CN2339389Y - Rotor-type ceramic honeycomb device of plastic dehumidifying dryer - Google Patents
Rotor-type ceramic honeycomb device of plastic dehumidifying dryer Download PDFInfo
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- CN2339389Y CN2339389Y CN 98241427 CN98241427U CN2339389Y CN 2339389 Y CN2339389 Y CN 2339389Y CN 98241427 CN98241427 CN 98241427 CN 98241427 U CN98241427 U CN 98241427U CN 2339389 Y CN2339389 Y CN 2339389Y
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- ceramic honeycomb
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- type ceramic
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Abstract
The utility model relates to a rotor-type ceramic honeycomb device of a plastic dehumidifying dryer. The symmetrical zones of the upper and the lower cover bodies of the device are divided into a regeneration hot zone, a cooling zone and a dehumidifying zone. The utility model matches with the upper layer of the main body of a matched rotor-type ceramic honeycomb which is a low moisture layer with a zeolite structure, the lower layer which is a high moisture absorption layer with a silica gel structure, and cycle utilization of the air. High-temperature air inputed through an air inlet removes hydrosphere by rotations of the main body of the ceramic honeycomb and actions of every zones. The utility model has the advantages of a stable air-out quality of air with dry return air, a stable dryness curve, a better dehumidification effect, and energy saving.
Description
The utility model relates to dehumidifying heat pump, refers in particular to a kind of rotary-type ceramic honeycomb device of plastic moisture removing drying machine.
Common high performance engineering plastic material, must handle through removal moisture drying, make its moisture content less than satisfying its condition of molding below 0.02%, plastic cement dehydrating unit commonly used has following three kinds substantially: first kind: at the side installing dehumidifying heater of the dry charging basket of plastic cement; Second kind: particulate molecular sieve removal moisture drying device; The third: the ceramic honeycomb structure that is provided with low moisture content layer and high moisture absorption layer.Its major defect is:
1, the removal moisture drying effect of first kind of removal moisture drying device is lower, and spended time is longer, because of hot-air is directly got rid of a large amount of energy of waste.
2, after the long-term use of the particulate molecular sieve of second kind of use, often lose crystallinity, reduce water absorbing capacity, its aridity curve instability because of the do action of saturated regeneration, and its friction or aging generation residue also can pollute the quality of plastic cement, and its consumption rate is also higher.
3, the third is too simple because of the ceramic honeycomb structure, can't effectively filter high temperature in the running and Cryogenic air dehumidifying, and operating efficiency is lower.
At the problems referred to above, the inventor creates the technical solution of the utility model through long term studies and practice.
The purpose of this utility model is to provide a kind of rotary-type ceramic honeycomb device of plastic moisture removing drying machine, by regeneration hot-zone, cooling zone, dehumidifying district being set and cooperating high temperature low moisture floor and the high moisture absorption layer of low temperature, and the air circulation utilization etc., it is stable to reach assurance air-out quality and aridity curve, and improves the purpose of the drying efficiency and the saving energy.
The purpose of this utility model is achieved in that a kind of rotary-type ceramic honeycomb device of plastic moisture removing drying machine, the upper and lower cover body and the pad that comprise ceramic honeycomb main body and last lower cover thereof, it is characterized in that: this lower cover is locked on the bottom surface of support body, and most pillars of this support body extend upward the portion that the covers interlocking that is placed through this upper cover body and fix; The axle center of these lower cover central authorities is for the axis hole activity hub setting of this ceramic honeycomb main body, and the runner that the below of this ceramic honeycomb main body is provided with on most linkage part and this support body supplies the belt snare and drive this ceramic honeycomb main body to rotate; The upper strata of this ceramic honeycomb main body is to contain zeolite structured low moisture content layer, and its lower floor is the high moisture absorption layer that contains silica gel structure, and the inside symmetry lattice of this upper and lower cover body is provided with regeneration hot-zone, cooling zone and dehumidifying district; The regeneration hot-zone of this upper cover body is provided with the air intake vent for the input hot-air, and its dehumidifying district is provided with the exhaust outlet for the output dry air; The regeneration hot-zone of this lower cover is provided with for the aqueous vapor hole of getting rid of moisture, and its dehumidifying district is provided with the air intake vent for the circulating air input.
Be provided with pore between the cooling zone of this upper cover body and the dehumidifying district; The place of covering of this upper and lower cover body and ceramic honeycomb main body respectively is provided with the pad of three-decker, and its innermost layer is that wear plate, intermediate layer are datum plane, outer for sealing flexure strip; Close on the runner place on this support body and be provided with the shell fragment that suppresses in this belt; The pillar of this support body covers pocketed springs between portion and the nut in this upper cover body; The rotation direction of this runner is clockwise; The lattice ratio in the dehumidifying district of this upper and lower cover body is greater than this regeneration hot-zone and cooling zone, and its central authorities are to respectively being provided with rib between the face of covering.
Major advantage of the present utility model is: the upper and lower cover body symmetry district lattice of this device become regeneration hot-zone, cooling zone, dehumidifying district, the upper strata that cooperates rotary-type ceramic honeycomb main body is to contain zeolite structured low moisture content layer, lower floor is the high moisture absorption layer that contains silica gel structure, and the air circulation utilization makes the high temperature air by the air inlet input, because aqueous vapor is got rid of in the rotation of ceramic honeycomb main body and the effect in each lattice district, the air that contains dry return air reaches stable air-out quality, aridity curve and preferable effect on moisture extraction, and energy savings.
The utility model is further specified as follows below by drawings and Examples:
Fig. 1 is a schematic appearance of the present utility model.
Fig. 2 is a perspective exploded view of the present utility model.
Fig. 3 is vertical expansion generalized section of the present utility model.
Fig. 4 is an application combination process schematic diagram of the present utility model.
Consult Fig. 1 and Fig. 2, the utility model is installed rotary-type ceramic honeycomb device 1 on support body 5, the upper and lower lid respectively of its ceramic honeycomb body 11 is pressed symmetrical upper cover body 2 and the lower cover 3 of shape, its inner symmetrical lattice is provided with regeneration hot- zone 21 and 31, cooling zone 22 and 32 and dehumidifying district 23 and 33.The slotted eye that the pillar 51 of support body 5 places lower cover 3 fit portions is locked in support body 5 bottom surfaces with it, its three active regions 31,32 and 33 and support body 5 be flat state, the axle center of lower cover 3 central authorities 34 is for the axis hole 113 activity hub settings of ceramic honeycomb bodies 11.Most pillars 51 on the support body 5 extend upward and penetrate slotted eye 241 and the flexible member 243 that upper cover body 2 chow rings cover portion 24, and nut 242 is screwed into spiro union portion 511, can adjust its interlocking tightness.Cover thongs 112 on the runner 52 that is provided with most linkage part 111 and support body 5 below the ceramic honeycomb body 11, driving ceramic honeycomb body 11 clockwise directions by runner 52 rotates, for making belt 112 keep tightness, contiguous runner 52 is provided with shell fragment 53 on support body 5, is used to adjust the degree of tightening of keeping belt.Produce the friction dust when preventing that ceramic honeycomb body 11 from rotating, respectively be provided with the pad 4 of three-decker at its contact-making surface with upper and lower cover body 2 and 3: its innermost layer is that wear plate, intermediate layer are datum plane, outer for sealing flexure strip.Pad 4 has the dust and guarantee to seal gastight effect of preventing to rub in ceramic honeycomb body 11 rotation processes.
Its upper and lower cover body 2 and 3 dehumidifying district 23 and 33 be because of its lattice large percentage, for keep its have stably frictional force and support force in central authorities to respectively being provided with two ribs 25 and 35 between the face of covering.
Consult Fig. 3 and Fig. 4, when dehumidifying heat pump of the present utility model turns round, outside air is sucked after filtration by regeneration windmill A, heat by electric heater B, hot-air is entered in the ceramic honeycomb body 11 that clockwise rotates by the air intake vent 211 of the regeneration hot-zone 21 of upper cover body 2, the downward seepage flow of airborne moisture content is got rid of moisture content and moistures by the steam vent 311 of the regeneration hot-zone 31 of lower cover 3.On the upper strata of ceramic honeycomb body 11 is the low moisture content layer 12 that contains the zeolite composition, and lower floor is the high moisture absorption layer 13 that contains the silica gel composition.The hot-air that enters through air intake vent 211 is through the 22 preliminary cooling effects of the cooling zone of loam cake 2.The air intake vent 331 of dry return air through the dehumidifying district 33 of lower cover 3 enters, the gathering moisture content that condenses is adsorbed between the silica gel micro-pore of high moisture absorption layer 13, dry air upwards flows in low moisture content layer 12 in, exports the dry charging basket C of dry airs confession from the exhaust outlet 231 in the dehumidifying district 23 of upper cover body 2 and is used for dry plastic material.The humid air of getting rid of through dry charging basket C passes through recursive filter D, cooler E and dry windmill F again, again by the air intake vent 331 input Recyclings in the dehumidifying district 33 of lower cover 3, so not only can save the energy, also can guarantee that the dry air that enters dry charging basket C reduces external air and prevents that it from producing moisture regain, reaches the stable effect of aridity curve.Between the cooling zone 22 of upper cover body 2 and dehumidifying district 23, be provided with pore 221, the dry airs in the dehumidifying district 23 are circulated in the cooling zone 22, reach cooling, prevent the effect of its moisture regain.
Claims (7)
1, a kind of rotary-type ceramic honeycomb device of plastic moisture removing drying machine, the upper and lower cover body and the pad that comprise ceramic honeycomb main body and last lower cover thereof, it is characterized in that: this lower cover is locked on the bottom surface of support body, and most pillars of this support body extend upward the portion that the covers interlocking that is placed through this upper cover body and fix; The axle center of these lower cover central authorities is for the axis hole activity hub setting of this ceramic honeycomb main body, and the runner that the below of this ceramic honeycomb main body is provided with on most linkage part and this support body supplies the belt snare and drive this ceramic honeycomb main body to rotate; The upper strata of this ceramic honeycomb main body is to contain zeolite structured low moisture content layer, and its lower floor is the high moisture absorption layer that contains silica gel structure, and the inside symmetry lattice of this upper and lower cover body is provided with regeneration hot-zone, cooling zone and dehumidifying district; The regeneration hot-zone of this upper cover body is provided with the air intake vent for the input hot-air, and its dehumidifying district is provided with the exhaust outlet for the output dry air; The regeneration hot-zone of this lower cover is provided with for the aqueous vapor hole of getting rid of moisture, and its dehumidifying district is provided with the air intake vent for the circulating air input.
2, the rotary-type ceramic honeycomb device of plastic moisture removing drying machine as claimed in claim 1 is characterized in that: be provided with pore between the cooling zone of this upper cover body and the dehumidifying district.
3, the rotary-type ceramic honeycomb device of plastic moisture removing drying machine as claimed in claim 1, it is characterized in that: the place of covering of this upper and lower cover body and ceramic honeycomb main body respectively is provided with the pad of three-decker, and its innermost layer is that wear plate, intermediate layer are datum plane, outer for sealing flexure strip.
4, the rotary-type ceramic honeycomb device of plastic moisture removing drying machine as claimed in claim 1 is characterized in that: close on the runner place on this support body and be provided with the shell fragment that suppresses in this belt.
5, the rotary-type ceramic honeycomb device of plastic moisture removing drying machine as claimed in claim 1, it is characterized in that: the pillar of this support body covers pocketed springs between portion and the nut in this upper cover body.
6, the rotary-type ceramic honeycomb device of plastic moisture removing drying machine as claimed in claim 1 is characterized in that: the rotation direction of this runner is for clockwise.
7, the rotary-type ceramic honeycomb device of plastic moisture removing drying machine as claimed in claim 1 is characterized in that: the lattice ratio in the dehumidifying district of this upper and lower cover body is greater than this regeneration hot-zone and cooling zone, and its central authorities are to respectively being provided with rib between the face of covering.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 98241427 CN2339389Y (en) | 1998-10-15 | 1998-10-15 | Rotor-type ceramic honeycomb device of plastic dehumidifying dryer |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 98241427 CN2339389Y (en) | 1998-10-15 | 1998-10-15 | Rotor-type ceramic honeycomb device of plastic dehumidifying dryer |
Publications (1)
Publication Number | Publication Date |
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CN2339389Y true CN2339389Y (en) | 1999-09-22 |
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ID=33988184
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN 98241427 Expired - Fee Related CN2339389Y (en) | 1998-10-15 | 1998-10-15 | Rotor-type ceramic honeycomb device of plastic dehumidifying dryer |
Country Status (1)
Country | Link |
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CN (1) | CN2339389Y (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101046364B (en) * | 2006-03-29 | 2012-05-23 | 霓佳斯株式会社 | Dehumidifying rotor, manufacturing method thereof and dehumidifier |
CN113410785A (en) * | 2021-05-31 | 2021-09-17 | 无锡东瑞电力科技有限公司 | Clean dry air exchange system of high-voltage board |
-
1998
- 1998-10-15 CN CN 98241427 patent/CN2339389Y/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101046364B (en) * | 2006-03-29 | 2012-05-23 | 霓佳斯株式会社 | Dehumidifying rotor, manufacturing method thereof and dehumidifier |
CN113410785A (en) * | 2021-05-31 | 2021-09-17 | 无锡东瑞电力科技有限公司 | Clean dry air exchange system of high-voltage board |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C19 | Lapse of patent right due to non-payment of the annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |