CN212632213U - Defogging device is used in production cooling of thermoplastic elastomer - Google Patents
Defogging device is used in production cooling of thermoplastic elastomer Download PDFInfo
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- CN212632213U CN212632213U CN202021319466.5U CN202021319466U CN212632213U CN 212632213 U CN212632213 U CN 212632213U CN 202021319466 U CN202021319466 U CN 202021319466U CN 212632213 U CN212632213 U CN 212632213U
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- heat dissipation
- thermoplastic elastomer
- cooling
- defogging device
- air pump
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Abstract
The utility model discloses a defogging device is used in production cooling of thermoplastic elastomer, including collecting cavity, air pump and electron air guide valve, the top intermediate position department of collecting the cavity has the air pump through the bolt fastening, and the output of air pump has the electron air guide valve through the bolt fastening, the right side of air pump is provided with operating button, the top of electron air guide valve has the heat dissipation case through the bolt fastening, and the inside of heat dissipation case has the defroster through the bolt fastening, the inside lower extreme welding of heat dissipation case has the groove of accomodating, the drain pipe has been seted up in the left side of accomodating the groove. This defogging device is used in production cooling of thermoplastic elastomer passes through mutually supporting between air pump, electron air guide valve, heat dissipation case and defroster, has improved the ease for use nature of device, and this defogging device is used in production cooling of thermoplastic elastomer passes through mutually supporting of guiding gutter, water catch bowl, touch switch and floating block, makes the defroster remain higher condensation efficiency throughout, borrows this condensation efficiency who improves the device.
Description
Technical Field
The utility model belongs to the technical field of the defogging device, concretely relates to defogging device is used in production cooling of thermoplastic elastomer.
Background
The thermoplastic elastomer can generate a large amount of mist in the production process, and a large amount of heat is usually released in the process, so the mist is removed by adopting a mist removing mode of a mist eliminator, so the aim of indirect cooling is fulfilled, and the existing mist eliminating device can basically meet daily use requirements, but has some defects to be improved.
The cooling liquefaction of fog is realized through the mode that adopts the natural condensation to current defogging device in the use, but the device appears the temperature rise very fast after long-term the use easily, and defogging efficiency reduces the phenomenon to reduce the work efficiency and the defogging effect of device, for this we propose a defogging device for the production cooling of thermoplastic elastomer and solve above-mentioned problem.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a thermoplastic elastomer production defogging device for cooling to it is very fast that the temperature rises to appear easily after long-term the use to solve the device that provides in the above-mentioned background art, and defogging efficiency reduces the phenomenon, thereby has reduced the work efficiency of device and the problem of defogging effect.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a defogging device is used in production cooling of thermoplastic elastomer, is including collecting cavity, air pump and electron air guide valve, the top intermediate position department of collecting the cavity has the air pump through the bolt fastening, and the output of air pump has the electron air guide valve through the bolt fastening, the right side of air pump is provided with operating button, the top of electron air guide valve has the heat dissipation case through the bolt fastening, and the inside of heat dissipation case has the defroster through the bolt fastening, the welding of the inside lower extreme of heat dissipation case has the groove of accomodating, the drain pipe has been seted up in the left side of accomodating the groove.
Preferably, the accommodating groove is designed in a ring shape, and the vertical cross section of the accommodating groove is designed in an inverted L shape.
Preferably, the lower end of the heat dissipation box is designed in an inclined shape, and the bottom end of the heat dissipation box is provided with a vertical extension part.
Preferably, the input ends of the electronic air guide valve and the heat dissipation box are electrically connected with the output end of the operation button through a wire, and the input end of the operation button is electrically connected with an external power supply through a wire.
Preferably, the inside of heat dissipation case is provided with spacing cleaning device, spacing cleaning device includes electronic valve, water injection pipe, guiding gutter, water catch bowl, touch switch, floating block and honeycomb duct, there is electronic valve, two sets of heat dissipation case top both sides are respectively through the bolt fastening electronic valve's top all with water injection pipe fixed connection, the equidistant welding of the inside lower extreme of heat dissipation case has four groups of guiding gutter, four groups the bottom welding of guiding gutter has the water catch bowl, the inside upper end fixed mounting of water catch bowl has touch switch, the inside lower pot head of water catch bowl is equipped with floating block, the bottom left side fixed mounting of water catch bowl has the honeycomb duct.
Preferably, the left side of the draft tube is designed to be inclined, and the length of the draft tube is larger than the inner radius of the containing groove.
Preferably, four sets of the one end that the guiding gutter deviates from each other all fan-shaped design, and the one end that guiding gutter and heat dissipation case contacted each other is in same horizontal plane with the heat dissipation case.
Preferably, the input end of the touch switch is electrically connected with an external power supply through a wire, and the output end of the touch switch is electrically connected with the input end of the electronic valve through a wire.
Compared with the prior art, the beneficial effects of the utility model are that:
(1) this defogging device is used in production cooling of thermoplastic elastomer passes through the air pump, electron air guide valve, mutually support between heat dissipation case and the defroster, can play the effect to the quick absorption condensation that contains thermal fog, simultaneously through mutually supporting of accomodating groove and drain pipe, the inside quick discharge of heat dissipation case can be followed to the comdenstion water, it is lower to have avoided the efficiency of accomodating that traditional guide's condensing equipment exists, the serious problem of the scattered degree of water smoke, the ease of use of device has been improved.
(2) This defogging device is used in thermoplastic elastomer production cooling passes through the guiding gutter, the water catch bowl, mutually supporting of touch switch and kicking block, it is more when the comdenstion water, when defroster working demand is great, the kicking block can trigger touch switch under the effect of the buoyancy of water, thereby make electronic valve work under the touch switch effect, thereby make the inside rivers of water injection pipe spout to the defroster through electronic valve, supplementary defroster dispels the heat fast, play the effect of washing to the defroster simultaneously, thereby make the defroster remain higher condensation efficiency throughout, borrow this and improve device's condensation efficiency.
Drawings
Fig. 1 is a schematic front view of a cross-sectional structure of the present invention;
fig. 2 is a schematic top view of the cross-sectional structure of the present invention;
fig. 3 is a schematic view of a partial top-view cross-sectional structure of the present invention;
fig. 4 is an enlarged schematic view of the structure at a in fig. 1 according to the present invention;
fig. 5 is an enlarged schematic view of the structure at B in fig. 1 according to the present invention.
In the figure: 1. a collection chamber; 2. an air pump; 3. an electronic air guide valve; 4. a heat dissipation box; 5. a demister; 6. an electronic valve; 7. a water injection pipe; 8. a diversion trench; 9. a water collection tank; 10. a touch switch; 11. floating blocks; 12. a flow guide pipe; 13. a receiving groove; 14. a drain pipe; 15. the button is operated.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-5, the present invention provides a defogging device for cooling in the production of thermoplastic elastomer, which comprises: the utility model provides a defogging device is used in thermoplastic elastomer production cooling, including collecting cavity 1, air pump 2 and electron air guide valve 3, the top intermediate position department of collecting cavity 1 has air pump 2 through the bolt fastening, and the output of air pump 2 has electron air guide valve 3 through the bolt fastening, the right side of air pump 2 is provided with operating button 15, the top of electron air guide valve 3 has heat dissipation case 4 through the bolt fastening, and there is defroster 5 through the bolt fastening in the inside of heat dissipation case 4, the inside lower extreme welding of heat dissipation case 4 has accomodate groove 13, accomodate the left side of groove 13 and seted up drain pipe 14.
In this embodiment, it is preferable that the storage groove 13 is designed in an annular shape, and the vertical cross section of the storage groove 13 is designed in an inverted "L" shape, so that the storage groove 13 can play a role of completely storing water flow inside the heat dissipation box 4 through the annular design, and meanwhile, the storage groove 13 has a certain degree of water storage capacity through the "L" shape design, thereby ensuring the stability of the device.
In this embodiment, preferred, 4 lower extremes of heat dissipation case become the design of slope form, and the bottom of heat dissipation case 4 is provided with vertical extension, and through this design, heat dissipation case 4 can be to the water conservancy diversion effect of hanging at the inside rivers of heat dissipation case 4 to make rivers can stabilize the gathering under the effect of gravity, thereby ensure the normal use of device.
In this embodiment, preferably, the input ends of the electronic air guiding valve 3 and the heat dissipation box 4 are electrically connected with the output end of the operation button 15 through a wire, and the input end of the operation button 15 is electrically connected with an external power supply through a wire.
In this embodiment, it is preferred, the inside of heat dissipation case 4 is provided with spacing cleaning device, spacing cleaning device includes electronic valve 6, water injection pipe 7, guiding gutter 8, water catch bowl 9, touch switch 10, floating block 11 and honeycomb duct 12, 4 top both sides of heat dissipation case are respectively through bolt fastening have electronic valve 6, the top of two sets of electronic valve 6 all with water injection pipe 7 fixed connection, equidistant welding of the inside lower extreme of heat dissipation case 4 has four sets of guiding gutter 8, the bottom welding of four sets of guiding gutter 8 has water catch bowl 9, the inside upper end fixed mounting of water catch bowl 9 has touch switch 10, the inside pot head that is equipped with under water catch bowl 9 is equipped with floating block 11, the bottom left side fixed mounting of water catch bowl 9 has honeycomb duct 12.
In this embodiment, preferably, the left side of the draft tube 12 is designed to be inclined, and the length of the draft tube 12 is greater than the inner radius of the accommodating groove 13, so that water flows through the draft tube 12 with a certain radian through the inclined design, thereby ensuring the normal flow of water flows, and meanwhile, through the design of being greater than the inner radius of the accommodating groove 13, water flows inside the water collecting tank 9 can stably flow into the accommodating groove 13 under the guiding effect of the draft tube 12.
In this embodiment, preferred, the one end that four group's guiding gutter 8 deviate from each other all fan-shaped design, and guiding gutter 8 and heat dissipation case 4 one end of mutual contact are in same horizontal plane with heat dissipation case 4, and through fan-shaped design, guiding gutter 8 has better collection nature to the rivers on the 4 inner walls of heat dissipation case, has improved the work efficiency of device to ensure the normal operating of device.
In this embodiment, preferably, the input end of the touch switch 10 is electrically connected to an external power source through a wire, and the output end of the touch switch 10 is electrically connected to the input end of the electronic valve 6 through a wire.
The utility model discloses a theory of operation and use flow: when the defogging operation is needed, firstly, the air pump 2 and the electronic air guide valve 3 are controlled to work through the operation button 15, the air pump 2 works to generate suction force to absorb fog, the electronic air guide valve 3 works and is conducted, the fog enters the inside of the heat dissipation box 4 along the electronic air guide valve 3 under the action of the air pump 2, the fog passes through the defogger 5, moisture contained in the fog is condensed and attached to the surface of the defogger 5 and slides downwards along the defogger 5, condensate dripping on the inner wall of the heat dissipation box 4 flows to the inside of the accommodating groove 13 under the guide of the inner wall of the heat dissipation box 4, and the condensate inside the accommodating groove 13 is discharged from the inside of the accommodating groove 13 through the drain pipe 14.
A part of condensate flows to the inside of the water collecting tank 9, the condensate is accumulated in the water collecting tank 9, the floating block 11 floats upwards under the action of the buoyancy of the condensate, when the floating block 11 contacts the water collecting tank 9 under the action of the buoyancy, the floating block 11 controls the electronic valve 6 to work, water in the water injection pipe 7 is sprayed on the surface of the demister 5 through the electronic valve 6, when the water flow entering the floating block 11 through the diversion trench 8 is smaller than the water flow discharged by the diversion pipe 12, the floating block 11 moves downwards along the water collecting tank 9, the water collecting tank 9 contacts the trigger state of the touch switch 10, the electronic valve 6 stops working, and the operation is finished.
Claims (8)
1. The utility model provides a thermoplastic elastomer production cooling is with defogging device, includes collection cavity (1), air pump (2) and electron air guide valve (3), its characterized in that: collect the top intermediate position department of cavity (1) and have air pump (2) through the bolt fastening, and the output of air pump (2) has electron air guide valve (3) through the bolt fastening, the right side of air pump (2) is provided with operating button (15), the top of electron air guide valve (3) has heat dissipation case (4) through the bolt fastening, and the inside of heat dissipation case (4) has defroster (5) through the bolt fastening, the welding of the inside lower extreme of heat dissipation case (4) has accomodate groove (13), accomodate the left side of groove (13) and seted up drain pipe (14).
2. The defogging device for cooling in the production of thermoplastic elastomer as claimed in claim 1, wherein: the accommodating groove (13) is designed in an annular shape, and the vertical cross section of the accommodating groove (13) is designed in an inverted L shape.
3. The defogging device for cooling in the production of thermoplastic elastomer as claimed in claim 1, wherein: the lower end of the heat dissipation box (4) is designed in an inclined shape, and the bottom end of the heat dissipation box (4) is provided with a vertical extension part.
4. The defogging device for cooling in the production of thermoplastic elastomer as claimed in claim 1, wherein: the input ends of the electronic air guide valve (3) and the heat dissipation box (4) are electrically connected with the output end of the operation button (15) through a lead, and the input end of the operation button (15) is electrically connected with an external power supply through a lead.
5. The defogging device for cooling in the production of thermoplastic elastomer as claimed in claim 1, wherein: a limiting cleaning device is arranged in the heat dissipation box (4), the limiting cleaning device comprises an electronic valve (6), a water injection pipe (7), a flow guide groove (8), a water collecting groove (9), a touch switch (10), a floating block (11) and a flow guide pipe (12), electronic valves (6) are respectively fixed on two sides of the top end of the heat dissipation box (4) through bolts, the top ends of the two groups of electronic valves (6) are fixedly connected with a water injection pipe (7), four groups of guide grooves (8) are welded at the lower end of the interior of the heat dissipation box (4) at equal intervals, water collecting grooves (9) are welded at the bottom ends of the four groups of guide grooves (8), a touch switch (10) is fixedly arranged at the upper end inside the water collecting tank (9), the inside pot head that holds of water catch bowl (9) is equipped with kicking block (11), the bottom left side fixed mounting of water catch bowl (9) has honeycomb duct (12).
6. The defogging device for cooling in the production of thermoplastic elastomer as claimed in claim 5, wherein: the left side of the draft tube (12) is designed in an inclined shape, and the length of the draft tube (12) is larger than the inner radius of the containing groove (13).
7. The defogging device for cooling in the production of thermoplastic elastomer as claimed in claim 5, wherein: four sets of guiding gutter (8) one end that deviates from each other all fan-shaped design, and guiding gutter (8) and heat dissipation case (4) one end of mutual contact are in same horizontal plane with heat dissipation case (4).
8. The defogging device for cooling in the production of thermoplastic elastomer as claimed in claim 5, wherein: the input end of the touch switch (10) is electrically connected with an external power supply through a lead, and the output end of the touch switch (10) is electrically connected with the input end of the electronic valve (6) through a lead.
Priority Applications (1)
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CN202021319466.5U CN212632213U (en) | 2020-07-08 | 2020-07-08 | Defogging device is used in production cooling of thermoplastic elastomer |
Applications Claiming Priority (1)
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CN202021319466.5U CN212632213U (en) | 2020-07-08 | 2020-07-08 | Defogging device is used in production cooling of thermoplastic elastomer |
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CN212632213U true CN212632213U (en) | 2021-03-02 |
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CN202021319466.5U Active CN212632213U (en) | 2020-07-08 | 2020-07-08 | Defogging device is used in production cooling of thermoplastic elastomer |
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