Recovery device for rubber processing
By designing a recycling device for rubber processing including a bottom box, a treatment structure and a clamping component, the deformation problems caused by offset and excessive pressure during transportation of the rubber product are solved, and effective fixation and transportation of the rubber product are achieved.
Patent Information
- Application Number
- CN202510505766.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-22
- Publication Date
- 2025-06-27
AI Technical Summary
During the rubber processing process, the finished rubber products are prone to deviation during transportation. Excessive pressure will cause the rubber to deform finely, and existing recycling devices are difficult to effectively prevent these problems.
A recycling device for rubber processing including a bottom box, a processing structure and a clamping assembly is designed. The processing structure includes a recycling bin, a guide plate, a rod frame plate and a sliding rod, and the clamping assembly includes a support frame, a rotary shaft, a drive wheel, a connecting rod elasticity, a belt and a support box. The connecting rod is elastically deformed and fixed, and it is fixed and rotated with the rotation of the rotating shaft, which plays a role in fixing and transporting the rubber. At the same time, it slides on the sliding rod through the support frame to prevent the rubber from being overly pressurized by the connecting rod.
Effectively prevent the deformation problems caused by offset and excessive pressure during transportation of rubber products, and are suitable for rubber products of different sizes.
Smart Images

Figure CN120206698A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of rubber processing, and particularly to a recycling device for rubber processing. Background Art
[0002] The processed finished rubber parts need to be transported at intervals to prevent the rubber parts from contacting and sticking to each other, and at the same time prevent the rubber parts from being overly pressed and deforming.
[0003] The patent with the application number CN202122041113.4 discloses a waste part recycling device for rubber processing, including a support frame. A box body is fixedly connected to the top of the support frame. A pushing mechanism is fixedly connected to the inner bottom of the box body. A second crushing mechanism is fixedly connected to the top of the pushing mechanism in the box body. A first crushing mechanism is fixedly connected to the top of the second crushing mechanism in the box body. A funnel is fixedly connected to the top of the box body. In this waste part recycling device for rubber processing, through the first crushing mechanism provided, when the first motor works to drive the rotating rod to rotate, the rotating shaft is driven to rotate under the cooperation of the first bevel gear and the second bevel gear. The rotating rotating shaft drives the cutting knife to rotate and cut. When the rubber waste parts fall into the box body through the funnel and pass through the crushing cylinder, the cutting knife performs good and efficient primary cutting, which is convenient for the secondary processing of the rubber waste parts in the later stage. Although this patent solves the above problems, there are still problems that the rubber is prone to deviation during transportation and excessive pressure will cause the rubber to deform slightly. Therefore, it is necessary to design a recycling device for rubber processing that prevents compression and transports at intervals. Summary of the Invention
[0004] The purpose of the present invention is to provide a recycling device for rubber processing to solve the problems raised in the above background art.
[0005] To solve the above technical problems, the present invention provides the following technical solution: A recycling device for rubber processing, including a bottom box, and further including a processing structure and a clamping assembly; the processing structure includes a recycling box, a guide plate, a fixed rod frame plate, and a sliding rod. The recycling box is fixedly connected to the top side of the bottom box. The guide plate is fixedly connected to the inner top end of the recycling box. The fixed rod frame plate is fixed to the inner side wall of the bottom box. The sliding rod is fixedly connected to the inner top end of the fixed rod frame plate. The clamping assembly includes a support frame, a middle rotating shaft, a driving wheel, a connecting rod elastic member, a belt, and a support plate box. The support frame is slidably connected to the outer side of the sliding rod. The middle rotating shaft is rotatably connected to the inner side of the support frame. The driving wheel is fixedly connected to the outer side of the middle rotating shaft. The belt is arranged on the outer side of the driving wheel. The support plate box is fixedly connected to the inner side of the middle rotating shaft. The connecting rod elastic member is fixedly connected to the inner side of the belt. The support frames are symmetrically distributed about the vertical center line of the bottom box. The inside of the support plate box is a hollow structure. The fixed rod frame plate is fixedly connected to the bottom box. There are three driving wheels arranged on the side of the support frame, and the three driving wheels are distributed at the triangular positions on the side of the support frame. The guide plate is inclined and arranged inside the bottom box. Through the above technical solution, during use, an external motor connected to the output shaft of the middle rotating shaft drives the middle rotating shaft to rotate, causing the middle rotating shaft to drive the externally connected driving wheel to rotate. While the driving wheel rotates, the belt on the outer side of the driving wheel drives the fixedly connected connecting rod elastic member on the inner side to move together. Since the driving wheel is supported by the support frame, when the hot-pressed rubber finished product needs to be recycled, the rubber will fall downward into the recycling box, and under the guidance of the guide plate, the rubber will fall between the two support plate boxes on both sides, and the support plate boxes will support the rubber. When the rubber moves downward along with the connecting rod elastic member, the two connecting rod elastic members on both sides will exert pressure on the side of the rubber, and through the connecting rod elastic member, the inner side of the rubber finished product will be contacted, and the connecting rod elastic member will fit the side of the rubber through deformation to fix it. Along with the rotation of the middle rotating shaft, it plays a role in fixing and transporting the rubber. At the same time, when the rubber product placed is too large, during the downward movement process of the rubber, the rubber finished product will gradually exert pressure on the connecting rod elastic member, causing the connecting rod elastic member to deform. When the connecting rod elastic member no longer deforms, the connecting rod elastic member will exert pressure on the driving wheel through the connected belt, and then the middle rotating shaft coaxial with the driving wheel will push the support frame to move, and then the support frame will slide on the outer side of the sliding rod. By the sliding of the support frame on the sliding rod, it prevents the rubber from being overly pressured by the connecting rod elastic member.
[0006] According to the above technical solution, a material coding device is provided on the side of the driving wheel, and the material coding device includes a material pushing structure and a material coding structure, and the material pushing structure includes a balance wheel, a wheel rod, a guide rod slot plate, and a positioning slide bar. The balance wheel is fixedly connected to the side of the driving wheel, the wheel rod is fixedly connected to the side of the balance wheel, the guide rod slot plate is slidably connected to the outside of the wheel rod, the positioning slide bar is fixedly connected to the side of the guide rod slot plate, the material coding structure includes an extension frame, a material pushing plate, and a guide arc sheet, the extension frame is fixedly connected to the side of the fixed rod frame plate, and the material pushing plate rotates The guide arc piece is fixedly connected to the side of the push plate, the positioning slide rod is slidably connected to the extension frame, the guide arc piece is slidably connected to the extension frame, the side cross-section of the push plate is an obtuse-angled broken line, and the side of the guide rod slot plate is fixedly connected with a spring, and the other end of the spring is fixedly connected to the extension frame. Through the above technical solution, when the driving wheel located on the lowest side rotates, it will drive the balance wheel connected to the side to rotate, and the rotation of the balance wheel will drive the wheel rod connected to the side to make a circular motion, and let the wheel rod to move the guide rod slot plate, and the wheel rod moves laterally When the rubber product falls from the elastic inner side of the connecting rod, it is guided by the push plate connected to the inner side of the extension frame, and then the rubber product slides to the specified position through the inclined push plate, and the fallen rubber is gathered. At the same time, the extension frame moves to the right to drive the push plate connected to the inner side to move together, and after the push plate moves, it gradually contacts the rubber products scattered in the bottom box through the side of the push plate, thereby passing through the push plate. Squeeze the scattered rubber products. When the rubber products are pushed to fit the inner wall of the bottom box, the bottom edge of the push plate will be compressed and gradually flipped over until the push plate flips to a vertical state. The push plate will slide with the guide arc piece and the extension frame connected to the side and squeeze the spring on the outside of the guide arc piece. When the push plate flips, the top parallel to the push plate will be in an inclined state, and the rubber products above will be prevented from falling down. Through the lower half of the push plate in the vertical state, the scattered rubber will be pushed to the side of the bottom box to fit the inner wall, so that the rest of the space inside the bottom box is vacated.
[0007] According to the above technical solution, a lubrication device is provided on the side of the guide rod groove plate. The lubrication device includes a hydraulic push rod, a material pushing plug cylinder, a filler pipe, an output pipe, and an oil tank. The hydraulic push rod is fixedly connected to the side of the guide rod groove plate. The material pushing plug cylinder is slidably connected to the outside of the hydraulic push rod. The filler pipe is fixedly connected to the side of the material pushing plug cylinder. The output pipe is fixedly connected to the side of the material pushing plug cylinder. The oil tank is arranged above the material pushing plug cylinder. The top end of the output pipe is fixedly connected to the support frame. The oil tank is communicated with the end of the filler pipe. The upper surface of the material pushing plug cylinder is fixedly connected to the bottom surface of the oil tank. The output pipe extends to the side of the middle rotating shaft. The material pushing plug cylinder includes a spring-loaded reset plug. The spring-loaded reset plug is slidably connected to the inside of the material pushing plug cylinder. The bottom surface of the material pushing plug cylinder is fixedly connected to an air delivery pipe. The end of the material pushing plug cylinder is fixedly connected to a tank air pipe. An upward adjustment plug rod is slidably connected to the inside of the tank air pipe. The top end of the upward adjustment plug rod is fixedly connected to a lifting shaft rod. A wind guiding flap is arranged on the inner side surface of the recycling box. The wind guiding flap is slidably connected to the side surface of the lifting shaft rod. Through the above technical solution, when the guide rod groove plate moves, it will be pulled by the hydraulic push rod connected to the side of the guide rod groove plate, and then the hydraulic push rod will move to drive the piston at the end to slide inside the material pushing plug cylinder, so that the lubricating oil in the oil tank flows into the inside of the material pushing plug cylinder through the filler pipe connected to the side. When the guide rod groove plate moves to the left, the guide rod groove plate will push the hydraulic push rod to move, and then while the hydraulic push rod moves, it will reduce the internal space of the material pushing plug cylinder, so that the lubricating oil in the material pushing plug cylinder is output outward through the output pipe connected to the bottom side and is transmitted to the rotating shaft on the side of the middle rotating shaft through the output pipe, so as to convey the lubricating oil to the designated position by using pressure and play a lubricating role for the middle rotating shaft and the support frame, thereby preventing wear and damage between parts. At the same time, by using the liquid filled in the material pushing plug cylinder, it plays a buffering role after the guide rod groove plate moves back to its original position. When the hydraulic push rod is pushed, the hydraulic push rod will push the spring on the side to be compressed and deformed and push the spring-loaded reset plug to move. When the space between the spring-loaded reset plug and the hydraulic push rod shrinks, the internal air will enter the tank air pipe along the air delivery pipe. When the gas in the tank air pipe increases, it will squeeze the upward adjustment plug rod to move upward, so that the upward adjustment plug rod moves upward to drive the lifting shaft rod to move, and the lifting shaft rod drives the wind guiding flap to deflect. And through the deflection of the upward adjustment plug rod, the wind passing through the lower part of the support plate box is guided to the lower bottom box to cool the rubber in the bottom box.
[0008] According to the above technical solution, a cooling device is provided on the side of the support frame. The cooling device includes a blowing structure and a cooling structure. The blowing structure includes a peristaltic handle, a liquid suction pipe, a liquid supply pipe, and a water tank. The peristaltic handle is fixedly connected to the side of the driving wheel. The liquid suction pipe is arranged outside the peristaltic handle. The liquid supply pipe is fixedly connected to the end of the liquid suction pipe. The water tank is arranged on the left side surface of the support frame. The cooling structure includes an air extraction end shell, an input pipe, a vortex fan, and a blowing blade. The air extraction end shell is fixedly connected to the side of the water tank. The input pipe is fixedly connected to the side of the support frame. The vortex fan is rotatably connected inside the air extraction end shell. The liquid supply pipe extends downward and is communicated with the water tank. The input pipe penetrates to the inside of the support frame and is communicated with the support plate box. A liquid driving ring is arranged outside the vortex fan and is fixedly connected to the air extraction end shell. The other end of the input pipe penetrates into the air extraction end shell and is connected to the liquid driving ring. Through the above technical solution, when the driving wheel located on the right side of the top rotates to drive the coaxial peristaltic handle on the side to rotate, the peristaltic handle will drive the liquid in the outer liquid suction pipe to flow, so that the liquid suction pipe extracts liquid from the water tank through the connected liquid supply pipe. The peristaltic handle will transport the liquid into the connected support plate box, and through the pipe connected to the side of the support plate box, the liquid in the support plate box will flow along the pipe connected to the side and fill the support plate box on the left side. Thus, the liquid in the support plate box enters the vortex fan along the input pipe. The rotation of the vortex fan is driven by the liquid flow in the vortex fan, and the rotation of the vortex fan drives the coaxial blowing blade to rotate. Thus, the blowing blade extracts air from the bottom side of the air extraction end shell and blows the air out from the right side of the air extraction end shell, playing a role in cooling and temperature reduction for the rubber products inside the link elasticity.
[0009] Compared with the prior art, the beneficial effects achieved by the present invention are as follows: In the present invention, by providing a support frame, a middle rotating shaft, a driving wheel, link elasticity, and a belt, the rubber is fixed by the elastic deformation of the link fitting the side of the rubber, and along with the rotation of the middle rotating shaft, it plays a role in fixing and transporting the rubber. At the same time, the support frame slides on the sliding rod to prevent the rubber from being overly pressured by the link elasticity and is applicable to rubber products of different sizes.
[0010] In the present invention, by providing a swing wheel, a wheel rod, a guide rod groove plate, a positioning slide rod, an extension frame, and a pushing plate, through the guidance of the pushing plate connected to the inside of the extension frame, the rubber products then slide down to the designated position through the inclined pushing plate, and the falling rubbers are gathered together. At the same time, through the lower half of the pushing plate in the vertical state, the scattered rubbers are pushed to the side of the bottom box and concentratedly attached to the inner wall, leaving the remaining space inside the bottom box, thus playing a role in stacking the scattered rubber materials.
[0011] In the present invention, by providing a hydraulic push rod, a material pushing plug cylinder, a filling material pipe, an output pipe, and an oil tank, lubrication is provided for the middle rotating shaft and the support frame, thereby preventing wear and damage between parts. At the same time, by using the liquid filled in the material pushing plug cylinder, a buffering effect is achieved after the guide rod groove plate moves back to its original position, preventing the guide rod groove plate from colliding with the hydraulic push rod and generating noise.
[0012] In the present invention, by providing a peristaltic handle, a liquid suction pipe, a liquid supply pipe, a water tank, an air extraction end shell, an input pipe, a vortex fan, and a blowing blade, the rotation of the vortex fan drives the coaxial blowing blade to rotate, so that the blowing blade extracts air from the bottom side of the air extraction end shell and blows the air out from the right side of the air extraction end shell, playing a role in cooling the rubber products inside the connecting rod elastically. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] The drawings are used to provide a further understanding of the present invention and constitute a part of the specification. They are used together with the embodiments of the present invention to explain the present invention and do not constitute a limitation to the present invention. In the drawings: Figure 1 is a schematic perspective view of the overall structure of the present invention; Figure 2 is a schematic view of the structure of the clamping assembly of the present invention; Figure 3 is a schematic side sectional view of the inside of the bottom box of the present invention; Figure 4 is a schematic view of the structure of the material stacking device of the present invention; Figure 5 is a schematic view of the connection of the material pushing plate of the present invention; Figure 6 is a schematic view of the structure of the lubrication device of the present invention; Figure 7 is a schematic view of the structure of the cooling device of the present invention; Figure 8 is a schematic view of a partial structure of the lubrication device of the present invention; Figure 9 is the present invention Figure 8 enlarged view of part A.
[0014] In the figure: 1, bottom box; 2, recycling box; 3, guide plate; 4, fixed rod frame plate; 5, material stacking device; 51, swing wheel; 52, wheel rod; 53, guide rod groove plate; 54, positioning slide rod; 55, extension frame; 56, pushing plate; 57, guiding arc piece; 6, lubricating device; 61, hydraulic push rod; 62, pushing plug cylinder; 621, spring pressing and restoring plug; 622, air delivery pipe; 623, tank air pipe; 624, upper adjusting plug rod; 625, lifting shaft rod; 626, air guiding flap; 63, filling material pipe; 64, output pipe; 65, fuel tank; 7, clamping assembly; 71, support frame; 72, middle rotating shaft; 73, driving wheel; 74, connecting rod elasticity; 75, belt; 76, support plate box; 8, cooling device; 81, peristaltic handle; 82, liquid suction pipe; 83, liquid supply pipe; 84, water tank; 85, air extraction end shell; 86, input pipe; 87, eddy current fan; 88, air blowing blade; 9, sliding rod. Detailed implementation manner
[0015] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention. Embodiment 1
[0016] Please refer to Figures 1 - 5, the present invention provides a technical solution: a recycling device for rubber processing, including a bottom box 1, and further including a processing structure and a clamping assembly 7; the processing structure includes a recycling box 2, a guide plate 3, a fixed rod support plate 4, and a sliding rod 9. The recycling box 2 is fixedly connected to the top side of the bottom box 1. The guide plate 3 is fixedly connected to the inner top end of the recycling box 2. The fixed rod support plate 4 is fixed to the inner side wall of the bottom box 1. The sliding rod 9 is fixedly connected to the inner top end of the fixed rod support plate 4; the clamping assembly 7 includes a support frame 71, a middle rotating shaft 72, a driving wheel 73, a connecting rod elastic member 74, a belt 75, and a support plate box 76. The support frame 71 is slidably connected to the outside of the sliding rod 9. The middle rotating shaft 72 is rotatably connected to the inside of the support frame 71. The driving wheel 73 is fixedly connected to the outer side surface of the middle rotating shaft 72. The belt 75 is arranged on the outer side surface of the driving wheel 73. The support plate box 76 is fixedly connected to the inner side surface of the middle rotating shaft 72. The connecting rod elastic member 74 is fixedly connected to the inner side surface of the belt 75. The support frames 71 are symmetrically distributed about the vertical center line of the bottom box 1. The inside of the support plate box 76 is a hollow structure. The fixed rod support plate 4 is fixedly connected to the bottom box 1. There are three driving wheels 73 arranged on the side surface of the support frame 71, and the three driving wheels 73 are distributed at the three corners on the side surface of the support frame 71. The guide plate 3 is inclined and arranged inside the bottom box 1. Through the above technical solution, when in use, an external motor connected to the output shaft of the middle rotating shaft 72 drives the middle rotating shaft 72 to rotate, causing the middle rotating shaft 72 to drive the externally connected driving wheel 73 to rotate. While the driving wheel 73 is rotating, the belt 75 on the outer side of the driving wheel 73 drives the fixedly connected connecting rod elastic member 74 on the inner side to move together. Since the driving wheel 73 is supported by the support frame 71, when the hot-pressed rubber finished product needs to be recycled, the rubber will fall downward into the recycling box 2 and, under the guidance of the guide plate 3, the rubber will fall between the two support plate boxes 76 on both sides, and the support plate boxes 76 will support the rubber. When the rubber moves downward along with the connecting rod elastic member 74, the two connecting rod elastic members 74 on both sides will press on the side surface of the rubber, and through the connecting rod elastic member 74, the inside of the rubber finished product will be reached. The connecting rod elastic member 74 contacts the rubber finished product, and through the deformation of the connecting rod elastic member 74, it fits the side surface of the rubber to fix it. Along with the rotation of the middle rotating shaft 72, it plays a role in fixing and transporting the rubber. At the same time, when the rubber product put in is too large, during the process of the rubber moving downward, the rubber finished product will gradually press on the connecting rod elastic member 74, causing the connecting rod elastic member 74 to deform. When the connecting rod elastic member 74 no longer deforms, the connecting rod elastic member 74 will press on the driving wheel 73 through the connected belt 75, and then the middle rotating shaft 72 coaxial with the driving wheel 73 will push the support frame 71 to move, and then the support frame 71 will slide on the outside of the sliding rod 9. By the sliding of the support frame 71 on the sliding rod 9, it is prevented that the rubber is overly pressed by the connecting rod elastic member 74.
[0017] The side of the driving wheel 73 is provided with a material coding device 5, which includes a material pushing structure and a material coding structure. The material pushing structure includes a balance wheel 51, a wheel rod 52, a guide rod slot plate 53, and a positioning slide bar 54. The balance wheel 51 is fixedly connected to the side of the driving wheel 73, the wheel rod 52 is fixedly connected to the side of the balance wheel 51, the guide rod slot plate 53 is slidably connected to the outside of the wheel rod 52, and the positioning slide bar 54 is fixedly connected to the side of the guide rod slot plate 53. The material coding structure includes an extension frame 55, a material pushing plate 56, and a guide arc sheet 57. The extension frame 55 is fixedly connected to the side of the fixed rod frame plate 4, and the material pushing plate 56 is rotatably connected to the extension frame 55. On the side, the guide arc piece 57 is fixedly connected to the side of the push plate 56, the positioning slide bar 54 is slidably connected to the extension frame 55, the guide arc piece 57 is slidably connected to the extension frame 55, the side cross-section of the push plate 56 is an obtuse-angled broken line, and the side of the guide rod slot plate 53 is fixedly connected with a spring, and the other end of the spring is fixedly connected to the extension frame 55. Through the above technical solution, when the driving wheel 73 located on the lowest side rotates, it will drive the balance wheel 51 connected to the side to rotate, and the rotation of the balance wheel 51 drives the wheel rod 52 connected to the side to make a circular motion, and let the wheel rod 52 toggle the guide rod slot plate 53 to move. When the wheel rod 52 moves laterally, it will pass through the side The positioning slide bar 54 connected to the surface determines the sliding direction, and the thin extension rod fixedly connected to the side of the guide rod groove plate 53 pushes the extension frame 55 to move together. When the rubber product falls from the inner side of the connecting rod elastic 74, it is guided by the push plate 56 connected to the inner side of the extension frame 55, and then the rubber product slides to the specified position through the inclined push plate 56, so that the fallen rubber is gathered, and at the same time, the extension frame 55 moves to the right to drive the push plate 56 connected to the inner side to move together, and after the push plate 56 moves, it gradually contacts with the rubber products scattered in the bottom box 1 through the side of the push plate 56, so that the push plate 56 squeezes the rubber product out. The scattered rubber products are pressed. When the rubber products are pushed to fit the inner wall of the bottom box 1, the bottom edge of the push plate 56 will be pressed and gradually flipped over until the push plate 56 flips over to a vertical state. The push plate 56 will slide with the guide arc piece 57 and the extension frame 55 connected to the side and squeeze the spring on the outside of the guide arc piece 57. When the push plate 56 flips over, the top parallel to the push plate 56 will be in an inclined state, and the rubber products above will be prevented from falling downward. The scattered rubber is pushed to the side of the bottom box 1 to fit the inner wall through the lower half of the push plate 56 in the vertical state, so that the rest of the space inside the bottom box 1 is vacated.
[0018] Working principle; during use, an external motor connected to the output shaft of the middle rotating shaft 72 drives the middle rotating shaft 72 to rotate. The rotation of the middle rotating shaft 72 drives the driving wheel 73 connected to the outside to rotate. While the driving wheel 73 is rotating, the belt 75 on the outside of the driving wheel 73 drives the elastic connecting rod 74 fixed on the inside to move together. Since the driving wheel 73 is supported by the support frame 71, when the rubber finished product after hot pressing needs to be recycled, the rubber will fall downward into the recycling box 2. Under the guidance of the guide plate 3, the rubber will fall between the two side support plate boxes 76. The support plate boxes 76 play a supporting role for the rubber. When the rubber moves downward along with the elastic connecting rod 74, the two side elastic connecting rods 74 apply pressure to the side of the rubber. Through the elastic connecting rod 74, it contacts the inside of the rubber finished product, contacts the rubber side through the deformation of the elastic connecting rod 74, and fixes it by conforming to the rubber side. Along with the rotation of the middle rotating shaft 72, it plays a role in fixing and transporting the rubber. At the same time, when the rubber product put in is too large, during the process of moving downward, the rubber finished product gradually applies pressure to the elastic connecting rod 74, causing the elastic connecting rod 74 to deform. When the elastic connecting rod 74 no longer deforms, the elastic connecting rod 74 will apply pressure to the driving wheel 73 through the connected belt 75, and then the middle rotating shaft 72 coaxial with the driving wheel 73 will push the support frame 71 to move. Then the support frame 71 slides on the outside of the sliding rod 9. By the sliding of the support frame 71 on the sliding rod 9, it prevents the rubber from being overly pressured by the elastic connecting rod 74 and has applicability to rubber products of different sizes and dimensions; When the driving wheel 73 located at the lowest side rotates, it will drive the balance wheel 51 connected to the side to rotate. The rotation of the balance wheel 51 drives the wheel rod 52 connected to the side to make a circular motion, and the wheel rod 52 drives the guide rod slot plate 53 to move. When the wheel rod 52 moves laterally, it will locate the sliding direction through the positioning slide rod 54 connected to the side, and push the extension frame 55 to move together through the thin extension rod fixedly connected to the side of the guide rod slot plate 53. When the rubber product falls from the inner side of the connecting rod elastic 74, it is guided by the push plate 56 connected to the inner side of the extension frame 55, and then the rubber product slides to the specified position through the inclined push plate 56, so that the fallen rubber is gathered, and at the same time, the extension frame 55 moves to the right to drive the push plate 56 connected inside to move together, and after the push plate 56 moves, it gradually passes through the push plate The side of the material plate 56 contacts the rubber products scattered in the bottom box 1, so that the scattered rubber products are squeezed by the push plate 56. When the rubber products are pushed to fit the inner wall of the bottom box 1, the bottom edge of the push plate 56 will be compressed and gradually flipped over until the push plate 56 flips over to a vertical state. The push plate 56 will slide with the guide arc piece 57 and the extension frame 55 connected to the side and squeeze the spring on the outside of the guide arc piece 57. When the push plate 56 flips over, the top parallel to the push plate 56 will be in an inclined state, and the rubber products above will be prevented from falling downward. The scattered rubber is pushed to the side of the bottom box 1 to fit the inner wall through the lower half of the push plate 56 in the vertical state, so that the remaining space inside the bottom box 1 is vacated, thereby stacking the scattered rubber materials. Example 2
[0019] See also Figures 6 - 9, on the basis of Embodiment 1, the present invention provides a technical solution: a lubricating device 6 is provided on the side of the guide rod groove plate 53. The lubricating device 6 includes a hydraulic push rod 61, a material pushing plug cylinder 62, a filler pipe 63, an output pipe 64, and an oil tank 65. The hydraulic push rod 61 is fixedly connected to the side of the guide rod groove plate 53. The material pushing plug cylinder 62 is slidably connected to the outside of the hydraulic push rod 61. A filler pipe 63 is fixedly connected to the side of the material pushing plug cylinder 62. The output pipe 64 is fixedly connected to the side of the material pushing plug cylinder 62. The oil tank 65 is arranged above the material pushing plug cylinder 62. The top end of the output pipe 64 is fixedly connected to the support frame 71. The oil tank 65 is communicated with the end of the filler pipe 63. The upper surface of the material pushing plug cylinder 62 is fixedly connected to the bottom surface of the oil tank 65. The output pipe 64 extends to the side of the middle rotating shaft 72. The material pushing plug cylinder 62 includes a spring-loaded return plug 621. The spring-loaded return plug 621 is slidably connected to the inside of the material pushing plug cylinder 62. An air delivery pipe 622 is fixedly connected to the bottom surface of the material pushing plug cylinder 62. A tank air pipe 623 is fixedly connected to the end of the material pushing plug cylinder 62. An upward adjusting plug rod 624 is slidably connected to the inside of the tank air pipe 623. The top end of the upward adjusting plug rod 624 is fixedly connected to a lifting shaft rod 625. A wind guiding flap 626 is arranged on the inner side surface of the recycling box 2. The wind guiding flap 626 is slidably connected to the side surface of the lifting shaft rod 625. Through the above technical solution, when the guide rod groove plate 53 moves, the hydraulic push rod 61 connected to the side of the guide rod groove plate 53 will be pulled, and then the hydraulic push rod 61 will move to drive the piston at the end to slide inside the material pushing plug cylinder 62, so that the lubricating oil in the oil tank 65 flows into the inside of the material pushing plug cylinder 62 through the filler pipe 63 connected to the side. When the guide rod groove plate 53 moves to the left, the guide rod groove plate 53 will push the hydraulic push rod 61 to move. Then, while the hydraulic push rod 61 moves, the internal space of the material pushing plug cylinder 62 will be reduced, and the lubricating oil in the material pushing plug cylinder 62 will be output outward through the output pipe 64 connected to the bottom side and transmitted to the rotating shaft side of the middle rotating shaft 72 through the output pipe 64, so as to convey the lubricating oil to the specified position by using pressure and lubricate the middle rotating shaft 72 and the support frame 71, thereby preventing wear and damage between parts. At the same time, by using the liquid filled in the material pushing plug cylinder 62, the guide rod groove plate 53 can play a buffering role after moving and resetting. When the hydraulic push rod 61 is pushed, the hydraulic push rod 61 will push the spring on the side to be compressed and deformed and push the spring-loaded return plug 621 to move. When the space between the spring-loaded return plug 621 and the hydraulic push rod 61 shrinks, the internal air will enter the tank air pipe 623 along the air delivery pipe 622. When the gas in the tank air pipe 623 increases, it will squeeze the upward adjusting plug rod 624 to move upward, so that the upward adjusting plug rod 624 moves upward to drive the lifting shaft rod 625 to move, and the lifting shaft rod 625 drives the wind guiding flap 626 to deflect. And through the deflection of the upward adjusting plug rod 624, the wind passing through the lower part of the support plate box 76 is guided downward into the bottom box 1 to cool the rubber in the bottom box 1.
[0020] A cooling device 8 is provided on the side of the support frame 71. The cooling device 8 includes a blowing structure and a cooling structure. The blowing structure includes a peristaltic handle 81, a liquid suction pipe 82, a liquid supply pipe 83, and a water tank 84. The peristaltic handle 81 is fixedly connected to the side of the driving wheel 73. The liquid suction pipe 82 is arranged outside the peristaltic handle 81. The liquid supply pipe 83 is fixedly connected to the end of the liquid suction pipe 82. The water tank 84 is arranged on the left side of the support frame 71. The cooling structure includes an air extraction end shell 85, an input pipe 86, a vortex fan 87, and a blowing blade 88. The air extraction end shell 85 is fixedly connected to the side of the water tank 84. The input pipe 86 is fixedly connected to the side of the support frame 71. The vortex fan 87 is rotatably connected inside the air extraction end shell 85. The liquid supply pipe 83 extends downward and is connected to the water tank 84 in communication. The input pipe 86 penetrates to the inside of the support frame 71 and is connected to the support plate box 76 in communication. A liquid driving ring is arranged outside the vortex fan 87 and is fixedly connected to the air extraction end shell 85. The other end of the input pipe 86 penetrates into the air extraction end shell 85 and is connected to the liquid driving ring in communication. Through the above technical solution, when the driving wheel 73 located on the right side of the top rotates to drive the coaxial peristaltic handle 81 on the side to rotate, the peristaltic handle 81 will drive the liquid in the outer liquid suction pipe 82 to flow, so that the liquid suction pipe 82 extracts liquid from the water tank 84 through the connected liquid supply pipe 83. The peristaltic handle 81 will transport the liquid to the connected support plate box 76, and through the pipe connected to the side of the support plate box 76, the liquid in the support plate box 76 will fill the support plate box 76 on the left side along the side-connected pipe, so that the liquid in the support plate box 76 will enter the vortex fan 87 along the input pipe 86. The rotation of the vortex fan 87 is driven by the liquid flow in the vortex fan 87, and the rotation of the vortex fan 87 drives the coaxial blowing blade 88 to rotate, so that the blowing blade 88 extracts air from the bottom side of the air extraction end shell 85 and blows the air out from the right side of the air extraction end shell 85, playing a role in cooling and cooling the rubber products in the link elasticity 74. When the hydraulic push rod 61 is pushed, the hydraulic push rod 61 will push the spring on the side to be compressed and deformed and push the elastic pressing plug 621 to move. When the space between the elastic pressing plug 621 and the hydraulic push rod 61 shrinks, the internal air will enter the tank gas pipe 623 along the air delivery pipe 622. When the gas in the tank gas pipe 623 increases, it will squeeze the upper adjusting plug rod 624 to move upward, so that the upward movement of the upper adjusting plug rod 624 drives the lifting shaft rod 625 to move, and the lifting shaft rod 625 drives the air guiding flap 626 to deflect. And through the deflection of the upper adjusting plug rod 624, the wind passing through the lower part of the support plate box 76 is guided to the lower bottom box 1 to cool the rubber in the bottom box 1.
[0021] Working principle: During the movement of the guide rod groove plate 53, it will be pulled by the hydraulic push rod 61 connected to the side of the guide rod groove plate 53, thereby causing the hydraulic push rod 61 to move and drive the piston at the end to slide inside the material pushing cylinder 62. As a result, the lubricating oil in the fuel tank 65 flows into the interior of the material pushing cylinder 62 through the filling pipe 63 connected to the side. When the guide rod groove plate 53 moves to the left, the guide rod groove plate 53 will push the hydraulic push rod 61 to move. Then, while the hydraulic push rod 61 moves, the internal space of the material pushing cylinder 62 is reduced, and the lubricating oil in the material pushing cylinder 62 is output outward through the output pipe 64 connected to the bottom side and transmitted to the rotating shaft on the side of the middle rotating shaft 72 through the output pipe 64. Thus, the lubricating oil is delivered to the designated position by using pressure, playing a lubricating role for the middle rotating shaft 72 and the support frame 71, thereby preventing wear and damage between parts. At the same time, by using the liquid filled in the material pushing cylinder 62, after the guide rod groove plate 53 moves and resets, it plays a buffering role to prevent the guide rod groove plate 53 from colliding with the hydraulic push rod 61 and generating noise; When the driving wheel 73 located on the right side of the top rotates and drives the coaxial peristaltic handle 81 on the side to rotate, it will cause the liquid in the outer liquid extraction pipe 82 driven by the peristaltic handle 81 to flow. As a result, the liquid extraction pipe 82 extracts liquid from the water tank 84 through the connected liquid supply pipe 83. And the peristaltic handle 81 delivers the liquid to the connected support plate box 76 and, through the pipe connected to the side of the support plate box 76, fills the liquid in the support plate box 76 on the left side along the pipe connected to the side. Thus, the liquid in the support plate box 76 enters the eddy current fan 87 along the input pipe 86. The rotation of the eddy current fan 87 is driven by the flow of the liquid in the eddy current fan 87, and the rotation of the eddy current fan 87 drives the coaxial air blowing blades 88 to rotate. Thereby, the air blowing blades 88 extract air from the bottom side of the air extraction end shell 85 and blow the air out from the right side of the air extraction end shell 85, playing a role in cooling the rubber products in the link elasticity 74.
[0022] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "including", "comprising" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.
[0023] Finally, it should be noted that the above are only preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A recycling device for rubber processing, comprising a bottom box (1), characterized in that: Also included are a processing structure and a clamping assembly (7); The processing structure comprises a recovery box (2), a guide plate (3), a fixed rod frame plate (4), and a sliding rod (9); the recovery box (2) is fixedly connected to the top side of the bottom box (1); the guide plate (3) is fixedly connected to the inner side of the top end of the recovery box (2); the fixed rod frame plate (4) is fixed to the inner side wall of the bottom box (1); and the sliding rod (9) is fixedly connected to the inner top end of the fixed rod frame plate (4); The clamping assembly (7) comprises a support frame (71), a rotating shaft (72), a driving wheel (73), a connecting rod elasticity (74), a belt (75), and a support plate box (76); the support frame (71) is slidably connected to the outer side of the sliding rod (9); the rotating shaft (72) is rotatably connected to the inner side of the support frame (71); the driving wheel (73) is fixedly connected to the outer side of the rotating shaft (72); the belt (75) is arranged on the outer side of the driving wheel (73); the support plate box (76) is fixedly connected to the inner side of the rotating shaft (72); and the connecting rod elasticity (74) is fixedly connected to the inner side of the belt (75).
2. A recovery device for rubber processing according to claim 1, characterized in that: The support frame (71) is symmetrically arranged about the vertical center line of the bottom box (1); the interior of the support plate box (76) is a hollow structure; the fixing rod frame plate (4) is fixedly connected to the bottom box (1); three driving wheels (73) are arranged on the side of the support frame (71), and the three driving wheels (73) are distributed at triangular positions on the side of the support frame (71); and the guide plate (3) is arranged obliquely on the inner side of the bottom box (1).
3. A recovery device for rubber processing according to claim 2, characterized in that: A material stacking device (5) is provided on the side of the driving wheel (73), the material stacking device (5) comprising a material pushing structure and a material stacking structure, the material pushing structure comprising a balance wheel (51), a wheel rod (52), a guide rod slot plate (53), and a positioning slide bar (54), the balance wheel (51) being fixedly connected to the side of the driving wheel (73), the wheel rod (52) being fixedly connected to the side of the balance wheel (51), the guide rod slot plate (53) being slidably connected to the outer side of the wheel rod (52), and the positioning slide bar (54) being fixedly connected to the side of the guide rod slot plate (53).
4. A recovery device for rubber processing according to claim 3, characterized in that: The material stacking structure comprises an extension frame (55), a material pusher plate (56), and a guide arc piece (57); the extension frame (55) is fixedly connected to a side surface of a fixed rod frame plate (4); the material pusher plate (56) is rotatably connected to the side surface of the extension frame (55); and the guide arc piece (57) is fixedly connected to the side surface of the material pusher plate (56).
5. A recovery device for rubber processing according to claim 4, characterized in that: The positioning slide rod (54) is slidably connected to the extension frame (55), the guide arc plate (57) is slidably connected to the extension frame (55), the side cross-section of the push plate (56) is an obtuse-angled broken line shape, and a spring is fixedly connected to the side of the guide rod slot plate (53), and the other end of the spring is fixedly connected to the extension frame (55).
6. A recovery device for rubber processing according to claim 5, characterized in that: A lubricating device (6) is provided on the side of the guide rod groove plate (53), and the lubricating device (6) comprises a hydraulic push rod (61), a push plug cylinder (62), a filling material pipe (63), an output pipe (64), and an oil tank (65). The hydraulic push rod (61) is fixedly connected to the side of the guide rod groove plate (53), the push plug cylinder (62) is slidably connected to the outside of the hydraulic push rod (61), the side of the push plug cylinder (62) is fixedly connected to the filling material pipe (63), the output pipe (64) is fixedly connected to the side of the push plug cylinder (62), and the oil tank (65) is provided above the push plug cylinder (62).
7. A recovery device for rubber processing according to claim 6, characterized in that: The top end of the output pipe (64) is fixedly connected to the support frame (71), the oil tank (65) is connected to the end of the filling pipe (63), the upper surface of the push plug barrel (62) is fixedly connected to the bottom surface of the oil tank (65), the output pipe (64) extends to the side of the central shaft (72), the push plug barrel (62) includes a spring-loaded re-plug (621), the spring-loaded re-plug (621) is slidably connected to the inside of the push plug barrel (62), and the push plug barrel (62) The bottom surface of the recovery box (2) is fixedly connected to an air supply pipe (622), the end of the push plug cylinder (62) is fixedly connected to a tank air pipe (623), the inner side of the tank air pipe (623) is slidably connected to an upward adjustment plug rod (624), the top of the upward adjustment plug rod (624) is fixedly connected to a lifting shaft rod (625), and the inner side surface of the recovery box (2) is provided with an air guide flap (626), and the air guide flap (626) is slidably connected to the side of the lifting shaft rod (625).
8. A recovery device for rubber processing according to claim 7, characterized in that: A cooling device (8) is provided on the side of the support frame (71), the cooling device (8) comprising an air blowing structure and a cooling structure, the air blowing structure comprising a peristaltic handle (81), a liquid extraction tube (82), a liquid supply tube (83), and a water tank (84), the peristaltic handle (81) being fixedly connected to the side of the driving wheel (73), the liquid extraction tube (82) being arranged on the outside of the peristaltic handle (81), the liquid supply tube (83) being fixedly connected to the end of the liquid extraction tube (82), and the water tank (84) being arranged on the left side of the support frame (71).
9. A recovery device for rubber processing according to claim 8, characterized in that: The cooling structure comprises an exhaust end shell (85), an input pipe (86), a vortex fan (87), and air blowing blades (88); the exhaust end shell (85) is fixedly connected to a side of a water tank (84); the input pipe (86) is fixedly connected to a side of a support frame (71); and the vortex fan (87) is rotatably connected to the inner side of the exhaust end shell (85).
10. A recycling device for rubber processing according to claim 9, characterized in that: The liquid supply pipe (83) extends downward and is connected to the water tank (84); the input pipe (86) penetrates the inner side of the support frame (71) and is connected to the support plate box (76); a liquid drive ring is provided on the outer side of the vortex fan (87) and is fixedly connected to the air suction end shell (85); the other end of the input pipe (86) penetrates into the air suction end shell (85) and is connected to the liquid drive ring.
Citation Information
Patent Citations
Waste part recovery device for rubber processing
CN216267040U