A tapping device for magnetic lock accessories
By designing a tapping device for magnetic lock accessories and utilizing a clamping mechanism and a driving mechanism to realize automatic flipping of the workpiece, the problem of increased labor intensity caused by manual flipping is solved, thereby improving production efficiency.
Patent Information
- Application Number
- CN202210222959.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-03-07
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2042-03-07
AI Technical Summary
In the prior art, magnetic lock accessories need to be manually turned over during the tapping process, which increases the labor intensity of production personnel.
A tapping device for magnetic lock accessories is designed, which includes a machine table, a guide block, a clamping mechanism, a driving mechanism and a tapping mechanism. The clamping mechanism transfers the workpiece to be worked from the second position to the guide block, and slides and flips it along the guide inclined surface to the third position, so that the workpiece to be worked is placed vertically. The driving mechanism transfers the workpiece to be worked into the conveying channel for tapping, realizing automatic flipping without manual intervention.
It reduces the labor intensity of production personnel, improves work efficiency, and reduces the need for manual turning operations.
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Figure CN114571008B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of tapping, in particular to a tapping device for magnetic lock accessories. Background Art
[0002] In the existing technology, referring to Figure 5 The workpiece a is placed horizontally, the first side a1 of the workpiece a is vertically arranged, the second side a2 of the workpiece a is horizontally arranged, the first side a1 and the second side a2 are respectively provided with a first through hole a11 and a second through hole a22. After the tapping work is completed on the first through hole a11, refer to Figure 6 , the production staff need to manually flip the workpiece a to be processed so that it is placed upright and the second side surface a2 is placed vertically before tapping the second through hole a22. The manual flipping work will increase the labor intensity of the production staff. Summary of the Invention
[0003] The present invention aims to solve at least one of the technical problems existing in the prior art. To this end, the present invention proposes a tapping device for magnetic lock accessories, which can reduce the labor intensity of production personnel.
[0004] According to an embodiment of the present invention, a magnetic lock accessory tapping device includes a machine, a guide block, a clamping mechanism, a driving mechanism and a tapping mechanism, wherein the machine is provided with a first position, a second position, a third position and a conveying channel, wherein the first position is used to receive a flatly placed object to be worked, the guide block is provided on the machine, the guide block is provided with a guide slope, the clamping mechanism is provided on the machine, the clamping mechanism is used to clamp the object to be worked at the first position, and is used to sequentially transfer the object to be worked to the second position and the guide block, and the object to be worked is located on the guide block. The object to be worked on can slide and flip along the guide slope to the third position, and the object to be worked at the third position is placed vertically. The driving mechanism is provided on the machine, and the driving mechanism is used to receive the object to be worked at the third position, and to move the object to be worked to the fourth position in the conveying channel. The tapping mechanism is provided on the machine, and the tapping mechanism is used to tap the first through hole of the object to be worked at the second position, and to tap the second through hole of the object to be worked at the fourth position.
[0005] A magnetic lock accessory tapping device according to an embodiment of the present invention has at least the following beneficial effects: through the above structure, when the clamping mechanism transfers the workpiece to be worked from the second position to the guide block, the workpiece to be worked on the guide block can slide and flip along the guide inclined surface to the third position, so that the workpiece to be worked is placed vertically, wherein the above process of flipping the workpiece to be worked does not require human intervention, thereby reducing the labor intensity of production personnel.
[0006] According to some embodiments of the present invention, the clamping mechanism includes a mounting frame, a first clamping component, a second clamping component and a first driving member, the mounting frame is slidably provided on the machine platform, the first clamping component is provided on the mounting frame, the first clamping component is used to clamp the object to be worked on located at the first position, the second clamping component is provided on the mounting frame, the second clamping component is used to clamp the object to be worked on located at the second position, the first driving member is provided on the machine platform, and the output end of the first driving member is connected to the mounting frame, wherein the first driving member is used to drive the mounting frame to slide, so as to drive the object to be worked on clamped by the first clamping component to move above the second position, and drive the object to be worked on clamped by the second clamping component to move above the guide block.
[0007] According to some embodiments of the present invention, the first clamping assembly includes a second driving member and a first clamping member, the second driving member is arranged on the mounting frame, the first clamping member is arranged at the output end of the second driving member, and the first clamping member is used to clamp the workpiece located at the first position, wherein the second driving member is used to drive the first clamping member to rise and fall.
[0008] According to some embodiments of the present invention, a rotating member is provided at the output end of the second driving member, the rotating member is provided with a turntable, and the first clamping member is provided on the turntable.
[0009] According to some embodiments of the present invention, the second clamping assembly includes a third driving member, a connecting member, a fourth driving member and a second clamping member, the third driving member is arranged on the mounting frame, the connecting member is arranged at the output end of the third driving member, the fourth driving member is arranged on the connecting member, the second clamping member is arranged at the output end of the fourth driving member, and the second clamping member is used to clamp the workpiece located at the second position, wherein the third driving member is used to drive the second clamping member to rise and fall, and the fourth driving member is used to drive the second clamping member to move laterally.
[0010] According to some embodiments of the present invention, the driving mechanism includes a slide bar, a pushing assembly and a fifth driving member, the slide bar is slidably provided on the machine, the slide bar is used to receive the object to be worked on at the third position, the pushing assembly is provided on the slide bar, the pushing assembly is used to abut against the object to be worked on the slide bar, the fifth driving member is provided on the machine, and the output end of the fifth driving member is connected to the slide bar, wherein the fifth driving member is used to drive the slide bar to slide, so as to drive the pushing assembly to push the object to be worked on, so that the object to be worked on moves to the fourth position.
[0011] According to some embodiments of the present invention, the slide bar is provided with an avoidance hole, the pushing assembly includes a pushing block and a sixth driving member, the pushing block is passed through the avoidance hole, the sixth driving member is provided on the slide bar, and the output end of the sixth driving member is connected to the pushing block, wherein the sixth driving member is used to drive the pushing block to extend or retract into the avoidance hole, and the pushing block extending out of the avoidance hole is used to abut against the workpiece to be worked.
[0012] According to some embodiments of the present invention, a first positioning assembly is provided on the machine platform, and the first positioning assembly is used to abut against the workpiece at the fourth position to stop the workpiece driven by the pushing assembly.
[0013] According to some embodiments of the present invention, a first fixing component is provided on the machine platform, and the first fixing component is used to fix the workpiece located at the second position.
[0014] According to some embodiments of the present invention, a second fixing component is provided on the machine platform, and the second fixing component is used to fix the workpiece located at the fourth position. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the following description of the embodiments with reference to the accompanying drawings, in which:
[0016] Figure 1 This is a structural diagram of an embodiment of a tapping device for a magnetic lock accessory of the present invention;
[0017] Figure 2 for Figure 1 A partial enlarged view of part A shown in FIG;
[0018] Figure 3 for Figure 1 The structure diagram of the magnetic lock accessory tapping device with some parts removed;
[0019] Figure 4 for Figure 1 A cross-sectional view of the magnetic lock accessory tapping device with some parts removed;
[0020] Figure 5 Structural diagram of the workpiece to be laid out horizontally;
[0021] Figure 6 A structural diagram of a vertically placed object waiting to be worked on.
[0022] Reference numerals:
[0023] The machine 100 , the placement tank 110 , the opening 111 , the eleventh driving member 112 , the material storage channel 120 , the seventh driving member 130 , and the slideway 140 .
[0024] Guide block 200, guide slope 210;
[0025] Clamping mechanism 300, mounting frame 310, first clamping assembly 320, second driving member 321, first clamping member 322, rotating member 323, second clamping assembly 330, third driving member 331, connecting member 332, fourth driving member 333, second clamping member 334, first driving member 340;
[0026] Driving mechanism 400, slide bar 410, avoidance hole 411, pushing assembly 420, pushing block 421, sixth driving member 422, fifth driving member 430;
[0027] A first tapping device 510, a second tapping device 520, and a third tapping device 530;
[0028] The first fixing assembly 610 , the ninth driving member 611 , the fixing block 612 , the second fixing assembly 620 , the tenth driving member 621 , the first pressing block 622 , the third fixing assembly 630 , the thirteenth driving member 631 , and the second pressing block 632 ;
[0029] A first positioning assembly 710, an eighth driving member 711, a first stopping bar 712, a second positioning assembly 720, a twelfth driving member 721, and a second stopping bar 722;
[0030] Workpiece a, first side a1, first through hole a11, second side a2, second through hole a22, third side a3, third through hole a33, first position s1, second position s2, third position s3, conveying channel s4, fourth position s41, first carrier s42, fifth position s43, second carrier s44. DETAILED DESCRIPTION
[0031] This section will describe in detail the specific embodiments of the present invention. The preferred embodiments of the present invention are shown in the accompanying drawings. The purpose of the accompanying drawings is to supplement the description of the text part of the specification with graphics, so that people can intuitively and vividly understand each technical feature and the overall technical solution of the present invention, but it should not be understood as a limitation on the scope of protection of the present invention.
[0032] In the description of the present invention, if there are descriptions of first, second, third, fourth, fifth, etc., they are only used to distinguish the technical features, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features or implicitly indicating the order of the indicated technical features.
[0033] In the description of the present invention, it should be understood that descriptions involving orientations, such as up, down, front, back, left, right, etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, they cannot be understood as limitations on the present invention.
[0034] In the present invention, unless otherwise expressly defined, terms such as "disposed," "installed," and "connected" should be interpreted broadly. For example, they may refer to direct connection or indirect connection through an intermediate medium; fixed connection or detachable connection or integral molding; mechanical connection; and internal communication between two components or interaction between two components. Those skilled in the art can reasonably determine the specific meanings of these terms in the present invention based on the specific content of the technical solution.
[0035] Reference Figures 1 to 6 An embodiment of the present invention provides a tapping device for a magnetic lock accessory, which includes a machine platform 100, a guide block 200, a clamping mechanism 300, a driving mechanism 400, and a tapping mechanism.
[0036] The machine 100 is provided with a first position s1, a second position s2, a third position s3 and a conveying channel s4. The first position s1 is used to receive a flatly placed workpiece a. The guide block 200 is provided on the machine 100. The guide block 200 is provided with a guide bevel 210. The clamping mechanism 300 is provided on the machine 100. The clamping mechanism 300 is used to clamp the workpiece a located at the first position s1 and to sequentially transfer the workpiece a to the second position s2 and the guide block 200. The workpiece a located on the guide block 200 can be moved along the guide bevel 210. Slide and flip to the third position s3, the workpiece a to be worked on at the third position s3 is placed vertically, the driving mechanism 400 is provided on the machine 100, the driving mechanism 400 is used to receive the workpiece a to be worked on at the third position s3, and is used to transfer the workpiece a to the fourth position s41 in the conveying channel s4, the tapping mechanism is provided on the machine 100, the tapping mechanism is used to tap the first through hole a11 of the workpiece a to be worked on at the second position s2, and is used to tap the second through hole a22 of the workpiece a to be worked on at the fourth position s41.
[0037] It can be understood that the object a to be worked on at the first position s1 and the second position s2 are both placed flat; the object a to be worked on the guide block 200 is placed flat, with one part of the object a abutting against the guide block 200 and the other part located above the guide slope 210. When the clamping mechanism 300 cancels the clamping of the object a to be worked on, the object a to be worked on slides and flips along the guide slope 210 to the third position s3 under the action of the gravity of the other part; the object a to be worked on is a magnetic lock accessory.
[0038] Through the above structure, when the clamping mechanism 300 transfers the workpiece a from the second position s2 to the guide block 200, the workpiece a located on the guide block 200 can slide and flip along the guide slope 210 to the third position s3, so that the workpiece a is placed vertically. The above-mentioned flipping process of the workpiece a does not require human intervention, and therefore can reduce the labor intensity of production personnel.
[0039] In this embodiment, referring to Figure 1 The machine 100 is provided with a placement slot 110 , and the placement slot 110 is provided with the first position s1 , the second position s2 , the third position s3 and the guide block 200 .
[0040] The first position s1 is used to receive the workpiece a placed horizontally. Figure 1 A storage channel 120 is provided on the machine 100, and the storage channel 120 is used to store the flatly placed object blocks a to be processed. The discharge port of the storage channel 120 is connected to the placement groove 110, and the first position s1 is set corresponding to the discharge port of the storage channel 120. The first position s1 is used to receive the object blocks a to be processed sent from the discharge port of the storage channel 120.
[0041] In this embodiment, referring to Figure 1 The machine 100 is provided with a seventh driving member 130, which is located at the inlet of the material storage channel 120. The output end of the seventh driving member 130 is used to push the workpiece a located in the material storage channel 120, thereby moving the corresponding workpiece a from the material storage channel 120 to the first position s1. The seventh driving member 130 can be configured as a pneumatic cylinder, a hydraulic cylinder, an electric push rod, or the like.
[0042] In some embodiments, a vibration plate is provided on the machine 100 , and an output port of the vibration plate is connected to a feed port of the storage channel 120 .
[0043] The clamping mechanism 300 includes a mounting frame 310 , a first clamping assembly 320 , a second clamping assembly 330 , and a first driving member 340 .
[0044] Reference Figure 1The mounting frame 310 is slidably provided on the machine 100, and the first clamping assembly 320 is provided on the mounting frame 310. The first clamping assembly 320 is used to clamp the workpiece a located at the first position s1. The second clamping assembly 330 is provided on the mounting frame 310. The second clamping assembly 330 is used to clamp the workpiece a located at the second position s2. The first driving member 340 is provided on the machine 100. The output end of the first driving member 340 is connected to the mounting frame 310, wherein the first driving member 340 is used to drive the mounting frame 310 to slide, so as to drive the workpiece a clamped by the first clamping assembly 320 to move above the second position s2, and drive the workpiece a clamped by the second clamping assembly 330 to move above the guide block 200.
[0045] In this embodiment, the first driving member 340 can be configured as a pneumatic cylinder, a hydraulic cylinder, an electric push rod, etc.
[0046] It can be understood that when the object a to be worked on clamped by the first clamping component 320 moves to above the second position s2, the first clamping component 320 can transfer the clamped object a to the second position s2; when the object a to be worked on clamped by the second clamping component 330 moves to above the guide block 200, the second clamping component 330 can transfer the clamped object a to the guide block 200.
[0047] With the above structure, when the workpiece a at the first position s1 moves to the second position s2, the workpiece a at the second position s2 moves onto the guide block 200, thereby improving the working efficiency of the magnetic lock accessory tapping device.
[0048] The first clamping assembly 320 includes a second driving member 321 , a first clamping member 322 and a rotating member 323 .
[0049] Reference Figure 1 The second driving member 321 is provided on the mounting frame 310, and a rotating member 323 is provided at the output end of the second driving member 321. The rotating member 323 is provided with a turntable. The first clamping member 322 is provided on the turntable. The first clamping member 322 is used to clamp the workpiece a located at the first position s1. The second driving member 321 is used to drive the first clamping member 322 to rise and fall, and the rotating member 323 is used to drive the first clamping member 322 to rotate.
[0050] In this embodiment, the first clamping member 322 can be set as a pneumatic clamp, etc.; the second driving member 321 can be set as a cylinder, a hydraulic cylinder, an electric push rod, etc.; the rotating member 323 can be set as a turntable cylinder, etc.
[0051] When the first clamping member 322 clamps the workpiece a at the first position s1, the second driving member 321 drives the rotating member 323 to rise, driving the first clamping member 322 to rise, and the rotating member 323 drives the first clamping member 322 to rotate, so that the clamped workpiece a rotates by a preset angle.
[0052] In some embodiments, when the workpiece a in the first position s1 does not need to be rotated to adjust its position, the first clamping assembly 320 includes a second driving member 321 and a first clamping member 322, the second driving member 321 is arranged on the mounting frame 310, and the first clamping member 322 is directly arranged at the output end of the second driving member 321.
[0053] The second clamping assembly 330 includes a third driving member 331 , a connecting member 332 , a fourth driving member 333 and a second clamping member 334 .
[0054] Reference Figure 1 The third driving member 331 is arranged on the mounting frame 310, the connecting member 332 is arranged at the output end of the third driving member 331, the fourth driving member 333 is arranged on the connecting member 332, and the second clamping member 334 is arranged at the output end of the fourth driving member 333. The second clamping member 334 is used to clamp the workpiece a located at the second position s2, wherein the third driving member 331 is used to drive the second clamping member 334 to rise and fall, and the fourth driving member 333 is used to drive the second clamping member 334 to move horizontally.
[0055] In this embodiment, the third driving member 331 can be set as a cylinder, a hydraulic cylinder, an electric push rod, etc.; the fourth driving member 333 can be set as a cylinder, a hydraulic cylinder, an electric push rod, etc.; the second clamping member 334 can be set as a pneumatic clamp, etc.
[0056] Reference Figure 1 and Figure 2 The placement groove 110 is connected to the inlet of the conveying channel s4, and the third position s3 is set corresponding to the inlet of the conveying channel s4. The placement groove 110 is provided with a through opening 111. When the object a to be processed slides and flips along the guide inclined surface 210 to the third position s3, the driving mechanism 400 receives the object a to be processed placed vertically at the third position s3 through the through opening 111.
[0057] The driving mechanism 400 includes a slide bar 410 , a pushing assembly 420 and a fifth driving member 430 .
[0058] Reference Figure 2 、 Figure 3 as well as Figure 4The slide bar 410 is slidably provided on the machine 100, and the slide bar 410 is used to receive the vertically arranged object a to be worked at the third position s3 through the through-port 111. The pushing assembly 420 is provided on the slide bar 410, and the pushing assembly 420 is used to abut against the object a to be worked on the slide bar 410. The fifth driving member 430 is provided on the machine 100, and the output end of the fifth driving member 430 is connected to the slide bar 410, wherein the fifth driving member 430 is used to drive the slide bar 410 to slide, so as to drive the pushing assembly 420 to push the object a to be worked, so that the object a to be worked moves to the fourth position s41 in the conveying channel s4.
[0059] In this embodiment, the fifth driving member 430 can be configured as a pneumatic cylinder, a hydraulic cylinder, an electric push rod, etc.
[0060] Reference Figure 4 The machine 100 is provided with a slide 140 connected to the conveying channel s4. The slide 140 is located below the conveying channel s4. The slide bar 410 is slidably provided on the slide 140. Both side walls of the conveying channel s4 are provided with a first carrier s42. When the fifth driving member 430 drives the slide bar 410 to slide, driving the pushing assembly 420 to push the workpiece a from the third position s3 into the conveying channel s4, the vertically placed workpiece a entering the conveying channel s4 abuts against the first carrier s42.
[0061] The slide bar 410 is provided with an avoidance hole 411 , and the pushing assembly 420 includes a pushing block 421 and a sixth driving member 422 .
[0062] Reference Figure 3 and Figure 4 The pushing block 421 is passed through the avoidance hole 411, the sixth driving member 422 is provided on the slide bar 410, and the output end of the sixth driving member 422 is connected to the pushing block 421, wherein the sixth driving member 422 is used to drive the pushing block 421 to extend or retract the avoidance hole 411, and the pushing block 421 extending out of the avoidance hole 411 is used to abut against the workpiece a.
[0063] In this embodiment, the sixth driving member 422 can be configured as a pneumatic cylinder, a hydraulic cylinder, an electric push rod, etc.
[0064] With the above structure, when the slide bar 410 moves and resets, the sixth driving member 422 can drive the pushing block 421 to retract into the avoidance hole 411 to avoid collision with the workpiece a during the movement and reset process.
[0065] In order to make the workpiece a reach the fourth position s41 more accurately, refer to Figure 3 and Figure 4 The machine 100 is provided with a first positioning assembly 710 , which is used to abut against the workpiece a at the fourth position s41 to stop the workpiece a driven by the pushing assembly 420 .
[0066] The machine 100 is provided with a first mounting hole (not marked in the figure) communicating with the conveying channel s4 . The first positioning assembly 710 includes an eighth driving member 711 and a first stopping bar 712 .
[0067] Reference Figure 4 The first stopping bar 712 is disposed through the first mounting hole. The eighth driving member 711 is disposed on the machine 100. The output end of the eighth driving member 711 is connected to one end of the first stopping bar 712. The eighth driving member 711 is used to drive the first stopping bar 712 to extend or retract into the first mounting hole. The portion of the first stopping bar 712 extending from the first mounting hole is located in the conveying channel s4 to stop the workpiece a being driven by the pushing assembly 420. The eighth driving member 711 can be configured as a pneumatic cylinder, a hydraulic cylinder, an electric push rod, or the like.
[0068] In some embodiments, the first positioning assembly 710 only includes an eighth driving member 711, which is one of a pneumatic cylinder, a hydraulic cylinder, and an electric push rod. The output end of the eighth driving member 711 can pass through the first mounting hole and be placed in the conveying channel s4 to stop the object a to be worked driven by the pushing assembly 420.
[0069] Reference Figure 1 and Figure 3 The machine 100 is provided with a first through hole (not marked in the figure) connected to the placement groove 110, and the first through hole is corresponding to the first through hole a11 of the object a to be processed located at the second position s2; the machine 100 is provided with a second through hole (not marked in the figure) connected to the conveying channel s4, and the second through hole is corresponding to the second through hole a22 of the object a to be processed located at the fourth position s41.
[0070] The tapping mechanism includes a first tapping device 510 and a second tapping device 520 .
[0071] Reference Figure 1 and Figure 3 The first tapping device 510 and the second tapping device 520 are both provided on the machine 100. The tapping rod of the first tapping device 510 taps the first through hole a11 through the first through hole, and the tapping rod of the second tapping device 520 taps the second through hole a22 through the second through hole. The first tapping device 510 and the second tapping device 520 are both configured as electric tapping machines, etc.
[0072] In this embodiment, referring to Figure 1 The number of first tapping devices 510 is two, and the two first tapping devices 510 are arranged opposite to each other. The two first tapping devices 510 tap the two ends of the first through hole a11 one by one to improve the tapping efficiency of the first through hole a11.
[0073] In order to improve the stability of the workpiece a when tapping at the second position s2, refer to Figure 1 A first fixing assembly 610 is provided on the machine 100 , and the first fixing assembly 610 is used to fix the workpiece a located at the second position s2 .
[0074] The first fixing assembly 610 includes two ninth driving members 611 and two fixing blocks 612 .
[0075] Reference Figure 1 The two ninth driving members 611 are both disposed in the placement slot 110, and the two fixing blocks 612 are both disposed in the placement slot 110. The two ninth driving members 611 are disposed opposite each other, and the two fixing blocks 612 are disposed opposite each other. The output ends of the two ninth driving members 611 are connected to the two fixing blocks 612 in a one-to-one correspondence. The two ninth driving members 611 are used to drive the two fixing blocks 612 to move toward each other to jointly clamp the workpiece a located at the second position s2. The ninth driving member 611 can be configured as a pneumatic cylinder, a hydraulic cylinder, an electric tow bar, or the like.
[0076] In order to improve the stability of the workpiece a when tapping at the fourth position s41, refer to Figure 3 and Figure 4 A second fixing assembly 620 is provided on the machine 100 , and the second fixing assembly 620 is used to fix the workpiece a located at the fourth position s41 .
[0077] The second fixing assembly 620 includes a tenth driving member 621 and a first pressing block 622 .
[0078] Reference Figure 3 and Figure 4 The first pressing block 622 is provided with a first fixed groove (not marked in the figure), the tenth driving member 621 is provided on the machine 100, the output end of the tenth driving member 621 is connected to the first pressing block 622, and the tenth driving member 621 is used to drive the first pressing block 622 to move so that the workpiece a located at the fourth position s41 is inserted into the first fixed groove.
[0079] In this embodiment, referring to Figure 1 and Figure 2 The placement groove 110 is provided with an eleventh driving member 112, and the guide block 200 is slidably provided in the placement groove 110. The output end of the eleventh driving member 112 is connected to the guide block 200. The eleventh driving member 112 is used to drive the guide block 200 to move to adjust the space size at the third position s3, thereby enabling the third position s3 to accommodate the flatly placed object a.
[0080] Reference Figure 5 The workpiece a is provided with a third side surface a3, the third side surface a3 is vertically arranged, and a third through hole a33 is provided on the third side surface a3.
[0081] Reference Figure 1 、 Figure 3 as well as Figure 4 The fourth driving member 333 drives the second clamping member 334 to move horizontally, so that the object a to be processed clamped by the second clamping assembly 330 is moved to above the third position s3 after the space size is adjusted. Under the action of the third driving member 331, the object a to be processed located above the third position s3 is moved to the third position s3. At this time, the object a to be processed located at the third position s3 is placed flat.
[0082] The slide bar 410 receives the flat object a at the third position s3 through the opening 111. The fifth driving member 430 drives the slide bar 410 to slide, thereby driving the pushing assembly 420 to push the object a, causing the object a to move to the fifth position s43 within the conveying channel s4. Second platforms s44 are provided on both side walls of the conveying channel s4. When the fifth driving member 430 drives the slide bar 410 to slide, driving the pushing assembly 420 to push the object a from the third position s3 into the conveying channel s4, the flat object a in the conveying channel s4 abuts against the second platforms s44.
[0083] The machine 100 is provided with a third through hole (not shown) connected to the conveying channel s4, and the third through hole is corresponding to the third through hole a33 of the workpiece a located at the fifth position s43. Figure 1 and Figure 3 The third tapping device 530 is provided on the machine 100, and the tapping rod of the third tapping device 530 taps the third through hole a33 through the third through hole. The third tapping device 530 is provided as an electric tapping machine, etc.
[0084] In order to make the workpiece a reach the fifth position s43 more accurately, refer to Figure 3 and Figure 4 The machine 100 is provided with a second positioning assembly 720 , which is used to abut against the workpiece a at the fifth position s43 to stop the workpiece a driven by the pushing assembly 420 .
[0085] The machine 100 is provided with a second mounting hole (not marked in the figure) communicating with the conveying channel s4 . The second positioning assembly 720 includes a twelfth driving member 721 and a second stopping bar 722 .
[0086] Reference Figure 4The second stopping bar 722 is disposed through the second mounting hole. The twelfth driving member 721 is disposed on the machine 100. The output end of the twelfth driving member 721 is connected to one end of the second stopping bar 722. The twelfth driving member 721 is used to drive the second stopping bar 722 to extend or retract into the second mounting hole. The portion of the second stopping bar 722 extending from the second mounting hole is located in the conveying channel s4 to stop the workpiece a being driven by the pushing assembly 420. The twelfth driving member 721 can be configured as a pneumatic cylinder, a hydraulic cylinder, an electric push rod, or the like.
[0087] In some embodiments, the second positioning assembly 720 only includes a twelfth driving member 721, which is one of a pneumatic cylinder, a hydraulic cylinder, and an electric push rod. The output end of the twelfth driving member 721 can pass through the second mounting hole and be placed in the conveying channel s4 to stop the workpiece a driven by the pushing assembly 420.
[0088] In order to improve the stability of the workpiece a when tapping at the fifth position s43, refer to Figure 3 and Figure 4 A third fixing assembly 630 is provided on the machine 100 and is used to fix the workpiece a located at the fifth position s43.
[0089] The third fixing assembly 630 includes a thirteenth driving member 631 and a second pressing block 632 .
[0090] Reference Figure 3 and Figure 4 The second pressing block 632 is provided with a second fixing groove (not marked in the figure), the thirteenth driving member 631 is provided on the machine 100, and the output end of the thirteenth driving member 631 is connected to the second pressing block 632. The thirteenth driving member 631 is used to drive the second pressing block 632 to move so that the workpiece a located at the fifth position s43 is inserted into the second fixing groove.
[0091] Of course, the present invention is not limited to the above-mentioned embodiments. Those skilled in the art may make equivalent modifications or substitutions without violating the spirit of the present invention. These equivalent modifications and substitutions are all included in the scope defined by the claims of this application.
Claims
1. A tapping device for magnetic lock accessories, characterized by: include The machine (100) is provided with a first position (s1), a second position (s2), a third position (s3) and a conveying channel (s4), wherein the first position (s1) is used to receive a flatly placed object (a) to be processed; A guide block (200) is provided on the machine platform (100), and the guide block (200) is provided with a guide bevel (210); A clamping mechanism (300) is provided on the machine (100), the clamping mechanism (300) is used to clamp the object (a) to be worked on located at the first position (s1), and is used to sequentially transfer the object (a) to the second position (s2) and the guide block (200), the object (a) to be worked on located on the guide block (200) can slide and flip along the guide inclined surface (210) to the third position (s3), and the object (a) to be worked on located at the third position (s3) is arranged vertically; a driving mechanism (400) provided on the machine (100), the driving mechanism (400) being used to receive the object (a) to be processed located at the third position (s3), and to transfer the object (a) to be processed to a fourth position (s41) in the conveying channel (s4); a tapping mechanism, provided on the machine (100), for tapping the first through hole (a11) of the workpiece (a) located at the second position (s2), and for tapping the second through hole (a22) of the workpiece (a) located at the fourth position (s41); The object (a) to be worked on located at the first position (s1) and the second position (s2) are both placed flat; the object (a) to be worked on located on the guide block (200) is placed flat, with a portion of the object (a) abutting against the guide block (200) and another portion located above the guide inclined surface (210); when the clamping mechanism (300) cancels the clamping of the object (a), the object (a) to be worked on slides and flips along the guide inclined surface (210) to the third position (s3) under the action of the gravity of the other portion; The driving mechanism (400) comprises: a slide bar (410) slidably disposed on the machine platform (100), the slide bar (410) being used to receive the object to be processed (a) located at the third position (s3); A pushing assembly (420) is provided on the slide bar (410), and the pushing assembly (420) is used to abut against the workpiece (a) located on the slide bar (410); A fifth driving member (430) is provided on the machine (100), and an output end of the fifth driving member (430) is connected to the slide bar (410), wherein: The fifth driving member (430) is used to drive the slide bar (410) to slide, so as to drive the pushing assembly (420) to push the object to be worked (a), so that the object to be worked (a) moves to the fourth position (s41); The machine platform (100) is provided with a first fixing component (610), and the first fixing component (610) is used to fix the object to be worked (a) located at the second position (s2).
2. A magnetic lock accessory tapping device according to claim 1, characterized in that: The clamping mechanism (300) comprises: A mounting frame (310) slidably mounted on the machine platform (100); a first clamping assembly (320) provided on the mounting frame (310), the first clamping assembly (320) being used to clamp the object to be processed (a) located at the first position (s1); a second clamping assembly (330) provided on the mounting frame (310), the second clamping assembly (330) being used to clamp the object to be processed (a) located at the second position (s2); A first driving member (340) is provided on the machine (100), and an output end of the first driving member (340) is connected to the mounting frame (310), wherein: The first driving member (340) is used to drive the mounting frame (310) to slide, so as to drive the object to be worked (a) clamped by the first clamping assembly (320) to move to above the second position (s2), and to drive the object to be worked (a) clamped by the second clamping assembly (330) to move to above the guide block (200).
3. A magnetic lock accessory tapping device according to claim 2, characterized in that: The first gripping assembly (320) comprises: A second driving member (321) is provided on the mounting frame (310); A first clamping member (322) is provided at the output end of the second driving member (321), and the first clamping member (322) is used to clamp the object to be processed (a) located at the first position (s1), wherein: The second driving member (321) is used to drive the first clamping member (322) to move up and down.
4. The magnetic lock accessory tapping device according to claim 3, characterized in that: The output end of the second driving member (321) is provided with a rotating member (323), the rotating member (323) is provided with a turntable, and the first clamping member (322) is provided on the turntable.
5. The magnetic lock accessory tapping device according to claim 2, characterized in that: The second gripping assembly (330) comprises: A third driving member (331) is provided on the mounting frame (310); A connecting member (332) is provided at the output end of the third driving member (331); A fourth driving member (333) is provided on the connecting member (332); The second clamping member (334) is provided at the output end of the fourth driving member (333), and the second clamping member (334) is used to clamp the object to be processed (a) located at the second position (s2), wherein: The third driving member (331) is used to drive the second clamping member (334) to move up and down, and the fourth driving member (333) is used to drive the second clamping member (334) to move laterally.
6. The magnetic lock accessory tapping device according to claim 1, characterized in that: The slide bar (410) is provided with an avoidance hole (411), and the push assembly (420) comprises: A pushing block (421) is provided through the avoidance hole (411); The sixth driving member (422) is provided on the slide bar (410), and the output end of the sixth driving member (422) is connected to the pushing block (421), wherein: The sixth driving member (422) is used to drive the pushing block (421) to extend out of or retract into the avoidance hole (411); the pushing block (421) extending out of the avoidance hole (411) is used to abut against the workpiece (a).
7. The magnetic lock accessory tapping device according to claim 1, characterized in that: The machine (100) is provided with a first positioning assembly (710), and the first positioning assembly (710) is used to abut against the object to be worked (a) at the fourth position (s41) to stop the object to be worked (a) driven by the pushing assembly (420).
8. The magnetic lock accessory tapping device according to claim 1, characterized in that: A second fixing assembly (620) is provided on the machine platform (100), and the second fixing assembly (620) is used to fix the object to be worked (a) located at the fourth position (s41).
Citation Information
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