Wind speed detection device in spinneret box body
By designing a calibration block and telescopic rod within the spinneret box to incorporate a wind speed detection device, the problems of inaccurate wind speed detection and inconvenient operation were solved. This resulted in efficient and accurate wind speed measurement, avoided filament breakage, and improved the flexibility and comprehensiveness of the detection data.
Patent Information
- Application Number
- CN202520144930.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-01-22
AI Technical Summary
Existing wind speed detection devices are difficult to accurately measure cooling wind speed inside the spinneret box, are inconvenient to operate, are prone to filament breakage, and the detection data are easily affected by the filament spacing and arm position, resulting in large errors.
A wind speed detection device comprising a calibration block, a detection head, and a telescopic rod was designed. The combination of the telescopic rod and the calibration block enables accurate positioning of the detection head and stable connection of the data cable, avoids the arm from going deep into the wire, ensures that the detection head is parallel to the air outlet plate, and reduces human error.
It improves the accuracy of wind speed detection, avoids wire breakage issues, reduces operational burden, and enhances the flexibility and comprehensiveness of detection data.
Smart Images

Figure CN223711632U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of wind speed detection technology, especially to a wind speed detection device in a spinneret body. BACKGROUND
[0002] When spinning, the tow is vertically sprayed downward through the spinneret and is pulled downward by the subsequent process, at this time, the high-temperature tow needs to be cooled and solidified, generally, cooling air is arranged below the spinneret to cool the high-temperature tow, and the tow is cooled and shaped, but the wind direction and wind power of the cooling air have requirements and cannot be too fast. When spinning different specifications of tow, the cooling air speed to be matched is also different, and through long-term production practice, different air discharge, air temperature and humidity are matched according to different yarns, so that once the spinneret is replaced with a production model of yarn, the cooling air for cooling needs to be adjusted again.
[0003] In the chemical fiber textile industry, a conventional wind speed detection device is a digital instrument and a detection probe, and the data line is connected, the sensor type is more, and commonly used is a wind speed measuring instrument, which can measure wind speed, airflow, temperature and humidity.
[0004] When detecting, the measuring instrument needs to be inserted into the rectifier of the smoke suction device below the spinneret and the air outlet plate for cooling the yarn, and the airflow parameter needs to be measured. This detection method cannot determine the accuracy of the detector, the airflow speed and the wind direction need to be referenced to the air outlet plate, the sensor probe of the detector needs to be kept perpendicular to the airflow direction, the wind speed probe needs to be kept parallel to the air outlet plate, the wind speed detection data is affected by the distance between the yarns, the air outlet is deep, the probe needs to be held through the yarn and deep into the air outlet plate behind the yarn, the arm affects the spinning process, is easy to cause the yarn breakage phenomenon, the horizontal position is easy to deviate, causes the measurement inaccuracy, needs to hold the detector against the airflow with great force, long-time holding detection is easy to be tired, holding is difficult to be stable after being tired, further causes the detection error.
[0005] Based on this, the utility model discloses a wind speed detection device in a spinneret body to solve the above problems. UTILITY MODEL CONTENTS
[0006] The utility model discloses a wind speed detection device in a spinneret body, the device is provided with a telescopic link, does not need the arm to be deep into the yarn and carry out the wind parameter detection, can effectively prevent the yarn breakage problem caused by the arm thickness of the detection personnel, the calibration block can be attached to the air outlet plate, can accurately position the detection head, effectively improves the accuracy of the detection data, and the detection personnel can detect for a long time, reduces the work burden.
[0007] The utility model discloses a wind speed detection device in a spinning beam body, comprising:
[0008] The calibration block, the detection head and the telescopic rod are locked together.
[0009] The telescopic rod is a straight rod, and a threading ring is arranged on the side wall of the telescopic rod.
[0010] The detection head is the detection end of a wind speed measuring instrument, and the detection head is detachably locked on the calibration block.
[0011] The calibration block is a block structure, the front end side wall of the calibration block is a flat vertical surface, a butt joint pipe is arranged at the rear end of the calibration block, the butt joint pipe is locked with the front end of the telescopic rod through threads, a horizontal bubble is further arranged on the top of the butt joint pipe, a mounting hole is formed on the top of the calibration block, and the mounting hole vertically penetrates the upper and lower sides of the calibration block.
[0012] Further, the threading ring is fixedly installed on the side wall of the telescopic rod through a rotating shaft, and the rotating shaft of the threading ring is perpendicular to the axis of the telescopic rod.
[0013] The threading ring has a plurality of circular shapes on the same straight line.
[0014] Further, the detection head is a digital anemometer.
[0015] The calibration block is a semicircular cylindrical block structure, the mounting hole is locked with the detection head through threads, and the lower end of the detection head is arranged below the mounting hole.
[0016] The front side vertical surface of the calibration block is perpendicular to the axis of the telescopic rod, and the front side vertical surface of the calibration block is parallel to the detection head.
[0017] Further, a handle is further fixedly arranged at the rear end of the telescopic rod.
[0018] The utility model discloses a telescopic rod, which can flexibly pass the calibration block and the detection head through the filament bundle, and extend into the air outlet plate at the rear side of the filament, and the calibration block can be conveniently pressed and attached to detect the parameters of the blown air, provide a basis for wind power adjustment, and the operation is convenient.
[0019] 2, the detection head and telescopic rod of the device can be disassembled and installed, and can be used flexibly in different positions, when the side and front wind speed is needed, the calibration block and the detection head can be disassembled and used separately, the telescopic rod is not used, and flexible reverse fitting is facilitated, when it is needed to extend into the air outlet plate, the calibration block and the telescopic rod can be detected deeper, convenient to use, and the data line is limited through the threading ring, the data line and the silk thread are effectively prevented from winding, and the detection can be conveniently extended. BRIEF DESCRIPTION OF DRAWINGS
[0020] The utility model will be further explained in connection with the embodiments with reference to the drawings.
[0021] Fig. 1 It is the whole structure schematic diagram of the utility model;
[0022] Fig. 2 It is the calibration block structure schematic diagram of the utility model;
[0023] Fig. 3 It is the inside detection state structure schematic diagram of the utility model in the spinneret.
[0024] In the drawings, the component list represented by each sign is as follows:
[0025] 1-calibration block, 11-adapter pipe, 12-horizontal bubble, 13-mounting hole, 2-detection head, 21-data line, 3-telescopic rod, 31-threading ring, 32-handle. DETAILED DESCRIPTION
[0026] Please refer to Figs. 1 to 3 The utility model provides a wind speed detection device in the spinning head body, in order to better understand the above technical scheme, the above technical scheme will be explained in detail in connection with the description drawing and specific implementation mode.
[0027] In one specific embodiment of the utility model technical scheme:
[0028] Including calibration block 1, detection head 2 and telescopic rod 3;
[0029] Telescopic rod 3 is a straight rod, and the side wall of telescopic rod 3 is provided with a threading ring 31, which is rotatably hung on the side wall of telescopic rod 3;The threading ring 31 is fixedly installed on the side wall of the telescopic rod 3 through the rotating shaft, and the rotating shaft of the threading ring 31 is perpendicular to the axis of the telescopic rod 3. The threading ring 31 has a plurality of circulars, each threading ring 31 is on the same straight line, which can limit the silk thread, and the data line is passed through the multiple threading rings 31 and constrained by the threading ring 31, to avoid mutual interference and winding with the silk thread.
[0030] The rear end of the telescopic rod 3 is also fixedly provided with a handle 32, and the handle 32 is provided with an anti-skid rubber sleeve, facilitating stable holding.
[0031] The detection head 2 is a detection end of a wind speed measuring instrument, and the detection head 2 can be detachably locked on the calibration block 1. The lower end of the detection head 2 is provided with a data line 21 which can be detachably inserted into the inside of the threading ring 31. The data line 21 extends out of one end of the telescopic rod 3 through the threading ring 31, and the threading ring 31 is arranged on the outer rod of the telescopic rod 3 to avoid mutual interference during telescoping. The telescoping end of the telescopic rod 3 is kept smooth and telescopes smoothly.
[0032] The detection head 2 is a digital anemometer which can measure wind speed, temperature, humidity and airflow, and can select a kanomax650 measuring device.
[0033] The calibration block 1 is a semicircular columnar block structure. The mounting hole 13 is locked with the detection head 2 through threads. The lower end of the detection head 2 extends out below the mounting hole 13. The middle section of the detection head 2 is provided with threads, and the detection head 2 is locked with the mounting hole 13 through the threads in the middle section.
[0034] The front vertical surface of the calibration block 1 is perpendicular to the axis of the telescopic rod 3, and the front vertical surface of the calibration block 1 is parallel to the detection head 2, so as to ensure that the detection head 2 can be vertically arranged and parallel to the detection surface. As shown in Fig. 3 , the detection head 2 is in a vertical state and is parallel to the left air outlet plate of Fig. 3 , and is not blocked by the plate surface, so as to accurately detect the parameters such as wind speed and wind pressure.
[0035] The calibration block 1 is a block structure. The front end side wall of the calibration block 1 is a flat vertical surface. The rear end of the calibration block 1 is provided with a butt joint pipe 11 which is locked with the front end of the telescopic rod 3 through threads. The top of the butt joint pipe 11 is also provided with a horizontal bubble 12. The detection head 2 can be reversely aligned with the external environment after being disassembled, so as to detect the external interference airflow. The detection data is more comprehensive, the silk thread is not affected and interfered by the airflow from two directions, and the airflow data detection in the individual position of the spinning device is accurate and comprehensive.
[0036] The top of the calibration block 1 is provided with a mounting hole 13 which vertically penetrates the upper and lower sides of the calibration block 1. The detection head 2 can be detachably and stably inserted into the mounting hole 13, so as to facilitate disassembly and cleaning of the detection head. The spinning device will have single smoke which will condense on the detection head 2, resulting in deviation of the detection data. The device can be disassembled and cleaned conveniently.
[0037] The utility model discloses when using, when needing to detect the air outlet plate airflow, install detection head 2 on the calibration block 1, can keep detection head 2 and the air outlet plate parallel, and close, because the cooling wind is horizontal and blows from the air outlet plate side, the detection head 2 of the device can keep the airflow direction and block state, can more effectively and accurately detect the airflow, and the support position angle is limited through the calibration block 1, and positioning is more accurate.
[0038] Again through the level bubble 12 can calibrate the vertical state of air outlet plate, as long as the level bubble 12 shows misalignment, then the air outlet direction can appear deviation, need to calibrate.
[0039] After detection, detection head 2 passes data through data line and delivers to the detection instrument of rear end, can judge and record data.
[0040] When needing to detect the outside of spinning device, namely, Fig. 3 The right side wind speed in, can detach telescopic link 3, and the outside wind force parameter is detected, and the levelness is positioned through the level bubble 12, and the detection direction is more, and the detection mode is flexible, and the detection data is more comprehensive.
[0041] The inner end of the device refers to the one end of detection head 2 that extends in the inside of equipment and detects, and the outer end refers to the one end of handle 32 that is held by hand.
[0042] Although the above describes the specific implementation of the utility model, but the skilled person in the technical field should understand, the specific example that we described is only illustrative, and is not used to limit the scope of the utility model, the equivalent modification and change that the skilled person in the art made according to the spirit of the utility model should be covered in the scope of protection of the claims of the utility model.
Claims
1. A device for detecting the air velocity in a spinneret body, characterized in that Include: Calibration block (1), detection head (2) and telescopic rod (3); The telescopic rod (3) is a straight rod, and the telescopic rod (3) side wall is provided with a threading ring (31), which can be hung on the telescopic rod (3) side wall rotatably; The detection head (2) is the detection end of the wind speed measuring instrument, and the detection head (2) can be locked on the calibration block (1) separately, and the lower end of the detection head (2) is provided with a data line (21), which can be inserted into the threading ring (31) inside, and the data line (21) is extended out of the telescopic rod (3) one end through the threading ring (31); The calibration block (1) is a block structure, the front end side wall of the calibration block (1) is a flat vertical surface, the rear end of the calibration block (1) is provided with a butt joint pipe (11), the butt joint pipe (11) is locked with the front end of the telescopic rod (3) through screw thread, the butt joint pipe (11) top is also provided with a horizontal bubble (12), the calibration block (1) top is provided with a mounting hole (13), the mounting hole (13) penetrates vertically through the upper and lower sides of the calibration block (1), and the detection head (2) can be stably inserted into the mounting hole (13) separately.
2. The wind speed detecting device in the spinneret body according to claim 1, characterized in that: The threading ring (31) is fixedly installed on the side wall of the telescopic rod (3) through the pivot position, and the pivot of the threading ring (31) is perpendicular to the axis of the telescopic rod (3); The threading ring (31) has a plurality of, and the circular of each threading ring (31) is on the same straight line.
3. The wind speed detecting device in the spinneret body according to claim 1, characterized in that: The detection head (2) is a digital anemometer; The calibration block (1) is a semicircular cylindrical block structure, the mounting hole (13) and the detection head (2) are locked by screw thread, and the lower end of the detection head (2) is extended out below the mounting hole (13); The front side vertical surface of the calibration block (1) is perpendicular to the axis of the telescopic rod (3), and the front side vertical surface of the calibration block (1) is parallel to the detection head (2).
4. The wind speed detecting device in the spinneret body according to claim 1, characterized in that: The rear end of the telescopic rod (3) is also fixedly provided with a handle (32).