Crushing equipment for environmental protection recovery of waste fan blades
Technical Field
The utility model relates to the technical field of waste fan blade treatment, in particular to crushing equipment for waste fan blade environment-friendly recovery.
Background
The fan blade is one of the core components of the wind driven generator, and accounts for about 15% -20% of the total cost of the fan, and the design quality is directly related to the performance and benefit of the fan.
The existing fan blade is abandoned, the treatment mode is often buried and burned, the resource waste is easy to cause, meanwhile, the soil is easy to pollute due to the buried treatment, and the air is easy to pollute due to the burned treatment, however, if the fan blade is crushed through analysis of the material of the fan blade, environment-friendly glue and a certain proportion of wood dust are added, a recycling tray can be obtained through high-temperature pressing, and the problem of recycling of waste blades can be solved well.
Disclosure of utility model
The utility model aims to overcome the defects of the prior art, adapt to the actual needs, and provide the crushing equipment for environmental protection recovery of the waste fan blades, so as to solve the technical problems that the existing fan blades are often buried and burned in a treatment mode, the waste of resources is easily caused, the soil is easily polluted in the buried treatment, and the air is easily polluted in the burning treatment.
The utility model aims at realizing the technical scheme that the crushing equipment for environmental protection recovery of waste fan blades is designed and comprises a first treatment box, wherein the bottom of the first treatment box is connected with a second treatment box, a crushing mechanism is arranged in the first treatment box, and a collecting mechanism is clamped in the second treatment box;
The crushing mechanism comprises a tooth block crushing roller I, a tooth block crushing roller II is engaged in front of the tooth block crushing roller I in a matching manner, clamping frames I are respectively arranged at two ends of the tooth block crushing roller I and the tooth block crushing roller II, a driving wheel is connected to the surface of the clamping frame I by the left side, a motor is connected to the end of the driving wheel, a limiting frame is attached to the outer portion of the motor, a driven wheel is arranged below the driving wheel, a transmission belt is sleeved outside the driving wheel and the driven wheel in a matching manner, a clamping frame II is connected to one side of the driven wheel, one end of the clamping frame II, far away from the driven wheel, is connected with a spike crushing roller I, and a spike crushing roller II is engaged in front of the spike crushing roller I in a matching manner.
Preferably, the first clamping frame is fixedly connected with the driving wheel, and the motor forms a transmission structure with the driven wheel through the driving wheel, the transmission belt and the driven wheel.
Preferably, the first tooth block crushing roller and the first spike crushing roller rotate clockwise, and the second tooth block crushing roller and the second spike crushing roller rotate anticlockwise.
Preferably, the collection mechanism comprises a collection box, pull handles are fixedly connected to the surface of the collection box, clamping grooves are formed in two sides of the collection box, support brackets are clamped in the collection box, clamping plates are arranged on two sides of the support brackets, and a filter screen is arranged in the support brackets.
Preferably, the clamping groove is matched with the clamping plate in a clamping manner, and the clamping plate and the support bracket are integrally formed.
Preferably, the support bracket is fixedly connected with the filter screen, and the height of the support bracket is one third of the height of the inside of the collecting box.
Compared with the prior art, the utility model has the beneficial effects that:
1. According to the utility model, the first tooth block crushing roller and the second tooth block crushing roller are driven to rotate anticlockwise through a group of motors respectively, so that the waste fan blades are effectively subjected to primary crushing, the large blades are shredded to be 10cm in size, and the primarily crushed blades immediately fall into the second treatment box.
2. According to the utility model, after the waste fan blades are crushed, the waste fan blades fall onto the filter screen in the support bracket, the filter screen effectively filters out toothpick-shaped blade strips, the toothpick-shaped blade strips immediately fall into the collecting box, the blades with larger volume are reserved on the surface of the filter screen, the collecting box is pulled out after the collection is finished, and the large-volume blades on the surface of the filter screen are poured into the first treatment box again to be crushed continuously, and the toothpick-shaped blade strips in the collecting box are uniformly transferred to carry out the next treatment.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic view of another view overall structure of the present utility model;
FIG. 3 is a schematic view of a partial cross-sectional structure of the present utility model;
FIG. 4 is a schematic view showing a collection mechanism according to the present utility model;
In the figure, 1, a first treatment box, 2, a second treatment box, 3, a crushing mechanism and 4, a collecting mechanism;
301. The device comprises a first tooth block crushing roller, a second tooth block crushing roller, a first clamping frame, a first 304, a driving wheel, a 305, a motor, a 306, a limiting frame, a 307, a driven wheel, a 308, a driving belt, a 309, a second clamping frame, a 310, a first spike crushing roller, a 311, a second spike crushing roller;
401. The device comprises a collecting box, 402, a pull handle, 403, a clamping groove, 404, a support bracket, 405, a clamping plate, 406 and a filter screen.
Detailed Description
The utility model is further illustrated by the following examples in conjunction with the accompanying drawings:
The crushing equipment for the environment-friendly recovery of the waste fan blades is shown in fig. 1 to 4, and comprises a first treatment box 1, wherein the bottom of the first treatment box 1 is connected with a second treatment box 2, a crushing mechanism 3 is arranged in the first treatment box 1, and a collecting mechanism 4 is clamped in the second treatment box 2;
The crushing mechanism 3 comprises a first tooth block crushing roller 301, a second tooth block crushing roller 302 is matched and meshed in front of the first tooth block crushing roller 301, clamping frames 303 are arranged at two ends of the second tooth block crushing roller 301, a driving wheel 304 is connected to the surface of the clamping frame 303 close to the left, a motor 305 is connected to the end of the driving wheel 304, a limiting frame 306 is attached to the outer portion of the motor 305, a driven wheel 307 is arranged below the driving wheel 304, a driving belt 308 is matched and matched between the driving wheel 304 and the driven wheel 307, further, the clamping frames 303 and the driving wheel 304 are fixedly connected, the motor 305 forms a transmission structure through the driving wheel 304 and the driving belt 308, one side of the driven wheel 307 is connected with a clamping frame 309, one end, far away from the driven wheel 307, of the clamping frame 309 is connected with a spike crushing roller 310, the front of the spike crushing roller 310 is matched and meshed with a spike crushing roller 311, the first tooth block crushing roller 301 and the spike crushing roller 302 and the spike crushing roller 311 rotate anticlockwise. According to the utility model, the first toothed block crushing roller 301 and the second toothed block crushing roller 302 are respectively driven to rotate anticlockwise by the group of motors 305, so that waste fan blades are effectively subjected to primary crushing, large blades are crushed to 10cm in size, the blades after primary crushing immediately fall into the second treatment box 2, and as the motors 305 form a transmission structure through the driving wheel 304, the driving belt 308 and the driven wheel 307, the first spike crushing roller 310 rotates anticlockwise and the second spike crushing roller 311 rotate anticlockwise, the blades after primary crushing are effectively subjected to secondary crushing, the blades are crushed into toothpick shapes, and the crushing effect of the waste fan blades is improved.
Notably, the collecting mechanism 4 comprises a collecting box 401, a pull handle 402 is fixedly connected to the surface of the collecting box 401, clamping grooves 403 are formed in two sides of the collecting box 401, a supporting bracket 404 is clamped inside the collecting box 401, clamping plates 405 are arranged on two sides of the supporting bracket 404, further, the clamping grooves 403 are matched with the clamping plates 405 in a clamping mode, the clamping plates 405 and the supporting bracket 404 are integrally formed, a filter screen 406 is arranged inside the supporting bracket 404, further, the supporting bracket 404 is fixedly connected with the filter screen 406, and the height of the supporting bracket 404 is one third of the height inside the collecting box 401. According to the utility model, after the waste fan blades are crushed, the waste fan blades fall onto the filter screen 406 in the support bracket 404, the filter screen 406 effectively filters out toothpick-shaped blade strips, the toothpick-shaped blade strips immediately fall into the collecting box 401, the blades with larger volume are reserved on the surface of the filter screen 406, after the collection is finished, the collecting box 401 is pulled out, and the large-volume blades on the surface of the filter screen 406 are poured into the first processing box 1 again to be continuously crushed, and the toothpick-shaped blade strips in the collecting box 401 are uniformly transferred to be processed in the next step.
The working principle is that waste fan blades which are cut into blocks are put into a first treatment box 1, a group of motors 305 respectively drive a first tooth block crushing roller 301 to rotate clockwise and a second tooth block crushing roller 302 to rotate anticlockwise, so that waste fan blades are primarily crushed, large-size blades are crushed to 10cm, the primarily crushed blades immediately fall into a second treatment box 2, as the motors 305 form a transmission structure through a driving wheel 304, a driving belt 308 and a driven wheel 307, the first spike crushing roller 310 rotates clockwise and the second spike crushing roller 311 anticlockwise, the primarily crushed blades are secondarily crushed, the blades are crushed into toothpick shapes, the blades fall into a filter screen 406 in a support bracket 404, the filter screen 406 filters toothpick-shaped blade strips out, the toothpick-shaped blade strips immediately fall into a collecting box 401, the blades with larger volume are reserved on the surface of the filter screen 406, the collecting box 401 is pulled out after the collection, the large-size blades on the surface of the filter screen 406 are again put into the first treatment box 1 to be continuously crushed, and the toothpick-shaped blade strips in the collecting box 401 are uniformly crushed, and then are subjected to the next treatment.
The embodiments of the present utility model are disclosed as preferred embodiments, but not limited thereto, and those skilled in the art will readily appreciate from the foregoing description that various modifications and variations can be made without departing from the spirit of the present utility model.