CN205601354U - Circular screen printer heat abstractor with through -hole structure - Google Patents
Circular screen printer heat abstractor with through -hole structure Download PDFInfo
- Publication number
- CN205601354U CN205601354U CN201620175760.0U CN201620175760U CN205601354U CN 205601354 U CN205601354 U CN 205601354U CN 201620175760 U CN201620175760 U CN 201620175760U CN 205601354 U CN205601354 U CN 205601354U
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- China
- Prior art keywords
- heat
- dissipating space
- screen printer
- water
- circular screen
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Abstract
The utility model discloses a circular screen printer heat abstractor with through -hole structure, including casing, water -cooling board, water pump, water cooling pipeline, heat radiation water tank, fan, reservoir chamber, control by temperature change rotational speed controller, compartment, last hydroecium etc. Inside first heat dissipation space and the second heat dissipation space of being equipped with of casing, the casing includes the first conch wall and the second conch wall of first conch wall and then, sets up an airflow outlet on the first conch wall, airflow outlet intercommunication second heat dissipation space, be provided with the through -hole on the second conch wall, and this through -hole intercommunication second heat dissipation space, the fan is installed on heat radiation water tank in the first heat dissipation space, water pump, reservoir chamber, water -cooling board and heat radiation water tank pass through the water pipe is connected, water pump and fan and the control by temperature change rotational speed controller be connected, it is equipped with water cooling pipeline and the heat transmission pipe who is the gyration form and sets up to go up between hydroecium and the heat radiation water tank, water cooling pipeline parallel arrangement is in the both sides that pass hot air duct.
Description
Technical field:
This utility model relates to technical field of textile machine, in particular to a kind of circular screen printer heat abstractor with through-hole structure.
Background technology:
The circular screen printer used in textile mills is a kind of screen printing machine using the jointless cylinder screen of continuous rotary to carry out stamp.Circular screen printer uses with other unit composition combination machine, can be used for bafta, chemical fibre and blend fabric thereof and general knitted fabric, the stamp of silk fabrics, its raw material variety being suitable for has: polyamide multifilament (line), polypropylene filament yarn (line), polypropylene, terylene, nylon, PP, low bullet, high-elastic, cotton thread yarn (line), pearly-lustre line, skin material, mixing etc..Circular screen printer is rational in infrastructure, processing ease, and production efficiency is high, is therefore widely used in textile manufacturing field.
Existing a kind of circular screen printer heat abstractor with through-hole structure can produce substantial amounts of heat in use due to the reason in design, the normal work of circular screen printer can be impacted if distributed not in time, thus affect the efficiency of stamp and printing machine is substantially reduced service life, additionally in prior art, the heat abstractor of circular screen printer often uses independent gas flow, the when of cannot playing heat sinking function when single runner because of plug resistance, printing machine body is easily because of overheated and impaired.
Utility model content:
The purpose of this utility model is to provide a kind of simple in construction, manufacture a kind of circular screen printer heat abstractor with through-hole structure easy to use, with the problem solving to propose in above-mentioned background technology.
For achieving the above object, the following technical scheme of this utility model offer:
nullA kind of circular screen printer heat abstractor with through-hole structure,Including housing、Cooled plate、Water pump、Water cooled pipeline、Cooling water tank,Fan、Reservoir chamber、Temperature control speed regulator、Compartment、Upper tank etc.,Described enclosure interior is provided with the first heat-dissipating space and the second heat-dissipating space,Described housing includes the second shell wall of the first shell wall and and then the first shell wall,First air stream outlet is set on the first shell wall,First air stream outlet connects the second heat-dissipating space,It is provided with through hole on described second shell wall,And this through hole connects the second heat-dissipating space,In described first heat-dissipating space, fan is arranged on cooling water tank,Described water pump、Reservoir chamber、Cooled plate is connected by described water pipe with cooling water tank,Described water pump is connected with described temperature control speed regulator with fan,The water cooled pipeline and heat transfer pipe arranged in revolution shape it is provided with between described upper tank and cooling water tank,Described water cooled pipeline is set in parallel in the both sides of heat transfer pipe,For assisting heat transfer pipe to dispel the heat.
Doing this utility model the most preferably, described heat abstractor also comprises temperature sensing device, and described temperature sensing device is arranged in the second heat-dissipating space.
Doing this utility model the most preferably, described housing also includes the 3rd sidewall, and described 3rd sidewall is provided with the second air stream outlet, and this second air stream outlet is away from through hole, and connection the second heat-dissipating space.
Doing this utility model the most preferably, described housing also comprises the 4th sidewall, and the 4th sidewall is provided with the second air flow inlet, and described second air flow inlet is away from the first air flow inlet, and connects the second heat-dissipating space.
This utility model is done further preferably, the described water cooled pipeline arranged in revolution shape and heat transfer pipe by or or the pipeline of individual pipeline or its multiple form.
As to a kind of explanation of cooled plate in technique scheme, described cooled plate includes cover plate, mainboard and base plate, described mainboard both sides are respectively provided with water inlet and outlet, the upper and lower surface of described mainboard is respectively equipped with the runner internally caved in, one of them runner is closed type structure, and the injecting mouth being provided with and being connected externally to, the runner of described injecting mouth is pulsating heat pipe runner, and described pulsating heat pipe runner is series and parallel combined closing structure.
Doing this utility model the most preferably, described mainboard, cover plate and base plate are connected as one by soldering after carrying out heat treatment.
The beneficial effects of the utility model are: this utility model utilizes the through-hole structure on heat abstractor sidewall, although not as heat radiation time normal operation time gateway, but the Inlet and outlet gas at the first heat-dissipating space flows out the when of now retardance, a part of radiating airflow can be allowed to flow in the second heat-dissipating space, the air-flow in heat-dissipating space can be efficiently controlled, it is to avoid in it is trapped in the first heat-dissipating space, the body of printing machine is caused the most overheated problem.
Accompanying drawing illustrates:
Below in conjunction with the accompanying drawings this utility model is described further:
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the A-A face sectional view of Fig. 1;
Fig. 3 is the structural representation of circular screen printer heat abstractor cooled plate;
Fig. 4 is the structural representation of the A-A of Fig. 3;
Fig. 5 is the structural representation of the C-C of Fig. 3.
Detailed description of the invention:
Below in conjunction with detailed description of the invention, this utility model is expanded on further.
nullSuch as Fig. 1,Shown in Fig. 2,A kind of circular screen printer heat abstractor with through-hole structure,Including housing 21、Cooled plate 3、Water pump 6、Water cooled pipeline 100、Cooling water tank 2,Fan 4、Reservoir chamber 5、Temperature control speed regulator 10、Compartment 12、Upper tank 15 etc.,Described housing 21 is internal is provided with the first heat-dissipating space 122 and the second heat-dissipating space 24,Described housing includes the second shell wall 128 of the first shell wall 126 and and then the first shell wall 126,First air stream outlet 22 is set on first shell wall 126,First air stream outlet 22 connects the second heat-dissipating space 24,It is provided with through hole on described second shell wall 128,And this through hole 30 connects the second heat-dissipating space 24,In described first heat-dissipating space 122, fan 4 is arranged on cooling water tank 2,Described water pump 6、Reservoir chamber 5、Cooled plate 3 is connected by described water pipe 7 with cooling water tank 2,Described water pump 6 is connected with described temperature control speed regulator 10 with fan 4,The water cooled pipeline 100 and heat transfer pipe 13 arranged in revolution shape it is provided with between described upper tank 15 and cooling water tank 2,Described water cooled pipeline 100 is set in parallel in the both sides of heat transfer pipe 13,For assisting heat transfer pipe 13 to dispel the heat.
Described heat abstractor also comprises temperature sensing device 20, and described temperature sensing device 20 is arranged in the second heat-dissipating space 24, and the first radiating airflow 24 can circulate the first heat-dissipating space 122 flow out housing 21 from the first air stream outlet 22.
Described housing also includes the 3rd sidewall 132, it is provided with the second air stream outlet 42 on described 3rd sidewall 132, this second air stream outlet 42 is away from through hole 30, and connection the second heat-dissipating space 24, and the fan 4 and cooled plate 3 structure that arrange in heat-dissipating space in addition can strengthen draught effect.
Described housing 21 also comprises the 4th sidewall 134, and the 4th sidewall 134 is provided with the second air flow inlet 44, and described second air flow inlet 44 is away from the first air flow inlet 112, and connects the second heat-dissipating space 24.
Described water cooled pipeline 100 and the heat transfer pipe 13 arranged in revolution shape is made up of the pipeline of 3 or 5 or 7 pipelines or its multiple.Current are extended more than 3 times at the range ability of cooled region, substantially increase the effect of cooling by the connection model of heat transfer pipe 13, and this architecture is simple, easy for installation, also has certain waterproof effect.
As shown in Fig. 3,4,5, described cooled plate 3 includes cover plate 32, mainboard 31 and base plate 33, described mainboard 31 both sides are respectively provided with water inlet 34 and outlet 35, the upper and lower surface of described mainboard is respectively equipped with the runner internally caved in, one of them runner is closed type structure, and the injecting mouth 38 being provided with and being connected externally to, the runner of described injecting mouth 38 is pulsating heat pipe runner 36, and described pulsating heat pipe runner 36 is series and parallel combined closing structure.
Described mainboard 31, cover plate 32 and base plate 33 are connected as one by soldering after carrying out heat treatment.
This utility model utilizes through hole 30 structure on heat abstractor sidewall, although not as heat radiation time normal operation time gateway, but the Inlet and outlet gas at the first heat-dissipating space 122 flows out the when of now retardance, a part of radiating airflow can be allowed to flow in the second heat-dissipating space 24, the air-flow in heat-dissipating space can be efficiently controlled, in avoiding it to be trapped in the first heat-dissipating space, the body of printing machine is caused the most overheated problem, temperature-sensing device is set in heat-dissipating space in addition can sense this second radiating airflow and the first radiating airflow of this part flowed into from this first heat-dissipating space 122 through this through hole 30, the application of temperature-sensing device can be reached to monitor overall abnormal function by this utility model, and take suitable protective measure.
Described embodiment is in order to illustrative this utility model, not for limiting this utility model.Described embodiment all can be modified by any those skilled in the art under spirit and the scope of the present utility model, and rights protection scope the most of the present utility model should be as listed by claim of the present utility model.
Claims (7)
- null1. the circular screen printer heat abstractor with through-hole structure,Including housing (21)、Cooled plate (3)、Water pump (6)、Water cooled pipeline (100)、Cooling water tank (2),Fan (4)、Reservoir chamber (5)、Temperature control speed regulator (10)、Compartment (12)、Upper tank (15),It is characterized in that: described housing (21) is internal is provided with the first heat-dissipating space (122) and the second heat-dissipating space (24),Described housing includes second shell wall (128) of the first shell wall (126) and and then the first shell wall (126),First air stream outlet (22) is set on the first shell wall (126),First air stream outlet (22) connects the second heat-dissipating space (24),It is provided with through hole on described second shell wall (128),And this through hole (30) connects the second heat-dissipating space (24),In described first heat-dissipating space (122), fan (4) is arranged on cooling water tank (2),Described water pump (6)、Reservoir chamber (5)、Cooled plate (3) is connected by water pipe (7) with cooling water tank (2),Described water pump (6) is connected with described temperature control speed regulator (10) with fan (4),The water cooled pipeline (100) described in arranging and heat transfer pipe (13) it is provided with in revolution shape between described upper tank (15) and cooling water tank (2),Described water cooled pipeline (100) is set in parallel in the both sides of heat transfer pipe (13),For assisting heat transfer pipe (13) to dispel the heat.
- A kind of circular screen printer heat abstractor with through-hole structure the most according to claim 1, heat abstractor also comprises temperature sensing device (20), and described temperature sensing device (20) is arranged in the second heat-dissipating space (24).
- A kind of circular screen printer heat abstractor with through-hole structure the most according to claim 1, described housing also includes the 3rd sidewall (132), it is provided with the second air stream outlet (42) on described 3rd sidewall (132), this second air stream outlet (42) is away from through hole (30), and connection the second heat-dissipating space (24).
- A kind of circular screen printer heat abstractor with through-hole structure the most according to claim 1, it is characterized in that: described housing (21) also comprises the 4th sidewall (134), it is provided with the second air flow inlet (44) on 4th sidewall (134), described second air flow inlet (44) is away from the first air flow inlet (112), and connects the second heat-dissipating space (24).
- A kind of circular screen printer heat abstractor with through-hole structure the most according to claim 1, it is characterised in that: described water cooled pipeline (100) and the heat transfer pipe (13) arranged in revolution shape is made up of the pipeline of 3 or 5 or 7 pipelines or its multiple.
- A kind of circular screen printer heat abstractor with through-hole structure the most according to claim 1, it is characterized in that: described cooled plate (3) includes cover plate (32), mainboard (31), with base plate (33), described mainboard (31) both sides are respectively provided with water inlet (34) and outlet (35), the upper and lower surface of described mainboard is respectively equipped with the runner internally caved in, one of them runner is closed type structure, and the injecting mouth (38) being provided with and being connected externally to, the runner of described injecting mouth (38) is pulsating heat pipe runner (36), described pulsating heat pipe runner (36) is series and parallel combined closing structure.
- A kind of circular screen printer heat abstractor with through-hole structure the most according to claim 6, it is characterised in that: described mainboard (31), cover plate (32) and base plate (33) are connected as one by soldering after carrying out heat treatment.
Priority Applications (1)
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CN201620175760.0U CN205601354U (en) | 2016-03-08 | 2016-03-08 | Circular screen printer heat abstractor with through -hole structure |
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CN201620175760.0U CN205601354U (en) | 2016-03-08 | 2016-03-08 | Circular screen printer heat abstractor with through -hole structure |
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CN201620175760.0U Expired - Fee Related CN205601354U (en) | 2016-03-08 | 2016-03-08 | Circular screen printer heat abstractor with through -hole structure |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105584197A (en) * | 2016-03-08 | 2016-05-18 | 苏州瑞日纺织科技有限公司 | Circular screen printer heat dissipation device with through hole structure |
-
2016
- 2016-03-08 CN CN201620175760.0U patent/CN205601354U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105584197A (en) * | 2016-03-08 | 2016-05-18 | 苏州瑞日纺织科技有限公司 | Circular screen printer heat dissipation device with through hole structure |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20160928 Termination date: 20170308 |