembly apparatus of claim 1, wherein: The plate buckle assembly equipment further comprises a riveting mechanism (600), the riveting mechanism (600) comprises a riveting device (603) arranged on the rack (100), a rivet channel (601), and a rivet tray (602). The two ends of the rivet channel (601) are respectively connected with the discharging end of the rivet tray (602) and the riveting device (603).
5. The plate fastener assembly apparatus of claim 1, wherein: The plate buckle assembly device further comprises a discharging mechanism (700), the discharging mechanism (700) comprises a discharging driving member (701) and a discharging push rod (702), the discharging driving member (701) is arranged on the rack (100), and the discharging push rod (702) is arranged on the output end of the discharging driving member (701); The jig (102) is provided with a push hole on the side close to the center of the rotating disc (101), and the position of the push hole corresponds to the position of the push rod.
6. A plate clasp assembly apparatus according to claim 5, wherein: The rack (100) is further provided with a slide (703) on one side of the rotating disc (101), and the slide (703) is located on the same straight line as the output direction of the discharging driving member (701).
Citation Information
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