CN201416108Y - Air source high-temperature heat pump clothes dryer - Google Patents
Air source high-temperature heat pump clothes dryer Download PDFInfo
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- CN201416108Y CN201416108Y CN2009200577314U CN200920057731U CN201416108Y CN 201416108 Y CN201416108 Y CN 201416108Y CN 2009200577314 U CN2009200577314 U CN 2009200577314U CN 200920057731 U CN200920057731 U CN 200920057731U CN 201416108 Y CN201416108 Y CN 201416108Y
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Abstract
The utility model relates to an air source high-temperature heat pump clothes dryer, comprising a drying chamber which is provided with an air inlet pipeline and an air exhaust pipeline, and a heat pump device which is cross-spanned between the air inlet pipeline and the air exhaust pipeline, a condenser of the heat pump device is arranged in the air inlet pipeline, and an evaporator is arranged in the air exhaust pipeline; the heat pump device is composed of a compressor, and a heat pump condenser, a liquid reservoir, a filter, a throttling device, an evaporator and a gas-liquid separator which are sequentially communicated from the outlet of the compressor to the inlet, the heat pump devices are arranged in the air inlet pipeline and the air exhaust pipeline of the drying chamber independently and are in parallel arranged side by side; wherein the heat pump device arranged at the port of the air inlet pipeline and the air exhaust pipeline is a common heat pump, and the heat pump devices which are arranged with the common heat pump in parallel and arranged behind the common heat pump, close to one side of the drying chamber are one to four high-temperature heat pumps. The air source high-temperature heat pump clothes dryer fully utilizes heat, effectively avoid heat loss, can reduce drying time by about 50 percent under the same heating power and can greatly reduce energy consumption for drying textile.
Description
Technical field
The utility model relates to a kind of facilities air source heat pump clothes-drying machine that is used for dry fabric, relates in particular to a kind of air source high-temperature heat pump dryer with multistage heater.
Background technology
Present dryer majority is a tumbler dryer, and the cylinder of tumbler dryer is generally the stainless steel drum in band wind hole, and dryer stirs fabric by the forward and backward of cylinder, and fabric is mixed with heated dry air, thus dry fabric; Hot air quilt behind the absorption moisture is discharged from cylinder.In use there is following technical problem in tumbler dryer: friction takes place between fabric and the cylinder in the rotating process cylinder makes fabric abrasion easily; No matter adopt electrical heating, steam heated or heat pump mode, traditional dryer all needs the cylinder rotation, because the quality of cylinder and fabric is big, resistance is big, makes the cylinder rotation must consume lot of energy; Although fabric has been stirred in the rotating of cylinder it is evenly mixed as far as possible with hot-air, but inevitable fabric is difficult to mix with hot-air fully, for guaranteeing whole cylinder fabric bone dry, often adopt the mode that prolongs heat time heating time, this has caused the lot of energy loss again.China's ZL02287667.7 patent " heat pump clothes dryer " is given and has been shown a kind of equipment that is used for drying clothes, comprise hot humid gas treating apparatus such as screen pack, regenerator, condenser, be provided with by compressor, saturator, condenser, subcooler, capillary, evaporimeter and form heat pump assembly.Saturator is established the closed container of wire mesh packing in being, condenser, evaporimeter, subcooler, regenerator are all fin-tube type heat exchanger, and regenerator is divided into regenerator evaporator section, regenerator condensation segment two parts, and evaporimeter is set in the middle of the two.From this technical scheme as can be known, used heat pump circulating device is the single-stage circulation, so heat utilization efficiency is still limited.
Summary of the invention
The technical problems to be solved in the utility model provides a kind of wearing and tearing of avoiding fabric in the drying course, prolongs the service life of fabric, and can effectively reduce the heat-pump-type drying clothes machine of thermal loss, raising heat utilization efficiency.
In order to solve the problems of the technologies described above, the utility model adopts following technical scheme:
A kind of air source heat pump dryer, comprise the drying chamber that is provided with intake stack and exhaust duct and be across intake stack and exhaust duct between heat pump assembly, the condenser of described heat pump assembly is arranged in intake stack, evaporimeter is arranged in exhaust duct, this heat pump assembly is formed by compressor and from heat pump condenser, reservoir, filter, throttling arrangement, evaporimeter, the gas-liquid separator that inlet is communicated with successively by pipeline that export to of compressor, and described heat pump assembly is separate and arranged side by side arrangement setting in drying chamber intake stack and exhaust duct.Wherein, the heat pump assembly that is arranged on blast pipe road junction and exhaust duct road junction is common heat pump, be positioned at behind this common heat pump near drying chamber one side and with common heat pump heat pump assembly arranged side by side be high temperature heat pump, the described high temperature heat pump that is set up in parallel has 1~4.
During assembling, common heat pump is formed by compressor and from heat pump condenser, reservoir, filter, throttling arrangement, evaporimeter, the gas-liquid separator that inlet is communicated with successively by pipeline that export to of compressor.High temperature heat pump is formed by compressor and from heat pump condenser, reservoir, filter, throttling arrangement, evaporimeter, the gas-liquid separator that inlet is communicated with successively by pipeline that export to of compressor.
In addition, used condenser is a finned cooler, and evaporimeter is a finned evaporator.In described drying chamber, be provided with swing guide vane air port, on swing guide vane air port, be provided with the swing guide vane by intake stack one side.In described drying chamber, be provided with the hanger bar of drapery.
The utility model adopts the mode of multistage heating to heat the external environment air by the combination of used heat utilization, normal air source heat pump and the temperature air-source heat pump of drying chamber air draft, realizes 60~90 ℃ high bake out temperature; Simultaneously,, under the situation of heating power equally, can reduce nearly 50% drying time, greatly reduce the energy consumption of hyperthermia drying by combining of the air-supply of swing guide vane air port and fabric suspension type arrangement form; Used heat utilization by the drying chamber air draft makes air source high-temperature heat pump have thermal source, and temperature air-source heat pump can normally be moved, and has reduced the discharging of environment thermal energy to external world, has reduced the thermal pollution to environment; The evaporation rate of moisture on the fabric can be accelerated to each position balanced ventilation of drying chamber in swing guide vane air port, strengthens drying effect; Fabric suspension type arrangement form can make each fabric and each position of fabric contact with heated dry air is full and uniform, reaches good drying effect.
Description of drawings
Accompanying drawing 1 is the utility model embodiment 1 structural representation; Accompanying drawing 2 is the utility model embodiment 2 structural representations.
The specific embodiment
For the ease of those skilled in the art's understanding, below in conjunction with embodiment and accompanying drawing the utility model is further described, the content that embodiment is mentioned not is to qualification of the present utility model.
As shown in Figure 1, a kind of air source high-temperature heat pump dryer comprises being provided with drying chamber C and the two levels of thermal pump installation that air intake closes pipeline A and exhaust duct B that described two levels of thermal pump installation comprises ordinary hot pump installation and one-level high temperature heat pump device.Described ordinary hot pump installation comprises that compressor 11 reaches common heat pump fin condenser 12, reservoir 13, filter 14, throttling arrangement 15, common heat pump evaporator fin 16, the gas-liquid separator 17 that entry sequence connects that export to from compressor; Described high temperature heat pump device comprises that compressor 21 reaches high temperature heat pump fin condenser 22, reservoir 23, filter 24, throttling arrangement 25, high temperature heat pump evaporator fin 26, the gas-liquid separator 27 that entry sequence connects that export to from compressor.The quantity that can also suitably increase or reduce multi-stage heat pump device moderate and high temperature heat device has provided the 2nd grade of high temperature heat pump device as shown in Figure 2 to satisfy more demands to heat pump assembly on the market according to actual needs.In like manner, these 2 grades of high temperature heat pump devices comprise that compressor 31 reaches secondary high temperature heat pump fin condenser 32, reservoir 33, filter 34, throttling arrangement 35, secondary high temperature heat pump evaporator fin 36, the gas-liquid separator 37 that entry sequence connects that export to from compressor.Described heat pump assembly is side by side and each other independent mutually, and except that the logical heat pump of a Daepori was arranged, the high temperature heat pump that is set up in parallel with common heat pump can be as required has 1~4 with the requirement of heat utilization and drying chamber temperature.
Wherein common heat pump cold-producing medium can adopt common cold-producing medium (as R22, R407C etc.), and the high temperature heat pump cold-producing medium adopts high temperature refrigerant.Side by intake stack A in described drying chamber C is provided with swing guide vane air port H, is provided with swing guide vane G on swing guide vane air port, and is provided with the hanger bar J of drapery in described drying chamber.Swing guide vane air port wind pushing form is adopted in the drying chamber air-supply, and to each position balanced ventilation of drying chamber, the oven dry indoor fabric adopts the form that is suspended, and accelerates the evaporation rate of moisture on the fabric, strengthens drying effect.Cancelled the energy consumption of Rolling motor, avoided the wearing and tearing of cylinder, and each fabric and each position of fabric are contacted with heated dry air is full and uniform, reached good drying effect, reduced drying time, reduced the fabric drying energy consumption significantly fabric.Hanger bar can adopt the bar of smooth shaft or the stake of band micro-protuberance, and wherein the micro-protuberance stake can prevent that fabric from sliding.
Claims (8)
1, a kind of air source heat pump dryer, comprise the drying chamber (C) that is provided with intake stack (A) and exhaust duct (B) and be across intake stack and exhaust duct between heat pump assembly, the condenser of described heat pump assembly is arranged in intake stack, evaporimeter is arranged in exhaust duct, this heat pump assembly is formed by compressor and from heat pump condenser, reservoir, filter, throttling arrangement, evaporimeter, the gas-liquid separator that inlet is communicated with successively by pipeline that export to of compressor, it is characterized in that:
Described heat pump assembly is separate and arranged side by side arrangement setting in drying chamber (C) intake stack and exhaust duct.
2, air source heat pump dryer according to claim 1, it is characterized in that: the heat pump assembly that is arranged on blast pipe road junction and exhaust duct road junction is common heat pump (D), be positioned at behind this common heat pump near drying chamber one side and with common heat pump heat pump assembly arranged side by side be high temperature heat pump (F).
3, air source heat pump dryer according to claim 2 is characterized in that: the described high temperature heat pump that is set up in parallel has 1~4.
4, air source heat pump dryer according to claim 2 is characterized in that: described common heat pump (D) is formed by compressor (11) and from heat pump condenser (12), reservoir (13), filter (14), throttling arrangement (15), evaporimeter (16), the gas-liquid separator (17) that inlet is communicated with successively by pipeline that export to of compressor.
5, air source heat pump dryer according to claim 2 is characterized in that: described high temperature heat pump (F) is formed by compressor (21) and from heat pump condenser (22), reservoir (23), filter (24), throttling arrangement (25), evaporimeter (26), the gas-liquid separator (27) that inlet is communicated with successively by pipeline that export to of compressor.
6, according to claim 4 or 5 described air source heat pump dryers, it is characterized in that: described condenser is a finned cooler, and described evaporimeter is a finned evaporator.
7, according to claim 4 or 5 described air source heat pump dryers, it is characterized in that: in described drying chamber (C), be provided with swing guide vane air port (H), on swing guide vane air port, be provided with swing guide vane (G) by intake stack (A) side.
8, according to claim 4 or 5 described air source heat pump dryers, it is characterized in that: the hanger bar (J) that in described drying chamber (C), is provided with drapery.
Priority Applications (1)
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CN2009200577314U CN201416108Y (en) | 2009-06-01 | 2009-06-01 | Air source high-temperature heat pump clothes dryer |
Applications Claiming Priority (1)
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CN2009200577314U CN201416108Y (en) | 2009-06-01 | 2009-06-01 | Air source high-temperature heat pump clothes dryer |
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CN2009200577314U Expired - Fee Related CN201416108Y (en) | 2009-06-01 | 2009-06-01 | Air source high-temperature heat pump clothes dryer |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107741150A (en) * | 2017-10-31 | 2018-02-27 | 江苏天舒电器股份有限公司 | A kind of frostless, Multivariable Coupling type heat pump hot-blast stove control system and its control method |
CN107764036A (en) * | 2017-10-31 | 2018-03-06 | 江苏天舒电器股份有限公司 | A kind of frostless, Multivariable Coupling type heat pump hot blast stove system |
CN113882128A (en) * | 2020-07-02 | 2022-01-04 | 青岛海尔滚筒洗衣机有限公司 | Heat pump clothes dryer and control method thereof |
RU2774949C2 (en) * | 2016-01-05 | 2022-06-24 | ЭлДжи ЭЛЕКТРОНИКС ИНК. | Device for clothing processing, containing heat pump module |
-
2009
- 2009-06-01 CN CN2009200577314U patent/CN201416108Y/en not_active Expired - Fee Related
Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
RU2774949C2 (en) * | 2016-01-05 | 2022-06-24 | ЭлДжи ЭЛЕКТРОНИКС ИНК. | Device for clothing processing, containing heat pump module |
CN107741150A (en) * | 2017-10-31 | 2018-02-27 | 江苏天舒电器股份有限公司 | A kind of frostless, Multivariable Coupling type heat pump hot-blast stove control system and its control method |
CN107764036A (en) * | 2017-10-31 | 2018-03-06 | 江苏天舒电器股份有限公司 | A kind of frostless, Multivariable Coupling type heat pump hot blast stove system |
WO2019085453A1 (en) * | 2017-10-31 | 2019-05-09 | 江苏天舒电器有限公司 | Frostless multivariable coupled type heat pump hot blast stove system |
CN107764036B (en) * | 2017-10-31 | 2019-11-05 | 江苏天舒电器有限公司 | A kind of frostless, Multivariable Coupling type heat pump hot blast stove system |
CN113882128A (en) * | 2020-07-02 | 2022-01-04 | 青岛海尔滚筒洗衣机有限公司 | Heat pump clothes dryer and control method thereof |
CN113882128B (en) * | 2020-07-02 | 2023-09-29 | 重庆海尔滚筒洗衣机有限公司 | Heat pump clothes dryer and control method thereof |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20100303 Termination date: 20120601 |