CN215903947U - Extruder cooling device for production of biodegradable material products - Google Patents
Extruder cooling device for production of biodegradable material products Download PDFInfo
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- CN215903947U CN215903947U CN202121985534.6U CN202121985534U CN215903947U CN 215903947 U CN215903947 U CN 215903947U CN 202121985534 U CN202121985534 U CN 202121985534U CN 215903947 U CN215903947 U CN 215903947U
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Abstract
The utility model discloses an extruder cooling device for producing biodegradable material products, wherein a heat conduction assembly is arranged on the outer side of an extrusion pipe, a rubber cooling pipe is movably embedded in an embedding groove, two clamping grooves are respectively clamped on two sides of a spring steel plate, positioning clamping grooves are formed in the inner walls of two sides of each clamping strip, an extrusion strip is embedded in the opening end of each U-shaped positioning pipe, a water pressure plate is bonded on one side of the extrusion strip, semicircular tiles are sleeved on the top surface and the bottom surface of the outer side of the extrusion pipe respectively, a backflow assembly is connected to the end part of each butt joint pipe, the water inlet end of a water pump is connected with a water tank, a filter box is movably embedded at one end, close to the water tank, of a treatment box, exhaust holes are uniformly formed in the outer side of each ventilation ring, and a plurality of ventilation rings are connected with an air pump. The spring steel plate is spirally arranged in the embedded groove, the semicircular tiles are wrapped and fixed, heat conduction is facilitated, heat exchange is carried out when water flows through the rubber cooling pipe, the rubber cooling pipe is convenient to disassemble, the spring steel plate is convenient to clean, and cleaning is more convenient and quicker.
Description
Technical Field
The utility model belongs to the technical field of production of degradable material products, and particularly relates to an extruder cooling device for production of a biodegradable material product.
Background
After being discarded, common plastic products can be naturally and completely degraded for hundreds of years or even longer, and at present, common plastic garbage is mostly treated by burying or burning, and burning brings about a plurality of environmental problems. The advent of degradable plastics has effectively solved the above problems.
The biodegradable plastic material is one of degradable plastics and has a large market share at present. The application range of the degradable plastic material is very wide, and the degradable plastic material spans a plurality of industries such as packaging industry, catering industry, automobile industry, toy industry, textile industry and the like.
The extruder is the equipment commonly used when present biodegradable material goods are produced, and extruder cooling device can effectively improve cooling efficiency in order to improve production efficiency, and extruder cooling device can reduce after long-time the use cooling effect, and the maintenance is inconvenient.
SUMMERY OF THE UTILITY MODEL
The utility model provides an extruder cooling device for producing biodegradable material products, which can effectively solve the technical problems in the background technology.
In order to achieve the purpose, the utility model provides the following technical scheme: an extruder cooling device for production of biodegradable material products comprises an extrusion pipe, wherein a heat conduction assembly is arranged on the outer side of the extrusion pipe, and the heat conduction assembly comprises an embedded groove, a rubber cooling pipe, a clamping groove, a spring steel plate, a clamping strip, a positioning clamping groove, a U-shaped positioning pipe, an extrusion strip, a water pressure plate, a butt joint pipe and a semicircular tile;
the embedded groove is opened in the extrusion pipe outside, the inside activity embedding of embedded groove has the rubber cooling tube, the joint groove has all been seted up to rubber cooling tube bottom both sides inner wall, two the joint groove joint is in the spring steel sheet both sides respectively, the welding of spring steel sheet corresponding joint groove department has the joint strip, positioning channel has all been seted up to joint strip both sides inner wall, the positioning channel department that the rubber cooling tube corresponds is provided with U type registration arm, U type registration arm open end is inlayed and is had the extrusion strip, extrusion strip one side bonds and has had the hydropress board, the butt joint pipe has all been cup jointed at the rubber cooling tube both ends, the semicircle tile has all been cup jointed to extrusion pipe outside top surface and bottom surface.
Preferably, the embedded groove is matched with the bottom end of the rubber cooling pipe, and the spring steel plate is spiral.
Preferably, the clamping groove is matched with the clamping strip, and the thickness of one side of the extrusion strip is three times that of the other side of the extrusion strip.
Preferably, the inner wall of the semicircular tile is attached to the outer side of the rubber cooling pipe, and the edges of the semicircular tile are connected through screws.
Preferably, the end part of the butt joint pipe is connected with a backflow component, and the backflow component comprises a water supply pipe, a water pump, a water tank, a water return pipe, a treatment tank, a filter tank, an air ventilation ring, an exhaust hole and an air pump;
the utility model discloses a water pump, including water return pipe, treatment case, return pipe, air vent, air inlet pipe, water return pipe, water pump, water return pipe, air inlet pipe, air outlet pipe, air inlet pipe, air return pipe, return pipe one end connection processing case, it has the rose box to be close to water tank one end activity embedding to handle the case, the inside return pipe one side evenly distributed that is close to of water tank has the air vent, and is a plurality of the air vent all connects the air pump.
Preferably, the water pump and the input end of the air pump are electrically connected with the output end of an external power supply respectively, the bottom end of the vent ring is connected with a hose, and the hose penetrates through the treatment box and is connected with the air pump.
Preferably, the front face of the ventilating ring is a rectangular ring, and the outer side of the ventilating ring is attached to the inner wall of the treatment box.
Compared with the prior art, the utility model has the beneficial effects that:
1. the heat conduction assembly is arranged, the spring steel plate is spirally arranged in the embedded groove, the semicircular tiles are wrapped and fixed, heat conduction is facilitated, heat exchange is carried out when water flows through the rubber cooling pipe, and the rubber cooling pipe is convenient to disassemble, so that the spring steel plate is convenient to clean, and the cleaning is more convenient and quicker.
2. When water is in the rubber cooling tube inside, the water pressure increase can extrude the hydraulic plate deformation for inside the extrusion strip embedding positioning slot, thereby improve the leakproofness, prevent to leak, supplementary heat-conducting component has better result of use.
3. The utility model is provided with the backflow component, when cooling water flows back, the air pump is matched with the ventilation ring to introduce air for cooling, and bubbles can prevent scale from generating, and the backflow component is matched with the filter box for reuse after filtration, so that the loss of water is reduced, and water is saved.
Drawings
The accompanying drawings, which are included to provide a further understanding of the utility model and are incorporated in and constitute a part of this specification, illustrate embodiments of the utility model and together with the description serve to explain the principles of the utility model and not to limit the utility model.
In the drawings:
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic structural view of a heat conducting assembly of the present invention;
FIG. 3 is a schematic view of the mounting structure of the spring steel plate of the present invention;
FIG. 4 is a schematic view of the structure of area A of FIG. 3 according to the present invention;
FIG. 5 is a schematic structural view of the reflow assembly of the present invention;
reference numbers in the figures: 1. extruding a pipe;
201. a groove is embedded; 202. a rubber cooling tube; 203. a clamping groove; 204. a spring steel plate; 205. A clamping strip; 206. positioning the clamping groove; 207. a U-shaped positioning tube; 208. extruding the strip; 209. a water pressing plate; 210. butt-joint pipes; 211. a semicircular tile;
301. a water supply pipe; 302. a water pump; 303. a water tank; 304. a water return pipe; 305. a treatment tank; 306. a filter box; 307. ventilating rings; 308. an exhaust hole; 309. an air pump.
Detailed Description
The preferred embodiments of the present invention will be described in conjunction with the accompanying drawings, and it will be understood that they are described herein for the purpose of illustration and explanation and not limitation.
Example (b): as shown in fig. 1-5, the present invention provides a technical solution of an extruder cooling device for producing biodegradable material products, comprising an extrusion tube 1, the extrusion tube 1 being provided with a heat conducting assembly at an outer side of the extrusion tube 1, the heat conducting assembly comprising an embedded groove 201, a rubber cooling tube 202, a clamping groove 203, a spring steel plate 204, a clamping strip 205, a positioning clamping groove 206, a U-shaped positioning tube 207, an extrusion strip 208, a water pressure plate 209, a butt joint tube 210 and a semicircular tile 211;
the embedded groove 201 is arranged outside the extrusion pipe 1, the rubber cooling pipe 202 is movably embedded in the embedded groove 201, the inner walls of two sides of the bottom end of the rubber cooling pipe 202 are respectively provided with a clamping groove 203, the two clamping grooves 203 are respectively clamped at two sides of a spring steel plate 204, the embedded groove 201 is matched with the bottom end of the rubber cooling pipe 202, the spring steel plate 204 is spiral, the spring steel plate 204 is convenient to be arranged in the embedded groove 201, the clamping strip 205 is welded at the position, corresponding to the clamping groove 203, of the spring steel plate 204, the inner walls of two sides of the clamping strip 205 are respectively provided with a positioning clamping groove 206, the position, corresponding to the rubber cooling pipe 202, of the positioning clamping groove 206 is provided with a U-shaped positioning pipe 207, the opening end of the U-shaped positioning pipe 207 is embedded with an extrusion strip 208, the clamping groove 203 is matched with the clamping strip 205, the thickness of one side of the extrusion strip 208 is three times that of the other side, the extrusion strip 208 is convenient to be embedded in the positioning clamping groove 206, the fixing is firmer, one side of the extrusion strip 208 is bonded with a water pressure plate 209, the butt joint pipe 210 has all been cup jointed at rubber cooling tube 202 both ends, extrudes that 1 outside top surface of pipe and bottom surface have all cup jointed semicircle tile 211, and the semicircle tile 211 inner wall laminating rubber cooling tube 202 outside, two semicircle tile 211 edges pass through the screw connection, are convenient for install fixed semicircle tile 211.
The end of the butt joint pipe 210 is connected with a backflow component, and the backflow component comprises a water supply pipe 301, a water pump 302, a water tank 303, a water return pipe 304, a treatment tank 305, a filter tank 306, a ventilation ring 307, an exhaust hole 308 and an air pump 309;
The working principle and the using process of the utility model are as follows: installing the rubber cooling pipe 202 outside the spring steel plate 204, wherein in the process, the clamping strip 205 is embedded into the clamping groove 203, the U-shaped positioning pipe 207 is embedded into the positioning clamping groove 206 to complete fixing, a spiral pipeline is formed, then the spiral pipeline is wound inside the embedding groove 201, the spring steel plate 204 is attached to the bottom end inside the embedding groove 201, and the semicircular tile 211 is installed to fix, so that the rubber cooling pipe 202 is prevented from loosening and completing installation;
the water pump 302 is started, the type of the water pump 302 is 1WZB, water in the water tank 303 is pumped to the butt joint pipe 210, the heat conduction effect of the rubber cooling pipe 202 is far weaker than that of the spring steel plate 204, heat can be transferred to the water through the spring steel plate 204, the water pressure in the spiral pipeline is increased along with the introduction of the water, the water pressure plate 209 can be extruded, the water pressure plate 209 is made of rubber, the water pressure plate 209 pushes the extrusion strip 208 to be embedded into the U-shaped positioning pipe 207, the sealing performance is improved, water leakage is prevented, the auxiliary heat conduction assembly has a better use effect, when the cooling water flows back, the type of the air pump 309 is X-300-type 220, the air pump 309 is matched with the air ventilation ring 307 to introduce air to cool the water in the treatment tank 305, and bubbles can prevent the generation of scale, the air pump is matched with the filter tank 306 to be used again after filtration, the loss of the water is reduced, and the water is saved;
after using a period of time, can accumulate the incrustation scale in the rubber cooling pipe 202, the assembly of removable rubber cooling pipe 202 and spring steel plate 204, because of rubber cooling pipe 202 is softer, inside incrustation scale is along with extrusion rubber cooling pipe 202 and constantly broken, and rubber cooling pipe 202 and spring steel plate 204 after the separation, can scrape the incrustation scale in the spring steel plate 204 rapidly, and the clearance is simple and convenient.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that changes may be made in the embodiments and/or equivalents thereof without departing from the spirit and scope of the utility model. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (7)
1. An extruder cooling device for the production of articles of biodegradable material, comprising an extruded tube (1), characterized in that: a heat conduction assembly is arranged on the outer side of the extrusion pipe (1), and the heat conduction assembly comprises an embedded groove (201), a rubber cooling pipe (202), a clamping groove (203), a spring steel plate (204), a clamping strip (205), a positioning clamping groove (206), a U-shaped positioning pipe (207), an extrusion strip (208), a water pressure plate (209), a butt joint pipe (210) and a semicircular tile (211);
the embedded groove (201) is arranged outside the extrusion pipe (1), the rubber cooling pipe (202) is movably embedded in the embedded groove (201), the inner walls of the two sides of the bottom end of the rubber cooling pipe (202) are respectively provided with a clamping groove (203), the two clamping grooves (203) are respectively clamped on the two sides of the spring steel plate (204), a clamping strip (205) is welded at the position of the spring steel plate (204) corresponding to the clamping groove (203), positioning clamping grooves (206) are formed in the inner walls of the two sides of the clamping strip (205), U-shaped positioning pipes (207) are arranged at the positions, corresponding to the positioning clamping grooves (206), of the rubber cooling pipes (202), an extrusion strip (208) is embedded at the opening end of the U-shaped positioning tube (207), a water pressing plate (209) is bonded at one side of the extrusion strip (208), the two ends of the rubber cooling pipe (202) are sleeved with butt joint pipes (210), and the top surface and the bottom surface of the outer side of the extrusion pipe (1) are sleeved with semicircular tiles (211).
2. The extruder cooling device for biodegradable material product production according to claim 1, characterized in that the embedded groove (201) fits the bottom end of the rubber cooling tube (202), and the spring steel plate (204) is spiral-shaped.
3. Extruder cooling device for the production of articles of biodegradable material according to claim 1, characterized in that said snap groove (203) is adapted to engage a snap strip (205), said extruded strip (208) having a thickness three times the thickness of the other side.
4. The extruder cooling device for the production of biodegradable material products according to claim 1, characterized in that the inner wall of the semicircular tile (211) fits the outside of the rubber cooling pipe (202), and the two semicircular tile (211) edges are connected by screws.
5. The extruder cooling device for biodegradable material product production according to claim 1, wherein a backflow component is connected to the end of the butt joint pipe (210), and the backflow component comprises a water supply pipe (301), a water pump (302), a water tank (303), a water return pipe (304), a treatment tank (305), a filter tank (306), a ventilation ring (307), a vent hole (308) and an air pump (309);
water supply pipe (301) are connected in a butt joint pipe (210) bottom through water pump (302), water pump (302) are intake and are held and connect water tank (303), another butt joint pipe (210) bottom is connected wet return (304), wet return (304) one end is connected and is handled case (305), it has rose box (306) to handle case (305) to be close to water tank (303) one end activity embedding, water tank (303) inside near wet return (304) one side evenly distributed has ventilating ring (307), exhaust hole (308), a plurality of ventilating ring (307) outside has evenly been seted up air pump (309) are all connected to ventilating ring (307).
6. The cooling device of an extruder for biodegradable material product production according to claim 5, wherein the input ends of the water pump (302) and the air pump (309) are electrically connected with the output end of an external power supply respectively, the bottom end of the aeration ring (307) is connected with a hose, and the hose penetrates through the treatment tank (305) and is connected with the air pump (309).
7. The extruder cooling device for biodegradable material product production according to claim 5, characterized in that the front face of the venting ring (307) is a rectangular ring, and the outer side of the venting ring (307) is attached to the inner wall of the treatment tank (305).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202121985534.6U CN215903947U (en) | 2021-08-23 | 2021-08-23 | Extruder cooling device for production of biodegradable material products |
Applications Claiming Priority (1)
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CN202121985534.6U CN215903947U (en) | 2021-08-23 | 2021-08-23 | Extruder cooling device for production of biodegradable material products |
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CN215903947U true CN215903947U (en) | 2022-02-25 |
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CN202121985534.6U Active CN215903947U (en) | 2021-08-23 | 2021-08-23 | Extruder cooling device for production of biodegradable material products |
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2021
- 2021-08-23 CN CN202121985534.6U patent/CN215903947U/en active Active
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