Temperature measurement optical cable beam tube assembly of mine field gas detection subsystem
By designing a combination of rotary drive components and limiting holes, multi-directional adjustment and stable fixation of the temperature measurement optical cable bundle assembly of the mine gas detection subsystem were achieved. This solved the problem of difficult angle adjustment in the existing technology, improved ease of use and stability, and reduced the risk of optical cable entanglement.
Patent Information
- Application Number
- CN202520182053.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-06
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-02-06
AI Technical Summary
The existing temperature-measuring optical cable bundle assembly of the mine gas detection subsystem is difficult to adjust in angle, making it difficult to perform multi-directional bundle operations, which affects the ease of use and stability.
A temperature-measuring optical cable bundle assembly for a mine gas detection subsystem was designed. The rotating drive unit drives the flip plate to rotate, and the limit hole and the bundle head are adjusted to achieve multi-directional bundle operation. The assembly is positioned and fixed by the cooperation of bolts and threaded rods.
This improves the convenience and stability of the bundled tube assembly, reduces the tangling between temperature-measuring optical cables, and ensures the effective bundled tube effect of the optical cables.
Smart Images

Figure CN223756169U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of bundle tube subassembly, specifically to a kind of temperature measurement optical cable bundle tube subassembly of mine gas detection subsystem. BACKGROUND
[0002] In the process of mine operation, due to complex geological conditions, often accompanied by accumulation of flammable and explosive gases such as gas and carbon monoxide, and safety hazards such as high temperature, a mine gas detection subsystem is usually equipped to detect the operation, and a large number of temperature measurement optical cables are stored in the process. In order to bundle the temperature measurement optical cable, the corresponding bundle tube subassembly needs to be used.
[0003] Referring to the announcement No. CN206361258U, a pipe line bundle fixing pipe clamp assembly, which includes a first sub-pipe clamp, a second sub-pipe clamp, a third sub-pipe clamp, a fourth sub-pipe clamp, a fifth sub-pipe clamp and a sixth sub-pipe clamp. The first sub-pipe clamp, the second sub-pipe clamp, the third sub-pipe clamp, the fourth sub-pipe clamp, the fifth sub-pipe clamp and the sixth sub-pipe clamp are provided with clamping parts. The outer periphery of the clamping part on the first sub-pipe clamp is provided with a first connecting head and a second connecting head. The outer periphery of the clamping part on the second sub-pipe clamp is provided with a third connecting head. The outer periphery of the clamping part on the third sub-pipe clamp is provided with a fourth connecting head. The first connecting head and the third connecting head are detachably connected. The outer periphery of the clamping part on the fourth sub-pipe clamp is provided with a fifth connecting head. The outer periphery of the clamping part on the fifth sub-pipe clamp is provided with a sixth connecting head and a seventh connecting head. The outer periphery of the clamping part on the sixth sub-pipe clamp is provided with an eighth connecting head and a ninth connecting head capable of being clamped with the sixth connecting head. The pipe line crossing the space can be fixed. According to the above, the subassembly can be well applied to bundle the optical cable. However, it is usually inconvenient to adjust the angle of the bundle tube part, and it is difficult to perform multi-directional bundle tube operation according to the position of the optical cable, which often troubles the user. UTILITY MODEL CONTENT
[0004] The utility model aims to provide a kind of temperature measurement optical cable bundle tube subassembly of mine gas detection subsystem, to solve the problem that the subassembly can be well applied to bundle the optical cable in the above background technology, but it is usually inconvenient to adjust the angle of the bundle tube part, and it is difficult to perform multi-directional bundle tube operation according to the position of the optical cable.
[0005] In order to achieve the above object, the utility model provides following technical scheme: a kind of temperature measurement optical cable tube subassembly of mine gas detection subsystem, including base, the both sides of base top are equipped with pedestal, the top of two pedestal is equipped with first stand and second stand respectively, second turnover plate is rotatably installed on the inner wall of second stand, first turnover plate is rotatably installed on the inner wall of first stand, inner wall between first turnover plate and second turnover plate is equipped with placing piece plate, rotating drive is installed on the outer wall of first stand by support, one end of rotating drive penetrates first stand and is connected with the outer wall of first turnover plate, the outer wall of one side of placing piece plate lower end is equipped with first limiting frame, the end of first limiting frame away from placing piece plate is equipped with limiting plate, the end of limiting plate away from first limiting frame is equipped with second limiting frame, the both sides of placing piece plate top are equipped with locating plate, the outer wall of locating plate is bolted with bundle tube seat, the outer wall of one side of bundle tube seat away from locating plate is equipped with bundle tube head, the both ends of bundle tube head are equipped with hoop, one end of hoop is rotatably installed with hoop rod, one end of hoop rod penetrates hoop and is equipped with threaded rod, hexagonal nut is threadedly installed on the outer wall of threaded rod.
[0006] Preferably, the both sides of the bottom end of the base are provided with a first bottom frame, and the bottom end of the first bottom frame is provided with a second bottom frame.
[0007] Preferably, the second bottom frame is internally provided with a waist-shaped hole, the both ends of the waist-shaped hole extend to the outside of the second bottom frame, the inside of the second bottom frame on the both sides of the waist-shaped hole is provided with a positioning hole, and the both ends of the positioning hole extend to the outside of the second bottom frame.
[0008] Preferably, the inner wall of the lower end of the first turnover plate is provided with a connecting rod, one end of the connecting rod away from the first turnover plate is connected with the inner wall of the second turnover plate, and the first turnover plate and the second turnover plate are connected through the connecting rod.
[0009] Preferably, the inside of the limiting plate is provided with second limiting holes at equal intervals, the both ends of the second limiting holes extend to the outside of the limiting plate, and the temperature measurement optical cable is limited and placed through the second limiting holes.
[0010] Preferably, the inside of the first limiting frame and the second limiting frame is provided with first limiting holes at equal intervals, the both ends of the first limiting holes extend to the outside of the first limiting frame and the second limiting frame, and the temperature measurement optical cable is limited and placed through the first limiting holes.
[0011] Compared with the prior art, the beneficial effects of the utility model are that the temperature measuring optical cable bundle pipe assembly of the mine gas detection subsystem not only improves the convenience of the bundle pipe assembly in use, but also improves the stability of the bundle pipe assembly in use, and reduces the mutual entangling phenomenon between the temperature measuring optical cables, so as to guarantee the bundle pipe effect of the bundle pipe assembly on the temperature measuring optical cables;
[0012] (1) through the rotation of the first turnover plate driving piece, the first turnover plate is driven to rotate, so that the first turnover plate drives the second turnover plate to rotate synchronously, so that the second turnover plate and the first turnover plate drive the fixture plate to rotate, that is, the angle of the related bundle pipe components such as the limiting plate, the first limiting frame, the second limiting frame and the bundle pipe head can be adjusted according to the position of the optical cable, so that the optical cable in different positions is bundled in multiple directions, thereby improving the convenience of the bundle pipe assembly in use;
[0013] (2) by means of the bolt piece penetrating the waist type hole or the positioning hole and rotating into the threaded groove reserved in the mounting platform, the bundle pipe assembly can be bolted and positioned, so as to achieve the purpose of positioning and arranging the whole bundle pipe assembly, thereby improving the stability of the bundle pipe assembly in use;
[0014] (3) by first penetrating the corresponding first limiting hole or the second limiting hole, then penetrating the bundle pipe head, and then rotating the hexagon nut on the outer wall of the threaded rod, the multiple temperature measuring optical cables can be bundled by the hoop, thereby effectively reducing the mutual entangling phenomenon between the temperature measuring optical cables, so as to guarantee the bundle pipe effect of the bundle pipe assembly on the temperature measuring optical cables. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is a three-dimensional structure schematic diagram of the utility model;
[0016] Figure 2 It is a three-dimensional structure schematic diagram of the utility model Figure 1 It is an enlarged structure schematic diagram of A in the utility model;
[0017] Figure 3 It is an enlarged structure schematic diagram of A in the utility model Figure 1 It is an enlarged structure schematic diagram of B in the utility model;
[0018] Figure 4 It is a local view structure schematic diagram of the utility model limiting plate.
[0019] In the figure: 1, base; 2, first chassis; 3, second chassis; 301, waist-shaped hole; 302, positioning hole; 4, base; 5, first stand; 6, second stand; 7, second turnover plate; 8, first turnover plate; 9, rotary driving part; 10, placing part plate; 11, positioning plate; 12, bundle tube seat; 13, bundle tube head; 14, hoop ring; 15, hoop rod; 16, threaded rod; 17, hexagonal nut; 18, limiting plate; 19, first limiting frame; 20, second limiting frame; 21, first limiting hole; 22, second limiting hole; 23, connecting rod. DETAILED DESCRIPTION
[0020] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0021] Please refer to Figures 1-4 An embodiment provided by the utility model: a temperature measuring optical cable bundle tube assembly of a mine field gas detection subsystem, comprising a base 1, both sides of the bottom end of the base 1 are provided with a first chassis 2, the bottom end of the first chassis 2 is provided with a second chassis 3;
[0022] In use, the waist-shaped hole 301 and the positioning hole 302 are disposed through the setting of the second chassis 3;
[0023] The inside of the second chassis 3 is provided with a waist-shaped hole 301, both ends of the waist-shaped hole 301 extend to the outside of the second chassis 3, the inside of the second chassis 3 on both sides of the waist-shaped hole 301 is provided with a positioning hole 302, both ends of the positioning hole 302 extend to the outside of the second chassis 3;
[0024] In use, the bundle tube assembly is bolted and disposed as a whole through the setting of the waist-shaped hole 301 and the positioning hole 302;
[0025] Both sides of the top end of the base 1 are provided with a base 4, the top end of the two bases 4 is respectively provided with a first stand 5 and a second stand 6, a second turnover plate 7 is rotatably installed on the inner wall of the second stand 6, a first turnover plate 8 is rotatably installed on the inner wall of the first stand 5, a connecting rod 23 is arranged on the inner wall of the lower end of the first turnover plate 8, and the end of the connecting rod 23 away from the first turnover plate 8 is connected with the inner wall of the second turnover plate 7;
[0026] In use, the first turnover plate 8 and the second turnover plate 7 are connected through the setting of the connecting rod 23;
[0027] The inner wall between the first turnover plate 8 and the second turnover plate 7 is provided with a placing plate 10, the outer wall of the first stand 5 is provided with a rotary driving part 9 through a support, one end of the rotary driving part 9 penetrates the first stand 5 and is connected with the outer wall of the first turnover plate 8, the outer wall of one side of the lower end of the placing plate 10 is provided with a first limiting frame 19, the interiors of the first limiting frame 19 and a second limiting frame 20 are both provided with first limiting holes 21 at equal intervals, and both ends of the first limiting hole 21 extend to the outside of the first limiting frame 19 and the second limiting frame 20;
[0028] In use, the first limiting hole 21 is arranged to limit and arrange the temperature measuring optical cable;
[0029] The end of the first limiting frame 19 away from the placing plate 10 is provided with a limiting plate 18, the interior of the limiting plate 18 is provided with second limiting holes 22 at equal intervals, and both ends of the second limiting hole 22 extend to the outside of the limiting plate 18;
[0030] In use, the second limiting hole 22 is arranged to limit and arrange the temperature measuring optical cable;
[0031] The end of the limiting plate 18 away from the first limiting frame 19 is provided with the second limiting frame 20, both sides of the top end of the placing plate 10 are provided with positioning plates 11, the outer wall of the positioning plate 11 is bolted with a tube seat 12, the outer wall of one side of the tube seat 12 away from the positioning plate 11 is provided with a tube head 13, both ends of the tube head 13 are provided with hoop rings 14, one end of the hoop ring 14 is rotatably installed with a hoop rod 15, one end of the hoop rod 15 penetrates the hoop ring 14 and is provided with a threaded rod 16, and the outer wall of the threaded rod 16 is threadedly installed with a hexagonal nut 17.
[0032] In use, first, the tube assembly is bolted and positioned by penetrating the waist-shaped hole 301 or the positioning hole 302 through the bolt and rotating into the threaded groove reserved on the mounting platform, then the temperature measuring optical cable is first penetrated through the corresponding first limiting hole 21 or the second limiting hole 22, and then the temperature measuring optical cable is penetrated through the tube head 13, at this time, the hexagonal nut 17 is rotated into the outer wall of the threaded rod 16, so that the multiple temperature measuring optical cables are tubed through the hoop ring 14 to reduce the phenomenon of mutual entanglement between the temperature measuring optical cables, finally, the first turnover plate 8 is driven to rotate by the rotary driving part 9, so that the first turnover plate 8 drives the second turnover plate 7 to rotate synchronously through the connecting rod 23, so that the second turnover plate 7 drives the placing plate 10 to rotate, and the angle of the limiting plate 18, the first limiting frame 19, the second limiting frame 20 and the tube head 13 and other related tube components can be adjusted as needed according to the position of the optical cable, so that the optical cable at different positions is tubed in multiple directions, thereby completing the use of the tube assembly.
Claims
1. A temperature sensing optical cable bundle tube assembly for a mine gas detection subsystem, characterized by: The utility model provides a kind of rotating device, including base (1), the top of the both sides of base (1) is equipped with pedestal (4), the top of the both sides of two pedestal (4) is equipped with first stand (5) and second stand (6), the inner wall of second stand (6) is rotatably installed with second turnover plate (7), the inner wall of first stand (5) is rotatably installed with first turnover plate (8), and the inner wall between first turnover plate (8) and second turnover plate (7) is equipped with placing piece plate (10), the outer wall of first stand (5) is equipped with rotary drive (9) by support, one end of rotary drive (9) penetrates first stand (5) and is connected with the outer wall of first turnover plate (8), the outer wall of one side of the lower end of placing piece plate (10) is equipped with first limiting frame (19), the end of first limiting frame (19) away from placing piece plate (10) is equipped with limiting plate (18), the end of limiting plate (18) away from first limiting frame (19) is equipped with second limiting frame (20), the both sides of the top of placing piece plate (10) are equipped with positioning plate (11), the outer wall of positioning plate (11) is bolted with bundle pipe seat (12), the outer wall of one side of bundle pipe seat (12) away from positioning plate (11) is equipped with bundle pipe head (13), the both ends of bundle pipe head (13) are equipped with hoop ring (14), one end of hoop ring (14) is rotatably installed with hoop rod (15), one end of hoop rod (15) penetrates hoop ring (14) and is equipped with threaded rod (16), the outer wall of threaded rod (16) is threadedly installed with hexagonal nut (17).
2. A temperature sensing optical cable bundle tube assembly for a mine gas detection subsystem according to claim 1, wherein: The bottom of the both sides of base (1) is equipped with first chassis (2), and the bottom of first chassis (2) is equipped with second chassis (3).
3. A temperature sensing optical cable bundle tube assembly for a mine gas detection subsystem according to claim 2, wherein: The inside of second chassis (3) is equipped with a waist-shaped hole (301), and the both ends of waist-shaped hole (301) extend to the outside of second chassis (3).
4. A temperature sensing optical cable bundle tube assembly for a mine gas detection subsystem according to claim 1, wherein: The inner wall of the lower end of first turnover plate (8) is equipped with connecting rod (23), and one end of connecting rod (23) away from first turnover plate (8) is connected with the inner wall of second turnover plate (7).
5. A temperature sensing optical cable bundle tube assembly for a mine gas detection subsystem according to claim 1, wherein: The inside of limiting plate (18) is equipped with second limiting holes (22) at equal intervals, and the both ends of second limiting holes (22) extend to the outside of limiting plate (18).
6. A temperature sensing optical cable bundle tube assembly for a mine gas detection subsystem according to claim 1, wherein: The inside of first limiting frame (19) and second limiting frame (20) is equipped with first limiting holes (21) at equal intervals, and the both ends of first limiting holes (21) extend to the outside of first limiting frame (19) and second limiting frame (20).
Citation Information
Patent Citations
Pipe clamp subassembly is fixed to pipeline pencil
CN206361258U