A transport line for the production of rock wool and a method thereof

By combining components such as contact frames, rollers, motors, hydraulic cylinders, and a dust collection system, the problems of difficult fiber removal and unsmoothed surface protrusions in rock wool production have been solved, achieving smooth and efficient transportation of rock wool and improving its usability and safety.

CN116788583BActive Publication Date: 2025-11-07成都思拓知识产权服务有限公司
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Patent Information

Application Number
CN202210284850.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-03-13
Publication Date
2025-11-07
Estimated Expiration
2042-03-13

AI Technical Summary

Technical Problem

In the current rock wool production process, fiber debris is difficult to remove and surface protrusions are not smoothed out, resulting in low usability of the transportation equipment and affecting the usability of the rock wool.

Method used

The system uses components such as a contact frame, a first roller, a self-rotating shaft, a second motor, a hydraulic cylinder, a compression spring, a rotating shaft, a second roller, an electrostatic generator, and blades. It uses electrostatics to make the fibers stand upright and cut them. Combined with a rotation smoothing and dust collection system, it removes fiber debris, ensuring that the rock wool is flat and wrinkle-free.

Benefits of technology

It effectively removes fiber debris, ensures a smooth surface for rock wool, improves its usability, prevents secondary adhesion of fiber debris and human injury, and enhances transportation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application belongs to the technical field of rock wool production and transportation, and particularly relates to a transportation line for rock wool production and a method thereof. The following scheme is proposed and comprises a transportation platform. The top outer wall of the transportation platform is fixedly connected with extrusion springs at equal distances. The outer walls of the extrusion springs on the same side are fixedly connected with the same support plate. The outer walls of the two support plates are each provided with two first mounting holes. The inner walls of the opposite two first mounting holes are connected with the same rotating shaft through bearings. The present application is provided with a dust suction pump, a two-way pipe, a dust suction pipe, a hollow dust suction plate and a dust collection box. During the process of cutting the fibers on the rock wool by the blade, the dust suction pump is started. The cut fiber scraps are collected into the dust collection box through the dust suction holes on the hollow dust suction plate, so as to prevent the cut fiber scraps from being attached to the surface of the rock wool again, improve the treatment effect of the rock wool, and prevent the fiber scraps from being inhaled into the human body to cause harm to the human body.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of rock wool production and transportation, and particularly relates to a transportation line for rock wool production and a method thereof. BACKGROUND

[0002] Rock wool originates from Hawaii. After the first volcanic eruption of the island, the residents found a piece of soft rock on the ground after melting, which is the first human cognition of rock wool fiber. The production process of rock wool actually simulates the natural process of volcanic eruption in Hawaii. The rock wool product adopts high-quality basalt, dolomite and the like as main raw materials, is dissolved at a high temperature of 1450 DEG C or above, is spun into fibers by using an international advanced four-axis centrifuge at a high speed, is sprayed with a certain amount of binder, dustproof oil and hydrophobic agent, is collected by a cotton collector, is solidified by a pendulum method process and three-dimensional laying, and is cut to form rock wool products of different specifications and purposes. When the rock wool is packaged, a plurality of rock wool needs to be transported and then is sent to a packaging machine for packaging.

[0003] In the existing rock wool production process, a conveying device is needed to convey the produced rock wool to a packing machine. After the rock wool is produced, the rock wool is placed on a conveying belt for transportation. In the production process of the rock wool, due to mechanical cutting and plasticity, some fiber scraps are generated on the surface of the rock wool. The fiber scraps are relatively small and are not easy to remove. Meanwhile, the fiber scraps cannot be flattened due to the protrusions on the surface of the rock wool. The impurities on the packaged and collected rock wool will cause the use value of the rock wool to be reduced after the rock wool is sold for a long time under compression. Therefore, the conveying device has a low use value. SUMMARY

[0004] The rock wool production transportation line disclosed by the application relates to a transportation platform, the top outer wall of the transportation platform is fixedly connected with extrusion springs at equal distances, the outer walls of the extrusion springs on the same side are fixedly connected with the same support plate, the outer walls of the two support plates are each provided with two first mounting holes, the inner walls of the opposite first mounting holes are connected with the same rotating shaft through bearings, the outer walls of the two rotating shafts are fixedly connected with the same transportation belt, the outer walls of the two rotating shafts are fixedly connected with pulleys, the outer walls of the two pulleys are fixedly connected with the same rotating belt, one side outer wall of one of the support plates is fixedly connected with a first connecting plate, the outer wall of one side of the first connecting plate is fixedly connected with a first motor, the output end of the first motor is connected with the outer wall of one of the rotating shafts through a shaft coupling, the outer walls of the two support plates are fixedly connected with the same fixing frame, the outer walls of one side of the fixing frame are fixedly connected with two telescopic cylinders, the outer walls of the two telescopic cylinders are fixedly connected with the same lifting plate, the outer walls of one side of the lifting plate are fixedly connected with a resisting frame, the outer walls of the two sides of the resisting frame are each provided with second mounting holes at equal distances, the inner walls of the opposite second mounting holes are connected with the same self-rotating shaft through bearings, the outer walls of each self-rotating shaft are fixedly connected with a first roller, the outer walls of one side of the lifting plate are fixedly connected with two sliding grooves, the inner walls of the two sliding grooves are each slidingly connected with a sliding block, the outer walls of the two sides of the resisting frame are each fixedly connected with a first telescopic rod, the outer wall of one side of the first telescopic rod is connected with the outer wall of one side of the sliding block, the outer walls of one side of the two sliding blocks are each fixedly connected with a second motor, the output ends of the two second motors are each connected with a hydraulic cylinder through a shaft coupling, the outer walls of one side of the two hydraulic cylinders are each fixedly connected with a mounting frame, the outer walls of the two sides of the two mounting frames are each provided with third mounting holes, the inner walls of the opposite third mounting holes are connected with the same rotating shaft through bearings, the outer walls of each rotating shaft are fixedly connected with a second roller, the outer walls of the two sides of the two mounting frames are each fixedly connected with a blade, the outer walls of the two sides of the resisting frame are each fixedly connected with a plurality of mounting blocks, and the outer walls of one side of each mounting block are each fixedly connected with an electrostatic generating rod.

[0005] Preferably, the outer wall of the top of the fixing frame is fixedly connected with two second connecting plates, and the outer walls of one side of the two second connecting plates are fixedly connected with the same dust collection pump.

[0006] Preferably, the dust collection end of the dust collection pump is fixedly connected with a two-way pipe, and the outer walls of the two ends of the two-way pipe are each fixedly connected with a dust collection pipe.

[0007] Preferably, the outer walls of one side of the two dust collection pipes are each fixedly connected with a metal telescopic pipe.

[0008] Preferably, the outer walls of the two sides of the lifting plate are each fixedly connected with a hollow dust collection plate, the outer walls of one side of the two hollow dust collection plates are each provided with dust collection holes at equal distances, and the outer wall of one side of the metal telescopic pipe is connected with the outer wall of one side of the hollow dust collection plate.

[0009] Preferably, one side outer wall of the fixing frame is fixedly connected with a dust collecting box, and the dust collecting pump is connected to the inside of the dust collecting box through a pipeline.

[0010] Preferably, the top outer wall of the transportation platform is fixedly connected with two limiting rods, the outer wall of the two limiting rods on one side is fixedly connected with two second telescopic rods, the outer wall of the two second telescopic rods on one side is fixedly connected with the same mounting plate, and the outer wall of the two mounting plates on one side is fixedly connected with brush hairs at equal distances.

[0011] Preferably, the outer wall of each vibration motor on the two mounting plates is fixedly connected with a vibration spring at equal distances, and the outer wall of each vibration spring is fixedly connected with a knocking block.

[0012] Preferably, the outer wall of the transportation platform on one side is provided with a collecting opening, the inner wall of the collecting opening is fixedly connected with a collecting box, the outer wall of the collecting box on two sides is fixedly connected with two anti-out plates, and the outer wall of the transportation platform on the bottom is fixedly connected with support columns at equal distances.

[0013] A use method of a transportation line for rock wool production, applied to the transportation line for rock wool production.

[0014] S1: when transporting rock wool, the produced rock wool is placed on the transportation belt, and after being conveyed to the lower side of the abutting frame, the telescopic cylinder drives the abutting frame to contact the rock wool, the first roller on the rotating shaft limits the rock wool, and the electrostatic generating rod generates electrostatic, the second motor is started, and the blade above the mounting frame cuts the vertical fibers under the drive of the second motor;

[0015] S2: at the same time, the second roller below the mounting frame rotates with the mounting frame, the transportation belt is extruded, the compression spring is infinitely compressed, then the second motor rotates the mounting frame to a position parallel to the abutting frame, the first telescopic rod drives the sliding block to slide in the sliding groove, so that the mounting frame is pushed forward, and the rotating shaft drives the second roller to rotate to push and smooth the rock wool.

[0016] The beneficial effects in the application are:

[0017] 1. The rock wool is transported by setting up the resisting frame, the first roller, the rotation shaft, the second motor, the hydraulic cylinder, the extrusion spring, the rotating shaft, the second roller, the static electricity generating stick and the blade, the rock wool after production is placed on the conveying belt, after being conveyed to the resisting frame below, the telescopic cylinder drives the resisting frame to contact with the rock wool, the first roller on the rotation shaft limits the rock wool, at the same time, the static electricity generating stick generates static electricity, the fiber on the surface of the rock wool is erected, the second motor is started, the blade on the installation frame above cuts the erected fiber, so that the fiber treatment on the surface of the rock wool is realized, at the same time, in the process of fiber treatment, the second roller below the installation frame rotates with the installation frame to rotate and smooth the surface of the rock wool, the conveying belt is extruded at the same time of smoothing, the extrusion spring is compressed infinitely, so that the smoothing effect is better, after the rotation and smoothing are finished, the second motor rotates the installation frame to the position parallel to the resisting frame, the first telescopic rod drives the sliding block to slide in the sliding groove, so that the installation frame is pushed forward, the rotating shaft drives the second roller to rotate, the rock wool is pushed forward and smoothed again, so that the rock wool cannot be wrinkled in the conveying process, and the use value of the rock wool is ensured.

[0018] 2. By setting up the dust suction pump, the two-way pipe, the dust suction pipe, the hollow dust suction plate and the dust collecting box, the fiber on the rock wool is cut by the blade, the dust suction pump is started, the fiber chips cut off are collected into the dust collecting box through the dust suction holes on the hollow dust suction plate, so that the fiber chips cut off are prevented from being attached to the surface of the rock wool again, the treatment effect of the rock wool is improved, and the fiber chips are prevented from being inhaled into the human body to cause harm to the human body.

[0019] 3. By setting up the second telescopic rod, the vibration motor, the vibration spring, the knocking block, the brush, the collecting box and the anti-out plate, the fiber on the rock wool is cut by the blade, the second telescopic rod is started to drive the installation plate to move forward, the vibration motor is started to drive the knocking block on the vibration spring to knock the surface of the conveying platform during the movement, so that the fiber chips adhered to the surface are fallen off, and then the fiber chips are uniformly swept into the collecting box by the brush, so that the fiber chips are prevented from being attached to the surface of the rock wool again, and the anti-out plate is in the shape of an outer octagon, so that the fiber chips are effectively prevented from being separated from the collecting box. DETAILED DESCRIPTION

[0020] Figure 1 It is an overall structure schematic view of the conveying line for rock wool production.

[0021] Figure 2 It is a side view assembly structure schematic view of the conveying line for rock wool production.

[0022] Figure 3 It is a cutting assembly structure schematic view of the conveying line for rock wool production.

[0023] Figure 4 is a partial assembly structure diagram of the cleaning assembly structure of the transport line for rock wool production; Figure 2 is a partial assembly structure diagram of the cleaning assembly structure of the transport line for rock wool production;

[0024] Figure 5 is a partial assembly structure diagram of the cleaning assembly structure of the transport line for rock wool production;

[0025] Figure 6 is a partial assembly structure diagram of the cleaning assembly structure of the transport line for rock wool production.

[0026] In the figure: 1, transport platform; 2, extruded spring; 3, support plate; 4, No. 1 connecting plate; 5, No. 1 motor; 6, rotating shaft; 7, rotating belt; 8, transport belt; 9, fixed frame; 10, telescopic cylinder; 11, lifting plate; 12, collection box; 13, sliding groove; 14, sliding block; 15, No. 1 telescopic rod; 16, abutting frame; 17, self-rotating shaft; 18, No. 1 roller; 19, No. 2 motor; 20, hydraulic cylinder; 21, mounting frame; 22, rotating shaft; 23, No. 2 roller; 24, blade; 25, mounting block; 26, electrostatic generating rod; 27, No. 2 connecting plate; 28, dust collection pump; 29, two-way pipe; 30, dust collection pipe; 31, metal telescopic pipe; 32, hollow dust collection plate; 33, dust collection hole; 34, dust collection box; 35, limiting rod; 36, No. 2 telescopic rod; 37, mounting plate; 38, vibration motor; 39, vibration spring; 40, knocking block; 41, brush; 42, anti-out plate; 43, support column. DETAILED DESCRIPTION

[0027] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all.

[0028] Referring to Figure 1 , Figure 2 , Figure 3 and Figure 4The utility model provides a kind of transport line for rock wool production, including transport platform 1, the top outer wall of transport platform 1 is equidistantly fixedly connected with extrusion spring 2, and the outer wall of multiple extrusion springs 2 located in the same side is fixedly connected with same support plate 3, and the outer wall of two support plates 3 is opened with two first mounting holes, and the inner wall of opposite two first mounting holes is connected with same rotating shaft 6 by bearing, and the outer wall of two rotating shafts 6 is fixedly connected with same transport belt 8, the outer wall of two rotating shafts 6 is fixedly connected with belt wheel, and the outer wall of two belt wheels is fixedly connected with same rotating belt 7, the outer wall of one of support plates 3 is fixedly connected with first connecting plate 4, and the outer wall of first connecting plate 4 is fixedly connected with first motor 5, and the output of first motor 5 is connected with the outer wall of one of rotating shafts 6 by coupling, the outer wall of two support plates 3 is fixedly connected with same fixed frame 9, and the outer wall of fixed frame 9 is fixedly connected with two telescopic cylinders 10, and the outer wall of two telescopic cylinders 10 is fixedly connected with same lifting plate 11, and the outer wall of lifting plate 11 is fixedly connected with abutment frame 16, and the outer wall of both sides of abutment frame 16 is equidistantly opened with second mounting hole, and the inner wall of opposite two second mounting holes is connected with same self-rotating shaft 17 by bearing, and the outer wall of each self-rotating shaft 17 is fixedly connected with one roller 18, the outer wall of lifting plate 11 is fixedly connected with two sliding grooves 13, and the inner wall of two sliding grooves 13 is slidably connected with sliding block 14, the outer wall of both sides of abutment frame 16 is fixedly connected with first telescopic rod 15, the outer wall of first telescopic rod 15 is connected with the outer wall of one side of sliding block 14, the outer wall of one side of two sliding blocks 14 is fixedly connected with second motor 19, and the output of two second motors 19 is connected with hydraulic cylinder 20 by coupling, and the outer wall of one side of two hydraulic cylinders 20 is fixedly connected with mounting bracket 21, and the outer wall of both sides of two mounting brackets 21 is opened with third mounting hole, and the inner wall of opposite two third mounting holes is connected with same rotating shaft 22 by bearing, and the outer wall of each rotating shaft 22 is fixedly connected with second roller 23, the outer wall of both sides of two mounting brackets 21 is equidistantly fixedly connected with blade 24, the outer wall of both sides of abutment frame 16 is fixedly connected with multiple mounting blocks 25, and the outer wall of one side of each mounting block 25 is fixedly connected with electrostatic generating rod 26, by being provided with abutment frame 16, one roller 18, self-rotating shaft 17, second motor 19, hydraulic cylinder 20, extrusion spring 2, rotating shaft 22, second roller 23, electrostatic generating rod 26 and blade 24, when the transport of rock wool is carried out, the rock wool after production is placed on transport belt 8, after being conveyed to the lower side of abutment frame 16 by transport belt 8, adjust telescopic cylinder 10 to drive abutment frame 16 to contact with rock wool, one roller 18 on self-rotating shaft 17 is positioned to rock wool, simultaneously by electrostatic generating rod 26 generates static electricity, so that the fiber on the surface of rock wool is erect, start second motor 19, second motor 19 drives the blade 24 above mounting bracket 21 to cut the erect fiber, so that the fiber treatment on the surface of rock wool is realized, simultaneously,In the process of fiber processing, the second roller 23 below the mounting frame 21 rotates the surface of the rock wool along with the rotation of the mounting frame 21, and the conveying belt 8 is extruded, the compression spring 2 is infinitely compressed, so that the flattening effect is better. After the rotary flattening is finished, the second motor 19 rotates the mounting frame 21 to a position parallel to the abutting frame 16. The first telescopic rod 15 drives the sliding block 14 to slide in the sliding groove 13, so that the mounting frame 21 advances forward. The rotating shaft 22 drives the second roller 23 to rotate and advances the rock wool again. The rock wool is not wrinkled during conveying, and the use value of the rock wool is ensured.

[0029] Referring to Figure 2 , the top outer wall of the fixing frame 9 is fixedly connected with two second connecting plates 27, and one side outer wall of the two second connecting plates 27 is fixedly connected with the same dust suction pump 28.

[0030] Referring to Figure 2 and Figure 6 , the dust suction end of the dust suction pump 28 is fixedly connected with a bidirectional pipe 29, and the two ends of the bidirectional pipe 29 are fixedly connected with dust suction pipes 30.

[0031] Referring to Figure 6 , the two dust suction pipes 30 are fixedly connected with metal telescopic pipes 31 on one side.

[0032] Referring to Figure 3 and Figure 6 , the two sides of the lifting plate 11 are fixedly connected with hollow dust suction plates 32, and the two hollow dust suction plates 32 are fixedly connected with the same dust suction pump 28.

[0033] Referring to Figure 2 , the side outer wall of the fixing frame 9 is fixedly connected with a dust collection box 34, and the dust suction pump 28 is connected to the inside of the dust collection box 34 through the pipeline. By setting the dust suction pump 28, the bidirectional pipe 29, the dust suction pipe 30, the hollow dust suction plate 32 and the dust collection box 34, the fiber on the rock wool is cut off by the blade 24, and the dust suction pump 28 is started. The fiber chips cut off by the dust suction pump 28 are collected into the dust collection box 34 through the dust suction holes 33 on the hollow dust suction plate 32, so as to prevent the fiber chips from being attached to the surface of the rock wool again, improve the processing effect of the rock wool, and prevent the fiber chips from being inhaled into the human body and causing harm to the human body.

[0034] Referring to Figure 1 and Figure 5The top outer wall of the conveying platform 1 is fixedly connected with two limiting rods 35, and the outer wall of one side of the two limiting rods 35 is fixedly connected with two second telescopic rods 36. The outer wall of the two second telescopic rods 36 on one side is fixedly connected with the same mounting plate 37, and the outer wall of one side of the two mounting plates 37 is fixedly connected with brush hairs 41 at equal distances.

[0035] Referring to Figure 5 The outer wall of one side of the two mounting plates 37 is fixedly connected with vibration motors 38 at equal distances, and the vibration end of each vibration motor 38 is fixedly connected with a vibration spring 39. The outer wall of each vibration spring 39 is fixedly connected with a knocking block 40.

[0036] Referring to Figure 1 and Figure 5 The outer wall of one side of the conveying platform 1 is provided with a collecting opening, and the inner wall of the collecting opening is fixedly connected with a collecting box 12. The outer wall of both sides of the collecting box 12 is fixedly connected with two anti-out plates 42. The bottom outer wall of the conveying platform 1 is fixedly connected with support columns 43 at equal distances. By being provided with the second telescopic rod 36, the vibration motor 38, the vibration spring 39, the knocking block 40, the brush hair 41, the collecting box 12, and the anti-out plate 42, in the process of the blade 24 cutting the fibers on the rock wool, the second telescopic rod 36 is started to drive the mounting plate 37 to move forward. In the moving process, the vibration motor 38 is started to drive the knocking block 40 on the vibration spring 39 to knock the surface of the conveying platform 1, so that the fiber debris adhered to the surface falls off. Then the fiber debris is uniformly swept into the collecting box 12 by the brush hair 41, preventing the fiber debris from adhering to the surface of the rock wool again. At the same time, the anti-out plate 42 is in the shape of an outer octagon, effectively preventing the fiber debris from separating from the collecting box 12.

[0037] A use method of a conveying line for rock wool production is applied to the conveying line for rock wool production.

[0038] S1: When the rock wool is transported, the produced rock wool is placed on the conveying belt 8, and after being conveyed to below the abutting frame 16, the telescopic cylinder 10 drives the abutting frame 16 to be in contact with the rock wool. The first roller 18 on the rotating shaft 17 limits the rock wool, and the electrostatic generating rod 26 generates electrostatic. The second motor 19 is started, and the blade 24 on the mounting frame 21 drives the blade 24 to cut the vertical fibers.

[0039] S2: At the same time, the second roller 23 below the mounting frame 21 rotates with the mounting frame 21, and the conveying belt 8 is extruded. The compression spring 2 is infinitely compressed, and then the second motor 19 rotates the mounting frame 21 to a position parallel to the abutting frame 16. The first telescopic rod 15 drives the sliding block 14 to slide in the sliding groove 13, so that the mounting frame 21 advances forward. The rotating shaft 22 drives the second roller 23 to rotate, and the rock wool is pushed and smoothed.

[0040] In use, the produced rock wool is placed on the conveying belt 8, and after being conveyed to below the abutting frame 16, the telescopic cylinder 10 drives the abutting frame 16 to contact the rock wool, the No. 1 roller 18 on the rotating shaft 17 limits the rock wool, and the electrostatic generation rod 26 generates electrostatic force to make the fibers on the surface of the rock wool stand up. The No. 2 motor 19 is started, the blade 24 above the mounting frame 21 cuts the standing fibers, thereby realizing the fiber processing on the surface of the rock wool. At the same time, the No. 2 roller 23 below the mounting frame 21 rotates with the mounting frame 21 to rotate and smooth the surface of the rock wool. At the same time of smoothing, the conveying belt 8 is extruded, the compression spring 2 is compressed infinitely, and the smoothing effect is better. After the rotating and smoothing are completed, the No. 2 motor 19 rotates the mounting frame 21 to a position parallel to the abutting frame 16. The No. 1 telescopic rod 15 drives the sliding block 14 to slide in the sliding groove 13, so that the mounting frame 21 is pushed forward. The rotating shaft 22 drives the No. 2 roller 23 to rotate, and the rock wool is pushed forward and smoothed again to ensure that the rock wool will not wrinkle during conveying and ensure the use value of the rock wool. At the same time, the dust suction pump 28 is started, the dust suction holes 33 on the hollow dust suction plate 32 collect the cut fiber scraps into the dust collecting box 34, thereby preventing the cut fiber scraps from being attached to the surface of the rock wool again, improving the processing effect of the rock wool, and preventing the fiber scraps from being inhaled into the human body to cause harm to the human body. At the same time, the No. 2 telescopic rod 36 drives the mounting plate 37 to move forward. During the movement, the vibration motor 38 drives the knocking block 40 on the vibration spring 39 to knock the surface of the conveying platform 1, so that the fiber scraps attached to the surface are knocked off. Then, the fiber scraps are uniformly swept into the collecting box 12 by the bristles 41, thereby preventing the fiber scraps from being attached to the surface of the rock wool again. At the same time, the outer octagonal-shaped preventing plate 42 effectively prevents the fiber scraps from being separated from the collecting box 12.

[0041] The above merely describes the preferred embodiments of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art can make equivalent replacements or changes to the technical solutions and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.

Claims

1. A transport line for the production of rock wool, comprising a transport platform (1), characterized in that, The outer wall of the top of the transportation platform (1) is equidistantly fixedly connected with extrusion springs (2), and the outer walls of the extrusion springs (2) on the same side are fixedly connected with the same support plate (3), and the outer walls of the two support plates (3) are provided with two first mounting holes, and the inner walls of the opposite two first mounting holes are connected with the same rotating shaft (6) through bearings, and the outer walls of the two rotating shafts (6) are fixedly connected with the same conveying belt (8), and the outer walls of the two rotating shafts (6) are fixedly connected with pulleys, and the outer walls of the two pulleys are fixedly connected with the same rotating belt (7), and the outer wall of one of the support plates (3) is fixedly connected with a first connecting plate (4), and the outer wall of the first connecting plate (4) is fixedly connected with a first motor (5), and the output end of the first motor (5) is connected with the outer wall of one of the rotating shafts (6) through a shaft coupling, and the outer walls of the two support plates (3) are fixedly connected with the same fixed frame (9), and the outer wall of the fixed frame (9) is fixedly connected with two telescopic cylinders (10), and the outer walls of the two telescopic cylinders (10) are fixedly connected with the same lifting plate (11), and the outer wall of the lifting plate (11) is fixedly connected with a resisting frame (16), and the outer walls of the two sides of the resisting frame (16) are equidistantly provided with second mounting holes, and the inner walls of the opposite two second mounting holes are connected with the same self-rotating shaft (17) through bearings, and the outer wall of each self-rotating shaft (17) is fixedly connected with a first roller (18), and the outer wall of the lifting plate (11) is fixedly connected with two sliding grooves (13), and the inner walls of the two sliding grooves (13) are slidingly connected with sliding blocks (14), and the outer walls of the two sides of the resisting frame (16) are fixedly connected with first telescopic rods (15), and the outer wall of the first telescopic rod (15) is connected with the outer wall of the sliding block (14), and the outer walls of the two sliding blocks (14) are fixedly connected with second motors (19), and the output ends of the two second motors (19) are connected with hydraulic cylinders (20) through shaft couplings, and the outer walls of the two hydraulic cylinders (20) are fixedly connected with mounting frames (21), and the outer walls of the two mounting frames (21) are provided with third mounting holes, and the inner walls of the opposite two third mounting holes are connected with the same rotating shaft (22) through bearings, and the outer wall of each rotating shaft (22) is fixedly connected with a second roller (23), and the outer walls of the two mounting frames (21) are equidistantly fixedly connected with blades (24), and the outer walls of the two sides of the resisting frame (16) are fixedly connected with a plurality of mounting blocks (25), and the outer wall of each mounting block (25) is fixedly connected with an electrostatic generating rod (26).

2. A transport line for the production of rock wool according to claim 1, characterized in that, The outer wall of the top of the fixed frame (9) is fixedly connected with two second connecting plates (27), and the outer walls of the two second connecting plates (27) are fixedly connected with the same dust suction pump (28).

3. A transport line for the production of rock wool according to claim 2, characterized in that, The dust suction end of the dust suction pump (28) is fixedly connected with a bidirectional pipe (29), and the outer walls of the two ends of the bidirectional pipe (29) are fixedly connected with dust suction pipes (30).

4. A transport line for the production of rock wool according to claim 3, characterized in that, The outer side wall of each of the two dust suction pipes (30) is fixedly connected with a metal telescopic pipe (31).

5. A transport line for the production of rock wool according to claim 4, characterized in that, The outer side wall of each of the two hollow dust suction plates (32) is fixedly connected with a dust suction hole (33) at equal intervals, and the outer side wall of the metal telescopic pipe (31) is connected with the outer side wall of the hollow dust suction plate (32).

6. A transport line for rock wool production according to claim 2, characterized in that, The outer side wall of the fixed frame (9) is fixedly connected with a dust collection box (34), and the dust suction pump (28) is connected to the inside of the dust collection box (34) through a pipeline.

7. The transport line for rock wool production according to claim 1, characterized in that, The outer side wall of the transport platform (1) is fixedly connected with two limiting rods (35), and the outer side wall of each of the two limiting rods (35) is fixedly connected with two No. 2 telescopic rods (36). The outer wall of the two No. 2 telescopic rods (36) on one side is fixedly connected with the same mounting plate (37), and the outer side wall of each of the two mounting plates (37) is fixedly connected with a brush (41) at equal intervals.

8. A transport line for the production of rock wool according to claim 7, characterized in that, The outer side wall of each of the two mounting plates (37) is fixedly connected with a vibration motor (38) at equal intervals, and the vibration end of each vibration motor (38) is fixedly connected with a vibration spring (39). The outer wall of each vibration spring (39) is fixedly connected with a knocking block (40).

9. The transport line for rock wool production according to claim 1, characterized in that, The outer side wall of the transport platform (1) is provided with a collecting opening, and the inner wall of the collecting opening is fixedly connected with a collecting box (12). The outer side wall of the collecting box (12) is fixedly connected with two anti-out plates (42), and the outer wall of the bottom of the transport platform (1) is fixedly connected with a supporting column (43).

10. A method of using a transport line for rock wool production, applied to a transport line for rock wool production according to any one of claims 1-9, characterized in that, The use method comprises the following steps: S1: when transporting rock wool, the produced rock wool is placed on the conveying belt (8), and after being conveyed to below the abutting frame (16), the telescopic cylinder (10) drives the abutting frame (16) to contact the rock wool, the No. 1 roller (18) on the rotating shaft (17) limits the rock wool, and static electricity is generated through the static electricity generating rod (26). Start the No. 2 motor (19), the No. 2 motor (19) drives the blade (24) above the mounting frame (21) to cut the upright fibers; S2: at the same time, the No. 2 roller (23) below the mounting frame (21) rotates with the mounting frame (21), and the conveying belt (8) is extruded. The compression spring (2) is compressed infinitely, and then the No. 2 motor (19) rotates the mounting frame (21) to a position parallel to the abutting frame (16). The sliding block (14) in the sliding groove (13) is driven by the No. 1 telescopic rod (15) to slide, so that the mounting frame (21) advances, and the rotating shaft (22) drives the No. 2 roller (23) to rotate to advance and smooth the rock wool.

Citation Information

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