Rock wool centrifugal thread throwing machine and method
By designing a rock wool centrifugal wire shuffle machine including multiple conveyor belts and glue spray structures, the problem of splashing and inadequate fibres in the rock wool wire shuffle machine is solved, and the complete wire shuffling and collection of fibres is achieved to adapt to the processing needs of different doses.
Patent Information
- Application Number
- CN202510170459.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2045-02-17
AI Technical Summary
When used in the existing rock wool centrifugal wire swing machine, the rotating wire swing through the rotating roller will cause the splash of filamentous fibers, and some filamentous fibers cannot be collected in time, resulting in blockage and incomplete wire swing. At the same time, the guide at the fixed position is not suitable for different doses of wire swing processing.
A rock wool centrifugal wire shooker is designed, including a base frame, gear box, wire shook panel, wire shook roll and drive motor. It adopts multiple conveyor belts and glue spray structures. Through high-speed rotating wire shook roll and moving guide box, effective wire shook and collecting of different doses of materials can be achieved.
Effectively prevent the splash of filamentous fibers, ensure the thorough flipping and collection of filamentous fibers, adapt to different doses of rock wool flipping processing, and improve the efficiency and flexibility of the equipment.
Smart Images

Figure CN119977315A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of rock wool processing, and in particular to a rock wool centrifugal spinning machine and method. Background Art
[0002] The rock wool centrifugal spinning machine is a key equipment in the rock wool production line. It is mainly used to spin the high-temperature molten rock into a thin stream through high-speed centrifugal force, and add a binder to finally form filamentary fiber rock wool. It is widely used in rock wool production occasions.
[0003] The Chinese patent with the publication number "CN207552185U" discloses "a rock wool centrifugal spinning device, including four centrifugal rollers, a shock-absorbing bracket, a glue spraying unit and a motor, each of the centrifugal rollers includes a roller head, a main shaft and a connecting flange, and the two ends of the connecting flange are respectively connected to the main shaft and the roller head". Although it can play the role of "making the produced rock wool fiber more slender and of better quality, and at the same time the roller head is effectively utilized, the energy utilization rate is increased, and the economic benefits are improved", the existing rock wool centrifugal spinning machine, when used, will cause the filamentous fibers to be spun by the rotation of the rollers. The splashing of some filamentary fibers cannot be sprayed out and collected in time, which not only causes the filamentary fibers to remain in the wire spinning machine and cause blockage, but also causes the filamentary fibers to be not spun thoroughly. At the same time, when different doses of rock wool are spun, since the material guide position is fixed, the material can only be put into contact with the roller through a single position. When excessive material is put in, it cannot contact the roller thoroughly, and it is easy to cause the problem that some materials are not spun in place. Different doses of material need to contact with the roller at different positions to achieve thorough spinning, which makes the fixed position material guide inconvenient to use with different doses of wire spinning processing. Summary of the invention
[0004] The main purpose of the present invention is to provide a rock wool centrifugal spinning machine and method, which can solve the problem that when the existing rock wool centrifugal spinning machine is used, the spinning through the rotating roller will cause the filamentary fibers to splash, and some filamentary fibers cannot be sprayed out and collected in time, which not only causes the filamentary fibers to remain in the spinning machine to cause blockage, but also causes the filamentary fibers to be not spun thoroughly. At the same time, when different doses of rock wool are spun, since the material guide position is fixed, the material can only be put into contact with the roller through a single position. When excessive material is put in, it cannot contact the roller thoroughly, and it is easy for some materials to not be spun in place. The input of different doses of material requires contact with the roller at different positions to achieve thorough spinning, which makes the fixed position material guide inconvenient and cannot be used with different doses of spinning processing.
[0005] To achieve the above object, the technical solution adopted by the present invention is:
[0006] A rock wool centrifugal wire spinning machine and method, comprising a base frame, a gear box, a wire spinning panel, a wire spinning roller and a driving motor, wherein the gear box is fixedly mounted on the upper end of the base frame, the wire spinning panel is fixedly mounted on the front end of the gear box, a plurality of wire spinning rollers are movably mounted on the front end of the wire spinning panel, the driving motor is fixedly mounted on the rear end of the gear box, a nozzle mounting plate is fixedly mounted on the front end of the wire spinning roller, a plurality of water spray heads are fixedly mounted on the front end of the nozzle mounting plate, a glue spraying structure is fixedly mounted on the outside of the plurality of water spray heads at the front end of the wire spinning panel, a first transmission roller is movably mounted on one side of the front end of the wire spinning panel, and the driving motor is fixedly mounted on the rear end of the gear box. The first conveyor belt is movably installed on the outside of the first conveying roller, the second conveyor roller and the third conveyor roller are movably installed on the other side of the front end of the wire spinning panel, and the second conveyor roller is located above the third conveyor roller, the second conveyor belt is movably installed on the outer side of the second conveying roller, and the third conveyor belt is movably installed on the outer side of the third conveying roller, the front end of the wire spinning panel is located on one side of the first conveyor belt, the second conveyor belt and the third conveyor belt, and a side spraying structure is fixedly installed, the upper ends of the gear box and the wire spinning panel are fixedly installed with a top mounting plate, and a movable guide structure is fixedly installed in front of the upper end of the top mounting plate.
[0007] As a further solution of the present invention, supporting foot pads are welded on both sides of the base frame, the upper end of the base frame is located behind the gear box and a motor base is fixedly installed, the drive motor is fixedly installed above the motor base, and two connecting ear seats are welded on both sides of the wire spinning panel.
[0008] As a further solution of the present invention, the glue spraying structure includes a nozzle mounting ring seat, a central glue nozzle and a central input joint. The nozzle mounting ring seat is fixedly installed at the front end of the wire spinning panel, multiple central glue nozzles are fixedly installed at the front end of the nozzle mounting ring seat, and the central input joint is fixedly installed on one side of the nozzle mounting ring seat.
[0009] As a further solution of the present invention, the nozzle mounting ring seat is arranged in an annular shape, is located on the outside of the wire spinning roller and is arranged concentrically therewith, and the central input joint is connected with the central glue nozzle through the nozzle mounting ring seat.
[0010] As a further solution of the present invention, the third conveyor belt is located below the second conveyor belt, and the first conveyor belt, the second conveyor belt and the third conveyor belt are located on both sides of the wire spinning roller.
[0011] As a further solution of the present invention, the side glue spraying structure includes a bevel nozzle mounting seat, a side glue nozzle and a side input joint. The bevel nozzle mounting seat is fixedly installed at the front end of the wire spinning panel, multiple side glue nozzles are fixedly installed at the front end of the bevel nozzle mounting seat, and the side input joint is fixedly installed on one side of the bevel nozzle mounting seat.
[0012] As a further solution of the present invention, the inclined nozzle mounting seat is located on one side of the first conveyor belt, the second conveyor belt and the third conveyor belt, and the side glue nozzle faces the first conveyor belt, the second conveyor belt and the third conveyor belt.
[0013] As a further solution of the present invention, the mobile guide structure includes a mobile motor, a transmission pulley, a mounting frame, a reciprocating drive rod, a driven pulley, a transmission belt, a reciprocating ring and a material guide box. The mobile motor is fixedly mounted on the upper end of the top mounting plate, the transmission pulley is fixedly mounted on the rotating shaft end of the mobile motor, two mounting frames are fixedly mounted on the upper end of the top mounting plate and are located in front of the mobile motor, the reciprocating drive rod is movably mounted between the two mounting frames, the driven pulley is fixedly sleeved on one end of the outer side of the reciprocating drive rod, the transmission belt is movably mounted on the outer sides of the transmission pulley and the driven pulley, the reciprocating ring is movably sleeved on the outer side of the reciprocating drive rod, and the material guide box is fixedly mounted on the rear end of the reciprocating ring.
[0014] As a further solution of the present invention, the reciprocating ring moves around the outside of the transmission belt, the material guide box is located above the wire spinning roller, a movable mounting groove is opened in the center of the top mounting plate, and a positioning frame is fixedly installed on the top mounting plate above the movable mounting groove, and the bottom of the positioning frame passes through the movable mounting groove and is fixedly connected to the upper end of the gear box.
[0015] A method for using a rock wool centrifugal spinning machine, the method specifically comprising the following steps:
[0016] The base frame and the supporting foot pad play a role in placing and fixing the wire-spinning panel. The driving motor is used as the main power output. The output power of the driving motor is driven by the gear box to drive the wire-spinning roller to rotate at high speed.
[0017] Step 2: The material guide box receives the liquid stone material after high-temperature melting, and then outputs it from the lower end of the material guide box and drops it on the outside of the high-speed rotating wire-spinning roller. The liquid material is spun into wire by the centrifugal force generated by the high-speed rotation of the wire-spinning roller, and the material is sprayed with water by the water spray head to cool it when it falls, forming filamentary fibers. At the same time, the central glue nozzle sprays the adhesive to adhere the filamentary fibers, thereby forming filamentary fiber rock wool, and the rock wool is sprayed forward for collection;
[0018] Step 3: The rotation of the first conveyor roller, the second conveyor roller and the third conveyor roller drives the first conveyor belt, the second conveyor belt and the third conveyor belt to move, and the filamentary fibers thrown to both sides adhere to the outer sides of the first conveyor belt, the second conveyor belt and the third conveyor belt, and then move upward with the first conveyor belt, the second conveyor belt and the third conveyor belt and fall at the top, so that the splashed filamentary fibers are sprayed forward again by the adhesive sprayed by the central glue nozzle to be bonded and formed;
[0019] Step 4: The filamentary fibers continuously attached to the outer sides of the first conveyor belt, the second conveyor belt and the third conveyor belt will move to the reverse side. When the filamentary fibers move to one side of the side glue nozzle, the adhesive sprayed by the side glue nozzle will spray the filamentary fibers forward and adhere them at the same time, completely preventing the filamentary fibers from splashing out, and at the same time cleaning the surfaces of the first conveyor belt, the second conveyor belt and the third conveyor belt;
[0020] Step 5: The operation of the mobile motor drives the transmission pulley to rotate, and the transmission pulley drives the driven pulley to rotate through the transmission belt, thereby driving the reciprocating drive rod to rotate and move. During rotation, the reciprocating thread on the reciprocating drive rod is used to drive it to move left and right, thereby moving the material guide box left and right, so that the material guide box can evenly transport the liquid material to the outside of the wire spinning roller for wire spinning, or adjust the left and right position of the material guide box, and the top mounting plate can also be moved back and forth around the top of the gear box using the movable mounting groove, and then the positioning frame can be tightened to fix it, and the front and rear position of the material guide box can be adjusted, so that the material guide box can guide materials at different positions.
[0021] The above-mentioned embodiment of the present invention can achieve the following beneficial effects: when the filamentary fibers splash out to both sides, the filamentary fibers flung out to both sides adhere to the outer sides of the first conveyor belt, the second conveyor belt and the third conveyor belt and move upward and fall at the top, so that the splashed filamentary fibers are again sprayed forward by the adhesive sprayed out by the central glue nozzle and bonded to form, thereby preventing the filamentary fibers from splashing out to both sides and causing the spinning to be incomplete;
[0022] In order to ensure the firm attachment of the filamentary fibers, the filamentary fibers continuously attached to the outer sides of the first conveyor belt, the second conveyor belt and the third conveyor belt will move to the reverse side. When the filamentary fibers move to one side of the side glue nozzle, the adhesive sprayed by the side glue nozzle will spray the filamentary fibers forward and adhere them at the same time, thus completely preventing the filamentary fibers from splashing out. At the same time, the surfaces of the first conveyor belt, the second conveyor belt and the third conveyor belt will be cleaned to prevent the rock wool from adhering to the wire spinning machine, so as to carry out the wire spinning production of the wire spinning machine more comprehensively.
[0023] For different amounts of wire-spinning processing, when processing large amounts of wire-spinning processing, the material guide box can be moved left and right, so that the material guide box can evenly transport the liquid material to the outside of the wire-spinning roller for wire-spinning, so that the high-temperature molten rock can be more fully exposed to the wire-spinning roller for wire-spinning processing, preventing the problem of some materials not being properly spun;
[0024] By moving the material guide box, the left and right position of the material guide box can be adjusted, and the top surface mounting plate can also be moved forward and backward to adjust the front and back position of the material guide box, so that the material guide box can guide materials at different positions and be used in conjunction with different doses of wire spinning processing, further facilitating the processing and use of wire spinning. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 It is a schematic diagram of the overall structure of a rock wool centrifugal spinning machine of the present invention;
[0026] Figure 2 This is a rear view of a rock wool centrifugal spinning machine of the present invention;
[0027] Figure 3 This is a front view of a rock wool spinning panel in a centrifugal spinning machine of the present invention;
[0028] Figure 4 It is an enlarged view of a spinning roller in a rock wool centrifugal spinning machine of the present invention;
[0029] Figure 5 It is an enlarged view of the first conveyor belt in a rock wool centrifugal spinning machine of the present invention;
[0030] Figure 6 It is an enlarged view of the top surface mounting plate in a rock wool centrifugal spinning machine of the present invention.
[0031] In the figure: 1, base frame; 2, support foot pad; 3, gear box; 4, wire swing panel; 5, connecting ear seat; 6, wire swing roller; 7, nozzle mounting plate; 8, water spray head; 9, glue spray structure; 10, nozzle mounting ring seat; 11, center glue nozzle; 12, center input connector; 13, first transmission roller; 14, first conveyor belt; 15, second transmission roller; 16, second conveyor belt; 17, third transmission roller; 18, third conveyor belt; 1 9. Side glue spraying structure; 20. Inclined nozzle mounting seat; 21. Side glue nozzle; 22. Side input connector; 23. Top mounting plate; 24. Mobile mounting groove; 25. Positioning frame; 26. Mobile guide structure; 27. Mobile motor; 28. Drive pulley; 29. Mounting frame; 30. Reciprocating drive rod; 31. Driven pulley; 32. Drive belt; 33. Reciprocating sleeve ring; 34. Material guide box; 35. Motor base; 36. Drive motor. DETAILED DESCRIPTION
[0032] In order to make the technical means, creative features, objectives and effects achieved by the present invention easy to understand, the present invention is further explained below in conjunction with specific implementation methods.
[0033] like Figure 1-Figure 6As shown, a rock wool centrifugal wire spinning machine and method include a base frame 1, a gear box 3, a wire spinning panel 4, a wire spinning roller 6 and a driving motor 36, the gear box 3 is fixedly mounted on the upper end of the base frame 1, the wire spinning panel 4 is fixedly mounted on the front end of the gear box 3, a plurality of wire spinning rollers 6 are movably mounted on the front end of the wire spinning panel 4, the driving motor 36 is fixedly mounted on the rear end of the gear box 3, a nozzle mounting plate 7 is fixedly mounted on the front end of the wire spinning roller 6, a plurality of water spray heads 8 are fixedly mounted on the front end of the nozzle mounting plate 7, a glue spraying structure 9 is fixedly mounted on the outer sides of the plurality of water spray heads 8 at the front end of the wire spinning panel 4, a first transmission roller 13 is movably mounted on one side of the front end of the wire spinning panel 4, and the first transmission roller A first conveyor belt 14 is movably installed on the outside of 13, a second conveyor roller 15 and a third conveyor roller 17 are movably installed on the other side of the front end of the wire-spinning panel 4, and the second conveyor roller 15 is located above the third conveyor roller 17, a second conveyor belt 16 is movably installed on the outer side of the second conveyor roller 15, and a third conveyor belt 18 is movably installed on the outer side of the third conveyor roller 17, the front end of the wire-spinning panel 4 is located on one side of the first conveyor belt 14, the second conveyor belt 16 and the third conveyor belt 18, and a side spraying structure 19 is fixedly installed, a top mounting plate 23 is fixedly installed on the upper ends of the gear box 3 and the wire-spinning panel 4, and a movable guide structure 26 is fixedly installed in front of the upper end of the top mounting plate 23.
[0034] In this embodiment, supporting foot pads 2 are welded on both sides of the base frame 1. The upper end of the base frame 1 is located behind the gear box 3 and is fixedly installed with a motor base 35. The drive motor 36 is fixedly installed above the motor base 35. The motor base 35 supports the drive motor 36. Two connecting ear seats 5 are welded on both sides of the wire spinning panel 4. The connecting ear seats 5 are used for installation and docking of the wire spinning panel 4.
[0035] In this embodiment, the glue spraying structure 9 includes a nozzle mounting ring seat 10, a central glue nozzle 11 and a central input joint 12. The nozzle mounting ring seat 10 is fixedly mounted on the front end of the wire spinning panel 4. Multiple central glue nozzles 11 are fixedly mounted on the front end of the nozzle mounting ring seat 10. The central input joint 12 is fixedly mounted on one side of the nozzle mounting ring seat 10. The nozzle mounting ring seat 10 is arranged in a ring shape. The nozzle mounting ring seat 10 is located on the outside of the wire spinning roller 6 and is arranged concentrically therewith. The central input joint 12 is connected with the central glue nozzle 11 through the nozzle mounting ring seat 10. The central input joint 12 sprays adhesive on the filamentary fibers swung out of the wire spinning roller 6.
[0036] In this embodiment, the third conveyor belt 18 is located below the second conveyor belt 16, and the first conveyor belt 14, the second conveyor belt 16 and the third conveyor belt 18 are located on both sides of the spinning roller 6. The first conveyor belt 14, the second conveyor belt 16 and the third conveyor belt 18 are used to collect the splashed filamentary fibers.
[0037] In this embodiment, the side glue spraying structure 19 includes a bevel nozzle mounting seat 20, a side glue nozzle 21 and a side input joint 22. The bevel nozzle mounting seat 20 is fixedly mounted on the front end of the wire spinning panel 4, and multiple side glue nozzles 21 are fixedly mounted on the front end of the bevel nozzle mounting seat 20. The side input joint 22 is fixedly mounted on one side of the bevel nozzle mounting seat 20. The bevel nozzle mounting seat 20 is located on one side of the first conveyor belt 14, the second conveyor belt 16 and the third conveyor belt 18. The side glue nozzle 21 faces the first conveyor belt 14, the second conveyor belt 16 and the third conveyor belt 18, and the side glue nozzle 21 sprays the adhesive toward the first conveyor belt 14, the second conveyor belt 16 and the third conveyor belt 18.
[0038] In this embodiment, the mobile guide structure 26 includes a mobile motor 27, a transmission pulley 28, a mounting frame 29, a reciprocating drive rod 30, a driven pulley 31, a transmission belt 32, a reciprocating collar 33 and a material guide box 34. The mobile motor 27 is fixedly mounted on the upper end of the top mounting plate 23, the transmission pulley 28 is fixedly mounted on the rotating shaft end of the mobile motor 27, two mounting frames 29 are fixedly mounted on the upper end of the top mounting plate 23 and are located in front of the mobile motor 27, the reciprocating drive rod 30 is movably mounted between the two mounting frames 29, the driven pulley 31 is fixedly sleeved on the outer end of the reciprocating drive rod 30, the transmission belt 32 is movably mounted on the outer sides of the transmission pulley 28 and the driven pulley 31, the reciprocating collar 33 is movably sleeved on the outer side of the reciprocating drive rod 30, and the material guide box 34 is fixedly mounted on the rear end of the reciprocating collar 33, and the reciprocating drive rod 30 is driven to rotate by the operation of the mobile motor 27 through the transmission pulley 28, the transmission belt 32 and the driven pulley 31.
[0039] In this embodiment, the reciprocating ring 33 moves around the outside of the transmission belt 32, and the material guide box 34 is located above the wire spinning roller 6. The material guide box 34 is used to discharge the material to the wire spinning roller 6. A movable mounting groove 24 is opened in the center of the top mounting plate 23, and a positioning frame 25 is fixedly installed on the top mounting plate 23 above the movable mounting groove 24. The bottom of the positioning frame 25 passes through the movable mounting groove 24 and is fixedly connected to the upper end of the gear box 3. The positioning frame 25 has the effect of fixing the top mounting plate 23. After loosening the positioning frame 25, the top mounting plate 23 can move forward and backward through the movable mounting groove 24.
[0040] It should be noted that the present invention is a rock wool centrifugal wire spinning machine and method. When in use, the base frame 1 and the support foot pad 2 play a role in placing and fixing. The wire spinning panel 4 is connected with the drive motor 36 as the main power output. The output power of the drive motor 36 drives the wire spinning roller 6 to rotate at high speed after being transmitted by the gear box 3. The material guide box 34 receives the stone liquid material after high-temperature melting, and then outputs it from the lower end of the material guide box 34 and falls on the outside of the high-speed rotating wire spinning roller 6. The centrifugal force generated by the high-speed rotation of the wire spinning roller 6 is used to spin the liquid material into a wire package, and the water spray head 8 is used to spray water and cool the material when it falls to form filamentary fibers. At the same time, the central glue nozzle 11 sprays an adhesive to adhere the filamentary fibers, thereby forming filamentary fiber rock wool, and the rock wool is sprayed forward for collection;
[0041] When the filamentary fibers splash out to both sides, the rotation of the first conveyor roller 13, the second conveyor roller 15 and the third conveyor roller 17 drives the first conveyor belt 14, the second conveyor belt 16 and the third conveyor belt 18 to move, and the filamentary fibers thrown out to both sides adhere to the outer sides of the first conveyor belt 14, the second conveyor belt 16 and the third conveyor belt 18, and then move upward with the first conveyor belt 14, the second conveyor belt 16 and the third conveyor belt 18 and fall at the top, so that the splashed filamentary fibers are sprayed forward again by the adhesive sprayed by the central glue nozzle 11 to be adhered and formed;
[0042] In order to ensure the firm attachment of the filamentary fibers, the filamentary fibers continuously attached to the outer sides of the first conveyor belt 14, the second conveyor belt 16 and the third conveyor belt 18 will move to the reverse side. When the filamentary fibers move to one side of the side glue nozzle 21, the adhesive sprayed by the side glue nozzle 21 will spray the filamentary fibers forward and adhere them at the same time, thus completely preventing the filamentary fibers from splashing out, and at the same time cleaning the surfaces of the first conveyor belt 14, the second conveyor belt 16 and the third conveyor belt 18;
[0043] For different amounts of wire-spinning processing, when processing large amounts of wire-spinning processing, the operation of the mobile motor 27 drives the transmission pulley 28 to rotate, and the transmission pulley 28 drives the driven pulley 31 to rotate through the transmission belt 32, thereby driving the reciprocating drive rod 30 to rotate and move. During rotation, the reciprocating thread on the reciprocating drive rod 30 is used to drive it to move left and right, thereby moving the material guide box 34 left and right, so that the material guide box 34 can evenly transport the liquid material to the outside of the wire-spinning roller 6 for wire-spinning, or adjust the left and right position of the material guide box 34, and the top surface mounting plate 23 can also be moved back and forth around the top of the gear box 3 using the movable mounting groove 24, and then the positioning frame 25 is tightened to fix it, and the front and rear positions of the material guide box 34 are adjusted, so that the material guide box 34 can guide materials at different positions and be used in conjunction with wire-spinning processing of different doses.
Claims
1. A rock wool centrifugal wire spinning machine, comprising a base frame (1), a gear box (3), a wire spinning panel (4), a wire spinning roller (6) and a drive motor (36), wherein the gear box (3) is fixedly mounted on the upper end of the base frame (1), the wire spinning panel (4) is fixedly mounted on the front end of the gear box (3), a plurality of wire spinning rollers (6) are movably mounted on the front end of the wire spinning panel (4), and the drive motor (36) is fixedly mounted on the rear end of the gear box (3), characterized in that: A nozzle mounting plate (7) is fixedly mounted on the front end of the spinning roller (6), a plurality of water spray heads (8) are fixedly mounted on the front end of the spinning roller mounting plate (7), a glue spraying structure (9) is fixedly mounted on the outside of the plurality of water spray heads (8) at the front end of the spinning panel (4), a first conveying roller (13) is movably mounted on one side of the front end of the spinning panel (4), a first conveying belt (14) is movably mounted on the outside of the first conveying roller (13), a second conveying roller (15) and a third conveying roller (17) are movably mounted on the other side of the front end of the spinning panel (4), and the second conveying roller (15) is movably mounted on the outside of the first conveying roller (13). ) is located above the third conveying roller (17), a second conveying belt (16) is movably installed on the outer side of the second conveying roller (15), a third conveying belt (18) is movably installed on the outer side of the third conveying roller (17), the front end of the wire-spinning panel (4) is located on one side of the first conveying belt (14), the second conveying belt (16) and the third conveying belt (18), and a side glue spraying structure (19) is fixedly installed, the upper ends of the gear box (3) and the wire-spinning panel (4) are fixedly installed with a top surface mounting plate (23), and the upper front end of the top surface mounting plate (23) is fixedly installed with a movable guide structure (26).
2. A rock wool centrifugal spinning machine according to claim 1, characterized in that: Supporting foot pads (2) are welded on both sides of the base frame (1); a motor base (35) is fixedly installed on the upper end of the base frame (1) behind the gear box (3); a driving motor (36) is fixedly installed above the motor base (35); and two connecting ear seats (5) are welded on both sides of the wire-spinning panel (4).
3. The rock wool centrifugal spinning machine according to claim 1, characterized in that: The glue spraying structure (9) comprises a nozzle mounting ring seat (10), a central glue nozzle (11) and a central input joint (12); the nozzle mounting ring seat (10) is fixedly mounted on the front end of the wire spinning panel (4); a plurality of central glue nozzles (11) are fixedly mounted on the front end of the nozzle mounting ring seat (10); and the central input joint (12) is fixedly mounted on one side of the nozzle mounting ring seat (10).
4. A rock wool centrifugal spinning machine according to claim 3, characterized in that: The nozzle mounting ring seat (10) is arranged in an annular shape. The nozzle mounting ring seat (10) is located outside the spinning roller (6) and is arranged concentrically therewith. The central input joint (12) is connected to the central glue nozzle (11) through the nozzle mounting ring seat (10).
5. The rock wool centrifugal spinning machine according to claim 1, characterized in that: The third conveyor belt (18) is located below the second conveyor belt (16), and the first conveyor belt (14), the second conveyor belt (16) and the third conveyor belt (18) are located on both sides of the spinning roller (6).
6. The rock wool centrifugal spinning machine according to claim 1, characterized in that: The side glue spraying structure (19) comprises a bevel nozzle mounting seat (20), a side glue nozzle (21) and a side input joint (22); the bevel nozzle mounting seat (20) is fixedly mounted on the front end of the wire spinning panel (4); a plurality of side glue nozzles (21) are fixedly mounted on the front end of the bevel nozzle mounting seat (20); and the side input joint (22) is fixedly mounted on one side of the bevel nozzle mounting seat (20).
7. A rock wool centrifugal spinning machine according to claim 6, characterized in that: The inclined surface spray head mounting seat (20) is located on one side of the first conveyor belt (14), the second conveyor belt (16) and the third conveyor belt (18), and the side glue spray head (21) faces the first conveyor belt (14), the second conveyor belt (16) and the third conveyor belt (18).
8. The rock wool centrifugal spinning machine according to claim 1, characterized in that: The movable guide structure (26) comprises a movable motor (27), a transmission pulley (28), a mounting frame (29), a reciprocating driving rod (30), a driven pulley (31), a transmission belt (32), a reciprocating sleeve ring (33) and a material guide box (34); the movable motor (27) is fixedly mounted on the upper end of the top surface mounting plate (23); the transmission pulley (28) is fixedly mounted on the rotating shaft end of the movable motor (27); and two mounting frames (29) are fixedly mounted on the top surface mounting plate. The upper end of the reciprocating drive rod (23) is located in front of the moving motor (27), the reciprocating drive rod (30) is movably mounted between the two mounting frames (29), the driven pulley (31) is fixedly sleeved on the outer end of the reciprocating drive rod (30), the transmission belt (32) is movably mounted on the outer sides of the transmission pulley (28) and the driven pulley (31), the reciprocating sleeve (33) is movably sleeved on the outer side of the reciprocating drive rod (30), and the material guide box (34) is fixedly mounted on the rear end of the reciprocating sleeve (33).
9. A rock wool centrifugal spinning machine according to claim 8, characterized in that: The reciprocating ring (33) moves around the outer side of the transmission belt (32), the material guide box (34) is located above the spinning roller (6), a movable installation groove (24) is opened at the center of the top surface mounting plate (23), a positioning frame (25) is fixedly installed on the top surface mounting plate (23) above the movable installation groove (24), and the bottom of the positioning frame (25) passes through the movable installation groove (24) and is fixedly connected to the upper end of the gear box (3).
10. A method for using the rock wool centrifugal spinning machine according to any one of claims 1 to 9, characterized in that: The method specifically comprises the following steps: Step 1: The base frame (1) and the supporting foot pad (2) play a role in placing and fixing the wire-spinning panel (4) and the driving motor (36) as the main power output. The output power of the driving motor (36) is driven by the gear box (3) to drive the wire-spinning roller (6) to rotate at a high speed; Step 2: The material guide box (34) receives the liquid stone material after high-temperature melting, and then outputs it from the lower end of the material guide box (34) and drops it onto the outside of the high-speed rotating spinning roller (6). The liquid material is spun into silk by the centrifugal force generated by the high-speed rotation of the spinning roller (6). When the material falls, the water spray head (8) is used to spray water for cooling to form silk fibers. At the same time, the central glue spray head (11) sprays an adhesive to adhere the silk fibers, thereby forming silk fiber rock wool, and the rock wool is sprayed forward for collection. Step 3: The rotation of the first conveyor roller (13), the second conveyor roller (15) and the third conveyor roller (17) drives the first conveyor belt (14), the second conveyor belt (16) and the third conveyor belt (18) to move, and the filamentary fibers thrown to both sides adhere to the outer sides of the first conveyor belt (14), the second conveyor belt (16) and the third conveyor belt (18), and then move upward with the first conveyor belt (14), the second conveyor belt (16) and the third conveyor belt (18) and fall at the top, so that the splashed filamentary fibers are sprayed forward again by the adhesive sprayed by the central glue nozzle (11) to adhere and form; Step 4: The filamentary fibers continuously attached to the outer sides of the first conveyor belt (14), the second conveyor belt (16) and the third conveyor belt (18) will move to the reverse side. When the filamentary fibers move to one side of the side glue nozzle (21), the adhesive sprayed by the side glue nozzle (21) will spray the filamentary fibers forward and adhere them at the same time, thus completely preventing the filamentary fibers from splashing out. At the same time, the surfaces of the first conveyor belt (14), the second conveyor belt (16) and the third conveyor belt (18) are cleaned. Step 5: The operation of the mobile motor (27) drives the transmission pulley (28) to rotate, and the transmission pulley (28) drives the driven pulley (31) to rotate through the transmission belt (32), thereby driving the reciprocating drive rod (30) to rotate and move. During the rotation, the reciprocating thread on the reciprocating drive rod (30) is used to drive it to move left and right, thereby moving the material guide box (34) left and right, so that the material guide box (34) can evenly transport the liquid material to the outside of the spinning roller (6) for spinning, or adjust the left and right position of the material guide box (34). The top surface mounting plate (23) can also be moved forward and backward around the top of the gear box (3) using the movable mounting groove (24), and then the positioning frame (25) is tightened to fix it, and the front and rear positions of the material guide box (34) are adjusted, so that the material guide box (34) can guide materials at different positions.
Citation Information
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