A vibration anomaly monitoring terminal for textile machinery
By designing a vibration monitoring terminal for textile machinery with adjustable angle and height, the problem of single measurement position of traditional monitoring terminals is solved, realizing comprehensive monitoring of vibration information from multiple parts of textile machinery, enhancing the monitoring coverage and avoiding sensor damage.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHAOXING KEQIAO WEAVING PRINTING & DYEING IND BRAIN OPERATION CO LTD
- Filing Date
- 2025-07-16
- Publication Date
- 2026-05-26
AI Technical Summary
Traditional vibration monitoring terminals for textile machinery have fixed sensor brackets, resulting in a single measurement location and making it difficult to fully grasp the overall vibration status of the measured parts.
A vibration anomaly monitoring terminal for textile machinery was designed, comprising a base, an angle adjustment module, a fixed telescopic arm, a height adjustment module, and a sensor body. The angle and height adjustment modules enable the sensor to be installed at multiple angles and positions, thereby enhancing the vibration monitoring coverage.
It enables comprehensive monitoring of vibration information at multiple points on textile machinery parts, improves the ability to understand vibration conditions, and avoids friction damage between the sensor and the measured part.
Smart Images

Figure CN224284101U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of auxiliary equipment for textile machinery, specifically to a vibration abnormality monitoring terminal for textile machinery. Background Technology
[0002] A textile machinery vibration anomaly monitoring terminal is a device that monitors the vibration status of textile machinery in real time. It collects vibration signals through sensors installed on the textile machinery and processes and analyzes the signals to determine whether there is any vibration anomaly.
[0003] In existing technologies, the sensors of monitoring terminals are typically fixed to textile machinery parts by sensor brackets. However, traditional sensor brackets are mostly fixed, resulting in a single sensor measurement position, which can only obtain vibration information at a fixed point and is difficult to comprehensively grasp the overall vibration status of the measured part. To address this issue, we propose a textile machinery vibration anomaly monitoring terminal. Utility Model Content
[0004] To address the aforementioned problems, this utility model provides a vibration abnormality monitoring terminal for textile machinery, comprising a base, a fixing sleeve on the surface of the base, an angle adjustment module in the middle of the fixing sleeve, a fixed telescopic arm on the surface of the angle adjustment module, a movable telescopic arm sleeved at one end of the fixed telescopic arm, a height adjustment module at the other end of the movable telescopic arm, a fixing member on the surface of the height adjustment module, and a sensor body inside the fixing member.
[0005] The base is fixed to the surface of the monitored part by a number of external bolts. The angle adjustment module drives the sensor body, which is threaded and fixed in the fixing part, to rotate around the fixing sleeve. The height adjustment module adjusts the sensor body vertically.
[0006] Preferably, the angle adjustment module includes a fixed base, a rotating shaft, a locking block, an angle adjustment spring, and several sets of locking slots. The fixed base is disposed inside the fixed sleeve, the rotating shaft is disposed on one side of the surface of the fixed base, the locking block is disposed on the surface of the rotating shaft, the angle adjustment spring is disposed at the bottom of the surface of the locking block, and several sets of locking slots are opened on the top surface of the fixed sleeve.
[0007] Preferably, the fixing seat is configured as a two-section type, the surface of the lower section of the fixing seat is in contact with the inner wall of the fixing sleeve, the diameter of the upper section of the fixing seat is smaller than the diameter of the lower section, and the other end of the angle adjustment spring is connected to the edge of the lower section surface of the fixing seat.
[0008] Preferably, the card slots are arranged in a ring at equal intervals, and the width of each group of card slots is the same as the width of the card block.
[0009] Preferably, the angle adjustment module further includes a limiting ring and a limiting groove. The limiting ring is disposed on the surface of the lower section of the fixed base, and the limiting groove is formed in the inner wall of the fixed sleeve. The surface of the limiting ring and the interior of the limiting groove are in contact with each other.
[0010] Preferably, the height adjustment module includes a connecting block, a threaded rod, and a base plate. The connecting block is disposed on the surface of the movable telescopic arm, the threaded rod is disposed in the middle of the connecting block, the connecting block and the threaded rod are connected by threads, the base plate is disposed at the end of the threaded rod, and the fixing member is disposed on one side of the surface of the base plate.
[0011] Preferably, the height adjustment module further includes a rotating plate, which is disposed at the top of the threaded rod, and the middle of the rotating plate is provided with reinforcing ribs in a cross shape.
[0012] Preferably, the height adjustment module further includes a connecting plate and a connecting groove. The connecting plate is disposed on the surface of the threaded rod, and the connecting groove is opened in the middle of the base plate. The connecting plate is cylindrical, and the connecting groove is formed into a cylindrical groove that fits the connecting plate.
[0013] Preferably, a length adjustment module is provided between the fixed telescopic arm and the movable telescopic arm. The length adjustment module includes a housing, a fixed rod, a fixed ring, a length adjustment spring, several sets of fixing grooves, and a pull ring. The housing is disposed on one side of the surface of the fixed telescopic arm, the fixed rod is disposed inside the housing, the fixed ring and the length adjustment spring are both disposed on the surface of the fixed rod, the two ends of the length adjustment spring are respectively disposed on the surface of the fixed ring and the inner wall of the housing, several sets of fixing grooves are evenly opened on the surface of the movable telescopic arm, the pull ring is disposed at one end of the fixed rod, and the other end of the fixed rod extends into the interior of the fixing groove.
[0014] Preferably, a protective cover is provided at the surface edge of the fixing base, and the protective cover is designed in an inverted trumpet shape.
[0015] The beneficial effects of this utility model are:
[0016] In this invention, a fixed sleeve is provided on the surface of the base, an angle adjustment module is provided in the middle of the fixed sleeve, a fixed telescopic arm is provided on the surface of the angle adjustment module, a movable telescopic arm is sleeved on one end of the fixed telescopic arm, a height adjustment module is provided on the other end of the movable telescopic arm, a fixing member is provided on the surface of the height adjustment module, and a sensor body is provided inside the fixing member; the base is fixed to the surface of the monitored part by several sets of external bolts, the angle adjustment module drives the sensor body, which is threaded and fixed in the fixing member, to rotate around the fixed sleeve, and the height adjustment module adjusts the sensor body vertically; in this way, vibration monitoring can be performed around the connection between the monitored part and the base, thereby obtaining multiple vibration information of the monitored part, and thus understanding more vibration conditions of the monitored part.
[0017] This invention also includes a housing, a fixed rod, a fixed ring, a length adjusting spring, a fixed groove, and a pull ring. By pulling the fixed rod with the pull ring, the fixed rod moves laterally under tension, and the fixed ring moves synchronously with the fixed rod. The length adjusting spring extends and stores force under the pull of the fixed ring until the end of the fixed rod moves out of the fixed groove, adjusting the extension and retraction of the movable telescopic arm while ensuring the fixed rod is aligned with the corresponding fixed groove. Then, releasing the pull on the fixed rod causes the length adjusting spring to rebound, and the fixed ring moves laterally in the opposite direction under the pull of the length adjusting spring. The fixed rod moves synchronously under the drive of the fixed ring, and the end of the fixed rod re-engages into the corresponding fixed groove. This allows for adjustment of the distance between the sensor body and the base, thereby increasing the diameter of the area that the sensor body can monitor and further understanding more vibration conditions of the monitored parts. Attached Figure Description
[0018] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0019] Figure 2 This is a cross-sectional view of the angle adjustment module of this utility model;
[0020] Figure 3 This is a cross-sectional view of the height adjustment module of this utility model;
[0021] Figure 4 This is a cross-sectional view of the length adjustment module of this utility model.
[0022] In the diagram: 1. Base; 2. Fixing sleeve; 3. Angle adjustment module; 31. Fixing seat; 32. Rotating shaft; 33. Locking block; 34. Angle adjustment spring; 35. Locking groove; 36. Limiting ring; 37. Limiting slot; 4. Fixed telescopic arm; 5. Movable telescopic arm; 6. Height adjustment module; 61. Connecting block; 62. Threaded rod; 63. Base plate; 64. Rotating plate; 65. Connecting plate; 66. Connecting slot; 7. Fixing component; 8. Sensor body; 9. Length adjustment module; 91. Housing; 92. Fixing rod; 93. Fixing ring; 94. Length adjustment spring; 95. Fixing slot; 96. Pull ring; 10. Protective cover. Detailed Implementation
[0023] The technical solution of this utility model will now be clearly and completely described with reference to the embodiments and accompanying drawings. Obviously, the described embodiments are merely one embodiment of this utility model, and not all embodiments. Based on this embodiment, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model. Specific embodiments are as follows:
[0024] A vibration anomaly monitoring terminal for textile machinery, such as Figures 1-4 The system includes a base 1, a fixed sleeve 2 on the surface of the base 1, an angle adjustment module 3 in the middle of the fixed sleeve 2, a fixed telescopic arm 4 on the surface of the angle adjustment module 3, a movable telescopic arm 5 on one end of the fixed telescopic arm 4, a height adjustment module 6 on the other end of the movable telescopic arm 5, a fixing member 7 on the surface of the height adjustment module 6, and a sensor body 8 inside the fixing member 7. The base 1 is fixed to the surface of the monitored part by several sets of external bolts. The angle adjustment module 3 drives the sensor body 8, which is threadedly fixed in the fixing member 7, to rotate around the fixed sleeve 2. The height adjustment module 6 adjusts the sensor body 8 vertically. This allows for vibration monitoring around the connection between the monitored part and the base 1, thereby obtaining multiple vibration information of the monitored part and gaining a better understanding of its vibration status.
[0025] The angle adjustment module 3 includes a fixed base 31, a rotating shaft 32, a locking block 33, an angle adjustment spring 34, and several sets of locking slots 35. The fixed base 31 is located inside the fixed sleeve 2, the rotating shaft 32 is located on one side of the surface of the fixed base 31, the locking block 33 is located on the surface of the rotating shaft 32, the angle adjustment spring 34 is located at the bottom of the surface of the locking block 33, and several sets of locking slots 35 are located at the top of the surface of the fixed sleeve 2. In use, one end of the locking block 33 is lifted, and the locking block 33 rotates upward around the rotating shaft 32. The angle adjustment spring 34 extends and stores force under the pull of the locking block 33 until the locking block 33 is completely removed from the inside of the locking slot 35. Then, the locking block 33 is rotated, and the fixed base 31 rotates inside the fixed sleeve 2 under the drive of the locking block 33. The sensor body 8, which is fixed at the end of the combination of the fixed telescopic arm 4 and the movable telescopic arm 5, rotates synchronously with the fixed base 31. When the sensor body 8 is rotated to the position to be monitored, the locking block 33 is aligned with the corresponding slot 35. The locking block 33 is released, and the angle adjustment spring 34 returns to its deformation. Under the pull of the angle adjustment spring 34, the locking block 33 rotates downward around the rotating shaft 32 until the locking block 33 enters the bottom of the slot 35. The locking block 33 and the slot 35 cooperate to limit the fixed base 31. In this way, the sensor body 8 can rotate around the fixed sleeve 2, so that the sensor body 8 can monitor the vibration around the connection between the monitored part and the base 1, thereby gaining more information about the vibration of the monitored part.
[0026] The fixing seat 31 is configured as a two-section structure. The surface of the lower section of the fixing seat 31 is in contact with the inner wall of the fixing sleeve 2. The diameter of the upper section of the fixing seat 31 is smaller than that of the lower section. The other end of the angle adjusting spring 34 is connected to the edge of the lower section surface of the fixing seat 31. The contact between the surface of the fixing seat 31 and the inner wall of the fixing sleeve 2 guides the rotation of the fixing seat 31, allowing it to rotate in a predetermined direction and preventing it from wobbling or shaking during rotation. The diameter difference between the upper and lower sections of the fixing seat 31 provides an installation position for the angle adjusting spring 34.
[0027] Several sets of slots 35 are arranged in a ring at equal intervals, and the width of each set of slots 35 is the same as the width of the block 33. The cooperation between the multiple sets of slots 35 and the block 33 can ensure that the slots 35 and the block 33 limit the fixed seat 31 when it is rotated to various angles. The fact that the width of the slots 35 is the same as the width of the block 33 can ensure that the block 33 and the slots 35 are tightly fitted, so that the block 33 can be stably locked by the limiting groove 37, thereby improving the stability of the device.
[0028] The angle adjustment module 3 also includes a limiting ring 36 and a limiting groove 37. The limiting ring 36 is disposed on the surface of the lower section of the fixed base 31, and the limiting groove 37 is opened in the inner wall of the fixed sleeve 2. The surface of the limiting ring 36 and the interior of the limiting groove 37 fit together. During the rotation of the fixed base 31, the fixed base 31 drives the limiting ring 36 to rotate inside the limiting groove 37. The limiting ring 36 and the limiting groove 37 cooperate to limit the fixed base 31, so that the fixed base 31 rotates stably inside the fixed sleeve 2, and avoids the problem of vertical displacement of the fixed base 31.
[0029] The height adjustment module 6 includes a connecting block 61, a threaded rod 62, and a base plate 63. The connecting block 61 is disposed on the surface of the movable telescopic arm 5, and the threaded rod 62 is disposed in the middle of the connecting block 61. The connecting block 61 and the threaded rod 62 are connected by threads. The base plate 63 is disposed at the end of the threaded rod 62, and the fixing member 7 is disposed on one side of the surface of the base plate 63. Before adjusting the angle of the sensor body 8, the threaded rod 62 is rotated upward, and the base plate 63 moves upward under the drive of the threaded rod 62. The sensor body 8, fixed in the fixing member 7, moves upward with the base plate 63, separating the sensor body 8 from the monitored part. After the angle of the sensor body 8 is adjusted, the threaded rod 62 is rotated in the opposite direction, and the base plate 63 moves downward under the push of the threaded rod 62. The base plate 63 drives the sensor body 8, fixed in the fixing member 7, to move synchronously until the sensor body 8 contacts the monitored part. This can avoid the problem of friction damage to the sensor body 8 caused by contact between the sensor body 8 and the monitored part when the sensor body 8 rotates.
[0030] The height adjustment module 6 also includes a rotating plate 64, which is located at the top of the threaded rod 62. The middle of the rotating plate 64 is provided with reinforcing ribs in a cross shape. The rotating plate 64 can provide a force point for the operator during the rotation of the threaded rod 62. The reinforcing ribs in the rotating plate 64 enable the operator to rotate the rotating plate 64 more effectively.
[0031] The height adjustment module 6 also includes a connecting plate 65 and a connecting groove 66. The connecting plate 65 is disposed on the surface of the threaded rod 62, and the connecting groove 66 is opened in the middle of the base plate 63. The connecting plate 65 is cylindrical, and the connecting groove 66 is formed into a cylindrical groove that fits the connecting plate 65. During the rotation of the threaded rod 62, the connecting plate 65 at the end of the threaded rod 62 rotates inside the connecting groove 66. In this way, the threaded rod 62 can push the sensor body 8, which is fixed in the fixing member 7 on the side of the base plate 63, to move vertically in a stable manner.
[0032] A length adjustment module 9 is provided between the fixed telescopic arm 4 and the movable telescopic arm 5. The length adjustment module 9 includes a housing 91, a fixed rod 92, a fixed ring 93, a length adjustment spring 94, several sets of fixing grooves 95, and a pull ring 96. The housing 91 is located on one side of the surface of the fixed telescopic arm 4, and the fixed rod 92 is located inside the housing 91. The fixed ring 93 and the length adjustment spring 94 are both located on the surface of the fixed rod 92. The two ends of the length adjustment spring 94 are respectively located on the surface of the fixed ring 93 and the inner wall of the housing 91. Several sets of fixing grooves 95 are evenly distributed on the surface of the movable telescopic arm 5. The pull ring 96 is located at one end of the fixed rod 92, and the other end of the fixed rod 92 extends into the interior of the fixing groove 95. By pulling the fixed rod 92 with the pull ring 96, the fixed rod 92 moves laterally under the action of the pulling force. The fixed ring 93 moves synchronously with the fixed rod 92. The length adjusting spring 94 extends and stores force under the pull of the fixed ring 93 until the end of the fixed rod 92 moves out of the inside of the fixed groove 95. Adjust the extension and retraction of the movable telescopic arm 5, while ensuring that the fixed rod 92 is aligned with the corresponding fixed groove 95. Then release the pull on the fixed rod 92, the length adjusting spring 94 rebounds, and the fixed ring 93 moves laterally in the opposite direction under the pull of the length adjusting spring 94. The fixed rod 92 moves synchronously under the drive of the fixed ring 93, and the end of the fixed rod 92 re-engages into the inside of the corresponding fixed groove 95. This allows for adjustment of the distance between the sensor body 8 and the base 1, thereby increasing the diameter of the area that the sensor body 8 can monitor and further understanding more vibration conditions of the monitored parts.
[0033] A protective cover 10 is provided at the edge of the surface of the fixing base 31. The protective cover 10 is designed in the shape of an inverted horn. The protective cover 10 protects the internal structure of the fixing base 31 and prevents dust and impurities from falling into the interior of the fixing base 31 and causing damage to the internal structure of the fixing base 31.
[0034] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A textile machine vibration anomaly monitoring terminal, characterized by: Includes a base (1), a fixing sleeve (2) is provided on the surface of the base (1), an angle adjustment module (3) is provided in the middle of the fixing sleeve (2), a fixed telescopic arm (4) is provided on the surface of the angle adjustment module (3), a movable telescopic arm (5) is sleeved on one end of the fixed telescopic arm (4), a height adjustment module (6) is provided on the other end of the movable telescopic arm (5), a fixing member (7) is provided on the surface of the height adjustment module (6), and a sensor body (8) is provided inside the fixing member (7). The base (1) is fixed to the surface of the monitored part by a number of external bolts. The angle adjustment module (3) drives the sensor body (8) which is threaded and fixed in the fixing part (7) to rotate around the fixing sleeve (2). The height adjustment module (6) adjusts the sensor body (8) vertically.
2. The textile machine vibration anomaly monitoring terminal according to claim 1, characterized in that: The angle adjustment module (3) includes a fixed seat (31), a rotating shaft (32), a locking block (33), an angle adjustment spring (34), and several sets of locking slots (35). The fixed seat (31) is located inside the fixed sleeve (2). The rotating shaft (32) is located on one side of the surface of the fixed seat (31). The locking block (33) is located on the surface of the rotating shaft (32). The angle adjustment spring (34) is located at the bottom of the surface of the locking block (33). Several sets of locking slots (35) are opened on the top surface of the fixed sleeve (2).
3. The textile machine vibration anomaly monitoring terminal according to claim 2, characterized in that: The fixing seat (31) is configured as a two-section type. The surface of the lower section of the fixing seat (31) is in contact with the inner wall of the fixing sleeve (2). The diameter of the upper section of the fixing seat (31) is smaller than that of the lower section. The other end of the angle adjustment spring (34) is connected to the edge of the lower section surface of the fixing seat (31).
4. The textile machine vibration anomaly monitoring terminal according to claim 2, characterized in that: Several sets of slots (35) are arranged in a ring with equal spacing, and the width of each set of slots (35) is the same as the width of the card block (33).
5. The textile machinery vibration anomaly monitoring terminal according to claim 2, characterized in that: The angle adjustment module (3) also includes a limiting ring (36) and a limiting groove (37). The limiting ring (36) is disposed on the surface of the lower section of the fixed base (31), and the limiting groove (37) is opened on the inner wall of the fixed sleeve (2). The surface of the limiting ring (36) and the interior of the limiting groove (37) fit together.
6. The textile machinery vibration anomaly monitoring terminal according to claim 1, characterized in that: The height adjustment module (6) includes a connecting block (61), a threaded rod (62) and a base plate (63). The connecting block (61) is disposed on the surface of the movable telescopic arm (5). The threaded rod (62) is disposed in the middle of the connecting block (61). The connecting block (61) and the threaded rod (62) are connected by threads. The base plate (63) is disposed at the end of the threaded rod (62). The fixing member (7) is disposed on one side of the surface of the base plate (63).
7. A vibration anomaly monitoring terminal for textile machinery according to claim 6, characterized in that: The height adjustment module (6) also includes a rotating plate (64), which is located at the top of the threaded rod (62), and the middle part of the rotating plate (64) is provided with reinforcing ribs in a cross shape.
8. A vibration anomaly monitoring terminal for textile machinery according to claim 6, characterized in that: The height adjustment module (6) also includes a connecting plate (65) and a connecting groove (66). The connecting plate (65) is disposed on the surface of the threaded rod (62), and the connecting groove (66) is opened in the middle of the base plate (63). The connecting plate (65) is cylindrical, and the connecting groove (66) is formed into a cylindrical groove that fits the connecting plate (65).
9. A vibration anomaly monitoring terminal for textile machinery according to claim 1, characterized in that: A length adjustment module (9) is provided between the fixed telescopic arm (4) and the movable telescopic arm (5). The length adjustment module (9) includes a shell (91), a fixed rod (92), a fixed ring (93), a length adjustment spring (94), several sets of fixed grooves (95) and a pull ring (96). The shell (91) is located on one side of the surface of the fixed telescopic arm (4). The fixed rod (92) is located inside the shell (91). The fixed ring (93) and the length adjustment spring (94) are both located on the surface of the fixed rod (92). The two ends of the length adjustment spring (94) are respectively located on the surface of the fixed ring (93) and the inner wall of the shell (91). Several sets of fixed grooves (95) are evenly opened on the surface of the movable telescopic arm (5). The pull ring (96) is located at one end of the fixed rod (92). The other end of the fixed rod (92) extends into the interior of the fixed groove (95).
10. A vibration anomaly monitoring terminal for textile machinery according to claim 2, characterized in that: A protective cover (10) is provided at the edge of the surface of the fixed base (31), and the protective cover (10) is designed in the shape of an inverted trumpet.