Glass fiber door cutting waste recovery device
By designing forward and reverse rotating pipes and a multi-stage filtration system, the problem of impurity deposition in the circulating water is solved, efficient filtration of the water body and anti-corrosion effect of the equipment are achieved, ensuring the efficient operation of the fiberglass door cutting waste recycling process.
Patent Information
- Application Number
- CN202511088808.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-05
- Publication Date
- 2025-09-16
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the existing technology, impurities such as fiber debris and chemical residues in the circulating water are easily deposited on the inner wall of the pipe, resulting in reduced water flow efficiency and increased energy consumption, and residual acidic or alkaline additives may corrode metal parts.
A fiberglass door cutting waste recycling device was designed. It uses a forward and reverse rotating rotating tube and synchronous belt to drive a brush to clean the impregnation agent on the fiber surface. It also uses a multi-stage filtration and circulating water pump system to achieve multiple filtration and impurity cleaning of the water body, including the first layer of filter screen and the second layer of rubber scraper rotating filtration to ensure the purity of the water.
It effectively removes the wetting agent and impurities on the fiber surface, avoids the reduction of water flow efficiency and metal corrosion, and ensures the purity of the water and the durability of the equipment.
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Figure CN120644401A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of fiberglass door waste recycling, and in particular is a fiberglass door cutting waste recycling device. Background Art
[0002] Fiberglass doors (glass fiber reinforced plastic doors) are new building materials made of glass fiber as a reinforcing material and composited with a matrix such as polyurethane resin. Its core material, glass fiber, has high mechanical strength, corrosion resistance and insulation. Its recycling and processing are as follows:
[0003] 1. Cleaning and removing debris:
[0004] Metal impurities (such as screws and hooks) in the waste are removed manually or mechanically, and an electromagnetic iron remover is used to enhance metal separation to ensure the purity of the waste. Large particles of non-metallic impurities (such as paper tube debris) are further screened out through a vibrating screen and an air separation device;
[0005] 2. Crushing and particle size control:
[0006] Use a plate chain conveyor and a roller device to feed the long fiber waste into the crusher, crushing it into short fibers or powders less than 5 mm to prevent winding of the equipment. Adjust the crushing particle size according to subsequent use (such as finer particles for grinding and re-melting);
[0007] 3. Cleaning and removal of infiltrates:
[0008] Use water washing process to flush the wetting agent (organic coating) attached to the fiber surface to reduce its interference with subsequent high-temperature treatment, give priority to the use of circulating water for flushing, and reduce tap water consumption;
[0009] However, impurities such as fiber debris and chemical residues in the circulating water are easily deposited on the inner wall of the pipe, but cannot be effectively removed by the filter. If the impurities are not effectively filtered, the water flow efficiency may be reduced and energy consumption may increase. In addition, the residual acidic or alkaline additives may corrode metal parts. Summary of the Invention
[0010] In order to solve the problems raised in the above background technology, the present invention provides a fiberglass door cutting waste recycling device.
[0011] The top end of the motor is connected with a rotary tube, and the rod body of the rotary tube is rotatably connected to the top of the waste flushing box. A plurality of water outlet nozzles are fixedly connected to the bottom end of the rotary tube. A support plate is fixedly connected to the outer wall of one end of the waste flushing box, and the top outer wall of the support plate is fixedly connected to the outer wall of the bottom end of the motor. A synchronous belt is fixedly connected to the tube body of the rotary tube, and a rotating rod is fixedly connected to the bottom of the synchronous belt. A plurality of brushes are fixedly connected to the rod body of the rotary rod in a circumferential manner, and the rod body of the rotary rod is also rotatably connected to the box body of the waste flushing box, and a circulating cleaning structure is also jointly provided between the waste flushing box and the rotary tube.
[0012] The circulating cleaning structure includes a water trough plate fixedly connected to the outer wall of the bottom end of the waste flushing chassis, a water trough is jointly opened between the top plate body of the water trough plate and the bottom plate body of the waste flushing chassis, and a filter plate 1 is fixedly connected to the two water troughs of the waste flushing chassis.
[0013] A circulating water pipe is fixedly connected to the top side plate body of the water tank plate, a guide pipe is fixedly connected to the end of the circulating water pipe close to the top, and a water pump is fixedly connected to the other end of the guide pipe.
[0014] The bottom end of the water pump is fixedly connected to the outer wall of the waste flushing box, and the other end of the water pump is movably connected to the other end of the rotating pipe.
[0015] A pipe plug is rotatably connected to the inner wall of the top end of the circulating water pipe, and a shaft rod 1 is movably sleeved on the inner wall of the circulating water pipe near the bottom end, and two water wheels are fixedly connected to the rod body of the shaft rod 1.
[0016] The rod body of the shaft rod 1 is fixedly connected with a meshing assembly, which is specifically composed of two bevel gears meshing with each other, one of the bevel gears is also fixedly connected to the shaft rod 2, and the rod bodies of the shaft rod 1 and the shaft rod 2 are jointly and movably sleeved with a protective tube.
[0017] A groove plate is fixedly connected to the top of the second shaft rod, and a plurality of rubber scrapers are fixedly connected to the outer wall of the top of the groove plate in a surrounding manner. One end of the rubber scraper and the outer wall of the groove plate are both rotatably connected to the inner wall of the rotating tube.
[0018] A second filter screen plate is fitted and connected to the outer wall of the top end of the trough plate, and a plurality of top rods are fixedly connected to the top end of the second filter screen plate. The second filter screen plate and the outer wall of the four rubber scrapers can be intermittently fitted and slidably connected, and the second filter screen plate and the inner wall of the rotating tube can be fitted and rotatably connected.
[0019] The top end of each rubber scraper can be fitted and connected to the bottom end of the pipe plug, the rod body of each push rod is slidably connected to the pipe plug, and the top end of each push rod is fixedly connected to a top plate.
[0020] An arc plate is slidably connected to the outer wall of one side of the bottom end of the top plate, an electric cylinder is fixedly connected to the outer wall of the bottom end of the arc plate, and the bottom end of the electric cylinder is fixedly connected to the outer wall of the top end of the water tank plate.
[0021] In the above technical solution, preferably,
[0022] Compared with the prior art, the present invention has the following beneficial effects:
[0023] The present invention starts with a motor, driving the rotating tube connected thereto to rotate back and forth in a forward and reverse offset manner. At the same time, it also drives the synchronous belt to rotate, thereby driving the rotating rod and the multiple brushes installed on the rotating rod to rotate back and forth, thereby cleaning the fibers in the waste flushing chassis with surface impregnation agents. At the same time, water flows down through the multiple water outlet nozzles on the rotating tube to rinse the fibers, and the used water will naturally be filtered through one of the two filter screens and then flow down into the water trough plate, thereby achieving the first layer of water filtration.
[0024] The present invention can start the water pump to suck the filtered water in the water trough plate through the circulating water pipe, so that the water enters the circulating water pipe. The water then passes through the two water wheels installed on the shaft rod 1, which makes the water rotate. This drives the transmission between the meshing components to realize the rotation of the shaft rod 2 and the trough plate, thereby synchronously driving the multiple rubber scrapers to rotate in the inner wall of the circulating water pipe, so that the inner wall of the circulating water pipe is free of impurities and acidic or alkaline additives. The water entering the circulating water pipe will also pass through the filter plate 2 for a second layer of filtration to ensure the purity of the water.
[0025] The present invention starts the electric cylinder to move upward, drives the top plate on the arc plate to move upward, thereby stretching the top rod and the filter screen plate to move upward, making it convenient to collect and clean the scraped impurities. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0027] Figure 2 Schematic diagram of the overall structure of the motor of the present invention;
[0028] Figure 3 This is a schematic diagram of the overall cross-sectional structure of the circulating water pipe of the present invention;
[0029] Figure 4 For the present invention Figure 3 A schematic diagram of the partially enlarged structure at center A;
[0030] Figure 5 For the present invention Figure 3 A schematic diagram of the partially enlarged structure at point B in the middle;
[0031] Figure 6 This is a schematic diagram of the partially disassembled cross-sectional structure of the impurity cleaning portion of the present invention.
[0032] In the picture:
[0033] 1. Wash the chassis with waste;
[0034] 2. Impurity cleaning unit; 21. Motor; 22. Rotating pipe; 23. Water outlet nozzle; 24. Support plate; 25. Synchronous belt; 26. Rotating rod; 27. Brush; 28. Sink plate; 29. Filter plate 1; 230. Circulating water pipe; 231. Diversion pipe; 232. Water pump; 233. Pipe plug; 234. Shaft rod 1; 235. Water wheel; 236. Engaging assembly; 237. Protective cylinder; 238. Shaft rod 2; 239. Sink plate; 240. Rubber scraper; 241. Filter plate 2; 242. Push rod; 243. Push plate; 244. Arc plate; 245. Electric cylinder. DETAILED DESCRIPTION
[0035] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0036] like Figures 1 to 6As shown, the present invention provides a fiberglass door cutting waste recycling device, including a waste flushing machine box 1, the waste flushing machine box 1 is provided with an impurity cleaning part 2, the impurity cleaning part 2 includes a forward and reverse rotating motor 21, the rotating shaft of the motor 21 is fixedly connected to a rotating tube 22, the rod body of the rotating tube 22 is rotatably connected to the top of the waste flushing machine box 1, the bottom end of the rotating tube 22 is fixedly connected with a plurality of water outlet nozzles 23, and the outer wall of one end of the waste flushing machine box 1 is fixedly provided with a plurality of water outlet nozzles 23. It is fixedly connected with a support plate 24, the top outer wall of the support plate 24 is fixedly connected to the bottom outer wall of the motor 21, a synchronous belt 25 is fixedly connected to the tube body of the rotating tube 22, and a rotating rod 26 is fixedly connected to the bottom of the synchronous belt 25, and a plurality of brushes 27 are fixedly connected to the rod body of the rotating rod 26 in a circumferential manner, and the rod body of the rotating rod 26 is also rotatably connected to the box body of the waste flushing chassis 1, and a circulating cleaning structure is also jointly provided between the waste flushing chassis 1 and the rotating tube 22.
[0037] The above scheme is adopted: by starting the motor 21 on the support plate 24, the rotating tube 22 connected thereto is driven to rotate back and forth in a forward and reverse offset manner, and at the same time, the synchronous belt 25 is also driven to rotate, thereby driving the rotating rod 26 and the multiple brushes 27 installed on the rotating rod 26 to rotate back and forth, thereby cleaning the surface impregnation agent of the fibers in the waste flushing chassis 1. At the same time, the water flowing down through the multiple water outlet nozzles 23 on the rotating tube 22 rinses the fibers, and the used water is naturally filtered through the two filter screens 29 and then flows down into the water trough plate 28, thereby achieving the first layer of water filtration;
[0038] At this time, the started water pump 232 can suck the filtered water in the water trough plate 28 through the circulating water pipe 230, so that the water enters the circulating water pipe 230. The water will then pass through the two water wheels 235 installed on the shaft 1 234, so that it can rotate driven by the water, thereby driving the transmission between the meshing components 236, realizing the rotation of the shaft 238 and the trough plate 239, thereby synchronously driving multiple rubber scrapers 240 to rotate in the inner wall of the circulating water pipe 230, thereby achieving the inner wall of the circulating water pipe 230 without impurities accumulation and acidic or alkaline additive residues. The water entering the circulating water pipe 230 will also pass through the filter plate 241 for a second layer of filtration to ensure the purity of the water.
[0039] The circulation cleaning structure includes a water trough plate 28 fixedly connected to the outer wall of the bottom end of the waste flushing chassis 1, and a water trough is jointly opened between the top plate body of the water trough plate 28 and the bottom plate body of the waste flushing chassis 1. The two water troughs of the waste flushing chassis 1 are fixedly connected with a filter plate 29, and a circulating water pipe 230 is fixedly connected to the plate body on one side of the top of the water trough plate 28. A guide pipe 231 is fixedly connected to the end of the circulating water pipe 230 near the top, and a water pump 232 is fixedly connected to the other end of the guide pipe 231. The bottom end of the water pump 232 is fixedly connected to the outer wall of the waste flushing chassis 1, and the other end of the water pump 232 is movably connected to the other end of the rotating pipe 22.
[0040] By adopting the above scheme, the used water will naturally be filtered through the two filter screens 29, and then flow down into the water trough plate 28, thereby achieving the first layer of water filtration, and the started water pump 232 can suck the filtered water in the water trough plate 28 through the circulating water pipe 230, so that the water enters the circulating water pipe 230, and the water pump 232 sucks and outputs at the same time. The passively output water will directly enter the rotating pipe 22 and be sprayed out from multiple water outlet nozzles 23, thereby realizing the circulation of the water.
[0041] A pipe plug 233 is rotatably connected to the inner wall of the top end of the circulating water pipe 230, and a shaft 1 234 is movably connected to the inner wall near the bottom end of the circulating water pipe 230. Two water wheels 235 are fixedly connected to the rod body of the shaft 1 234, and a meshing assembly 236 is fixedly connected to the rod body of the shaft 1 234. The meshing assembly 236 is specifically composed of two bevel gears meshing with each other, one of the bevel gears is also fixedly connected to the shaft 2 238, and a protective tube 237 is movably connected to the rod bodies of the shaft 1 234 and the shaft 2 238. A groove plate 239 is fixedly connected to the top end of the shaft 2 238, and a plurality of rubber scrapers 240 are fixedly connected to the outer wall of the top end of the groove plate 239 in a surrounding manner. One end of the rubber scraper 240 and the outer wall of the groove plate 239 are both rotatably connected to the inner wall of the rotating pipe 22.
[0042] The above scheme is adopted: the water passes through the two water wheels 235 installed on the shaft 1 234, so that it can realize the rotation driven by the water, thereby driving the transmission between the meshing components 236, realizing the rotation of the shaft 2 238 and the groove plate 239, and the rotating groove plate 239 will synchronously drive multiple rubber scrapers 240 to rotate in the inner wall of the circulating water pipe 230, thereby avoiding fine impurities in the water that are not completely filtered out when the water passes through the inner wall of the circulating water pipe 230, thereby achieving the inner wall of the circulating water pipe 230 without impurity accumulation and acidic or alkaline additive residue.
[0043] A filter screen plate 241 is fitted and connected to the outer wall of the top of the trough plate 239, and a plurality of push rods 242 are fixedly connected to the top of the filter screen plate 241. The outer wall of the filter screen plate 241 and the four rubber scrapers 240 can be intermittently fitted and slidably connected, and the filter screen plate 241 and the inner wall of the rotating tube 22 can be fitted and rotatably connected. The top of each rubber scraper 240 can be fitted and connected to the bottom end of the pipe plug 233, and the rod body of each push rod 242 is through-slidingly connected to the pipe plug 233, and the top of each push rod 242 is jointly and fixedly connected to a top plate 243, and an arc plate 244 can be fitted and slidably connected to the outer wall of one side of the bottom end of the top plate 243. An electric cylinder 245 is fixedly connected to the outer wall of the bottom end of the arc plate 244, and the bottom end of the electric cylinder 245 is fixedly connected to the outer wall of the top of the trough plate 28.
[0044] Adopting the above scheme: the water entering the circulating water pipe 230 will also pass through the second filter plate 241 for a second layer of filtration to ensure the purity of the water. Subsequently, the electric cylinder 245 can be started to move upward, driving the top plate 243 on the arc plate 244 to move upward, thereby stretching the top rod 242 and the second filter plate 241 to move upward, making it easier to collect and clean the scraped impurities.
[0045] The working principle and use process of the present invention are as follows: by starting the motor 21 on the support plate 24, the rotating tube 22 connected thereto is driven to rotate back and forth in a forward and reverse offset manner, and at the same time, the synchronous belt 25 is also driven to rotate. The two tooling wheels in the synchronous belt 25 have different diameters, which means that the overall 40-degree offset rotation of the large tooling wheel will cause the small tooling wheel to rotate completely back and forth, thereby driving the rotating rod 26 and the multiple brushes 27 installed on the rotating rod 26 to rotate back and forth, thereby cleaning the surface impregnation agent of the fibers in the waste flushing chassis 1. At the same time, the water flowing down through the multiple water outlet nozzles 23 on the rotating tube 22 rinses the fibers, and the used water will naturally be filtered through the two filter screens 29, and then flow down into the water trough plate 28, thereby achieving the first layer of water filtration;
[0046] At this time, the started water pump 232 can suck the filtered water in the water trough plate 28 through the circulating water pipe 230, so that the water enters the circulating water pipe 230, and the water passes through the two water wheels 235 installed on the shaft 1 234, so that it can realize the rotation driven by the water, thereby driving the transmission between the meshing components 236, realizing the rotation of the shaft 238 and the trough plate 239, and the rotating trough plate 239 will synchronously drive the multiple rubber scrapers 240 to rotate in the inner wall of the circulating water pipe 230, thereby preventing fine impurities in the water that have not been completely filtered from the water when the water passes through the circulating water pipe 230, thereby realizing the circulating water pipe 2 30 There is no accumulation of impurities and acidic or alkaline additives on the inner wall. The water entering the circulating water pipe 230 will also pass through the second filter screen 241 for a second layer of filtration to ensure the purity of the water. The water will be sucked and output at the same time by the water pump 232. The passively output water will directly enter the rotating pipe 22 and be sprayed out from multiple water outlet nozzles 23, thereby realizing the circulation of the water. Dirt will not be generated in the pipe body used for circulation. Subsequently, the electric cylinder 245 can be started to move upward, driving the arc plate 244 to push the top plate 243 to move it upward, thereby stretching the top rod 242 and the second filter screen 241 to move upward, so as to facilitate the unified collection and cleaning of the scraped impurities.
[0047] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.
[0048] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A fiberglass door cutting waste recycling device, comprising a waste flushing chassis (1), characterized in that: The waste flushing machine case (1) is provided with an impurity cleaning part (2), the impurity cleaning part (2) includes a forward and reverse rotating motor (21), a rotating tube (22) is fixedly connected to the rotating shaft of the motor (21), a rod of the rotating tube (22) is rotatably connected to the top of the waste flushing machine case (1), a plurality of water outlet nozzles (23) are fixedly connected to the bottom end of the rotating tube (22), a support plate (24) is fixedly connected to the outer wall of one end of the waste flushing machine case (1), and the support plate (24) is fixedly connected to the outer wall of the waste flushing machine case (1). ) is fixedly connected to the outer wall of the top end of the motor (21), a synchronous belt (25) is fixedly connected to the tube body of the rotating tube (22), a rotating rod (26) is fixedly connected to the bottom of the synchronous belt (25), a plurality of brushes (27) are fixedly connected to the rod body of the rotating rod (26), and the rod body of the rotating rod (26) is also connected to the box body of the waste flushing machine box (1) in a rotating manner, and a circulating cleaning structure is also provided between the waste flushing machine box (1) and the rotating tube (22).
2. The fiberglass door cutting waste recycling device according to claim 1, characterized in that: The circulating cleaning structure includes a water trough plate (28) fixedly connected to the outer wall of the bottom end of the waste flushing box (1), a water trough is formed between the top plate of the water trough plate (28) and the bottom plate of the waste flushing box (1), and a filter screen plate (29) is fixedly connected to the two water troughs of the waste flushing box (1).
3. The fiberglass door cutting waste recycling device according to claim 2, characterized in that: A circulating water pipe (230) is fixedly connected to a plate body on one side of the top end of the water trough plate (28); a guide pipe (231) is fixedly connected to an end of the circulating water pipe (230) near the top; and a water pump (232) is fixedly connected to the other end of the guide pipe (231).
4. The fiberglass door cutting waste recycling device according to claim 3, characterized in that: The bottom end of the water pump (232) is fixedly connected to the outer wall of the waste flushing box (1), and the other end of the water pump (232) is movably connected to the other end of the rotating pipe (22).
5. The fiberglass door cutting waste recycling device according to claim 4, characterized in that: A pipe plug (233) is rotatably connected to the inner wall of the top end of the circulating water pipe (230), and a shaft rod (234) is movably sleeved on the inner wall near the bottom end of the circulating water pipe (230). Two water wheels (235) are fixedly connected to the rod body of the shaft rod (234).
6. The fiberglass door cutting waste recycling device according to claim 5, characterized in that: The rod body of the shaft rod 1 (234) is fixedly connected with a meshing assembly (236), and the meshing assembly (236) is specifically composed of two bevel gears that are meshed with each other, one of the bevel gears is also fixedly connected with the shaft rod 2 (238), and the rod bodies of the shaft rod 1 (234) and the shaft rod 2 (238) are jointly and movably sleeved with a protective tube (237).
7. The fiberglass door cutting waste recycling device according to claim 6, characterized in that: A groove plate (239) is fixedly connected to the top of the second shaft (238), and a plurality of rubber scrapers (240) are fixedly connected to the outer wall of the top of the groove plate (239) in a circumferential manner. One end of the rubber scraper (240) and the outer wall of the groove plate (239) are both connected to the inner wall of the rotating tube (22) in a fitting and rotatable manner.
8. The fiberglass door cutting waste recycling device according to claim 7, characterized in that: The top outer wall of the trough plate (239) is fitted with a second filter screen plate (241), and the top of the second filter screen plate (241) is fixedly connected with a plurality of push rods (242). The second filter screen plate (241) and the outer wall of the four rubber scrapers (240) can be intermittently fitted and slidably connected, and the second filter screen plate (241) and the inner wall of the rotating tube (22) can be fitted and rotatably connected.
9. The fiberglass door cutting waste recycling device according to claim 8, characterized in that: The top end of each rubber scraper (240) can be fitted and connected to the bottom end of the pipe plug (233), the rod body of each push rod (242) is connected to the pipe plug (233) in a penetrating and sliding manner, and the top end of each push rod (242) is fixedly connected to a top plate (243).
10. The fiberglass door cutting waste recycling device according to claim 9, characterized in that: An arc plate (244) is slidably connected to the outer wall of one side of the bottom end of the top plate (243), an electric cylinder (245) is fixedly connected to the outer wall of the bottom end of the arc plate (244), and the bottom end of the electric cylinder (245) is fixedly connected to the outer wall of the top end of the water tank plate (28).