A production apparatus for a barking-preventing device lower cover assembly and a method of using the same
The installation of copper pillars and magnet blocks, as well as the dispensing of electret microphones, were achieved through automated production equipment, solving the problem of high manual labor intensity in existing technologies and improving production efficiency.
Patent Information
- Application Number
- CN202311504698.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-13
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2043-11-13
AI Technical Summary
In the current production process of the lower cover assembly of bark suppressors, workers need to personally install copper pillars, magnets, and apply adhesive, resulting in high operational intensity and low production efficiency.
A production equipment for the lower cover assembly of a barking muffler was designed. It uses conveying, moving, rotating, and pressing devices to automatically complete the installation of copper pillars and magnet blocks and the dispensing of electret microphones, reducing manual operation.
This significantly reduced the installation workload for workers and improved the production efficiency of the bark suppressor cover assembly.
Smart Images

Figure CN117509153B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of production equipment for stop barking device lower cover assembly, in particular to a production equipment for stop barking device lower cover assembly and a using method thereof. BACKGROUND
[0002] There are more and more pets in cities, and pets are easy to bark when they are stimulated by external sounds, thereby affecting others. In order to prevent pets from barking frequently or for too long, people have designed stop barking devices. When a pet barks loudly, the stop barking device stimulates the pet to make the pet stop barking.
[0003] The existing stop barking device lower cover assembly is shown in the accompanying drawings. Figures 1-2 As shown in the accompanying drawings, the stop barking device lower cover assembly includes a stop barking device lower cover 1', an electret microphone 2' arranged in front of the inner surface of the stop barking device lower cover 1', a first copper column 3' arranged on the left side of the rear inner surface of the stop barking device lower cover 1', a second copper column 4' arranged on the right side of the rear inner surface of the stop barking device lower cover 1' and having a polarity opposite to that of the first copper column 3', a first magnet block 5' arranged on the left side of the rear inner surface of the stop barking device lower cover 1', and a second magnet block 6' arranged on the right side of the rear inner surface of the stop barking device lower cover 1'. The stop barking device lower cover 1' includes a stop barking device lower cover body 7', a microphone groove 8' formed in front of the inner surface of the stop barking device lower cover body 7' for placing the electret microphone 2', a first copper column groove 9' penetrating the left side of the rear inner surface of the stop barking device lower cover body 7' for placing the first copper column 3', a second copper column groove 10' penetrating the right side of the rear inner surface of the stop barking device lower cover body 7' for placing the second copper column 4', a first magnet block groove 11' formed on the left side of the rear inner surface of the stop barking device lower cover body 7' for placing the first magnet block 5', and a second magnet block groove 12' formed on the right side of the rear inner surface of the stop barking device lower cover body 7' for placing the second magnet block 6'.
[0004] However, in the process of producing the stop barking device lower cover assembly, the staff needs to personally install the first copper column 3', the second copper column 4', the first magnet block 5', and the second magnet block 6' in the first copper column groove 9', the second copper column groove 10', the first magnet block groove 11', and the second magnet block groove 12' of the stop barking device lower cover 1' respectively, and needs to personally carry out dispensing treatment on the electret microphone 2' that has been installed in the stop barking device lower cover 1' to make the electret microphone 2' stable on the stop barking device lower cover 1', which causes the installation intensity of the staff to be too high and greatly reduces the efficiency of producing the stop barking device lower cover assembly. SUMMARY
[0005] The application aims at the defects and deficiencies of the prior art, and provides a production equipment for a barking-preventing device lower cover and a use method thereof.
[0006] To achieve the above object, the application adopts the following technical scheme:
[0007] The utility model provides a production equipment of barker lower cover assembly, including frame, still including the preposition device for bearing the barker lower cover of installing electret microphone and the inside surface of placing down to the frame on, and after bearing the barker lower cover, along the predetermined track of preposition device, barker lower cover is delivered to predetermined position, the preposition device for moving barker lower cover to predetermined position after preposition device along predetermined track delivers barker lower cover to predetermined position to the frame on, and after moving to predetermined position, keep the inside surface of barker lower cover and place down, the first rotating disc for bearing barker lower cover and periodically rotating predetermined angle after preposition device moves barker lower cover to predetermined position to the first rotating drive piece between the frame and the first rotating disc for driving first rotating disc action of the frame on, the first copper column placing device for outputting first copper column and placing first copper column in first copper column groove when preposition device moves barker lower cover to predetermined position and first rotating disc bears barker lower cover to the frame on, the second copper column placing device for outputting second copper column and placing second copper column in second copper column groove after first copper column placing device places first copper column in first copper column groove and after first rotating disc rotates predetermined angle to the frame on, the double pressure device for simultaneously pressing first copper column and second copper column in first copper column groove and second copper column groove after second copper column placing device places second copper column in second copper column groove and after first rotating disc rotates predetermined angle to the frame on, the transfer device for transferring barker lower cover to predetermined position after double pressure device simultaneously presses first copper column and second copper column in first copper column groove and second copper column groove and after first rotating disc rotates predetermined angle to the frame on, and after transferring to predetermined position, make the inside surface of barker lower cover and place up, the second rotating disc for bearing barker lower cover and periodically rotating predetermined angle after transfer device transfers barker lower cover to predetermined position to the second rotating drive piece between the frame and the second rotating disc for driving second rotating disc action, the same pressure device for simultaneously outputting first magnet block and second magnet block and pressing first magnet block and second magnet block in first magnet block groove and second magnet block groove after transfer device transfers barker lower cover to second rotating disc and second rotating disc rotates predetermined angle to the frame on, and when first magnet block and second magnet block are pressed in first magnet block groove and second magnet block groove, press solid electret microphone to barker lower cover, the solidification device for carrying out spot glue treatment to electret microphone place after same pressure device action completes and second rotating disc rotates predetermined angle to the frame on, so that electret microphone is solidified to barker lower cover, the moving device for moving barker lower cover out of frame after solidification device carries out spot glue to electret microphone place and second rotating disc predetermined angle to the frame on.
[0008] Further improvement is that the pre-transport device comprises a pre-transport frame arranged on the frame, a belt drive structure arranged on the pre-transport frame and used for carrying the stopper lower cover on which the electret microphone is mounted and whose inner surface is placed downward and transporting the stopper lower cover to a predetermined position along a predetermined track after the stopper lower cover is carried, a driving motor arranged between the frame and the belt drive structure and used for driving the belt drive structure to act, and two guide plates arranged on the pre-transport frame and used for guiding the stopper lower cover during the transportation of the stopper lower cover to the predetermined position along the predetermined track by the belt drive structure.
[0009] Further improvement is that the pre-transport device comprises a pre-transport frame arranged on the frame, a belt drive structure arranged on the pre-transport frame and used for carrying the stopper lower cover on which the electret microphone is mounted and whose inner surface is placed downward and transporting the stopper lower cover to a predetermined position along a predetermined track after the stopper lower cover is carried, a driving motor arranged between the frame and the belt drive structure and used for driving the belt drive structure to act, and two guide plates arranged on the pre-transport frame and used for guiding the stopper lower cover during the transportation of the stopper lower cover to the predetermined position along the predetermined track by the belt drive structure.
[0010] Further improvement is that the first copper column placing device comprises a first automatic screw feeder arranged on the frame, a first placing frame arranged on the frame, a first sliding table cylinder arranged on the first placing frame, a first telescopic cylinder arranged on the first sliding table cylinder, a first placing plate arranged on the first telescopic cylinder, a first vacuum suction disc arranged on the first placing plate, and a first pneumatic control assembly arranged on the frame and connected with the first vacuum suction disc, and / or the second copper column placing device comprises a second automatic screw feeder arranged on the frame, a second placing frame arranged on the frame, a second sliding table cylinder arranged on the second placing frame, a second telescopic cylinder arranged on the second sliding table cylinder, a second placing plate arranged on the second telescopic cylinder, a second vacuum suction disc arranged on the second placing plate, and a second pneumatic control assembly arranged on the frame and connected with the second vacuum suction disc.
[0011] Further improvement is that the double-pressing device comprises a double-pressing frame arranged on the frame, double-pressing blocks arranged on the double-pressing frame and capable of being lifted to press the first copper column and the second copper column into the first copper column groove and the second copper column groove simultaneously after the second copper column placing device places the second copper column into the second copper column groove and the first rotating disc rotates by a predetermined angle, and a double-pressing telescopic cylinder arranged on the double-pressing frame and used to drive the double-pressing blocks.
[0012] Further improvement is that the first rotating driving member is a first electric rotating table arranged between the frame and the first rotating disc, and the first rotating disc comprises four first bearing seats arranged on the upper surface of the rotating table of the first electric rotating table.
[0013] Further improvement is that the second rotating driving member is a second electric rotating table arranged between the frame and the second rotating disc, and the second rotating disc comprises four second bearing seats arranged on the upper surface of the rotating table of the second electric rotating table.
[0014] Further improvement is that the stabilizing device comprises a stabilizing frame arranged on the frame, a stabilizing plate arranged on the stabilizing frame and capable of being lifted, a stabilizing telescopic cylinder arranged on the stabilizing frame and used to drive the stabilizing plate, a glue gun arranged on the stabilizing plate, a glue barrel arranged on the frame, a glue conveying pump arranged on the glue barrel and connected with the glue barrel at one end and connected with the glue gun at the other end, a falling-preventing plate arranged on the stabilizing frame and used to prevent glue from falling on the lower cover of the microphone after the glue gun performs the glue dispensing process on the electret microphone, and a falling-preventing telescopic motor arranged on the stabilizing frame and used to drive the falling-preventing plate.
[0015] Further improvement is that the same pressure device comprises a same pressure frame arranged on the frame, a linkage block arranged on the same pressure frame in a liftable manner, a same pressure block arranged on the linkage block for pressing the first magnet block and the second magnet block into the first magnet block groove and the second magnet block groove, an extension rod arranged on the linkage block for pressing the electret microphone to the stopper lower cover when the same pressure block presses the first magnet block and the second magnet block into the first magnet block groove and the second magnet block groove, a connecting seat arranged on the same pressure frame, an output seat arranged on the connecting seat, an output groove formed between the output seat and the connecting seat, a containing seat arranged on the output seat in a detachable manner, a first channel arranged in the containing seat in a penetrating manner and arranged in communication with the output groove for placing a plurality of first magnet blocks, a second channel arranged in the containing seat in a penetrating manner and arranged in communication with the output groove for placing a plurality of second magnet blocks, an output plate arranged on the same pressure frame in a slidable manner and located in the output groove for simultaneously outputting the first magnet block and the second magnet block, and an output extension motor arranged on the same pressure frame for driving the output plate to act, and the same pressure block comprises a same pressure block main body arranged on the linkage block, and a first pressure block and a second pressure block arranged on the same pressure block main body for being capable of respectively attracting the first magnet block and the second magnet block when the output plate simultaneously outputs the first magnet block and the second magnet block and being capable of respectively separating from the first magnet block and the second magnet block when the first magnet block and the second magnet block are respectively pressed into the first magnet block groove and the second magnet block groove.
[0016] The application also provides a method for using the production equipment of the barking-preventing device lower cover assembly. The conveying device carries the barking-preventing device lower cover with the electret microphone and the inner surface of the barking-preventing device lower cover placed downward, and conveys the barking-preventing device lower cover along a predetermined track to a predetermined position after carrying the barking-preventing device lower cover. The moving device moves the barking-preventing device lower cover to the predetermined position after the conveying device conveys the barking-preventing device lower cover along the predetermined track to the predetermined position, and keeps the inner surface of the barking-preventing device lower cover placed downward after moving to the predetermined position. The first rotating disc carries the barking-preventing device lower cover and rotates periodically by a predetermined angle after the moving device moves the barking-preventing device lower cover to the predetermined position. The first rotating drive member is used to drive the first rotating disc. The first copper column placing device outputs the first copper column and places the first copper column in the first copper column groove when the moving device moves the barking-preventing device lower cover to the predetermined position and the first rotating disc carries the barking-preventing device lower cover. The second copper column placing device outputs the second copper column and places the second copper column in the second copper column groove after the first copper column placing device places the first copper column in the first copper column groove and the first rotating disc rotates by the predetermined angle. The double-pressing device simultaneously presses the first copper column and the second copper column into the first copper column groove and the second copper column groove after the second copper column placing device places the second copper column in the second copper column groove and the first rotating disc rotates by the predetermined angle. The transferring device transfers the barking-preventing device lower cover to the predetermined position after the double-pressing device simultaneously presses the first copper column and the second copper column into the first copper column groove and the second copper column groove and the first rotating disc rotates by the predetermined angle, and makes the inner surface of the barking-preventing device lower cover placed upward after transferring to the predetermined position. The second rotating disc carries the barking-preventing device lower cover and rotates periodically by a predetermined angle after the transferring device transfers the barking-preventing device lower cover to the second rotating disc. The second rotating drive member is used to drive the second rotating disc. The same-pressing device simultaneously outputs the first magnet block and the second magnet block and presses the first magnet block and the second magnet block into the first magnet block groove and the second magnet block groove after the transferring device transfers the barking-preventing device lower cover to the second rotating disc and the second rotating disc rotates by the predetermined angle, and presses the electret microphone to the barking-preventing device lower cover when the first magnet block and the second magnet block are pressed into the first magnet block groove and the second magnet block groove. The stabilizing device performs dispensing treatment on the electret microphone to make the electret microphone stable on the barking-preventing device lower cover after the same-pressing device completes the action and the second rotating disc rotates by the predetermined angle. The moving device moves the barking-preventing device lower cover out of the rack after the stabilizing device completes the dispensing treatment on the electret microphone and the second rotating disc rotates by the predetermined angle.
[0017] The above technical scheme has the following beneficial effects. In the process of producing the barking-preventing device lower cover assembly, the workers do not need to personally install the first copper column, the second copper column, the first magnet block and the second magnet block into the first copper column groove, the second copper column groove, the first magnet block groove and the second magnet block groove of the barking-preventing device lower cover respectively, and do not need to personally perform dispensing treatment on the electret microphone installed on the barking-preventing device lower cover. The installation intensity of the workers is greatly reduced, and the production efficiency of the barking-preventing device lower cover assembly is greatly improved. BRIEF DESCRIPTION OF DRAWINGS
[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the accompanying drawings needed to be used in the embodiments or prior art description will be briefly introduced as follows. Obviously, the accompanying drawings in the following description only only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor.
[0019] Figure 1 is a structural schematic diagram of the existing barking stopper lower cover assembly;
[0020] Figure 2 is a structural schematic diagram of the barking stopper lower cover in the existing barking stopper lower cover assembly;
[0021] Figure 3 is a structural schematic diagram of the present application;
[0022] Figure 4 is a structural schematic diagram of the corresponding Figure 3 hidden protective cover, inlet and outlet slot;
[0023] Figure 5 is a structural schematic diagram of the corresponding Figure 4 another view;
[0024] Figure 6 is a structural schematic diagram of the corresponding Figure 4 A part enlarged view;
[0025] Figure 7 is a structural schematic diagram of the corresponding Figure 5 B part enlarged view;
[0026] Figure 8 is a structural schematic diagram of the transfer device in the present application;
[0027] Figure 9 is a structural schematic diagram of the corresponding Figure 5 C part enlarged view;
[0028] Figure 10 is a structural schematic diagram of the double-pressure device in the present application;
[0029] Figure 11 is a structural schematic diagram of the stabilizing device (hidden part components) in the present application;
[0030] Figure 12 is a structural schematic diagram of the same-pressure device (hidden part components) in the present application;
[0031] Figure 13 is a structural schematic diagram of the accommodating seat, first channel and second channel in the present application;
[0032] Figure 14 is a structural schematic diagram of the same-pressure block in the present application.
[0033] The reference signs are as follows: stopper lower cover 1', electret microphone 2', first copper column 3', second copper column 4', first magnet block 5', second magnet block 6', stopper lower cover body 7', microphone groove 8', first copper column groove 9', second copper column groove 10', first magnet block groove 11', second magnet block groove 12', frame 1, first rotating driving part 2, second rotating driving part 3, protective cover 4, in-out groove 5, conveying frame 6, belt driving structure 7, driving motor 8, guide plate 9, conveying sliding table cylinder 10, conveying telescopic cylinder 11, conveying plate 12, conveying vacuum chuck 13, conveying pneumatic control assembly (not shown in the figure), moving frame 15, moving sliding table cylinder 16, moving telescopic cylinder 17, moving plate 18, moving vacuum chuck 19, moving pneumatic control assembly (not shown in the figure), transfer frame 20, transfer telescopic cylinder 21, rotating motor 22, rotating frame 23, pneumatic clamping jaw 24, first automatic screw feeding machine 25, first placing frame 26, first sliding table cylinder 27, first telescopic cylinder 28, first placing plate 29, first vacuum chuck 30, first pneumatic control assembly (not shown in the figure), second automatic screw feeding machine 31, second placing frame 32, second sliding table cylinder 33, second telescopic cylinder 34, second placing plate 35, second vacuum chuck 36, second pneumatic control assembly (not shown in the figure), double-pressing frame 37, double-pressing block 38, double-pressing telescopic cylinder 39, first bearing seat 40, second bearing seat 41, stabilizing frame 42, stabilizing plate 43, dispensing gun 44, glue barrel (not shown in the figure), glue conveying pump (not shown in the figure), anti-falling plate 45, anti-falling telescopic motor 46, same-pressing frame 47, linkage block 48, same-pressing block 49, telescopic rod 50, connecting seat 51, output seat 52, output groove 53, containing seat 54, first channel 55, second channel 56, output plate 57, output telescopic motor 58, stabilizing telescopic cylinder 59, same-pressing block body 60, first pressing block 61, second pressing block 62. DETAILED DESCRIPTION
[0034] The application will be further described in conjunction with the drawings and specific embodiments.
[0035] Reference Figures 1 to 14 The technical solution adopted in the specific embodiments is as follows:
[0036] The utility model provides a production equipment of barker lower cover assembly, including frame 1, still including the device for bearing installation is arranged in the frame 1 for the barker lower cover 1' of electret microphone 2' and the inner surface is placed downward and is conveyed to the predetermined position along the predetermined track after bearing the barker lower cover 1', the device for moving the barker lower cover 1' to the predetermined position after conveying device and keeping the inner surface of barker lower cover 1' is placed downward after moving to the predetermined position is arranged in the frame 1, the first rotating disc for bearing barker lower cover 1' and periodically rotating a predetermined angle after moving device the barker lower cover 1' to the predetermined position is rotatably arranged in the frame 1, the first rotating drive 2 for driving the first rotating disc action is arranged between the frame 1 and the first rotating disc, the first copper column placement device for outputting the first copper column 3' and placing the first copper column 3' in the first copper column groove 9' when bearing the barker lower cover 1' is arranged on the frame 1 after moving device the barker lower cover 1' to the predetermined position, the second copper column placement device for outputting the second copper column 4' and placing the second copper column 4' in the second copper column groove 10' after the first copper column placement device places the first copper column 3' in the first copper column groove 9' and rotates a predetermined angle after the first rotating disc, the double-press device for simultaneously pressing the first copper column 3' and the second copper column 4' in the first copper column groove 9' and the second copper column groove 10' after the second copper column placement device places the second copper column 4' in the second copper column groove 10' and rotates a predetermined angle after the first rotating disc is arranged on the frame 1, the transfer device for transferring the barker lower cover 1' to the predetermined position after the double-press device simultaneously presses the first copper column 3' and the second copper column 4' in the first copper column groove 9' and the second copper column groove 10' and the inner surface of barker lower cover 1' is placed upward after transferring to the predetermined position and makes the barker lower cover 1', the second rotating disc for bearing barker lower cover 1' and periodically rotating a predetermined angle after transferring device the barker lower cover 1' to the predetermined position is rotatably arranged in the frame 1, the second rotating drive 3 for driving the second rotating disc action is arranged between the frame 1 and the second rotating disc, the same-press device for simultaneously outputting the first magnet block 5' and the second magnet block 6' and pressing the first magnet block 5' and the second magnet block 6' in the first magnet block groove 11' and the second magnet block groove 12' and pressing electret microphone 2' in barker lower cover 1' when the first magnet block 5' and the second magnet block 6' are pressed in the first magnet block groove 11' and the second magnet block groove 12' is arranged on the frame 1 after transferring device the barker lower cover 1' to the second rotating disc and the second rotating disc rotates a predetermined angle,A fixing device for dispensing glue on the electret microphone 2' after the same pressure device is operated and the second rotating disc rotates a predetermined angle to make the electret microphone 2' fixed on the lower cover 1' of the microphone, a moving device for moving the lower cover 1' out of the rack 1 after the fixing device dispenses glue on the electret microphone 2' and the second rotating disc rotates a predetermined angle, and a protective cover 4 for protection, which is arranged on the rack 1 and outside the first rotating disc, the first rotating driving member 2, the first copper column placing device, the second copper column placing device, the double pressure device, the transferring device, the second rotating disc, the second rotating driving member 3, the same pressure device and the fixing device, the feeding device is arranged outside the protective cover 4, and an in-out slot 5 for the lower cover 1' is formed between the feeding device and the moving device on the protective cover 4.
[0037] The feeding device comprises a feeding rack 6 arranged on the rack 1, a belt driving structure 7 arranged on the feeding rack 6 and used for bearing the lower cover 1' of the microphone with the electret microphone 2' mounted thereon and the inner surface placed downward and conveying the lower cover 1' along a predetermined track to a predetermined position after bearing the lower cover 1', a driving motor 8 arranged between the rack 1 and the belt driving structure 7 and used for driving the belt driving structure 7 to operate, and two guide plates 9 arranged on the feeding rack 6 and used for guiding the lower cover 1' during conveying the lower cover 1' along a predetermined track to a predetermined position by the belt driving structure 7.
[0038] The moving device comprises a moving frame 15 arranged on the frame 1, a moving slide cylinder 16 arranged on the moving frame 15, a moving telescopic cylinder 17 arranged on the moving slide cylinder 16, a moving plate 18 arranged on the moving telescopic cylinder 17, at least one moving vacuum chuck 19 arranged on the moving plate 18, and a moving pneumatic control assembly (not shown in the figure) arranged on the frame 1 and connected with the at least one moving vacuum chuck 19. The transfer device comprises a transfer frame 20 arranged on the frame 1, a transfer telescopic cylinder 21 arranged on the transfer frame 20, a rotating motor 22 arranged on the transfer telescopic cylinder 21, a rotating frame 23 arranged on the rotating motor 22, and a pneumatic gripper 24 arranged on the rotating frame 23.
[0039] The first copper column placing device comprises a first automatic screw feeder 25 arranged on the frame 1, a first placing frame 26 arranged on the frame 1, a first slide cylinder 27 arranged on the first placing frame 26, a first telescopic cylinder 28 arranged on the first slide cylinder 27, a first placing plate 29 arranged on the first telescopic cylinder 28, a first vacuum chuck 30 arranged on the first placing plate 29, and a first pneumatic control assembly (not shown in the figure) arranged on the frame 1 and connected with the first vacuum chuck 30. The second copper column placing device comprises a second automatic screw feeder 31 arranged on the frame 1, a second placing frame 32 arranged on the frame 1, a second slide cylinder 33 arranged on the second placing frame 32, a second telescopic cylinder 34 arranged on the second slide cylinder 33, a second placing plate 35 arranged on the second telescopic cylinder 34, a second vacuum chuck 36 arranged on the second placing plate 35, and a second pneumatic control assembly (not shown in the figure) arranged on the frame 1 and connected with the second vacuum chuck 36.
[0040] The double-pressing device comprises a double-pressing frame 37 arranged on the frame 1, double-pressing blocks 38 arranged on the double-pressing frame 37 and capable of being lifted, and a double-pressing telescopic cylinder 39 arranged on the double-pressing frame 37 and used for driving the double-pressing blocks 38 to act.
[0041] The first rotating driving member 2 is a first electric rotating table arranged between the frame 1 and the first rotating disc, the first rotating disc comprises four first bearing seats 40 arranged on the upper surface of the rotating table of the first electric rotating table, and the four first bearing seats 40 are equidistantly arranged on the rotating table of the first electric rotating table.
[0042] The second rotating driving member 3 is a second electric rotating table arranged between the frame 1 and the second rotating disc, the second rotating disc comprises four second bearing seats 41 arranged on the upper surface of the rotating table of the second electric rotating table, and the four second bearing seats 41 are equidistantly arranged on the rotating table of the second electric rotating table.
[0043] The stabilizing device comprises a stabilizing frame 42 arranged on the frame 1, a stabilizing plate 43 arranged on the stabilizing frame 42 in a liftable manner, a stabilizing telescopic cylinder 59 arranged on the stabilizing frame 42 and used for driving the stabilizing plate 43 to act, a dispensing gun 44 arranged on the stabilizing plate 43, a glue barrel (not shown in the figure) arranged on the frame 1, a glue conveying pump (not shown in the figure) arranged on the glue barrel (not shown in the figure) and connected with the glue barrel (not shown in the figure) at one end and connected with the dispensing gun 44 at the other end, a falling prevention plate 45 arranged on the stabilizing frame 42 and used for preventing glue from falling on the lower cover 1' of the microphone after the dispensing gun 44 performs dispensing treatment on the electret microphone 2', and a falling prevention telescopic motor 46 arranged on the stabilizing frame 42 and used for driving the falling prevention plate 45 to act.
[0044] The same pressure device comprises a same pressure frame 47 arranged on the frame 1, a linkage block 48 arranged on the same pressure frame 47 in a liftable manner, a same pressure block 49 arranged on the linkage block 48 and used for pressing the first magnet block 5' and the second magnet block 6' into the first magnet block groove 11' and the second magnet block groove 12', an extension rod 50 arranged on the linkage block 48 and used for pressing the electret microphone 2' to the stopper lower cover 1' when the same pressure block 49 presses the first magnet block 5' and the second magnet block 6' into the first magnet block groove 11' and the second magnet block groove 12', a connecting seat 51 arranged on the same pressure frame 47, an output seat 52 arranged on the connecting seat 51, an output groove 53 formed between the output seat 52 and the connecting seat 51, a containing seat 54 arranged on the output seat 52 in a detachable manner, a first channel 55 arranged in the containing seat 54 and communicated with the output groove 53 and used for placing a plurality of first magnet blocks 5', a second channel 56 arranged in the containing seat 54 and communicated with the output groove 53 and used for placing a plurality of second magnet blocks 6', an output plate 57 arranged on the same pressure frame 47 and located in the output groove 53 and used for simultaneously outputting the first magnet block 5' and the second magnet block 6', an output extension motor 58 arranged on the same pressure frame 47 and used for driving the output plate 57 to act, and the same pressure block 49 comprises a same pressure block body 60 arranged on the linkage block 48, a first pressing block 61 and a second pressing block 62 arranged on the same pressure block body 60 and used for respectively attracting the first magnet block 5' and the second magnet block 6' when the output plate 57 simultaneously outputs the first magnet block 5' and the second magnet block 6' and respectively separating from the first magnet block 5' and the second magnet block 6' when the first magnet block 5' and the second magnet block 6' are respectively pressed into the first magnet block groove 11' and the second magnet block groove 12'.
[0045] The working principle of the present application is as follows: the conveying device bears the stopper lower cover 1' with the electret microphone 2' placed with the inner surface downward and conveys the stopper lower cover along a predetermined track to a predetermined position after bearing the stopper lower cover 1', the moving device moves the stopper lower cover 1' to the predetermined position after the conveying device conveys the stopper lower cover 1' along the predetermined track to the predetermined position and keeps the inner surface of the stopper lower cover 1' placed downward after moving to the predetermined position, the first rotating disc bears the stopper lower cover 1' and rotates periodically by a predetermined angle after the moving device moves the stopper lower cover 1' to the predetermined position, the first rotating driving member 2 is used to drive the first rotating disc to act, the first copper column placing device outputs the first copper column 3' and places the first copper column 3' in the first copper column groove 9' when the moving device moves the stopper lower cover 1' to the predetermined position and the first rotating disc bears the stopper lower cover 1', the second copper column placing device outputs the second copper column 4' and places the second copper column 4' in the second copper column groove 10' after the first copper column placing device places the first copper column 3' in the first copper column groove 9' and the first rotating disc rotates by the predetermined angle, the double-pressing device simultaneously presses the first copper column 3' and the second copper column 4' in the first copper column groove 9' and the second copper column groove 10' after the second copper column placing device places the second copper column 4' in the second copper column groove 10' and the first rotating disc rotates by the predetermined angle, the transfer device transfers the stopper lower cover 1' to the predetermined position and makes the inner surface of the stopper lower cover 1' placed upward after the double-pressing device simultaneously presses the first copper column 3' and the second copper column 4' in the first copper column groove 9' and the second copper column groove 10' and the first rotating disc rotates by the predetermined angle, the second rotating disc bears the stopper lower cover 1' and rotates periodically by a predetermined angle after the transfer device transfers the stopper lower cover 1' to the second rotating disc, the second rotating driving member 3 is used to drive the second rotating disc to act, the same-pressing device simultaneously outputs the first magnet block 5' and the second magnet block 6' and presses the first magnet block 5' and the second magnet block 6' in the first magnet block groove 11' and the second magnet block groove 12' after the transfer device transfers the stopper lower cover 1' to the second rotating disc and the second rotating disc rotates by the predetermined angle and presses the electret microphone 2' to the stopper lower cover 1' when the first magnet block 5' and the second magnet block 6' are pressed in the first magnet block groove 11' and the second magnet block groove 12', the stabilizing device performs the dispensing treatment at the electret microphone 2' to make the electret microphone 2' stable on the stopper lower cover 1' after the same-pressing device acts and the second rotating disc rotates by the predetermined angle, the moving device moves the stopper lower cover 1' out of the rack 1 after the dispensing at the electret microphone 2' is completed and the second rotating disc rotates by the predetermined angle.
[0046] The above shows and describes the basic principles and main features of the present application and its advantages, those skilled in the art should understand that the present application is not limited to the above-mentioned embodiments, the above-mentioned embodiments and descriptions are only to illustrate the principles of the present application, and various changes and improvements can be made without departing from the spirit and scope of the present application, and these changes and improvements all fall within the scope of the claimed present application, the scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A production equipment for a bark suppressor cover assembly, comprising a frame, characterized in that: It also includes a conveying device mounted on the frame for carrying a barking muffler cover with an electret microphone mounted on it and with its inner surface facing down, and for conveying the barking muffler cover along a predetermined trajectory to a predetermined position after carrying the barking muffler cover; a moving device mounted on the frame for moving the barking muffler cover to the predetermined position after the conveying device has conveyed it along the predetermined trajectory to the predetermined position, and for keeping the inner surface of the barking muffler cover facing down after it has been moved to the predetermined position; a first rotating disk rotatably mounted on the frame for carrying the barking muffler cover after the moving device has moved it to the predetermined position and for periodically rotating it by a predetermined angle; and a drive disk between the frame and the first rotating disk. The mechanism comprises: a first rotating drive unit; a first copper pillar placement device mounted on the frame for outputting a first copper pillar and placing it in a first copper pillar slot when the pre-moving device moves the lower cover of the bark suppressor to a predetermined position and the first rotating disk carries the lower cover of the bark suppressor; a second copper pillar placement device mounted on the frame for outputting a second copper pillar and placing it in a second copper pillar slot after the first copper pillar placement device places the first copper pillar in the first copper pillar slot and the first rotating disk rotates a predetermined angle; and a second copper pillar placement device mounted on the frame for placing the second copper pillar in the second copper pillar slot and simultaneously pressing the first and second copper pillars into the first and second copper pillar slots after the first rotating disk rotates a predetermined angle. The system comprises: a double-pressure device within the copper column groove; a transfer device mounted on the frame for simultaneously pressing the first and second copper columns into the first and second copper column grooves, and after the first rotating disk rotates a predetermined angle, transferring the barking stopper's lower cover to a predetermined position, with the inner surface of the lower cover facing upwards after being transferred to the predetermined position; a second rotating disk rotatably mounted on the frame for carrying the lower cover and periodically rotating it by a predetermined angle after the transfer device has transferred it to the predetermined position; a second rotation drive component positioned between the frame and the second rotating disk for driving the second rotating disk; and a device mounted on the frame for transferring the lower cover of the barking stopper to the second rotating disk via the transfer device. Furthermore, after the second rotating disk rotates to a predetermined angle, it simultaneously outputs the first and second magnet blocks and presses them into the first and second magnet block slots. When the first and second magnet blocks are pressed into the first and second magnet block slots, the electret microphone is pressed firmly onto the lower cover of the barking stopper. A pressing device is provided on the frame for applying adhesive to the electret microphone after the pressing device has completed its operation and the second rotating disk has rotated to a predetermined angle, so that the electret microphone is firmly attached to the lower cover of the barking stopper. A moving device is provided on the frame for moving the lower cover of the barking stopper out of the frame after the adhesive application to the electret microphone by the stabilizing device has been completed and the second rotating disk has rotated to a predetermined angle.
2. The production equipment for a bark suppressor lower cover assembly according to claim 1, characterized in that: The pre-transmission device includes a pre-transmission frame mounted on the frame, a belt drive structure mounted on the pre-transmission frame for carrying a barking stop cover with an electret microphone mounted on it and with its inner surface facing down, and for conveying the barking stop cover along a predetermined trajectory to a predetermined position after carrying the barking stop cover, a drive motor mounted between the frame and the belt drive structure for driving the belt drive structure, and two guide plates mounted on the pre-transmission frame for guiding the barking stop cover during the conveying of the barking stop cover along the predetermined trajectory to the predetermined position by the belt drive structure.
3. The production equipment for a bark suppressor lower cover assembly according to claim 1, characterized in that: The pre-transfer device includes a pre-transfer frame mounted on the frame, a pre-transfer slide cylinder mounted on the pre-transfer frame, a pre-transfer telescopic cylinder mounted on the pre-transfer slide cylinder, a pre-transfer plate mounted on the pre-transfer telescopic cylinder, at least one pre-transfer vacuum suction cup mounted on the pre-transfer plate, a pre-transfer pneumatic control assembly mounted on the frame and connected to at least one pre-transfer vacuum suction cup, and / or, the transfer device includes a transfer frame mounted on the frame, a transfer slide cylinder mounted on the transfer frame, and a pre-transfer pneumatic control assembly mounted on the frame and connected to at least one pre-transfer vacuum suction cup. The transfer device includes a transfer telescopic cylinder on a transfer slide cylinder, a transfer plate on the transfer telescopic cylinder, at least one transfer vacuum suction cup on the transfer plate, a transfer pneumatic control assembly on the frame connected to at least one of the transfer vacuum suction cups, and / or, the transfer device includes a transfer frame on the frame, a transfer telescopic cylinder on the transfer frame, a rotary motor on the transfer telescopic cylinder, a rotary frame on the rotary motor, and pneumatic grippers on the rotary frame.
4. The production equipment for a bark suppressor lower cover assembly according to claim 1, characterized in that: The first copper pillar placement device includes a first automatic screw feeder mounted on the frame, a first placement frame mounted on the frame, a first slide cylinder mounted on the first placement frame, a first telescopic cylinder mounted on the first slide cylinder, a first placement plate mounted on the first telescopic cylinder, a first vacuum suction cup mounted on the first placement plate, and a first pneumatic control component mounted on the frame and connected to the first vacuum suction cup; and / or, the second copper pillar placement device includes a second automatic screw feeder mounted on the frame, a second placement frame mounted on the frame, a second slide cylinder mounted on the second placement frame, a second telescopic cylinder mounted on the second slide cylinder, a second placement plate mounted on the second telescopic cylinder, a second vacuum suction cup mounted on the second placement plate, and a second pneumatic control component mounted on the frame and connected to the second vacuum suction cup.
5. The production equipment for a bark suppressor lower cover assembly according to claim 1, characterized in that: The dual-pressure device includes a dual-pressure frame mounted on the frame, a dual-pressure block mounted on the dual-pressure frame for placing the second copper column in the second copper column groove using the second copper column placement device and simultaneously pressing the first copper column and the second copper column into the first copper column groove and the second copper column groove after the first rotating disk rotates a predetermined angle, and a dual-pressure telescopic cylinder mounted on the dual-pressure frame for driving the action of the dual-pressure block.
6. The production equipment for a bark suppressor lower cover assembly according to claim 1, characterized in that: The first rotation drive is a first electric rotary table disposed between the frame and the first rotary disk. The first rotary table includes four first bearing seats disposed on the upper surface of the rotary table. The four first bearing seats are equidistantly disposed on the rotary table.
7. The production equipment for a bark suppressor lower cover assembly according to claim 1, characterized in that: The second rotation drive is a second electric rotary table disposed between the frame and the second rotary disk. The second rotary table includes four second bearing seats disposed on the upper surface of the rotary table. The four second bearing seats are equidistantly disposed on the rotary table of the second electric rotary table.
8. The production equipment for a bark suppressor lower cover assembly according to claim 1, characterized in that: The stabilizing device includes a stabilizing frame mounted on the frame, a stabilizing plate mounted on the stabilizing frame that can be raised and lowered, a stabilizing telescopic cylinder mounted on the stabilizing frame for driving the stabilizing plate, a dispensing gun mounted on the stabilizing plate, a glue tank mounted on the frame, a glue pump mounted on the glue tank with one end connected to the glue tank and the other end connected to the dispensing gun, an anti-fall plate mounted on the stabilizing frame for preventing glue from falling onto the lower cover of the barking device after the dispensing gun has applied glue to the electret microphone, and an anti-fall telescopic motor mounted on the stabilizing frame for driving the anti-fall plate.
9. The production equipment for a bark suppressor lower cover assembly according to claim 1, characterized in that: The pressure-equalizing device includes a pressure-equalizing frame mounted on the frame, a linkage block movably mounted on the pressure-equalizing frame, a pressure-equalizing block mounted on the linkage block for pressing a first magnet block and a second magnet block into a first magnet block slot and a second magnet block slot, a telescopic rod mounted on the linkage block for pressing an electret microphone to the lower cover of the barking suppressor when the pressure-equalizing block presses the first magnet block and the second magnet block into the first magnet block slot and the second magnet block slot, a connecting seat mounted on the pressure-equalizing frame, an output seat mounted on the connecting seat, an output slot formed between the output seat and the connecting seat, a receiving seat detachably mounted on the output seat, and a receiving seat penetrating through the receiving seat and communicating with the output slot for placing a plurality of first magnet blocks. A first channel, a second channel formed in the receiving seat and communicating with the output slot for placing a plurality of second magnet blocks, an output plate slidably disposed on the pressure frame and located in the output slot for simultaneously outputting first and second magnet blocks, and an output telescopic motor disposed on the pressure frame for driving the output plate to move. The pressure block includes a pressure block body disposed on the linkage block, a first pressing block and a second pressing block disposed on the pressure block body for attracting the first and second magnet blocks respectively when the output plate simultaneously outputs the first and second magnet blocks, and for being separable from the first and second magnet blocks respectively when the first and second magnet blocks are respectively pressed into the first and second magnet block slots.
10. A method of using a production equipment for a bark suppressor lower cover assembly, based on the production equipment for a bark suppressor lower cover assembly according to any one of claims 1 to 9, characterized in that: The pre-feeding device carries the lower cover of the barking mute, which is fitted with an electret microphone and has its inner surface facing downwards. After carrying the lower cover, it transports it along a predetermined trajectory to a predetermined position. The pre-moving device then moves the lower cover to the predetermined position after the pre-feeding device has transported it along the predetermined trajectory, keeping the inner surface of the lower cover facing downwards. The first rotating disk carries the lower cover after the pre-moving device has moved it to the predetermined position and rotates periodically by a predetermined angle. The first rotation drive is used to drive the first rotating disk. The first copper pillar is placed... The placement device, when the pre-moving device moves the lower cover of the bark suppressor to a predetermined position and the first rotating disk carries the lower cover, outputs the first copper pillar and places it into the first copper pillar slot. The second copper pillar placement device, after placing the first copper pillar into the first copper pillar slot and rotating the first rotating disk by a predetermined angle, outputs the second copper pillar and places it into the second copper pillar slot. The dual-pressing device, after placing the second copper pillar into the second copper pillar slot and rotating the first rotating disk by a predetermined angle, simultaneously presses the first and second copper pillars into the first copper pillar slot and the second copper pillar slot, respectively. Inside the tank, the transfer device simultaneously presses the first and second copper pillars into the first and second copper pillar slots using the dual-pressure device. After the first rotating disk rotates a predetermined angle, it transfers the lower cover of the bark suppressor to a predetermined position, with the inner surface of the lower cover facing upwards. The second rotating disk, after the transfer device transfers the lower cover to the predetermined position, carries the lower cover and periodically rotates a predetermined angle. The second rotation drive is used to drive the second rotating disk. Simultaneously, the pressure device, after the transfer device transfers the lower cover to the second rotating disk and the second rotating disk rotates a predetermined angle, simultaneously... The first and second magnet blocks are pressed into the first and second magnet block slots. While the first and second magnet blocks are pressed into the first and second magnet block slots, the electret microphone is pressed and fixed to the lower cover of the barking stopper. After the pressing device completes its operation and the second rotating disk rotates to a predetermined angle, the stabilizing device applies adhesive to the electret microphone to make the electret microphone stable on the lower cover of the barking stopper. After the stabilizing device completes the adhesive application to the electret microphone and the second rotating disk rotates to a predetermined angle, the moving device moves the lower cover of the barking stopper out of the frame.
Citation Information
Patent Citations
Automated diagnostic analyzer and method
CA2737963A1
Automatic assembling device for downlight torsion springs
CN110788603A