Rope net steam setting traction device

By using a combination of guide rail drive and steam nozzle, the rope net steam setting traction device achieves low-energy and rapid setting, solving the problems of high energy consumption and low setting efficiency of existing equipment and reducing damage to the net.

CN223738317UActive Publication Date: 2025-12-30HUNAN XINHAI CO LTD
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Patent Information

Application Number
CN202520080161.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-14
Publication Date
2025-12-30
Estimated Expiration
2035-01-14

AI Technical Summary

Technical Problem

Existing rope and net shaping equipment is energy-intensive and inefficient, and high-temperature shaping can easily damage the netting.

Method used

The device employs a rope net steam shaping traction device, which uses vertical and horizontal guide rails to drive the lifting and traveling seats. Combined with steam nozzles and a net shaping cover, it achieves the reduction of the steam area and rapid shaping. Steam is sprayed through nozzles and unused steam is collected.

Benefits of technology

It achieves rapid shaping with low energy consumption while reducing damage to the mesh.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223738317U_ABST
    Figure CN223738317U_ABST
Patent Text Reader

Abstract

The utility model provides a rope net steam setting traction device which comprises a machine frame, vertical guide rails which are vertically upward are installed at the two ends of the machine frame, lifting seats are movably installed on the vertical guide rails, a horizontal guide rail is installed between the two lifting seats, a walking seat is movably installed on the horizontal guide rail, and a steam spray head is installed on the walking seat. A sizing platform is arranged on one side of the machine frame, a mesh sizing cover is arranged on the sizing platform, vertically upward mesh pressing air cylinders are installed at the two ends of the sizing platform, piston rods of the mesh pressing air cylinders are upwards connected with the mesh sizing cover, a mesh inlet guide roller is arranged on one side of the machine frame, roller seats are arranged at the two ends of the outer side of the sizing platform, and a winding roller is installed between the two roller seats. Wherein a winding motor is installed on the outer side of one roller seat, and a transmission shaft of the winding motor is connected with the winding roller. After the scheme is adopted, the structure is reasonable, and the using effect is good.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a steam setting technology field especially a rope net steam setting traction device. BACKGROUND

[0002] The mesh setting device is a machine for setting the fishing net processed by the textile machine, and the rope net is prevented from loosening and reinforcing after being woven into a mesh. The existing setting box is used for setting, the space in the setting box is large, a large amount of steam needs to be used for setting, energy consumption is extremely high, the steam disperses fast, efficiency is low, high-temperature setting is directly used, the setting speed is fast, energy consumption is high, and the mesh is easily damaged. SUMMARY

[0003] The utility model discloses a rope net steam setting traction device with reasonable structure and good use effect.

[0004] To realize the above-mentioned purpose, the utility model provides a technical scheme of a rope net steam setting traction device, which comprises a rack, wherein vertical guide rails vertically upward are installed at both ends of the rack, lifting seats are movably installed on the vertical guide rails, a horizontal guide rail is installed between the two lifting seats, a walking seat is movably installed on the horizontal guide rail, steam nozzles are installed on the walking seat, a setting platform is arranged on one side of the rack, a mesh setting cover is arranged on the setting platform, mesh pressing cylinders vertically upward are installed at both ends of the setting platform, the piston rods of the mesh pressing cylinders are connected upward with the mesh setting cover, an inlet guide roller is arranged on one side of the rack, roller seats are arranged at both ends of the outer side of the setting platform, a winding roller is installed between the two roller seats, a winding motor is installed on the outer side of one of the roller seats, and a transmission shaft of the winding motor is connected with the winding roller.

[0005] The mesh setting cover is n-shaped in vertical section, the mesh setting cover is provided with steam mesh holes penetrating upward and downward, the bottom of the sidewall of the mesh setting cover is bent outward to form a pressing edge, the ends of the mesh setting cover are sealed by corresponding end plates, the bottom of the end plate is bent outward to form a connecting plate, and the connecting plate is connected with the piston rod of the mesh pressing cylinder.

[0006] The lifting seats are lifted on the vertical guide rails by corresponding motors, and the walking seat walks on the horizontal guide rail by a corresponding motor.

[0007] The utility model discloses after adopting above -mentioned scheme, when laying the mesh, the piston rod of pressing net cylinder stretches and drives the mesh shaping cover to go up, makes the mesh shaping cover and shaping platform form the laying area between, and the mesh is guided to pass through the laying area by the net guide roller and is reeled by the winding roller, and the mesh is flattened to the shaping platform, and the piston rod of pressing net cylinder retracts and drives the mesh shaping cover to descend, and the mesh area edge that is shaped waits to be pressed down, makes the solid mesh location, and the lifting seat is driven to descend under the vertical guide rail by the corresponding motor after positioning, makes the steam nozzle go to the steam mesh above, and the steam generator on the walking seat top sprays steam through the steam nozzle, and the steam contacts the mesh after passing through the steam mesh, and the walking seat walks on the horizontal guide rail by the corresponding motor while the steam nozzle works, and the mesh different area is shaped, and the mesh shaping cover can make the steam area reduce and limit in smaller area, and the steam can be realized fast shaping by the nozzle type spraying, and the energy consumption is smaller, and according to need, the steam recovery cover is installed above the mesh shaping cover, and the steam after going up is collected, and the structure after the scheme is reasonable, and the use effect is good. BRIEF DESCRIPTION OF DRAWINGS

[0008] Figure 1 It is the whole structure schematic diagram of the utility model.

[0009] Figure 2 It is the mesh shaping cover schematic diagram of the utility model. CONCRETE IMPLEMENTING METHOD

[0010] The utility model makes further explanation in combination with all drawings, and the preferable embodiment of the utility model is, referring to the drawings of Figure 1 and the drawings of Figure 2 The rope net steam shaping traction device described in the embodiment includes a rack 1, wherein the rack 1 is provided with vertical guide rails 2 vertically upward at both ends, the lifting seats 3 are movably installed on the vertical guide rails 2, the horizontal guide rails 4 are installed between the two lifting seats 3, the walking seats 5 are movably installed on the horizontal guide rails 4, and the steam nozzles 13 are installed on the walking seats 5; the rack 1 is provided with a shaping platform 6 on one side, the mesh shaping cover 8 is arranged on the shaping platform 6, the pressing net cylinders 7 are installed vertically upward at both ends of the shaping platform 6, the piston rods of the pressing net cylinders 7 are connected upward with the mesh shaping cover 8, the net guide rollers 9 are arranged on one side of the rack 1, the roller seats 10 are arranged at both ends outside the shaping platform 6, the winding rollers 11 are installed between the two roller seats 10, one roller seat 10 is provided with a winding motor outside, and the transmission shaft of the winding motor is connected with the winding roller 11.

[0011] The vertical section of the screen forming cover 8 is in the shape of n, the top of the screen forming cover 8 is provided with steam mesh holes 12 penetrating from top to bottom, the bottom of the side walls of the screen forming cover 8 is bent outward to form a pressing edge, the two ends of the screen forming cover 8 are sealed by corresponding end plates, the bottom of the end plates is bent outward to form a connecting plate, and the connecting plate is connected with the piston rod of the pressing air cylinder 7. The lifting seat 3 is lifted on the vertical guide rail 2 by a corresponding motor, and the walking seat 5 walks on the horizontal guide rail 4 by a corresponding motor.

[0012] After the above scheme is adopted, when the screen is laid, the piston rod of the pressing air cylinder is extended to drive the screen forming cover to rise, so that the screen forming cover and the forming platform form a screen laying area. The screen is guided by the screen feeding roller to pass through the screen laying area and is wound by the winding roller. The screen is flattened on the forming platform. The piston rod of the pressing air cylinder is retracted to drive the screen forming cover to descend, so that the edge of the screen to be formed is pressed, and the screen is positioned. After positioning, the lifting seat is lowered on the vertical guide rail by the corresponding motor, so that the steam nozzle is above the steam mesh hole. The steam generator on the top of the walking seat sprays steam through the steam nozzle. The steam contacts the screen after passing through the steam mesh hole. At the same time that the steam nozzle works, the walking seat walks on the horizontal guide rail by the corresponding motor, so that different areas of the screen are formed. The screen forming cover can reduce the steam area to a small area. The steam nozzle type steam spraying can realize rapid forming, and the energy consumption is small. According to the need, a steam recovery cover is installed above the screen forming cover to collect the rising steam. The structure after the scheme is adopted is reasonable and has good use effect.

[0013] The above-mentioned embodiments are only the preferred embodiments of the present application, and do not limit the scope of the present application. Any changes made according to the shape and principle of the present application should be covered by the protection scope of the present application.

Claims

1. A rope net steam setting traction device comprising a frame (1), characterized in that: The vertical guide rail (2) is vertically upwardly installed at both ends of the rack (1), the lifting seat (3) is movably installed on the vertical guide rail (2), the horizontal guide rail (4) is installed between the two lifting seats (3), the walking seat (5) is movably installed on the horizontal guide rail (4), the steam nozzle (13) is installed on the walking seat (5); the shaping platform (6) is arranged on one side of the rack (1), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is connected to the piston rod of the mesh pressing air cylinder (7) upwardly, the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged on the shaping platform (6), the mesh shaping cover (8) is arranged 2. A rope net steam setting traction device according to claim 1, characterized in that: ​ 3. A rope net steam setting traction device according to claim 1, characterized in that: ​