Cooling assembly for polymer screen cloth wire drawing machine
By designing an electric telescopic rod and a cooling component for absorbent cotton on a polymer mesh spinning machine, the problem of adhesion caused by moisture on the yarn surface was solved, ensuring the flatness and tightness of the yarn and simplifying the replacement process of the absorbent cotton.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-08
- Publication Date
- 2026-04-10
AI Technical Summary
In existing polymer mesh fiber drawing machines, residual moisture on the surface of the fibers after drawing causes them to stick together, affecting the flatness and tightness of the winding.
A cooling component for a polymer mesh yarn making machine has been designed, comprising an electric telescopic rod, absorbent cotton, and a threaded screw structure. The absorbent cotton is used to wipe away moisture from the surface of the yarn, and the threaded screw allows for easy replacement of the absorbent cotton for drainage.
It effectively avoids the problem of yarn sticking together during the winding process, ensures the flatness and tightness of the yarn, and simplifies the replacement of absorbent cotton and drainage operations.
Smart Images

Figure CN224103496U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a silk thread processing equipment field, especially in a kind of cooling assembly for high molecular mesh cloth wire drawing machine. BACKGROUND
[0002] Mesh cloth wire drawing machine is a kind of equipment for drawing into the silk thread for weaving mesh cloth with high molecular material such as plastic, and the production product types seen include fishing net, cotton field protective net, building protective net, sunshade net, geotextile etc., it first melts plastic raw material by extruder heating, then extrudes from machine head to form embryo silk, embryo silk is cooled and shaped after passing through cooling water tank, and is stretched and wound by traction machine.
[0003] In prior art, after material is drawn by mesh cloth wire drawing machine, certain heat is generated inside, and too high temperature can change the physical properties of silk thread, such as strength decrease, toughness reduction etc., so after wire drawing machine completes wire drawing operation, silk thread is usually cooled by passing through water pool, but after silk thread is drawn out from water, part of water will inevitably remain on its surface, if remaining water is not treated directly wound, which can cause silk thread to be mutually adhered in winding process, damage the arrangement order of silk thread, affect the flatness and compactness after winding, and bring inconvenience to subsequent processing, so a kind of cooling assembly for high molecular mesh cloth wire drawing machine is needed. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing a kind of cooling assembly for high molecular mesh cloth wire drawing machine, can wipe and absorb the water remaining on the surface of silk thread, avoid the situation that silk thread is mutually adhered in winding process due to too much water, avoid affecting the flatness and compactness after silk thread winding.
[0005] To achieve the above-mentioned purpose, a kind of cooling assembly for high molecular mesh cloth wire drawing machine is provided, including water tank, the water tank is fixedly connected with drain pipe, the drain pipe is provided with stop valve, the inner surface of the water tank is fixedly connected with two connecting rods, the same limit roller is fixedly connected on two connecting rods, the outer surface of two connecting rods is fixedly connected with limit ring, the upper surface of the water tank is fixedly connected with first bearing plate, the water tank is fixedly connected with bearing frame, the electric telescopic rod is fixedly connected on the bearing frame, the output end of the electric telescopic rod is fixedly connected with second bearing plate, the first bearing plate and second bearing plate are fixedly connected with two positioning blocks, the inner surface of four positioning blocks is movably connected with butt joint block, the same connecting plate is fixedly connected on corresponding two butt joint blocks, the lower surface of one connecting plate is fixedly connected with first water-absorbing cotton, the upper surface of another connecting plate is fixedly connected with second water-absorbing cotton.
[0006] The inner surfaces of the first bearing plate and the second bearing plate are rotationally connected with bidirectional screw rods, the front ends of the two bidirectional screw rods are fixedly connected with rotating blocks, the outer surfaces of the two bidirectional screw rods are threadedly connected with two sliding blocks, and the four sliding blocks are fixedly connected with two inserting blocks.
[0007] According to the cooling assembly for the high polymer screen cloth drawing machine, a plurality of guide blocks are fixedly connected to the second bearing plate, a plurality of guide grooves are formed in the bearing frame, and the outer surfaces of the guide blocks are slidably connected with the guide grooves.
[0008] According to the cooling assembly for the high polymer screen cloth drawing machine, the outer surface of the water tank is fixedly connected with support rods, the number of the support rods is four, and the support rods are distributed in a rectangular array.
[0009] According to the cooling assembly for the high polymer screen cloth drawing machine, a positioning groove is formed in the positioning block, and the outer surface of the butt joint block is movably connected with the positioning groove.
[0010] According to the cooling assembly for the high polymer screen cloth drawing machine, a fixing groove is formed in the butt joint block, and the outer surface of the inserting block is movably connected with the fixing groove.
[0011] According to the cooling assembly for the high polymer screen cloth drawing machine, the electric telescopic rod is electrically connected with an external power source, and the outer surface of the inserting block is movably connected with the positioning block.
[0012] According to the cooling assembly for the high polymer screen cloth drawing machine, the outer surfaces of two sliding blocks are slidably connected with the first bearing plate, and the outer surfaces of the other two sliding blocks are slidably connected with the second bearing plate.
[0013] According to the cooling assembly for the high polymer screen cloth drawing machine, the bidirectional screw rod penetrates the sliding block.
[0014] The above-mentioned scheme has the following beneficial effects:
[0015] 1. Through the arrangement of the electric telescopic rod, the first water-absorbing cotton and the second water-absorbing cotton, in the process of drawing the silk thread, the water on the surface of the silk thread can be wiped and absorbed after the silk thread is in contact with the first water-absorbing cotton and the second water-absorbing cotton, so that the mutual adhesion of the silk thread in the winding process caused by excessive water can be avoided, and the flatness and tightness of the silk thread after winding can be avoided.
[0016] 2. Through the arrangement of the rotating block, the bidirectional screw rod and the sliding block, the fixing of the connecting plate and other structures can be released by operating the rotating block, so that the first water-absorbing cotton and the second water-absorbing cotton can be taken off from the structure as a whole for drainage treatment, which is simple and fast.
[0017] Additional aspects and advantages of the present application will be partially given in the following description, partially will become obvious from the following description, or will be understood by those skilled in the art through the practice of the present application. BRIEF DESCRIPTION OF DRAWINGS
[0018] The present application will be further described below in conjunction with the drawings and examples;
[0019] Figure 1 It is a whole structure schematic view of the cooling assembly for the high molecular screen cloth wire drawing machine of the present application;
[0020] Figure 2 It is a structure schematic view of the water tank section of the cooling assembly for the high molecular screen cloth wire drawing machine of the present application;
[0021] Figure 3 It is a structure schematic view of the limiting ring section of the cooling assembly for the high molecular screen cloth wire drawing machine of the present application;
[0022] Figure 4 It is a structure schematic view of the bearing frame section of the cooling assembly for the high molecular screen cloth wire drawing machine of the present application;
[0023] Figure 5 It is a structure schematic view of the second bearing plate section of the cooling assembly for the high molecular screen cloth wire drawing machine of the present application;
[0024] Figure 6 It is a structure schematic view of the plug-in block section of the cooling assembly for the high molecular screen cloth wire drawing machine of the present application;
[0025] Figure 7 It is a structure schematic view of the first bearing plate section of the cooling assembly for the high molecular screen cloth wire drawing machine of the present application;
[0026] Figure 8 It is a structure schematic view of the bidirectional screw rod section of the cooling assembly for the high molecular screen cloth wire drawing machine of the present application;
[0027] Figure 9 It is a structure schematic view of the bearing frame section of the cooling assembly for the high molecular screen cloth wire drawing machine of the present application.
[0028] LEGEND:
[0029] 1, water tank; 2, drain pipe; 3, stop valve; 4, connecting rod; 5, limiting roller; 6, limiting ring; 7, first bearing plate; 8, bearing frame; 9, electric telescopic rod; 10, second bearing plate; 11, positioning block; 12, butt joint block; 13, connecting plate; 14, first water absorbing cotton; 15, second water absorbing cotton; 16, two-way threaded screw rod; 17, rotating block; 18, sliding block; 19, plug-in block; 20, guide block; 21, guide groove; 22, support rod; 23, positioning groove; 24, fixing groove. DETAILED DESCRIPTION
[0030] This part will describe the specific embodiments of the utility model in detail, the preferred embodiments of the utility model are shown in the drawings, the role of the drawings is to supplement the description of the text part with graphics, so that people can intuitively and visually understand each technical feature and the overall technical scheme of the utility model, but it cannot be understood as the limitation of the protection scope of the utility model.
[0031] Referring to Figures 1-9 , the utility model embodiment a kind of cooling assembly for high molecular screen cloth drawing machine, it includes water tank 1, water tank 1 is fixedly connected with drain pipe 2, drain pipe 2 is provided with stop valve 3, when needing to carry out the water discharge operation of water tank 1, stop valve 3 is opened to be just to release the restriction to drain pipe 2, so that water source in water tank 1 can be discharged through drain pipe 2, the inner surface of water tank 1 is fixedly connected with two connecting rods 4, the same limiting roller 5 is fixedly connected on two connecting rods 4, the outer surface of two connecting rods 4 is fixedly connected with limiting ring 6, the upper surface of water tank 1 is fixedly connected with first bearing plate 7, water tank 1 is fixedly connected with bearing frame 8, bearing frame 8 is fixedly connected with electric telescopic rod 9, electric telescopic rod 9 is electrically connected with external power supply, the output end of electric telescopic rod 9 is fixedly connected with second bearing plate 10, two positioning blocks 11 are fixedly connected on first bearing plate 7 and second bearing plate 10, the inner surface of four positioning blocks 11 is movably connected with butt joint block 12, the same connecting plate 13 is fixedly connected on corresponding two butt joint blocks 12, the lower surface of one connecting plate 13 is fixedly connected with first water absorbing cotton 14, the upper surface of another connecting plate 13 is fixedly connected with second water absorbing cotton 15, a plurality of guide blocks 20 are fixedly connected on second bearing plate 10, a plurality of guide grooves 21 are formed in bearing frame 8, the outer surface of guide block 20 is slidably connected with guide groove 21, under the action of guide block 20 and guide groove 21, the two ends of second bearing plate 10 can be limited and guided, so that second bearing plate 10 and the structure on second bearing plate 10 are more stable during movement, the outer surface of water tank 1 is fixedly connected with support rod 22, the number of support rod 22 is four and rectangular array distribution.
[0032] The inner surfaces of the first bearing plate 7 and the second bearing plate 10 are rotationally connected with bidirectional screw rods 16, the front ends of the two bidirectional screw rods 16 are fixedly connected with rotating blocks 17, the outer surfaces of the two bidirectional screw rods 16 are threadedly connected with two sliding blocks 18, the outer surfaces of two sliding blocks 18 are slidably connected with the first bearing plate 7, the outer surfaces of the other two sliding blocks 18 are slidably connected with the second bearing plate 10, the positioning block 11 is provided with a positioning groove 23, the outer surface of the abutting block 12 is movably connected with the positioning groove 23, the abutting block 12 is provided with a fixing groove 24, the outer surface of the inserting block 19 is movably connected with the fixing groove 24, the outer surface of the inserting block 19 is movably connected with the positioning block 11, the bidirectional screw rod 16 penetrates through the sliding block 18, and it should be noted that, during the disassembly and assembly of the connecting plate 13 and the structure on the connecting plate 13, when the first water-absorbing cotton 14 is disassembled, when the inserting block 19 is not inserted into the fixing groove 24, in order to avoid the falling of the connecting plate 13 and the first water-absorbing cotton 14, the first water-absorbing cotton 14 needs to be held by the operator.
[0033] Working principle: first to the water tank 1 in the water source of the supplement, and the water source over the connecting rod 4, limit roller 5, limit ring 6 structure, then the silk through the water tank 1 in the limit roller 5, make the silk and limit roller 5 lower outer surface contact together, at the same time again with the second water absorbing cotton 15 surface contact, at this time by starting to carry the electric telescopic rod 9, make the output of electric telescopic rod 9 after starting downward movement, so as to make the second bearing plate 10 and the structure on the second bearing plate 10 downward movement, when the first water absorbing cotton 14 respectively with the second water absorbing cotton 15, silk contact after moving, close the electric telescopic rod 9, then the other end of the silk is connected to the traction equipment traction, so as to make the silk in the process of traction and water source contact fully realize the cooling of the silk, and when the silk from the water source after traction, because the silk and the first water absorbing cotton 14, second water absorbing cotton 15 contact, at this time in the first water absorbing cotton 14, second water absorbing cotton 15 under the action of, can wipe the water on the surface of the silk, because the first water absorbing cotton 14, second water absorbing cotton 15 has a certain elasticity, when the silk in the process of movement and the first water absorbing cotton 14, second water absorbing cotton 15 contact, can adapt to the movement of the silk through its own elasticity, not only absorbs the water on the silk, but also does not affect the normal silk, when the assembly is used up, by starting the electric telescopic rod 9, make the output of electric telescopic rod 9 upward movement, at this time can make the second bearing plate 10 and the structure on the second bearing plate 10 upward movement, when the first water absorbing cotton 14 away from the second water absorbing cotton 15 a distance, close the electric telescopic rod 9, by rotating two rotating block 17 respectively, make the rotating block 17 can drive the bidirectional screw rod 16 rotation, so that the rotating bidirectional screw rod 16 can drive the two sliding block 18 move away from each other, further make the moving sliding block 18 can drive the plug 19 movement, when the moving plug 19 from the positioning block 11, butt joint block 12 off, can remove the fixed connection plate 13 and other structures of the connection plate 13, at this time can be taken off from the assembly of the connection plate 13, so as to drain the first water absorbing cotton 14, second water absorbing cotton 15 processing, when the first water absorbing cotton 14, second water absorbing cotton 15 drain, respectively, two connecting plate 13 on the butt joint block 12 to the positioning groove 23 on the positioning block 11, at this time can make the plug 19 and fixed groove 24 corresponding, at this time again reverse rotation of two rotating block 17, so as to make the rotating block 17 drive the bidirectional screw rod 16 reverse rotation, further can make the rotating bidirectional screw rod 16 drive the two sliding block 18 move closer to each other, and the moving sliding block 18 will drive the plug 19 movement, when the moving plug 19 inserted into the fixed groove 24, at this time realizes the fixed connection plate 13 structure, the first water absorbing cotton 14, second water absorbing cotton 15 and the structure of the whole body between the fixed.
[0034] The utility model embodiment has been explained in detail above in combination with the drawings, but the utility model is not limited to the above-mentioned embodiment, still can make various changes in the knowledge range of the ordinary skill of the people in the prior art within the premise of not departing from the utility model's tenet.
Claims
1. A cooling assembly for a polymer screen cloth lathing machine, comprising: The utility model provides a water tank (1), it is characterized by being fixedly connected with drain pipe (2) on water tank (1), be provided with stop valve (3) on drain pipe (2), the inner surface of water tank (1) is fixedly connected with two connecting rods (4), the same limiting roller (5) is fixedly connected on two connecting rods (4), the outer surface of two connecting rods (4) is fixedly connected with limiting ring (6), the upper surface of water tank (1) is fixedly connected with first bearing plate (7), water tank (1) is fixedly connected with bearing frame (8), bearing frame (8) is fixedly connected with electric telescopic handle (9), the output of electric telescopic handle (9) is fixedly connected with second bearing plate (10), both first bearing plate (7) and second bearing plate (10) are fixedly connected with two locating blocks (11), the inner surface of four locating blocks (11) is movably connected with butt joint block (12), the butt joint block (12) of corresponding two is fixedly connected with the same connecting plate (13), the lower surface of one connecting plate (13) is fixedly connected with first water absorption cotton (14), and the upper surface of another connecting plate (13) is fixedly connected with second water absorption cotton (15); The inner surface of first bearing plate (7) and second bearing plate (10) is rotatably connected with two-way screw rod (16), the front end of two-way screw rod (16) is fixedly connected with rotating block (17), and the outer surface of two-way screw rod (16) is threadedly connected with two sliding blocks (18).
2. The cooling assembly for a polymer mesh belt lathing machine according to claim 1, wherein A plurality of guide blocks (20) are fixedly connected to the second bearing plate (10), a plurality of guide grooves (21) are formed in the bearing frame (8), and the outer surfaces of the guide blocks (20) are slidably connected with the guide grooves (21).
3. The cooling assembly for a polymer mesh belt lathing machine of claim 1, wherein, The outer surface of the water tank (1) is fixedly connected with a support rod (22), and the support rod (22) is rectangularly arrayed.
4. The cooling assembly for a polymer mesh belt lathing machine of claim 1, wherein, A positioning groove (23) is formed in the locating block (11), and the outer surface of the butt joint block (12) is movably connected with the positioning groove (23).
5. The cooling assembly for a polymer mesh belt lathing machine of claim 1, wherein, A fixing groove (24) is formed in the butt joint block (12), and the outer surface of the insertion block (19) is movably connected with the fixing groove (24).
6. The cooling assembly of claim 1, wherein the cooling assembly is a polymer mesh screen. The electric telescopic handle (9) is electrically connected with an external power source, and the outer surface of the insertion block (19) is movably connected with the locating block (11).
7. The cooling assembly of claim 1, wherein the cooling assembly is a polymer mesh screen. The outer surfaces of two sliding blocks (18) are slidably connected with the first bearing plate (7), and the outer surfaces of the other two sliding blocks (18) are slidably connected with the second bearing plate (10).
8. The cooling assembly of claim 1, wherein the cooling assembly is a polymer mesh screen. The two-way screw rod (16) penetrates the sliding block (18).