Tire pyrolysis carbon black recovery device
Patent Information
- Application Number
- CN202522076307.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-26
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2035-09-26
AI Technical Summary
[0003]上述装置通过人工摇动吊板对钢丝与碎渣进行分离,需要人工长时间摇动,人工劳动强度高,工作效率低下,且费时费力,单通过摇动不能将废渣完全与钢丝分离,容易有废渣残留在钢丝上,废渣与钢丝分离效果不好,影响回收效果
1、通过振动电机使碾压圆盘产生震动,通过碾压圆盘使废旧轮胎产生震动,通过震动力将部分黏在钢丝上的废渣分散下来,废渣穿过固定筛网上筛孔落入收集箱内,不需要人工进行操作,降低了劳动强度,提高了工作效率;
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Figure CN224657647U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of waste tire processing technology, specifically a tire pyrolysis carbon black recovery device. Background Technology
[0002] The utility model application with application number CN202022117942.1 discloses a waste rubber pyrolysis carbon black recycling device. By suspending the placement structure on the base, after the waste tires have undergone rubber pyrolysis, the hook rod can be used to hook the hanging plate and shake it repeatedly to disperse the pyrolysis residue of the waste tires and let it fall into the collection box, thus separating the steel wires of the waste tires from the residue.
[0003] The aforementioned device separates the steel wire from the slag by manually shaking the hanging plate. This requires a long period of manual shaking, which is labor-intensive, inefficient, time-consuming, and labor-intensive. Shaking alone cannot completely separate the waste from the steel wire, and some waste may remain on the steel wire. The separation effect between the waste and the steel wire is poor, which affects the recycling effect. Utility Model Content
[0004] The purpose of this invention is to solve the above-mentioned problems by designing a tire pyrolysis carbon black recovery device.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: A tire pyrolysis carbon black recovery device, comprising: Recycling hopper; A fixed screen is fixedly connected to the inner wall of the recycling hopper, and fixed support legs are installed around the bottom of the recycling hopper. A collection box is provided below the recycling hopper. A waste separation component is used to disperse waste residue on steel wires and is located on a recycling hopper.
[0006] Furthermore, the waste separation assembly includes a crushing disc, a fixed base is fixedly installed on the side wall of the recycling hopper, a hydraulic cylinder is installed on the fixed base, a lifting seat is installed at the top of the piston rod of the hydraulic cylinder, a swaying assembly is provided on the lifting seat, a fixed sleeve is connected to the swaying assembly, a vertical sliding plate is slidably connected to the fixed sleeve, the crushing disc is fixedly connected to the bottom end of the vertical sliding plate, a fixed opening is provided on the side wall of the fixed sleeve, an electromagnet is installed on the side wall of the fixed sleeve, the magnetic attraction end of the electromagnet is located in the fixed opening, and a vibration motor is installed at the center of the surface of the crushing disc.
[0007] Furthermore, the swaying assembly includes a guide seat fixedly connected to the surface of the lifting seat, a guide rod slidably connected to the guide seat, the guide rod passing through the guide seat, one end of the guide rod being fixedly connected to a fixed sleeve, and the other end of the guide rod being fixedly connected to a wear-resistant push plate. A vibration spring is fitted on the guide rod, the vibration spring being located between the guide seat and the wear-resistant push plate. A drive motor is installed on one side of the bottom surface of the lifting seat, and the output end of the drive motor is connected to an eccentric wheel through a rotating shaft. The eccentric wheel is located at the center of the side of the wear-resistant push plate.
[0008] Furthermore, the rolling disc is concentric with the fixed screen, and friction protrusions are evenly distributed on the bottom surface of the rolling disc.
[0009] The friction protrusions increase the friction on the waste tires, improving the friction effect and completely dispersing the waste residue on the steel wire, thus improving the separation effect.
[0010] Furthermore, the guide slide rods are provided in four parts and are evenly distributed on the guide seat.
[0011] Furthermore, multiple angle irons are fixedly connected to the bottom surface of the fixed screen, and the two ends of the angle irons are fixedly connected to the inner wall of the recycling hopper, with the openings of the angle irons facing downwards.
[0012] The use of angle iron increases the strength of the fixed screen, preventing it from bending and deforming, thus extending its service life. The downward-facing opening of the angle iron prevents waste from getting stuck at the connection between the angle iron and the fixed screen, improving the material feeding efficiency.
[0013] Compared with the existing technology, the present technical solution has the following beneficial effects: 1. The vibrating motor causes the crushing disc to vibrate, which in turn causes the waste tires to vibrate. The vibration disperses some of the waste residue stuck to the steel wire. The waste residue passes through the screen holes of the fixed screen and falls into the collection box. No manual operation is required, which reduces labor intensity and improves work efficiency. 2. The guide slide rod moves back and forth along the guide seat through the eccentric wheel and vibration spring. The guide slide rod drives the fixed sleeve, vertical slide plate and rolling disc to move back and forth. The rolling disc moves back and forth to rub the waste tires. The friction separates the waste residue from the steel wire. The waste residue can be completely separated from the steel wire, avoiding waste residue residue and improving the recycling effect. Attached Figure Description
[0014] Figure 1 Top view of the waste separation assembly and the shaking assembly; Figure 2 This is a cross-sectional view of the recycling hopper; Figure 3 Diagram showing the descent state of the waste separation component and the shaking component; Figure 4 This is a magnified view of a portion of the waste separation assembly; In the diagram: 1. Recycling hopper; 2. Fixed screen; 3. Fixed support leg; 4. Collection box; 5. Waste separation component; 501. Compactor disc; 502. Fixed base; 503. Hydraulic cylinder; 504. Lifting seat; 505. Fixed sleeve; 506. Vertical sliding plate; 507. Fixed opening; 508. Electromagnet; 509. Vibration motor; 6. Shaking component; 601. Guide seat; 602. Guide slide rod; 603. Wear-resistant push plate; 604. Vibration spring; 605. Drive motor; 606. Eccentric wheel; 7. Friction protrusion; 8. Angle iron. Detailed Implementation
[0015] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0016] In the description of this utility model, it should be understood that the terms "length," "width," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, in the description of this utility model, "a plurality of" means two or more, unless otherwise explicitly specified.
[0017] This utility model provides, for example Figure 1-4 The tire pyrolysis carbon black recovery device shown includes: Recycling hopper 1; Fixed screen 2 is fixedly connected to the inner wall of recycling hopper 1. Fixed support legs 3 are installed around the bottom of recycling hopper 1. Collection box 4 is provided below recycling hopper 1. Waste separation component 5 is used to disperse the waste residue on the steel wire and is located on the recycling hopper 1.
[0018] The pyrolyzed tires are placed on the fixed screen 2 inside the recycling hopper 1. The waste tires are first vibrated by the waste separation component 5, which disperses some of the waste residue sticking to the steel wire. Then, the tires are rubbed by the waste separation component 5, which separates the waste residue from the steel wire. The waste residue falls into the collection box 4 through the screen holes on the fixed screen 2. No manual operation is required, which reduces labor intensity, improves work efficiency, and can completely separate the waste residue from the steel wire, avoiding waste residue residue and improving the recycling effect.
[0019] Refer to the instruction manual appendix Figure 1 Instruction manual attached Figure 2 Included with instruction manual Figure 4 The waste separation component 5 includes a crushing disc 501, a fixed base 502 fixedly installed on the side wall of the recycling hopper 1, a hydraulic cylinder 503 installed on the fixed base 502, a lifting seat 504 installed at the top of the piston rod of the hydraulic cylinder 503, a shaking component 6 provided on the lifting seat 504, a fixed sleeve 505 connected to the shaking component 6, a vertical sliding plate 506 slidably connected to the fixed sleeve 505, the crushing disc 501 fixedly connected to the bottom end of the vertical sliding plate 506, a fixed opening 507 provided on the side wall of the fixed sleeve 505, an electromagnet 508 installed on the side wall of the fixed sleeve 505, the magnetic end of the electromagnet 508 located inside the fixed opening 507, and a vibration motor 509 installed at the center of the surface of the crushing disc 501.
[0020] In the initial state, the electromagnet 508 is energized to generate magnetic force, which magnetically attracts the vertical slide plate 506. After the pyrolyzed tire is placed on the fixed screen 2 in the recycling hopper 1, the hydraulic cylinder 503 starts to work. The piston rod of the hydraulic cylinder 503 retracts, which drives the lifting seat 504, the shaking component 6, the fixed sleeve 505, the vertical slide plate 506 and the crushing disc 501 to descend. The crushing disc 501 presses on the waste tire. The electromagnet 508 is de-energized, and the vibration motor 509 starts to work. The vibration motor 509 causes the crushing disc 501 to vibrate up and down. When the crushing disc 501 vibrates, it drives the vertical slide plate 506 to slide along the fixed sleeve 505. The vibration motor 509 causes the waste tire to vibrate. The vibration force disperses some of the waste residue sticking to the steel wire. The waste residue passes through the screen holes on the fixed screen 2 and falls into the collection box 4. No manual operation is required, which reduces labor intensity and improves work efficiency.
[0021] Refer to the instruction manual appendix Figure 1 Instruction manual attached Figure 2 Included with instruction manual Figure 3The swaying component 6 includes a guide seat 601 fixedly connected to the surface of the lifting seat 504. A guide rod 602 is slidably connected to the guide seat 601. The guide rod 602 passes through the guide seat 601. One end of the guide rod 602 is fixedly connected to the fixed sleeve 505. The other end of the guide rod 602 is fixedly connected to a wear-resistant push plate 603. A vibration spring 604 is fitted on the guide rod 602. The vibration spring 604 is located between the guide seat 601 and the wear-resistant push plate 603. A drive motor 605 is installed on one side of the bottom surface of the lifting seat 504. The output end of the drive motor 605 is connected to an eccentric wheel 606 through a rotating shaft. The eccentric wheel 606 is located at the center of the side of the wear-resistant push plate 603.
[0022] After the tire vibrates, the electromagnet 508 is energized, generating a magnetic force that attracts the vertical sliding plate 506. The piston rod of the hydraulic cylinder 503 continues to contract, causing the crushing disc 501 to press the waste tire downwards. The drive motor 605 starts working, and its output drives the eccentric wheel 606 to rotate. During the rotation of the eccentric wheel 606, it contacts the wear-resistant push plate 603, pushing the wear-resistant push plate 603 to the left. The wear-resistant push plate 603 pushes the guide slide rod 602 to move along the guide seat 601, and the wear-resistant push plate 603 applies pressure to the vibration spring 604. The vibration spring 604 deforms and contracts under pressure, causing the wear-resistant push plate 603 to move to the right. Through the eccentric wheel 606 and the vibration spring 604, the guide slide rod 602 moves back and forth along the guide seat 601. The guide slide rod 602 drives the fixed sleeve 505, the vertical slide plate 506 and the rolling disc 501 to move back and forth. The rolling disc 501 rubs the waste tires by moving back and forth, and the friction separates the waste residue from the steel wire. This can completely separate the waste residue from the steel wire, avoid waste residue residue, and improve the recycling effect.
[0023] Refer to the instruction manual appendix Figure 2 Instruction manual attached Figure 3 Included with instruction manual Figure 4 The rolling disc 501 is concentric with the fixed screen 2, and friction protrusions 7 are evenly distributed on the bottom surface of the rolling disc 501.
[0024] The friction protrusion 7 increases the friction force on the waste tires, improves the friction effect, and can completely disperse the waste residue on the steel wire, thus improving the separation effect.
[0025] Refer to the instruction manual appendix Figure 2 Included with instruction manual Figure 3 Multiple angle irons 8 are fixedly connected to the bottom surface of the fixed screen 2. The two ends of the angle irons 8 are fixedly connected to the inner wall of the recycling hopper 1, and the opening of the angle irons 8 faces downward.
[0026] The angle iron 8 increases the strength of the fixed screen 2, preventing it from bending and deforming, thus improving its service life. The opening of the angle iron 8 faces downwards, preventing waste residue from getting stuck at the connection between the angle iron 8 and the fixed screen 2, thereby improving the material feeding efficiency.
[0027] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A tire pyrolysis carbon black recovery device, characterized in that, include: Recycling hopper (1); A fixed screen (2) is fixedly connected to the inner wall of the recycling hopper (1). Fixed support legs (3) are installed around the bottom of the recycling hopper (1). A collection box (4) is provided below the recycling hopper (1). Waste separation component (5), which is used to disperse waste residue on steel wire, is located on the recycling hopper (1).
2. The tire pyrolysis carbon black recovery device according to claim 1, characterized in that, The waste separation component (5) includes a crushing disc (501), a fixed base (502) is fixedly installed on the side wall of the recycling hopper (1), a hydraulic cylinder (503) is installed on the fixed base (502), a lifting seat (504) is installed on the top of the piston rod of the hydraulic cylinder (503), a shaking component (6) is provided on the lifting seat (504), a fixed sleeve (505) is connected to the shaking component (6), a vertical sliding plate (506) is slidably connected to the fixed sleeve (505), the crushing disc (501) is fixedly connected to the bottom end of the vertical sliding plate (506), a fixed opening (507) is provided on the side wall of the fixed sleeve (505), an electromagnet (508) is installed on the side wall of the fixed sleeve (505), the magnetic end of the electromagnet (508) is located in the fixed opening (507), and a vibration motor (509) is installed at the center of the surface of the crushing disc (501).
3. The tire pyrolysis carbon black recovery device according to claim 2, characterized in that, The swaying assembly (6) includes a guide seat (601) fixedly connected to the surface of the lifting seat (504). A guide slide rod (602) is slidably connected to the guide seat (601). The guide slide rod (602) passes through the guide seat (601). One end of the guide slide rod (602) is fixedly connected to a fixed sleeve (505). The other end of the guide slide rod (602) is fixedly connected to a wear-resistant push plate (603). A vibration spring (604) is fitted on the guide slide rod (602). The vibration spring (604) is located between the guide seat (601) and the wear-resistant push plate (603). A drive motor (605) is installed on one side of the bottom surface of the lifting seat (504). The output end of the drive motor (605) is connected to an eccentric wheel (606) through a rotating shaft. The eccentric wheel (606) is located at the center of the side of the wear-resistant push plate (603).
4. The tire pyrolysis carbon black recovery device according to claim 2, characterized in that, The rolling disc (501) is concentric with the fixed screen (2), and friction protrusions (7) are evenly distributed on the bottom surface of the rolling disc (501).
5. The tire pyrolysis carbon black recovery device according to claim 3, characterized in that, The guide slide rod (602) has four rods and is evenly distributed on the guide seat (601).
6. The tire pyrolysis carbon black recovery device according to claim 1, characterized in that, The bottom surface of the fixed screen (2) is fixedly connected with multiple angle irons (8), the two ends of the angle irons (8) are fixedly connected to the inner wall of the recycling hopper (1), and the opening of the angle irons (8) faces downward.
Citation Information
Patent Citations
Waste rubber cracking carbon black recovery device
CN213708238U