CN203990157U - Based on the spinning and weaving workshop dust pelletizing system of indoor and outdoor contrast monitoring - Google Patents

Based on the spinning and weaving workshop dust pelletizing system of indoor and outdoor contrast monitoring Download PDF

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Publication number
CN203990157U
CN203990157U CN201420403155.5U CN201420403155U CN203990157U CN 203990157 U CN203990157 U CN 203990157U CN 201420403155 U CN201420403155 U CN 201420403155U CN 203990157 U CN203990157 U CN 203990157U
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China
Prior art keywords
deduster
spinning
dust
sensor
weaving workshop
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Expired - Fee Related
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CN201420403155.5U
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Chinese (zh)
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不公告发明人
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SUZHOU KAIFENGRUI ELECTRONIC TECHNOLOGY Co Ltd
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SUZHOU KAIFENGRUI ELECTRONIC TECHNOLOGY Co Ltd
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Abstract

The utility model relates to a kind of spinning and weaving workshop dust pelletizing system based on indoor and outdoor contrast monitoring, this system comprises the deduster that is installed on spinning and weaving workshop outside, the airduct dispersal device of deduster, on the ceiling of spinning and weaving workshop, is connected with deduster by wind centralizing cavity after many airducts converge; The end of airduct is respectively with collection air port and the first dust sensor, in airduct between wind centralizing cavity and deduster, device has filter, the side device that is positioned at the filter of deduster direction has wind pressure sensor, one side symmetry of spinning and weaving workshop is with motorized window, and the workshop lateral surface device between two motorized window has the second dust sensor and humidity sensor; The madial wall device of spinning and weaving workshop has indicator lamp.The utlity model has good dedusting effect, feature that energy consumption is low, also with filter clean prompting function in time.

Description

Based on the spinning and weaving workshop dust pelletizing system of indoor and outdoor contrast monitoring
Technical field
The utility model relates to textile industry field, relates in particular to the dust pelletizing system of spinning and weaving workshop.
Background technology
Current cotton textiles industry engineering is mainly to utilize machinery to process fibrous material, in process, just inevitably produce cotton dirt, fiber fragment, dust and other impurities, add that in workshop, flow of personnel is larger, also inevitably outside workshop, bring chip, rubbish, cause workshop condition to pollute, this not only endangers staff's health, and can affect product quality.
Conventionally, in small-sized spinning and weaving workshop, rely on and manually utilize the conventional cleaning implements such as broom, mop to carry out dust cleaning, in large-scale spinning and weaving workshop, utilize professional cleaner.Rely on and manually utilize broom, mop cleaning dedusting to the cotton-wool in workshop, dust cleaning totally, cannot thoroughly not solve contamination by dust problem; And cleaner between large car to be generally fixed time rely on manually starts dedusting or dedusting always, can not start voluntarily according to amount of dust, lack the checkout gear of dust, exist dedusting not thoroughly, shortcoming that energy consumption is high.At present in spinning and weaving workshop, also realize dust removal by ventilation by window opened via, exist workshop external environment workshop environment pollution to be affected to the defect of textile processing, enter indoor etc. as outdoor dust enters indoor, outdoor humid air.
Utility model content
The above-mentioned shortcoming that the applicant exists for existing large-scale spinning and weaving workshop dedusting, provides a kind of spinning and weaving workshop dust pelletizing system based on indoor and outdoor contrast monitoring, and it has simple in structure, good dedusting effect, feature that energy consumption is low.
The technical scheme that the utility model adopts is as follows:
Based on a spinning and weaving workshop dust pelletizing system for indoor and outdoor contrast monitoring, this system comprises the deduster that is installed on spinning and weaving workshop outside, and the airduct dispersal device of deduster, on the ceiling of spinning and weaving workshop, is connected with deduster by wind centralizing cavity after many airducts converge; The end of described airduct is respectively with collection air port and the first dust sensor, in airduct between wind centralizing cavity and deduster, device has filter, the side device that is positioned at the filter of deduster direction has wind pressure sensor, one side symmetry of described spinning and weaving workshop is with motorized window, and the workshop lateral surface device between two motorized window has the second dust sensor and humidity sensor; The madial wall device of described spinning and weaving workshop has indicator lamp;
Described the first dust sensor, the second dust sensor, motorized window, wind pressure sensor, indicator lamp, humidity sensor and deduster are electrically connected with MCU respectively, indicator lamp described in the air humidity signal controlling deduster that the dust signal that described MCU detects according to the first dust sensor and the second dust sensor and humidity sensor detect and motorized window, the wind pressure signal control that detects according to wind pressure sensor.
The beneficial effects of the utility model are as follows:
In the first dust sensor of the present utility model, be provided with threshold values and lower threshold values, by the first dust sensor, the multiple points in spinning and weaving workshop are monitored, when the amount of dust detecting when wherein one or more first dust sensors reaches upper threshold values, the dust signal in workshop is delivered to MCU by the first dust sensor, the second dust sensor by the dust information conveyance outside workshop to MCU, in the time that the amount of dust of the second dust sensor detection is less than upper threshold values, MCU opens motorized window, until the amount of dust that the first dust sensor detects is less than lower threshold values; In the time that the amount of dust of the second dust sensor detection is more than or equal to upper threshold values, MCU starts deduster work, until the amount of dust that the first dust sensor detects is less than lower threshold values.The blast of wind pressure sensor Real-Time Monitoring filter side, in the time that blast is less than the blast threshold values of its setting, it is red light that wind pressure sensor starts indicator lamp by MCU, remind operating personnel to clean or change filter, in the time that the blast detecting is greater than the blast threshold values of setting, it is green light that MCU controls indicator lamp, shows that the dust stratification on filter is normal.
The utility model is by dust monitoring and Humidity Detection outside the monitoring of multiple spot dust, workshop in workshop, automatically control the work of deduster and motorized window, it is controlled flexibly, has improved dust removing effects, has reduced energy consumption, has avoided outdoor environment on indoor impact; Adopt blast Real-Time Monitoring, convenient operation person changes or cleaning and filtering plate in time, has improved the reliability of dedusting.
Brief description of the drawings
Fig. 1 is structural representation of the present utility model.
Fig. 2 is the structural representation of airduct of the present utility model.
Fig. 3 is control structure block diagram of the present utility model.
In figure: 1, spinning and weaving workshop; 2, deduster; 3, wind centralizing cavity; 4, collection air port; 5, the first dust sensor; 6, airduct; 7, MCU; 8, the second dust sensor; 9, motorized window; 10, filter; 11, wind pressure sensor; 12, indicator lamp; 13, humidity sensor.
Detailed description of the invention
Below in conjunction with accompanying drawing, detailed description of the invention of the present utility model is described.
See Fig. 1, Fig. 2 and Fig. 3, the spinning and weaving workshop dust pelletizing system based on indoor and outdoor contrast monitoring of the present embodiment, this system comprises the deduster 2 that is installed on spinning and weaving workshop 1 outside, airduct 6 dispersal devices of deduster 2, on the ceiling of spinning and weaving workshop 1, are connected with deduster 2 by wind centralizing cavity 3 after many airducts 6 converge; The end of airduct 6 is respectively with collection air port 4 and the first dust sensor 5, in airduct 6 between wind centralizing cavity 3 and deduster 2, device has filter 10, the side device that is positioned at the filter 10 of deduster 2 directions has wind pressure sensor 11, one side symmetry of spinning and weaving workshop 1 has the second dust sensor 8 and humidity sensor 13 with the workshop lateral surface device between motorized window 9, two motorized window 9; The madial wall device of spinning and weaving workshop 1 has indicator lamp 12;
The first dust sensor 5, the second dust sensor 8, motorized window 9, wind pressure sensor 11, indicator lamp 12, humidity sensor 13 and deduster 2 are electrically connected with MCU7 respectively, the air humidity signal controlling deduster 2 that the dust signal that MCU7 detects according to the first dust sensor 5 and the second dust sensor 8 and humidity sensor 13 detect and motorized window 9, the wind pressure signal control indicator lamp 12 detecting according to wind pressure sensor 11.
In the first dust sensor 5 of the present utility model, be provided with threshold values and lower threshold values, by the first dust sensor 5, the multiple points in spinning and weaving workshop 1 are detected, when the amount of dust detecting when wherein one or more first dust sensors 5 reaches upper threshold values, the dust signal in workshop is delivered to MCU by the first dust sensor 5, the second dust sensor 8 by the dust information conveyance outside workshop to MCU, when the amount of dust detecting when the second dust sensor 8 is less than workshop outer air humidity that upper threshold values and humidity sensor 13 detect and is less than humidity threshold values, MCU opens motorized window 9, if meet upper two conditions when different, MCU starts deduster 2, until the amount of dust that the first dust sensor 5 detects is less than lower threshold values, when the amount of dust detecting when the second dust sensor 8 is more than or equal to upper threshold values, MCU starts deduster 2 and works, until the amount of dust that the first dust sensor 5 detects is less than lower threshold values.The blast of wind pressure sensor 11 Real-Time Monitoring filter 10 sides, in the time that blast is less than the blast threshold values of its setting, wind pressure sensor 11 starts indicator lamp 12 for red light by MCU, remind operating personnel to clean or change filter 10, in the time that the blast detecting is greater than the blast threshold values of setting, it is green light that MCU controls indicator lamp 12, shows that the dust stratification on filter 10 is normal.
The utility model is by dust monitoring and Humidity Detection outside the monitoring of multiple spot dust, workshop in workshop, automatically control the work of deduster and motorized window, it is controlled flexibly, has improved dust removing effects, has reduced energy consumption, has avoided outdoor environment on indoor impact; Adopt blast Real-Time Monitoring and indicate by indicator lamp, convenient operation person changes or cleaning and filtering plate in time, has improved the reliability of dedusting.
More than describing is to explanation of the present utility model, is not the restriction to utility model, and the utility model limited range is referring to claim, and without prejudice to spirit of the present utility model in the situation that, the utility model can be done any type of amendment.

Claims (1)

1. the spinning and weaving workshop dust pelletizing system based on indoor and outdoor contrast monitoring, is characterized in that:
This system comprises the deduster (2) that is installed on spinning and weaving workshop (1) outside, airduct (6) dispersal device of deduster (2), on the ceiling of spinning and weaving workshop (1), is connected with deduster (2) by wind centralizing cavity (3) after many airducts (6) converge; The end of described airduct (6) is respectively with collection air port (4) and the first dust sensor (5), in airduct (6) between wind centralizing cavity (3) and deduster (2), device has filter (10), the side device that is positioned at the filter (10) of deduster (2) direction has wind pressure sensor (11), one side symmetry of described spinning and weaving workshop (1) is with motorized window (9), and the workshop lateral surface device between two motorized window (9) has the second dust sensor (8) and humidity sensor (13); The madial wall device of described spinning and weaving workshop (1) has indicator lamp (12);
Described the first dust sensor (5), the second dust sensor (8), motorized window (9), wind pressure sensor (11), indicator lamp (12), humidity sensor (13) and deduster (2) are electrically connected with MCU (7) respectively, air humidity signal controlling deduster (2) and motorized window (9) that the dust signal that described MCU (7) detects according to the first dust sensor (5) and the second dust sensor (8) and humidity sensor (13) detect, indicator lamp (12) described in the wind pressure signal control detecting according to wind pressure sensor (11).
CN201420403155.5U 2014-07-21 2014-07-21 Based on the spinning and weaving workshop dust pelletizing system of indoor and outdoor contrast monitoring Expired - Fee Related CN203990157U (en)

Priority Applications (1)

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CN201420403155.5U CN203990157U (en) 2014-07-21 2014-07-21 Based on the spinning and weaving workshop dust pelletizing system of indoor and outdoor contrast monitoring

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Application Number Priority Date Filing Date Title
CN201420403155.5U CN203990157U (en) 2014-07-21 2014-07-21 Based on the spinning and weaving workshop dust pelletizing system of indoor and outdoor contrast monitoring

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104162321A (en) * 2014-07-21 2014-11-26 苏州凯枫瑞电子科技有限公司 Textile workshop dedusting system based on indoor and outdoor comparison monitor

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104162321A (en) * 2014-07-21 2014-11-26 苏州凯枫瑞电子科技有限公司 Textile workshop dedusting system based on indoor and outdoor comparison monitor

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20141210

Termination date: 20150721

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