Abstract: A method and an arrangement to monitor relative humidity and temperature in a textile machine is disclosed in the present invention which helps to identify and correct the failure of climatic conditioning system in a spinning mill at any particular position and thereby improving the running performance of the textile machine and yarn quality.
DESC:4. Description
CROSS-REFERENCE TO RELATED APPLICATION
[0001] The present application claims priority from the Provisional Application No. 201741013138 filed on 12th Apr 2017, the full disclosure of which is hereby incorporated by reference herein.
FIELD OF THE INVENTION
[0002] The present invention relates to the method and arrangement to monitor Relative Humidity and Temperature in a textile machine.
BACKGROUND OF THE INVENTION
[0003] In spinning mills, quality and running performance of textile materials are mainly dependent on many factors. Atmospheric conditions like Temperature and Relative Humidity is one such important factor. Temperature alone does not have a great impact on the fibers and process performances; also the amount of moisture held in the air in suspension plays a vital role. Therefore temperature and humidity are considered together for ascertaining process performance.
[0004] Relative Humidity affects the properties of textile materials such as tensile strength and elongation, imperfections, friction properties etc. Also Relative humidity standards are different for various process stages in a textile mill.
[0005] Relative Humidity and temperature have a direct impact in spinning zone. If proper Temperature and Relative Humidity is not maintained, then the yarn breakage level varies significantly. Such variability in breakages affects production and yarn quality.
[0006] At present, humidification plants are available in all spinning mills to maintain required Relative Humidity and temperature. Temperature and Relative Humidity monitoring is generally centralized. In case of defects in the climatic conditioning ducts on a specific area, it affects the quality of the textile material produced by the textile machine at that particular position where failure occurred.
[0007] The present invention overcomes the above disadvantage by monitoring and collecting the Relative Humidity and temperature data at one or more points in textile machines. Further the collected data is integrated with the various devices of the monitoring system to arrive useful information to the user.
OBJECTS OF THE INVENTION
[0008] The main object of the present invention relates to the method and arrangement to monitor Relative Humidity and Temperature in a Textile Machine
SUMMARY OF THE INVENTION
[0009] Accordingly, the present invention provides a method and arrangement to monitor Relative Humidity and Temperature in a Textile Machine of a Spinning Mill.
[0010] The method for monitoring the relative humidity and temperature in the environment of a textile machine in a spinning mill is disclosed wherein the relative humidity and temperature module (1) connected atleast at one point in a textile machine (2) monitor the relative humidity and temperature where the module is mounted, transfer the data to the monitoring devices (3) of the existing monitoring system, the data further transferred to the centralized server (4) where the data on relative humidity and temperature is integrated along with the data of the existing monitoring system of the spinning mill which helps to identify and correct the failure of climatic conditioning system in a spinning mill at any particular position and thereby improving the running performance of the textile machine and yarn quality.
[0011] An arrangement for carrying out the method of the present invention comprises textile machine (2), monitoring device (3) centralized server (4) characterized in that the relative humidity and temperature module (1) is connected atleast at one point in a textile machine (2)
which monitors the relative humidity and temperature of the environment where the module is mounted.
BRIEF DESCRIPTION OF THE DRAWINGS
[0012] The present invention is described in the detailed description and not by way of limitation, in the figures of the accompanying drawings, and in which
Figure 1 shows the interconnectivity of the Relative Humidity and Temperature monitoring module in a Textile Machine along with the existing monitoring system.
DETAILED DESCRIPTION OF THE INVENTION
[0013] For the better understanding of the object, technical solution and advantage of the present invention, the present invention will be further explained in detail with respect to embodiments and accompanying drawing below. It should be understood that the specific embodiments described herein only be used for explaining the present invention but not used to limit the present invention.
[0014] Accordingly, the method for monitoring the relative humidity and temperature in the environment of a textile machine in a spinning mill is disclosed wherein the relative humidity and temperature module (1) connected atleast at one point in a textile machine (2) monitor the relative humidity and temperature where the module is mounted, transfer the data to the monitoring devices (3) of the existing monitoring system, the data further transferred to the centralized server (4) where the data on relative humidity and temperature is integrated along with the data of the existing monitoring system of the spinning mill which helps to identify and correct the failure of climatic conditioning system in a spinning mill at any particular position and thereby improving the running performance of the textile machine and yarn quality.
[0015] In certain embodiments, relative humidity and temperature data is transferred to the centralized server (4) either through wired or wireless technologies.
[0016] In another embodiment of the present invention, the relative humidity and temperature data is viewed collectively in a software to identify deviations.
[0017] An arrangement for carrying out the method of the present invention comprises textile machine (2), monitoring device (3) centralized server (4) characterized in that the relative humidity and temperature module (1) is connected atleast at one point in a textile machine (2) which monitors the relative humidity and temperature of the environment where the module is mounted.
[0018] Figure 1 explains the Relative Humidity and Temperature modules (1) connected at one or more points in a textile machine (2). The one or more Relative Humidity and Temperature modules (1) monitor the Relative Humidity and Temperature and transfers the data to the one or more monitoring devices (3) of the monitoring system and the data is further sent to the Centralized Server (4) where the Relative Humidity and Temperature information is presented to the user. Here this information can be analyzed along with the information received from the existing monitoring system.
[0019] The Centralized Server (4) displays the Relative Humidity and Temperature of the textile machine (2). The collected information in the Centralized Server (4) is displayed in various forms like the average Relative Humidity and Temperature of a particular textile machine, average Relative Humidity and Temperature of the entire spinning shed or Relative Humidity and temperature values of one or more positions monitored. With the above information, any failure of climatic conditioning system in any particular position can be identified and corrected thereby improving the running performance and yarn quality.
,CLAIMS:We Claim:
1. A method for monitoring the relative humidity and temperature in the environment of a textile machine in a spinning mill wherein the relative humidity and temperature module (1) connected atleast at one point in a textile machine (2) monitor the relative humidity and temperature where the module is mounted, transfer the data to the monitoring devices (3) of the existing monitoring system, the data further transferred to the centralized server (4) where the data on relative humidity and temperature is integrated along with the data of the existing monitoring system of the spinning mill which helps to identify and correct the failure of climatic conditioning system in a spinning mill at any particular position and thereby improving the running performance of the textile machine and yarn quality.
2. The method as claimed in claim 1 wherein the relative humidity and temperature data is transferred to the centralized server (4) either through wired or wireless technologies.
3. The method as claimed in claim 1 wherein the relative humidity and temperature data is viewed collectively in a software to identify deviations.
4. An arrangement (fig 1) for carrying out the method as claimed in one of the preceding claims comprises textile machine (2), monitoring device (3) centralized server (4) characterized in that the relative humidity and temperature module (1) is connected atleast at one point in a textile machine (2) which monitors the relative humidity and temperature of the environment where the module is mounted.
| # | Name | Date |
|---|---|---|
| 1 | Power of Attorney [12-04-2017(online)].pdf | 2017-04-12 |
| 2 | Form 5 [12-04-2017(online)].pdf | 2017-04-12 |
| 3 | Form 3 [12-04-2017(online)].pdf | 2017-04-12 |
| 4 | Form 1 [12-04-2017(online)].pdf | 2017-04-12 |
| 5 | Drawing [12-04-2017(online)].pdf | 2017-04-12 |
| 6 | Description(Provisional) [12-04-2017(online)].pdf | 2017-04-12 |
| 7 | 201741013138-FORM-26 [11-04-2018(online)].pdf | 2018-04-11 |
| 8 | 201741013138-FORM 3 [11-04-2018(online)].pdf | 2018-04-11 |
| 9 | 201741013138-ENDORSEMENT BY INVENTORS [11-04-2018(online)].pdf | 2018-04-11 |
| 10 | 201741013138-DRAWING [11-04-2018(online)].pdf | 2018-04-11 |
| 11 | 201741013138-CORRESPONDENCE-OTHERS [11-04-2018(online)].pdf | 2018-04-11 |
| 12 | 201741013138-COMPLETE SPECIFICATION [11-04-2018(online)].pdf | 2018-04-11 |
| 13 | 201741013138-FORM 18 [08-05-2018(online)].pdf | 2018-05-08 |
| 14 | 201741013138-FER.pdf | 2020-07-10 |
| 15 | 201741013138-OTHERS [08-01-2021(online)].pdf | 2021-01-08 |
| 16 | 201741013138-FER_SER_REPLY [08-01-2021(online)].pdf | 2021-01-08 |
| 17 | 201741013138-CLAIMS [08-01-2021(online)].pdf | 2021-01-08 |
| 18 | 201741013138-ABSTRACT [08-01-2021(online)].pdf | 2021-01-08 |
| 19 | 201741013138-RELEVANT DOCUMENTS [29-11-2022(online)].pdf | 2022-11-29 |
| 20 | 201741013138-POA [29-11-2022(online)].pdf | 2022-11-29 |
| 21 | 201741013138-FORM 13 [29-11-2022(online)].pdf | 2022-11-29 |
| 22 | 201741013138-Response to office action [06-12-2022(online)].pdf | 2022-12-06 |
| 23 | 201741013138-US(14)-HearingNotice-(HearingDate-26-12-2023).pdf | 2023-12-06 |
| 24 | 201741013138-Correspondence to notify the Controller [24-12-2023(online)].pdf | 2023-12-24 |
| 25 | 201741013138-FORM-26 [25-12-2023(online)].pdf | 2023-12-25 |
| 26 | 201741013138-Written submissions and relevant documents [09-01-2024(online)].pdf | 2024-01-09 |
| 27 | 201741013138-US(14)-ExtendedHearingNotice-(HearingDate-13-02-2024).pdf | 2024-01-24 |
| 28 | 201741013138-Correspondence to notify the Controller [09-02-2024(online)].pdf | 2024-02-09 |
| 29 | 201741013138-Correspondence to notify the Controller [13-02-2024(online)].pdf | 2024-02-13 |
| 1 | 201741013138table1E_30-06-2020.pdf |