Silicone sealant filling equipment
By designing a silicone sealant filling equipment that combines the glue filling mechanism and the vibration mechanism, the problems of overflow and low production efficiency of silicone sealant during the filling process are solved, and quantitative filling and production efficiency are improved.
Patent Information
- Application Number
- CN202510436435.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-09
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2045-04-09
AI Technical Summary
Silicone sealant is prone to overflow during filling, resulting in reduced production efficiency and difficult to achieve quantitative filling.
A silicone sealant filling equipment is designed, which uses a combination of glue filling mechanism and vibration mechanism to push the silicone sealant into the pressure plate and cause vibration to ensure that the silicone sealant flows and fills regularly.
Quantitative filling of silicone sealant is realized, avoiding spillage and accumulation, and improving filling production efficiency.
Smart Images

Figure CN120057833A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of silicone sealant filling, and specifically relates to a silicone sealant filling device. Background Art
[0002] Silicone sealant is a high-performance silicone sealing material, which is widely used in the fields of construction, industry, automobiles, electronics, etc. It is mainly used for functions such as sealing, bonding, waterproofing, and moisture-proofing. It is a paste-like sealant with excellent weather resistance and bonding performance. It is usually filled in plastic bottles or iron drums for convenient large-scale production and transportation.
[0003] Silicone sealant has a viscous property. During the filling process, the silicone sealant cannot quickly level in the tank, so it is easy to cause the silicone sealant to overflow from the tank during the filling process. If the problem of the sealant overflowing from the tank is avoided by changing the filling speed, the efficiency of the entire filling production line will be reduced. For this reason, we propose a silicone sealant filling device. Summary of the Invention
[0004] The present invention adopts the following technical solutions to solve the above technical problems: A silicone sealant filling device is provided, including a bottom plate. Two groups of symmetrically arranged first support frames and two groups of symmetrically arranged second support frames are fixedly connected to the upper end of the bottom plate. Two groups of first rollers are rotatably connected between the two groups of first support frames. Two groups of second rollers are rotatably connected between the two groups of second support frames. A first conveyor belt is rotatably connected to the outside of the two groups of first rollers and second rollers. Above the first conveyor belt, there is a glue filling mechanism for filling the tank. Inside the first conveyor belt, there is a vibration mechanism for knocking the tank. A plurality of connecting grooves one are formed on the surface of the first conveyor belt. Two connecting grooves two are formed inside the connecting groove one. A plurality of support blocks are fixedly connected to the surface of the first conveyor belt. A side plate is fixedly connected between the first support frame and the second support frame, and the side plate is located on both sides of the first conveyor belt.
[0005] Preferably, the glue filling mechanism includes a mounting plate. The lower end of the mounting plate is fixedly connected to the side plate. A connecting frame is fixedly connected to one side of the mounting plate. A motor is installed inside the connecting frame. The output end of the motor is fixedly connected to a first turntable. A plurality of first tooth blocks are fixedly connected to the outside of the first turntable. The first tooth blocks are engaged with a first gear. The other side of the first gear is fixedly connected to a first rotating rod. One end of the first rotating rod passes through the mounting plate and is fixedly connected to a rotating block. The first rotating rod is rotatably connected to the mounting plate.
[0006] Preferably, two groups of lever rods are fixedly connected to the outer side of the rotating block. The rear ends of the lever rods are in contact with the supporting blocks. On the other side of the first turntable, a second turntable is fixedly connected. On the outer side of the second turntable, multiple groups of second tooth blocks and third tooth blocks are fixedly connected. The second tooth blocks and the third tooth blocks jointly mesh with a second gear. On the other side of the second gear, a damping rotating shaft is fixedly connected. One end of the damping rotating shaft passes through the mounting plate and is fixedly connected to a first connecting rod. The damping rotating shaft is rotatably connected to the inner side of the mounting plate.
[0007] Preferably, one end of the first connecting rod is fixedly connected to a fixing block. On the other side of the fixing block, a second rotating rod is fixedly connected. On the outer side of the second rotating rod, a second connecting rod is rotatably connected. One end of the second connecting rod is fixedly connected to a rotating cylinder. Inside the rotating cylinder, a mounting rod is rotatably connected. Both ends of the mounting rod are fixedly connected to a first connecting plate. The lower ends of the two first connecting plates are jointly fixedly connected to a second connecting plate. The lower end of the second connecting plate is fixedly connected to a baffle plate. The lower end of the baffle plate is fixedly connected to a pressing plate.
[0008] Preferably, a glue injection box is movably connected to the outer side of the pressing plate. An inlet glue hole is opened at the rear end of the glue injection box. An outlet glue hole is opened at the lower end of the glue injection box. A first connecting cylinder is fixedly connected to the lower end of the glue injection box. The outlet glue hole communicates with the first connecting cylinder. Inside the first connecting cylinder, a second connecting cylinder is slidably connected. Inside the second connecting cylinder, a third connecting cylinder is slidably connected. Two supporting ears are fixedly connected to the outer side of the third connecting cylinder. The lower ends of the two supporting ears are both fixedly connected to an L-shaped rod.
[0009] Preferably, extension rods are fixedly connected to the upper ends of the two supporting ears. The upper ends of the extension rods are fixedly connected to a third connecting plate. The third connecting plate is fixedly connected to the second connecting plate. A fixing plate is fixedly connected to the rear end of the glue injection box. A glue storage tank is fixedly connected to the rear end of the fixing plate. A connecting pipe is installed on the outer side of the glue storage tank. One end of the connecting pipe extends to the inside of the inlet glue hole. A third supporting frame is arranged at the lower end of the glue storage tank. The lower end of the third supporting frame is fixedly connected to the bottom plate.
[0010] Preferably, the vibration mechanism includes two fixing rods. The lower ends of the fixing rods are fixedly connected to the bottom plate. The upper ends of the fixing rods are fixedly connected to the side plates. A moving plate is jointly movably connected to the outer sides of the two fixing rods. A first spring is jointly movably connected between the moving plate and the bottom plate. The first spring is wound around the outer sides of the fixing rods. The front ends of the two second supporting frames are jointly fixedly connected to a first supporting plate. The first supporting plate is located at the lower end of the side plate. Two fourth connecting plates are fixedly connected to the upper end of the moving plate. Limiting rods are movably connected to the inner sides of the two fourth connecting plates.
[0011] Preferably, clamping plates are fixedly connected to the opposite sides of the two groups of limiting rods. The two groups of clamping plates are symmetrical to each other. An arc plate is fixedly connected to the front end of the clamping plate. A second spring is movably connected between the clamping plate and the fourth connecting plate. The second spring is wound around the outside of the limiting rod. Connecting holes are formed on the surface of the moving plate. The fourth support plate is fixedly connected to the rear ends of the two groups of first support frames. The moving plate is movably connected between the fourth support plate and the first support plate. Two arc grooves are formed inside the fourth support plate. The arc plate is fitted with the arc groove. Two fifth connecting plates are fixedly connected to the lower end of the moving plate. A third rotating rod is rotatably connected to the inside of the two fifth connecting plates.
[0012] Preferably, a semi-gear is fixedly connected to the outside of the third rotating rod. A rocker is fixedly connected to the outside of the semi-gear. A clockwork spring is movably connected between the rocker and the moving plate. A ball block is fixedly connected to one end of the rocker. The ball block is located inside the connecting hole. A second support plate is fixedly connected to the lower end of the first support plate. Multiple toothed plates are arranged at the front end of the second support plate. The toothed plate is meshed with the semi-gear.
[0013] Preferably, an opening is formed inside the second support plate. A push plate is movably connected inside the opening. An induction switch is arranged at the front end of the push plate. A third support plate is fixedly connected between the two groups of second support frames. An electric push rod is installed at the front end of the third support plate. The output end of the electric push rod is fixedly connected to the push plate. Two third rollers are arranged at the upper end of the bottom plate. A second conveyor belt is rotatably connected to the outside of the two third rollers.
[0014] Compared with the prior art, the present invention provides a silicone sealant filling device, which has the following beneficial effects: 1. In this silicone sealant filling device, the silicone sealant in the glue storage tank enters the glue injection box through the connecting pipe. During the downward movement of the pressing plate, the silicone sealant in the glue injection box will be pushed into the tank body by the pressing plate. During the pushing and filling process, the baffle will move downward at the same time to block the glue inlet hole, which can prevent the silicone sealant in the glue storage tank from continuously entering during the filling process, so as to realize the quantitative filling of the silicone sealant, avoid the situation of overfilling or underfilling, and ensure the filling quality.
[0015] 2. For this silicone sealant filling equipment, when the pressing plate pushes the silicone sealant in the glue injection box to fill the tank body, through the connection of the third connecting plate, it will cause the L-shaped rod to push the moving plate to drive the filling tank body to move downward. During the downward movement of the moving plate, the semi-gear will engage with the toothed plate. When the two engage and the semi-gear rotates, it will cause the rocker arm to drive the ball block to move out of the connecting hole. When the semi-gear is no longer engaged with the toothed plate, under the action of the spring, it will pull the rocker arm upward, so that the ball block returns to the connecting hole, knocking on the tank body to make the tank body vibrate, so that the silicone sealant in the tank body levels off, ensuring quantitative filling and flatness, and avoiding the accumulation and overflow of silicone sealant in the tank body during the filling process, which affects the filling production.
[0016] 3. For this silicone sealant filling equipment, when the glue injection mechanism fills the tank body, it will also push the tank body to move downward. When the moving plate drives the tank body to stop at the rear end of the second conveyor belt, the tank body has been filled with silicone sealant at this time. Then, through the output of the electric push rod, the push plate will push the tank body between the two sets of clamping plates onto the second conveyor belt, thus completing the transfer of the tank body, facilitating the next operation of the staff, and improving the production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is the overall structural schematic diagram of the present invention; Figure 2 is the partial structural schematic diagram of the present invention; Figure 3 is the cross-section of the glue injection mechanism of the present invention Figure 1 ; Figure 4 is the schematic diagram of the glue injection mechanism of the present invention; Figure 5 is the exploded view of the second turntable structure of the present invention Figure 1 ; Figure 6 is the exploded view of the second turntable structure of the present invention Figure 2 ; Figure 7 is the cross-section of the glue injection mechanism of the present invention Figure 2 ; Figure 8 is the schematic diagram of the vibration mechanism of the present invention Figure 1 ; Figure 9 is the exploded view of the moving plate structure of the present invention; Figure 10 is the schematic diagram of the vibration mechanism of the present invention Figure 2 .
[0018] In the figure: 1. Base plate; 2. First support frame; 3. Second support frame; 4. First roller; 5. Second roller; 6. First conveyor belt; 7. Glue filling mechanism; 71. Mounting plate; 72. Connecting frame; 73. Motor; 74. First turntable; 75. First tooth block; 76. First gear; 77. First rotating rod; 78. Rotating block; 79. Poking rod; 710. Second turntable; 711. Second tooth block; 712. Third tooth block; 713. Second gear; 714. Damping rotating shaft; 715. First connecting rod; 716. Fixed block; 717. Second rotating rod; 718. Second connecting rod; 719. Rotating cylinder; 720. Mounting rod; 721. First connecting plate; 722. Second connecting plate; 723. Baffle; 724. Pressing plate; 725. Glue injection box; 726. Glue inlet hole; 727. Glue outlet hole; 728. Connecting cylinder one; 729. Connecting cylinder two; 730. Connecting cylinder three; 731. Ear; 732. L-shaped rod; 733. Extension rod; 734. Third connecting plate; 735. Fixed plate; 736. Glue storage tank; 737. Connecting pipe; 738. Third support frame; 8. Vibration mechanism; 81. Fixed rod; 82. Moving plate; 83. First spring; 84. First support plate; 85. Fourth connecting plate; 86. Limiting rod; 87. Clamping plate; 88. Arc plate; 89. Second spring; 810. Connecting hole; 811. Fifth connecting plate; 812. Third rotating rod; 813. Half gear; 814. Rocker; 815. Spring; 816. Ball block; 817. Second support plate; 818. Tooth plate; 819. Opening; 820. Pushing plate; 821. Inductive switch; 822. Third support plate; 823. Electric push rod; 9. Connecting groove one; 10. Connecting groove two; 11. Support block; 12. Side plate; 13. Fourth support plate; 14. Arc groove; 15. Third roller; 16. Second conveyor belt. Detailed implementation manners
[0019] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention.
[0020] Please refer to Figure 1 - Figure 10A silicone sealant filling device comprises a bottom plate 1, two groups of mutually symmetrical first support frames 2 and two groups of mutually symmetrical second support frames 3 are fixedly connected to the upper end of the bottom plate 1, two groups of first rollers 4 are connected to the two groups of first support frames 2 for common rotation, two groups of second rollers 5 are connected to the two groups of second support frames 3 for common rotation, a first conveyor belt 6 is connected to the outer sides of the two groups of first rollers 4 and second rollers 5 for common rotation, a glue filling mechanism 7 for filling the can body is arranged above the first conveyor belt 6, a vibration mechanism 8 for knocking the can body is arranged on the inner side of the first conveyor belt 6, a plurality of groups of connecting grooves 9 are provided on the surface of the first conveyor belt 6, two groups of connecting grooves 2 10 are provided on the inner side of the connecting grooves 9, a plurality of groups of supporting blocks 11 are fixedly connected to the surface of the first conveyor belt 6, a side plate 12 is fixedly connected to the first support frame 2 and the second support frame 3, and the side plates 12 are located on both sides of the first conveyor belt 6.
[0021] In this embodiment, the glue pouring mechanism 7 includes a mounting plate 71, the lower end of the mounting plate 71 is fixedly connected to the side plate 12, one side of the mounting plate 71 is fixedly connected to a connecting frame 72, the inner side of the connecting frame 72 is installed with a motor 73, the output end of the motor 73 is fixedly connected to a first turntable 74, the outer side of the first turntable 74 is fixedly connected to multiple groups of first tooth blocks 75, the first tooth block 75 is meshed with a first gear 76, the other side of the first gear 76 is fixedly connected to a first rotating rod 77, one end of the first rotating rod 77 passes through the mounting plate 71 and is fixedly connected to a rotating block 78, and the first rotating rod 77 is rotatably connected to the mounting plate 71.
[0022] Specifically, the bottom plate 1 is T-shaped, and the motor 73 is started to rotate the first turntable 74 and the second turntable 710 at the same time. During the rotation, the first tooth block 75 will first mesh with the first gear 76 to rotate the first gear 76, and then drive the rotating block 78 to rotate through the connection of the first rotating rod 77.
[0023] In this embodiment, two groups of shifting rods 79 are fixedly connected to the outer side of the rotating block 78, and the rear end of the shifting rod 79 is in contact with the supporting block 11. The other side of the first rotating disk 74 is fixedly connected to the second rotating disk 710, and the outer side of the second rotating disk 710 is fixedly connected to multiple groups of second tooth blocks 711 and third tooth blocks 712. The second tooth blocks 711 and the third tooth blocks 712 are jointly meshed with a second gear 713, and the other side of the second gear 713 is fixedly connected to a damping shaft 714, one end of the damping shaft 714 passes through the mounting plate 71 and is fixedly connected to a first connecting rod 715, and the damping shaft 714 is rotatably connected to the inner side of the mounting plate 71.
[0024] Specifically, when the rotating block 78 rotates, it will cause one set of lever rods 79 to first push the supporting block 11 to move, and then the other set of lever rods 79 will contact the next set of supporting blocks 11 and push them, so that with the assistance of the first roller 4 and the second roller 5, the first conveyor belt 6 operates, and through the connection of the first connecting groove 9, the tank body can be moved below the connecting cylinder three 730.
[0025] In this embodiment, one end of the first connecting rod 715 is fixedly connected with a fixing block 716, the other side of the fixing block 716 is fixedly connected with a second rotating rod 717, the outer side of the second rotating rod 717 is rotatably connected with a second connecting rod 718, one end of the second connecting rod 718 is fixedly connected with a rotating cylinder 719, the inner side of the rotating cylinder 719 is rotatably connected with a mounting rod 720, both ends of the mounting rod 720 are fixedly connected with a first connecting plate 721, the lower ends of the two groups of first connecting plates 721 are jointly fixedly connected with a second connecting plate 722, the lower end of the second connecting plate 722 is fixedly connected with a baffle plate 723, the lower end of the baffle plate 723 is fixedly connected with a pressing plate 724, the outer side of the pressing plate 724 is movably connected with a sealant injection box 725, a glue inlet hole 726 is opened at the rear end of the sealant injection box 725, a glue outlet hole 727 is opened at the lower end of the sealant injection box 725, the lower end of the sealant injection box 725 is fixedly connected with a first connecting cylinder 728, the glue outlet hole 727 is communicated with the first connecting cylinder 728, a second connecting cylinder 729 is slidably connected inside the first connecting cylinder 728, a third connecting cylinder 730 is slidably connected inside the second connecting cylinder 729, two groups of support ears 731 are fixedly connected to the outer side of the third connecting cylinder 730, and L-shaped rods 732 are fixedly connected to the lower ends of the two groups of support ears 731.
[0026] Specifically, when the second tooth block 711 starts to mesh with the second gear 713, it will cause the second gear 713 to rotate. When the second gear 713 rotates, through the connection of the damping rotating shaft 714, the first connecting rod 715 rotates, and through the connection of the second rotating rod 717 and the second connecting rod 718, the second connecting plate 722 and the pressing plate 724 are pushed downward. At this time, the pressing plate 724 pushes the silicone sealant in the sealant injection box 725 to be poured into the tank body through the first connecting cylinder 728, the second connecting cylinder 729, and the third connecting cylinder 730. While the pressing plate 724 moves downward, the baffle plate 723 enters the sealant injection box 725 and blocks the glue inlet hole 726 to prevent the silicone sealant in the storage tank 736 from continuing to enter the sealant injection box 725, thereby realizing the quantitative filling of the silicone sealant.
[0027] In this embodiment, extension rods 733 are fixedly connected to the upper ends of both groups of lug ears 731. The upper ends of the extension rods 733 are fixedly connected to a third connecting plate 734. The third connecting plate 734 is fixedly connected to the second connecting plate 722. A fixing plate 735 is fixedly connected to the rear end of the glue injection box 725. A glue storage tank 736 is fixedly connected to the rear end of the fixing plate 735. A connecting pipe 737 is installed on the outer side of the glue storage tank 736. One end of the connecting pipe 737 extends to the inside of the glue inlet hole 726. A third support frame 738 is arranged at the lower end of the glue storage tank 736. The lower end of the third support frame 738 is fixedly connected to the bottom plate 1.
[0028] Specifically, during the process of the second connecting rod 718 pushing the second connecting plate 722 downward, through the connection of the third connecting plate 734, the extension rod 733 and the lug ear 731, the L-shaped rod 732 will move downward simultaneously, and the L-shaped rod 732 will pass through the second connecting groove 10 and contact the fourth connecting plate 85, thereby pushing the moving plate 82 to drive the tank body to move downward together.
[0029] In this embodiment, the vibration mechanism 8 includes two fixing rods 81. The lower ends of the fixing rods 81 are fixedly connected to the bottom plate 1. The upper ends of the fixing rods 81 are fixedly connected to the side plates 12. Two groups of fixing rods 81 are jointly and movably connected with a moving plate 82. A first spring 83 is jointly and movably connected between the moving plate 82 and the bottom plate 1. The first spring 83 is wound around the outer side of the fixing rod 81. The front ends of two groups of second support frames 3 are jointly and fixedly connected to a first support plate 84. The first support plate 84 is located at the lower end of the side plate 12. Two groups of fourth connecting plates 85 are fixedly connected to the upper end of the moving plate 82. Two groups of limiting rods 86 are movably connected to the inner sides of the two groups of fourth connecting plates 85. Clamping plates 87 are fixedly connected to the opposite sides of the two groups of limiting rods 86. The two groups of clamping plates 87 are symmetric to each other. An arc plate 88 is fixedly connected to the front end of the clamping plate 87. A second spring 89 is jointly and movably connected between the clamping plate 87 and the fourth connecting plate 85. The second spring 89 is wound around the outer side of the limiting rod 86. A connecting hole 810 is formed on the surface of the moving plate 82. The rear ends of two groups of first support frames 2 are jointly and fixedly connected to a fourth support plate 13. The moving plate 82 is movably connected between the fourth support plate 13 and the first support plate 84. Two arc grooves 14 are formed on the inner side of the fourth support plate 13. The arc plate 88 is fitted with the arc groove 14. Two groups of fifth connecting plates 811 are fixedly connected to the lower end of the moving plate 82. A third rotating rod 812 is jointly and rotatably connected to the inner sides of the two groups of fifth connecting plates 811.
[0030] Specifically, when the tank body moves below the third connecting cylinder 730, the tank body will first pass through the arc plate 88. Under the action of the second spring 89, the clamping plate 87 will be opened, so that when the tank body moves below the third connecting cylinder 730, it can smoothly enter between the two groups of clamping plates 87, and through the acting force of the second spring 89, the clamping plate 87 clamps the tank body, thereby ensuring that the tank body can remain stable during the downward movement of filling.
[0031] In this embodiment, a semi-gear 813 is fixedly connected to the outer side of the third rotating rod 812, a rocker 814 is fixedly connected to the outer side of the semi-gear 813, a clockwork spring 815 is movably connected between the rocker 814 and the moving plate 82, a ball block 816 is fixedly connected to one end of the rocker 814, the ball block 816 is located inside the connecting hole 810, a second support plate 817 is fixedly connected to the lower end of the first support plate 84, and multiple sets of toothed plates 818 are arranged at the front end of the second support plate 817. The toothed plates 818 are meshed with the semi-gear 813.
[0032] Specifically, during the downward movement of the moving plate 82, the semi-gear 813 will be meshed with the toothed plate 818. When the two are meshed, the semi-gear 813 rotates, which will cause the rocker 814 to drive the ball block 816 to move out of the connecting hole 810. When the semi-gear 813 is no longer meshed with the toothed plate 818, under the action of the clockwork spring 815, the rocker 814 will be pulled upward, so that the ball block 816 returns to the connecting hole 810, knocking on the tank body, and making the silicone sealant in the tank body level by vibration, so that the filling is flat.
[0033] In this embodiment, an opening 819 is formed inside the second support plate 817, a push plate 820 is movably connected inside the opening 819, an induction switch 821 is arranged at the front end of the push plate 820, a third support plate 822 is fixedly connected between the two second support frames 3, an electric push rod 823 is installed at the front end of the third support plate 822, the output end of the electric push rod 823 is fixedly connected to the push plate 820, two third rollers 15 are arranged at the upper end of the bottom plate 1, and a second conveyor belt 16 is rotatably connected to the outer sides of the two third rollers 15.
[0034] Specifically, when the moving plate 82 drives the tank body to stop at the rear end of the second conveyor belt 16, at this time, the tank body has been filled with silicone sealant. Then, through the output of the electric push rod 823, the push plate 820 pushes the tank body between the two clamping plates 87 onto the second conveyor belt 16, thus completing the transfer of the tank body.
[0035] When in use, the bottom plate 1 is placed on a horizontal ground, and then the can bodies are placed on the inner side of the connecting groove 9 in turn, and the lower end of the can bodies is in contact with the fourth support plate 13, and then the motor 73 is started, and the first turntable 74 and the second turntable 710 are rotated simultaneously by the motor 73, and during the rotation process, the first tooth block 75 will first mesh with the first gear 76 to rotate the first gear 76, and through the connection of the first rotating rod 77, the rotating block 78 is driven to rotate, so that one group of levers 79 first moves the support block 11 to move, and then the other group of levers 79 will contact and move the next group of support blocks 11, so that the first conveyor belt 6 is operated with the assistance of the first roller 4 and the second roller 5, and the can body is moved to When the tank body moves to the bottom of the connecting cylinder 3 730, the tank body will first pass through the arc plate 88, and the clamping plate 87 will be opened under the action of the second spring 89, so that the tank body moves to the bottom of the connecting cylinder 3 730 and smoothly enters between the two groups of clamping plates 87. The clamping plate 87 clamps the tank body through the force of the second spring 89. With the output of the motor 73, the first turntable 74 and the second turntable 710 continue to rotate. When the first tooth block 75 is not engaged with the first gear 76, the first conveyor belt 6 stops running when it transfers the first group of tank bodies to the bottom of the connecting cylinder 3 730. At this time, the second tooth block 711 starts to mesh with the second gear 713 and makes the second gear 713 rotate. When the second gear 713 rotates, the damping rotation The connection of the shaft 714 causes the first connecting rod 715 to rotate, and through the connection between the second rotating rod 717 and the second connecting rod 718, the second connecting plate 722 and the pressing plate 724 are pushed downward. Before the pressing plate 724 moves downward, the silicone sealant in the glue storage tank 736 enters the glue injection box 725 through the connecting pipe 737 and waits for filling. At this time, when the pressing plate 724 moves downward, the silicone sealant in the glue injection box 725 is pushed into the tank body through the connecting tube 1 728, the connecting tube 2 729, and the connecting tube 3 730. In addition, in the process of the second connecting rod 718 pushing the second connecting plate 722 downward, through the connection between the third connecting plate 734, the extension rod 733 and the support ear 731, the L-shaped rod 732 moves downward at the same time, and the L-shaped rod 732 The arc plate 88 then moves downward through the arc groove 14. At this time, the pressure plate 724 pushes the silicone sealant in the injection box 725 into the tank body, and the L-shaped rod 732 pushes the movable plate 82 to move the tank body downward. The half gear 813 meshes with the tooth plate 818. When the two mesh, the half gear 813 rotates, causing the rocker 814 to move out of the connecting hole 810 with the ball block 816. When the half gear 813 is no longer meshed with the tooth plate 818, the rocker 814 is pulled upward under the action of the spring 815, so that the ball block 816 returns to the connecting hole 810, thereby knocking the tank body and causing the tank body to vibrate.When the second tooth block 711 is not engaged with the second gear 713, the second gear 713 stops rotating, and the moving plate 82 then docks the tank body at the rear end of the second conveyor belt 16. The silicone sealant in the glue injection box 725 is also poured into the tank body. After detecting the presence of an object through the induction switch 821, the electric push rod 823 is activated to output, and thus the tank body filled with silicone sealant is pushed onto the second conveyor belt 16 through the push plate 820. Then, the third tooth block 712 engages with the second gear 713, causing the second gear 713 to continue rotating. At this time, as the first connecting rod 715 rotates, it will pull the second connecting rod 718 upward, so that the baffle 723 moves out from the inside of the glue injection box 725, and the pressing plate 724 also returns to its original position. The silicone sealant in the glue storage tank 736 then continues to enter the glue injection box 725 through the connecting pipe 737 and waits to fill the next group of tank bodies. When the second connecting plate 722 moves upward, it will drive the L-shaped rod 732 back above the first conveyor belt 6, so that the L-shaped rod 732 stops pressing on the fourth connecting plate 85. Then, the moving plate 82 returns to the position between the fourth support plate 13 and the first support plate 84 under the action of the first spring 83. Then, the third tooth block 712 stops engaging with the second gear 713, and the first tooth block 75 then continues to engage with the first gear 76. Then, by repeating the above operations, the next group of tank bodies can be filled. After the filled tank bodies are transferred to the second conveyor belt 16, they are handed over to the staff for subsequent operations.
[0036] Although the embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made in these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A silicone sealant filling device, comprising a base plate (1), characterized in that: Two groups of mutually symmetrical first support frames (2) and two groups of mutually symmetrical second support frames (3) are fixedly connected at the upper end of the bottom plate (1); two groups of first rollers (4) are rotatably connected between the two groups of the first support frames (2); two groups of second rollers (5) are rotatably connected between the two groups of the second support frames (3); a first conveyor belt (6) is rotatably connected to the outer sides of the two groups of the first rollers (4) and the second rollers (5); a glue filling mechanism (7) for filling the can body is arranged above the first conveyor belt (6); a vibration mechanism (8) for knocking the can body is arranged on the inner side of the first conveyor belt (6); a plurality of groups of connecting grooves (9) are arranged on the surface of the first conveyor belt (6); two groups of connecting grooves (10) are arranged on the inner side of the connecting grooves (9); a plurality of groups of supporting blocks (11) are fixedly connected to the surface of the first conveyor belt (6); a side plate (12) is fixedly connected between the first support frame (2) and the second support frame (3); the side plates (12) are located on both sides of the first conveyor belt (6).
2. The silicone sealant filling equipment according to claim 1, characterized in that: The glue pouring mechanism (7) comprises a mounting plate (71), the lower end of the mounting plate (71) is fixedly connected to the side plate (12), one side of the mounting plate (71) is fixedly connected to a connecting frame (72), the inner side of the connecting frame (72) is mounted with a motor (73), the output end of the motor (73) is fixedly connected to a first rotating disk (74), the outer side of the first rotating disk (74) is fixedly connected to a plurality of first tooth blocks (75), the first tooth blocks (75) are meshed with a first gear (76), the other side of the first gear (76) is fixedly connected to a first rotating rod (77), one end of the first rotating rod (77) passes through the mounting plate (71) and is fixedly connected to a rotating block (78), and the first rotating rod (77) is rotatably connected to the mounting plate (71).
3. The silicone sealant filling equipment according to claim 2, characterized in that: Two groups of shifting rods (79) are fixedly connected to the outer side of the rotating block (78), and the rear ends of the shifting rods (79) are in contact with the supporting block (11). A second rotating disk (710) is fixedly connected to the other side of the first rotating disk (74), and a plurality of groups of second tooth blocks (711) and third tooth blocks (712) are fixedly connected to the outer side of the second rotating disk (710). The second tooth blocks (711) and the third tooth blocks (712) are meshed with a second gear (713), and a damping rotating shaft (714) is fixedly connected to the other side of the second gear (713). One end of the damping rotating shaft (714) passes through the mounting plate (71) and is fixedly connected to a first connecting rod (715), and the damping rotating shaft (714) is rotatably connected to the inner side of the mounting plate (71).
4. The silicone sealant filling equipment according to claim 3, characterized in that: One end of the first connecting rod (715) is fixedly connected to a fixing block (716), the other side of the fixing block (716) is fixedly connected to a second rotating rod (717), the outer side of the second rotating rod (717) is rotatably connected to a second connecting rod (718), one end of the second connecting rod (718) is fixedly connected to a rotating drum (719), the inner side of the rotating drum (719) is rotatably connected to a mounting rod (720), both ends of the mounting rod (720) are fixedly connected to a first connecting plate (721), the lower ends of the two groups of the first connecting plates (721) are commonly fixedly connected to a second connecting plate (722), the lower end of the second connecting plate (722) is fixedly connected to a baffle plate (723), and the lower end of the baffle plate (723) is fixedly connected to a pressure plate (724).
5. The silicone sealant filling equipment according to claim 4, characterized in that: The outer side of the pressing plate (724) is movably connected to a glue injection box (725); a glue inlet hole (726) is provided at the rear end of the glue injection box (725); a glue outlet hole (727) is provided at the lower end of the glue injection box (725); a connecting tube 1 (728) is fixedly connected to the lower end of the glue injection box (725); the glue outlet hole (727) is connected to the connecting tube 1 (728); a connecting tube 2 (729) is slidably connected to the inner side of the connecting tube 1 (728); a connecting tube 3 (730) is slidably connected to the inner side of the connecting tube 2 (729); two groups of supporting ears (731) are fixedly connected to the outer side of the connecting tube 3 (730); the lower ends of the two groups of supporting ears (731) are fixedly connected to L-shaped rods (732).
6. The silicone sealant filling equipment according to claim 5, characterized in that: The upper ends of the two groups of supporting ears (731) are fixedly connected to extension rods (733), the upper ends of the extension rods (733) are fixedly connected to a third connecting plate (734), the third connecting plate (734) is fixedly connected to the second connecting plate (722), the rear end of the glue injection box (725) is fixedly connected to a fixing plate (735), the rear end of the fixing plate (735) is fixedly connected to a glue storage tank (736), a connecting pipe (737) is installed on the outer side of the glue storage tank (736), one end of the connecting pipe (737) extends to the inner side of the glue inlet hole (726), and a third supporting frame (738) is provided at the lower end of the glue storage tank (736), and the lower end of the third supporting frame (738) is fixedly connected to the bottom plate (1).
7. The silicone sealant filling equipment according to claim 1, characterized in that: The vibration mechanism (8) comprises two groups of fixed rods (81), the lower ends of the fixed rods (81) are fixedly connected to the bottom plate (1), the upper ends of the fixed rods (81) are fixedly connected to the side plates (12), the outer sides of the two groups of fixed rods (81) are movably connected to a movable plate (82), the movable plate (82) and the bottom plate (1) are movably connected to a first spring (83), the first spring (83) is wound around the outer sides of the fixed rods (81), the front ends of the two groups of second support frames (3) are fixedly connected to a first support plate (84), the first support plate (84) is located at the lower ends of the side plates (12), the upper ends of the movable plates (82) are fixedly connected to two groups of fourth connecting plates (85), the inner sides of the two groups of fourth connecting plates (85) are movably connected to limit rods (86).
8. The silicone sealant filling equipment according to claim 7, characterized in that: The two groups of limit rods (86) are fixedly connected to a clamping plate (87) on one side opposite to the other. The two groups of clamping plates (87) are symmetrical to each other. The front end of the clamping plate (87) is fixedly connected to an arc plate (88). The clamping plate (87) and the fourth connecting plate (85) are movably connected to a second spring (89). The second spring (89) is wound around the outer side of the limit rod (86). A connecting hole (810) is provided on the surface of the movable plate (82). The two groups of the first supporting frames (2) are The rear ends are fixedly connected to a fourth support plate (13); the movable plate (82) is movably connected between the fourth support plate (13) and the first support plate (84); two groups of arc grooves (14) are provided on the inner side of the fourth support plate (13); the arc plate (88) fits in the arc grooves (14); the lower end of the movable plate (82) is fixedly connected to two groups of fifth connecting plates (811); the inner sides of the two groups of fifth connecting plates (811) are rotatably connected to a third rotating rod (812).
9. The silicone sealant filling equipment according to claim 8, characterized in that: The outer side of the third rotating rod (812) is fixedly connected to a half gear (813), the outer side of the half gear (813) is fixedly connected to a rocking arm (814), a spring (815) is movably connected between the rocking arm (814) and the movable plate (82), one end of the rocking arm (814) is fixedly connected to a ball block (816), the ball block (816) is located on the inner side of the connecting hole (810), the lower end of the first supporting plate (84) is fixedly connected to a second supporting plate (817), a front end of the second supporting plate (817) is provided with a plurality of groups of tooth plates (818), the tooth plates (818) are meshed with the half gear (813).
10. The silicone sealant filling equipment according to claim 9, characterized in that: An opening (819) is provided on the inner side of the second support plate (817), a push plate (820) is movably connected to the inner side of the opening (819), a sensing switch (821) is provided at the front end of the push plate (820), a third support plate (822) is fixedly connected between the two groups of the second support frames (3), an electric push rod (823) is installed at the front end of the third support plate (822), an output end of the electric push rod (823) is fixedly connected to the push plate (820), and two groups of third rollers (15) are provided at the upper end of the bottom plate (1), and the outer sides of the two groups of the third rollers (15) are rotatably connected to the second conveyor belt (16).
Citation Information
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