CN214982562U - Circulating cooling device for production of composite plastic clamping strips - Google Patents

Circulating cooling device for production of composite plastic clamping strips Download PDF

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Publication number
CN214982562U
CN214982562U CN202121083606.8U CN202121083606U CN214982562U CN 214982562 U CN214982562 U CN 214982562U CN 202121083606 U CN202121083606 U CN 202121083606U CN 214982562 U CN214982562 U CN 214982562U
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China
Prior art keywords
fixed
cooling box
cooling
water
card strip
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CN202121083606.8U
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Chinese (zh)
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王魏巍
陈伟
谢士林
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Anhui Chunan New Material Technology Co ltd
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Anhui Chunan New Material Technology Co ltd
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Abstract

The utility model provides a circulative cooling device is used in production of compound plastics card strip belongs to plastics card strip production technical field for solve the problem that existing equipment can not carry out the continuous cooling to the compound plastics card strip of incessant production. The cooling device comprises a cooling box and a cooling mechanism, wherein a partition plate is fixed inside the cooling box, a drying mechanism is arranged on the partition plate, the cooling mechanism comprises a cooling box, a water suction pump and two supports, the cooling box is fixed on the partition plate, through holes are formed in two sides of the cooling box, guide wheels are rotatably arranged inside the through holes, the water suction pump is fixed inside the cooling box, the output end of the water suction pump is connected with a water delivery pipe, the water delivery pipe penetrates through the partition plate, the two supports are fixed on the cooling box, a spray plate is fixed between the two supports, a water delivery pipe is fixed above the spray plate and is communicated with the water delivery pipe, and a blowing mechanism is arranged on each support; the utility model discloses can continuously cool off the plastics card strip of incessant production.

Description

Circulating cooling device for production of composite plastic clamping strips
Technical Field
The utility model belongs to the technical field of plastics card strip production, a circulative cooling device is used in production of compound plastics card strip is related to.
Background
With the development of the times, various high-grade intelligent household appliances enter thousands of households, such as refrigerators, air conditioners and the like, the intelligent promotion does not mean the rise of price, and therefore, the manufacturing cost of the household appliances needs to be controlled.
Current cooling device is used in production of composite plastic card strip adopts water tank and water pump cooperation more, dashes to drench the cooling to the plastics card strip after the production is accomplished, however, when production composite plastic card strip, often can carry out incessant production, thereby lead to the unable timely cooling of refrigerated water, thereby reduce or lose the cooling effect to the plastics card strip, and simultaneously, the plastics card strip after dashing to drench the cooling often remains many water stains, influence the product appearance, consequently, we propose one kind and can last the cooling device of circulation to composite plastic card strip cooling.
SUMMERY OF THE UTILITY MODEL
The utility model aims at having the above-mentioned problem to current technique, provided a circulative cooling device is used in production of compound plastics card strip, the technical problem that the device will solve is: how to continuously cool and lower the temperature of the continuously produced composite plastic clamping strip.
The purpose of the utility model can be realized by the following technical proposal:
the utility model provides a production of composite plastic card strip is with circulative cooling device, including cooling box and cooling body, the inside of cooling box is fixed with the baffle, be provided with dry mechanism on the baffle, cooling body includes cooling box, suction pump and two supports, cooling box fixes on the baffle, the through-hole has all been seted up to cooling box's both sides, the inside of through-hole is rotated and is provided with the leading wheel, the suction pump is fixed in the inside of cooling box, the output of suction pump is connected with the delivery pipe, the delivery pipe runs through and stretches out the baffle, the tip intercommunication cooling box of delivery pipe, two supports are all fixed on cooling box, be fixed with between two supports and spray the board, the top that sprays the board is fixed with the raceway, raceway and delivery pipe intercommunication, be provided with the mechanism of blowing on the support.
The mounting hole has all been seted up at the both ends of cooling box, and the inside of two mounting holes all is provided with the fan, and the louvre has all been seted up to the both sides of cooling box, has seted up a plurality of apopores on the baffle, and the below of baffle is fixed with a plurality of water deflectors, and the water deflector all is located the below of apopore, and the water deflector is made for metal material.
Structure more than adopting, water on the baffle flows to the top of water conservancy diversion piece through the delivery port, and the water conservancy diversion piece cools down water, and two fans drive air flow on every side to accelerate cooling speed, the inside of cooling case is fallen into to the water after the cooling, and the water of cooling incasement portion is taken out by the suction pump and is left, accomplishes the cooling.
Drying mechanism includes the support column, and the support column is fixed on the baffle, is fixed with down the frid on the support column, and articulated on the frid down have an upper groove board, and upper groove board and the inside equal detachable of frid down are equipped with the sponge.
Structure more than adopting opens the frid, puts into the frid inside down with plastics card strip, and later closed frid, two sponges press from both sides tightly plastics card strip to remaining water stain on the convenient absorption plastics card strip.
The air blowing mechanism comprises an air pump and a connecting plate, the connecting plate is T-shaped and is fixed on the side face of the support, two nozzles are fixed below the connecting plate, the air pump is fixed above the support, the output end of the air pump is connected with an air pipe, and the air pipe is communicated with the two nozzles through the connecting plate.
Structure more than adopting, the air pump is with the inside of air suction gas-supply pipe, and two nozzles departments are carried with the air to the gas-supply pipe, and two nozzles blow to plastics card strip to get rid of plastics card strip and go up great drop of water and remain, accelerate the air flow simultaneously, cool down once more to plastics card strip.
Compared with the prior art, this circulative cooling device is used in production of compound plastics card strip has following advantage:
1. the cooling mechanism is adopted to cool the plastic clamping strip which is just produced for many times, so that the temperature of the plastic clamping strip is quickly reduced to room temperature, and the subsequent production is convenient;
2. the cooling box is adopted to cool the hot water after cooling the plastic clamping strips, so that the water temperature is kept at a lower temperature, and the plastic clamping strips which are produced uninterruptedly can be cooled continuously;
3. the blowing mechanism is matched with the drying mechanism, so that residual water drops on the plastic clamping strip can be blown off, and meanwhile, the plastic clamping strip is wiped by the blowing mechanism with a certain cooling function, so that the plastic clamping strip product is kept dry and clean.
Drawings
Fig. 1 is a schematic perspective view of the present invention;
fig. 2 is a schematic front view of the present invention;
fig. 3 is a schematic view of the present invention with a partially cut-away structure;
in the figure: 1-air blowing mechanism, 101-air pipe, 102-air pump, 103-connecting plate, 104-nozzle, 2-drying mechanism, 201-upper groove plate, 202-sponge, 203-lower groove plate, 204-supporting column, 3-cooling box, 301-fan, 302-heat dissipation hole, 303-flow deflector, 304-water outlet hole, 305-clapboard, 306-mounting hole, 4-cooling mechanism, 401-bracket, 402-spraying plate, 403-water pipe, 404-cooling box, 405-through hole, 406-guide wheel, 407-water supply pipe and 408-water pump.
Detailed Description
The technical solution of the present patent will be described in further detail with reference to the following embodiments.
Reference will now be made in detail to embodiments of the present patent, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to the same or similar elements or elements having the same or similar function throughout. The embodiments described below with reference to the drawings are exemplary only for the purpose of explaining the present patent and are not to be construed as limiting the present patent.
In the description of this patent, it is to be understood that the terms "center," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," and the like are used in the orientations and positional relationships indicated in the drawings for the convenience of describing the patent and for the simplicity of description, and are not intended to indicate or imply that the referenced devices or elements must have a particular orientation, be constructed and operated in a particular orientation, and are not to be considered limiting of the patent.
In the description of this patent, it is noted that unless otherwise specifically stated or limited, the terms "mounted," "connected," and "disposed" are to be construed broadly and can include, for example, fixedly connected, disposed, detachably connected, disposed, or integrally connected and disposed. The specific meaning of the above terms in this patent may be understood by those of ordinary skill in the art as appropriate.
Referring to fig. 1-3, the present embodiment provides a circulating cooling device for producing a composite plastic card strip, which includes a cooling box 3 and a cooling mechanism 4, a partition 305 is fixed inside the cooling box 3, a drying mechanism 2 is disposed on the partition 305, the cooling mechanism 4 includes a cooling box 404, the cooling device comprises a water suction pump 408 and two supports 401, wherein a cooling box 404 is fixed on a partition 305, through holes 405 are formed in two sides of the cooling box 404, guide wheels 406 are arranged in the through holes 405 in a rotating mode, the water suction pump 408 is fixed in the cooling box 3, the output end of the water suction pump 408 is connected with a water supply pipe 407, the water supply pipe 407 penetrates through and extends out of the partition 305, the end portion of the water supply pipe 407 is communicated with the cooling box 404, the two supports 401 are fixed on the cooling box 3, a spraying plate 402 is fixed between the two supports 401, a water conveying pipe 403 is fixed above the spraying plate 402, the water conveying pipe 403 is communicated with the water supply pipe 407, and a blowing mechanism 1 is arranged on each support 401.
Mounting holes 306 are formed in both ends of the cooling box 3, fans 301 are arranged in the two mounting holes 306, heat dissipation holes 302 are formed in both sides of the cooling box 3, a plurality of water outlet holes 304 are formed in the partition plate 305, a plurality of flow deflectors 303 are fixed below the partition plate 305, the flow deflectors 303 are located below the water outlet holes 304, and the flow deflectors 303 are made of metal materials; the water on the baffle 305 flows to the top of the flow deflector 303 through the water outlet 304, the flow deflector 303 cools the water, the two fans 301 drive the surrounding air to flow, thereby accelerating the cooling speed, the cooled water falls into the inside of the cooling box 3, the water in the cooling box 3 is pumped away by the water pump 408, and the cooling is completed.
The drying mechanism 2 comprises a support column 204, the support column 204 is fixed on a partition 305, a lower groove plate 203 is fixed on the support column 204, an upper groove plate 201 is hinged on the lower groove plate 203, and sponges 202 are detachably arranged in the upper groove plate 201 and the lower groove plate 203; open and go up frid 201, put into down frid 203 with the plastics card strip inside, later closed frid 201, two sponges 202 press from both sides tightly the plastics card strip to conveniently absorb remaining water stain on the plastics card strip.
The air blowing mechanism 1 comprises an air pump 102 and a connecting plate 103, the connecting plate 103 is T-shaped, the connecting plate 103 is fixed on the side surface of the support 401, two nozzles 104 are fixed below the connecting plate 103, the air pump 102 is fixed above the support 401, the output end of the air pump 102 is connected with an air pipe 101, and the air pipe 101 is communicated with the two nozzles 104 through the connecting plate 103; air pump 102 is with the inside of air suction air-supply pipe 101, and two nozzles 104 departments are carried with the air to air-supply pipe 101, and two nozzles 104 blow to the plastics card strip to get rid of the plastics card strip and go up great drop of water and remain, accelerate the air current simultaneously, cool down once more to the plastics card strip.
In the present embodiment, the above fixing manners are all the most commonly used fixing and connecting manners in the art, such as welding, bolt connection, and the like; the above electrical components, such as the air pump 102 and the water pump 408, are all prior art products, and can be purchased and used in the market directly, and the detailed description is omitted.
The utility model discloses a theory of operation:
the device is arranged on a plastic card strip production line, a section of plastic card strip is produced firstly, the section of plastic card strip penetrates through a through hole 405, an upper groove plate 201 is opened, the plastic card strip is placed inside a lower groove plate 203, then the upper groove plate 201 is closed, two pieces of sponge 202 clamp the plastic card strip, when the plastic card strip is produced, the plastic card strip which is just produced penetrates through the through hole 405, a water suction pump 408 pumps water inside a cooling box 3 into the inside of a water supply pipe 407, the water is conveyed from the inside of the water supply pipe 407 to the inside of a cooling box 404, the water cools the plastic card strip inside the cooling box 404, redundant water overflows from the through hole 405 and flows onto a partition plate 305, the primarily cooled plastic card strip moves to the lower part of a spraying plate 402, the water is conveyed from the inside of the water supply pipe 407 to the inside of a water conveying pipe 403 and then conveyed to the inside of the spraying plate 402 by the water conveying pipe 403, and the spraying plate 402 sprays the plastic card strip, the plastic clamping strip after spraying is moved to the nozzles 104, the air pump 102 pumps air into the air conveying pipe 101, the air conveying pipe 101 conveys the air to the two nozzles 104, the two nozzles 104 blow air to the plastic clamping strip, so that large water drop residues on the plastic clamping strip are removed, air flow is accelerated, the plastic clamping strip is cooled again, the plastic clamping strip after blowing is moved to the middle of the two sponges 202, the two sponges 202 absorb water stains remained on the plastic clamping strip, and then the plastic clamping strip leaves the cooling equipment to finish cooling;
the water on the baffle 305 flows to the top of the flow deflector 303 through the water outlet 304, the flow deflector 303 cools down the water, and the two fans 301 drive the air around to flow to accelerate the cooling speed, the water after cooling falls into the inside of the cooling box 3, and the water inside the cooling box 3 is pumped away by the suction pump 408, and the circulating cooling is carried out.
In conclusion, the cooling mechanism 4 is adopted to cool the plastic clamping strip which is just produced for many times, so that the temperature of the plastic clamping strip is quickly reduced to room temperature, and the subsequent production is facilitated; the cooling box 3 is adopted to cool the hot water after cooling the plastic clamping strips, so that the water temperature is kept at a lower temperature, and the plastic clamping strips which are produced uninterruptedly can be cooled continuously; the air blowing mechanism 1 is matched with the drying mechanism 2, so that residual water drops on the plastic clamping strip can be blown off, and meanwhile, the plastic clamping strip has a certain cooling function, and the plastic clamping strip is wiped, so that the plastic clamping strip product is kept dry and clean.
Although the preferred embodiments of the present patent have been described in detail, the present patent is not limited to the above embodiments, and various changes can be made without departing from the spirit of the present patent within the knowledge of those skilled in the art.

Claims (4)

1. The utility model provides a production of compound plastics card strip is with circulative cooling device, including cooling box (3) and cooling body (4), a serial communication port, the inside of cooling box (3) is fixed with baffle (305), be provided with drying mechanism (2) on baffle (305), cooling body (4) are including cooling box (404), suction pump (408) and two supports (401), cooling box (404) are fixed on baffle (305), through-hole (405) have all been seted up to cooling box (404) both sides, the inside rotation of through-hole (405) is provided with leading wheel (406), suction pump (408) are fixed in cooling box (3), the output of suction pump (408) is connected with delivery pipe (407), delivery pipe (407) run through and stretch out baffle (305), the tip of delivery pipe (407) communicates cooling box (404), two supports (401) are all fixed on cooling box (3), a spraying plate (402) is fixed between the two brackets (401), a water pipe (403) is fixed above the spraying plate (402), the water pipe (403) is communicated with a water supply pipe (407), and a blowing mechanism (1) is arranged on the brackets (401).
2. The circulating cooling device for producing the composite plastic card strip as claimed in claim 1, wherein mounting holes (306) are formed at two ends of the cooling box (3), fans (301) are arranged inside the two mounting holes (306), heat dissipation holes (302) are formed in two sides of the cooling box (3), a plurality of water outlet holes (304) are formed in the partition plate (305), a plurality of flow deflectors (303) are fixed below the partition plate (305), the flow deflectors (303) are located below the water outlet holes (304), and the flow deflectors (303) are made of metal materials.
3. The circulation cooling device for producing the composite plastic card strip as claimed in claim 1 or 2, wherein the drying mechanism (2) comprises a support column (204), the support column (204) is fixed on the partition plate (305), a lower groove plate (203) is fixed on the support column (204), an upper groove plate (201) is hinged on the lower groove plate (203), and sponges (202) are detachably arranged in the upper groove plate (201) and the lower groove plate (203).
4. The circulating cooling device for producing the composite plastic clamping strip is characterized in that the blowing mechanism (1) comprises an air pump (102) and a connecting plate (103), the connecting plate (103) is T-shaped, the connecting plate (103) is fixed on the side face of the support (401), two nozzles (104) are fixed below the connecting plate (103), the air pump (102) is fixed above the support (401), the output end of the air pump (102) is connected with an air conveying pipe (101), and the air conveying pipe (101) is communicated with the two nozzles (104) through the connecting plate (103).
CN202121083606.8U 2021-05-20 2021-05-20 Circulating cooling device for production of composite plastic clamping strips Active CN214982562U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121083606.8U CN214982562U (en) 2021-05-20 2021-05-20 Circulating cooling device for production of composite plastic clamping strips

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121083606.8U CN214982562U (en) 2021-05-20 2021-05-20 Circulating cooling device for production of composite plastic clamping strips

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115431482A (en) * 2022-08-16 2022-12-06 重庆首瀚智能技术研究院有限公司 Medicinal straw production facility and medicinal straw structure

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115431482A (en) * 2022-08-16 2022-12-06 重庆首瀚智能技术研究院有限公司 Medicinal straw production facility and medicinal straw structure

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