Steel wire mesh framework pipeline sealing equipment

By designing a sealing device with adjustable spacing and a pipe fixing frame, the problems of low automation and adaptability in the existing technology of wire mesh skeleton pipe port packaging are solved, and stable and automated sealing processing is achieved.

CN223431985UActive Publication Date: 2025-10-14HANGZHOU MEIJUFU TECH CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202422990678.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-10-14
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

The existing wire mesh skeleton pipe port packaging technology has problems such as glue failure, large material loss, low degree of automation and inability to seal online, and is difficult to adapt to the processing of pipes of different lengths.

Method used

A wire mesh skeleton pipe sealing equipment was designed. The distance between the two sealing devices was adjusted by a linear track. It was equipped with a sliding pipe fixing frame and sealing structure to achieve stable support and uniform processing of pipes of different lengths.

Benefits of technology

It realizes stable sealing processing of pipes of different lengths, improves the degree of automation, ensures the axis alignment of the sealing device, reduces material loss, and enhances processing stability and efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223431985U_ABST
    Figure CN223431985U_ABST
Patent Text Reader

Abstract

The utility model discloses steel wire mesh framework pipeline sealing equipment which comprises two sealing devices and a plurality of pipeline fixing frames arranged between the two sealing devices, and further comprises a linear track, and the sealing devices and the pipeline fixing frames are fixed on the linear track in a sliding adjusting mode. The utility model aims to solve the technical problems in the prior art, and provides the steel wire mesh framework pipeline sealing equipment which can adjust the distance between the two sealing devices through the linear track, so that pipelines with different lengths can be conveniently processed.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of wire mesh skeleton pipeline processing, in particular to a wire mesh skeleton pipeline sealing device. Background Art

[0002] The current sealing technology for wire mesh skeleton pipe ports mainly involves taking a similar plastic ring to hot-melt the end face of the pipe and then manually removing the plastic burrs that overflow or are uneven on the outer and inner walls. The main disadvantages of this process are: 1. The plastic ring and the end face are hot-melted with glue, and the glue is easily ineffective and cracked when exposed to high temperature, causing the wire mesh to be exposed and corroded, posing a great hidden danger; 2. Additional plastic rings and glue need to be prepared, resulting in a large material loss; 3. Manual gluing and manual scraping of overflowing glue or uneven plastic on the inside and outside of the plastic ring are required; 4. It cannot be sealed online, has a low degree of automation, and is not suitable for high-speed production.

[0003] Based on the above-mentioned technical defects, CN202210124871.9 discloses a port packaging device for wire mesh skeleton pipes. This technical solution can simultaneously realize automatic hot-melt sealing of the two ports of the steel wire skeleton pipe through two end processing structures. However, since the spacing between the two end processing structures is difficult to adjust, it is difficult to adapt to the processing of wire mesh skeleton pipes of various lengths and sizes. Utility Model Content

[0004] 1. Technical problems to be solved by the utility model

[0005] The purpose of the utility model is to solve the technical problems existing in the prior art and provide a wire mesh skeleton pipe sealing device, which can adjust the distance between the two sealing devices through the linear track, thereby facilitating the processing of pipes of different lengths.

[0006] 2. Technical solution

[0007] In order to solve the above problems, the technical solution provided by the present invention is as follows:

[0008] A wire mesh skeleton pipeline sealing device comprises two sealing devices and a plurality of pipeline fixing frames arranged between the two sealing devices, and also comprises a linear track, on which the sealing devices and the pipeline fixing frames can be fixed in a slidable and adjustable manner.

[0009] Optionally, the sealing device includes a base, and a grooving structure and a hot-melt sealing structure provided on the base, and the pipe fixing frame is provided with a first fixing structure and a second fixing structure, the grooving structure and the first fixing structure are located on the same axis, and the hot-melt sealing structure and the second fixing structure are located on the same axis.

[0010] Optionally, a pipeline handling structure is provided on the pipeline fixing frame.

[0011] Optionally, the pipe handling structure includes a movable seat, which is arranged in the pipe fixing frame; at least one cylinder, which is used to control the lifting and lowering of the movable seat; an electric guide rail, which is installed on the movable seat; at least one electric slider, which is slidably assembled on the electric guide rail; a pipe lifting plate, which is fixedly connected to the electric slider; each of the electric sliders is equipped with a pipe lifting plate, and the pipe fixing frame has a movable groove for the pipe lifting plate to extend out.

[0012] Optionally, the pipeline transport structure is further provided with a loading structure and a unloading structure, and the electric guide rail is simultaneously equipped with a plurality of electric sliders.

[0013] Optionally, the trough structure includes a trough frame and a first moving control structure for pushing the trough frame to move forward and backward on the base. A trough motor is installed on the trough frame, and a trough disc is installed on the output shaft end of the trough motor. A first trough cutter and a second trough cutter are installed on the trough disc. The trough disc is provided with a first slide groove and a second slide groove along its radial direction. The first trough cutter can be slidably adjusted to be assembled in the first slide groove, and the second trough cutter can be slidably adjusted to be assembled in the second slide groove.

[0014] Optionally, the hot melt sealing structure includes a hot melt sealing frame, the base is provided with a second moving control structure for pushing the hot melt sealing frame to move forward and backward, the hot melt sealing frame is provided with a high-temperature heating device and a low-temperature forming mold, the low-temperature forming mold is fixedly mounted on the hot melt sealing frame, the high-temperature heating device is provided on the front side of the low-temperature forming mold, the hot melt sealing frame is provided with a lifting control structure for controlling the lifting of the high-temperature heating device, and the low-temperature forming mold includes a forming mold body, and a plurality of forming grooves arranged in concentric circles on the forming mold body.

[0015] Optionally, the high-temperature heating device is a medium-wave infrared hot melt device.

[0016] Optionally, a distance measuring structure for measuring the distance between the two sealing devices is further included.

[0017] 3. Beneficial effects

[0018] Compared with the prior art, the technical solution provided by this utility model has the following beneficial effects:

[0019] The steel wire mesh framework pipeline sealing equipment allows the operator to adjust the spacing of the two sealing devices through the linear track, so that the pipeline of different lengths can be processed conveniently, and the spacing between the pipeline fixing frames can also be adjusted, which helps to realize uniform support of the pipeline and ensure the stability during processing BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 A structure schematic view of a steel wire mesh framework pipeline sealing equipment is provided for the embodiment of the utility model;

[0021] Figure 2 A structure schematic view of a pipeline fixing frame in a steel wire mesh framework pipeline sealing equipment is provided for the embodiment of the utility model;

[0022] Figure 3 A cross-sectional schematic view of a pipeline fixing frame in a steel wire mesh framework pipeline sealing equipment is provided for the embodiment of the utility model;

[0023] Figure 4 A structure schematic view of a wheel groove structure in a steel wire mesh framework pipeline sealing equipment (the shell of the sealing device has been hidden) is provided for the embodiment of the utility model;

[0024] Figure 5 A structure schematic view of a wheel groove disc in a wheel groove structure in a steel wire mesh framework pipeline sealing equipment is provided for the embodiment of the utility model;

[0025] Figure 6 A structure schematic view of a hot melting sealing structure in a steel wire mesh framework pipeline sealing equipment (the shell of the sealing device has been hidden) is provided for the embodiment of the utility model;

[0026] Figure 7 A structure schematic view of a low-temperature forming die in a hot melting sealing structure in a steel wire mesh framework pipeline sealing equipment is provided for the embodiment of the utility model;

[0027] 1, sealing device; 2, pipe fixing frame; 3, straight rail; 4, car groove structure; 41, car groove frame; 42, first movement control structure; 43, car groove motor; 44, car groove disc; 45, first slot cutter; 46, second slot cutter; 44a, first sliding groove; 44b, second sliding groove; 5, hot melt sealing structure; 51, hot melt sealing frame; 52, high temperature heating device; 53, low temperature forming die; 531, forming die body; 532, forming groove; 54, lifting control structure; 55, second movement control structure; 6, first fixing structure; 7, second fixing structure; 8, pipe carrying structure; 81, movable seat; 82, air cylinder; 83, electric guide rail; 84, electric sliding block; 85, pipe supporting and lifting plate; 9, feeding structure; 10, discharging structure. DETAILED DESCRIPTION

[0028] In order to make the purpose, technical scheme and advantages of the utility model more clearly, the following will be further described in detail by combining with the drawings and specific embodiments. It should be understood that the specific embodiments described herein are only used to explain the utility model, and do not limit the protection scope of the utility model.

[0029] It should be noted that when an element is referred to as "fixed to", "provided on", "fixed on" or "arranged on" another element, it can be directly on another element or there can be a middle element. When an element is considered to be "connected" to another element, it can be directly connected to another element or there can be a middle element. Further, when an element is considered to be "fixedly connected" to another element, the two can be fixed in a detachable manner or fixed in a non-detachable manner, such as sleeving, clamping, integrally forming, welding, etc. which can be realized in the prior art, and will not be repeated here. When an element is perpendicular or approximately perpendicular to another element, it means that the ideal state of the two is perpendicular, but due to manufacturing and assembly, there can be a certain vertical error. The terms "perpendicular", "horizontal", "left", "right" and similar expressions used herein are only for the purpose of illustration and do not represent the only embodiment.

[0030] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the utility model belongs. The terms used in the specification of the utility model herein are only for the purpose of describing the specific embodiments and are not intended to limit the utility model. The term "and / or" used herein includes any and all combinations of one or more related listed items.

[0031] The "first", "second" in the utility model do not represent the specific number and order, but only for the purpose of distinguishing the name.

[0032] In combination with the drawings Figures 1-7 The steel wire mesh framework pipe sealing equipment provided by the present application comprises two sealing devices 1, a plurality of pipe fixing frames 2 arranged between the two sealing devices 1, and a linear track 3, wherein the sealing devices 1 and the pipe fixing frames 2 are slidably adjusted and fixed on the linear track 3 and can be fixed at any position of the linear track 3.

[0033] When the steel wire mesh framework pipe sealing equipment is used, the operator can adjust the distance between the two sealing devices 1 through the linear track 3, so as to facilitate the processing of pipes of different lengths, and the distance between the pipe fixing frames 2 can also be adjusted, which is helpful to realize the uniform support of the pipe and ensure the stability during processing.

[0034] As an optional scheme of the present application, the sealing device 1 comprises a base, a vehicle groove structure 4 and a hot melt sealing structure 5 arranged on the base, the vehicle groove structure 4 and the hot melt sealing structure 5 are respectively arranged on the horizontal two sides of the base, the connecting line between the vehicle groove structure 4 and the hot melt sealing structure 5 is perpendicular to the connecting line between the two sealing devices 1, the pipe fixing frame 2 is provided with a first fixing structure 6 and a second fixing structure 7, the vehicle groove structure 4 and the first fixing structure 6 are located on the same axis, the hot melt sealing structure 5 and the second fixing structure 7 are located on the same axis, when the pipe is fixed on the first fixing structure 6, the two ends of the pipe are processed by the vehicle groove structure 4, and when the pipe is fixed on the second fixing structure 7, the two ends of the pipe are processed by the hot melt sealing structure 5.

[0035] As an optional scheme of the present application, the first fixing structure 6 and the second fixing structure 7 are both supporting plates with grooves at the upper end, and the pipe placed in the arc-shaped groove can be supported by the supporting plate.

[0036] As an optional scheme of the utility model, the pipeline fixed frame 2 is equipped with a pipeline carrying structure 8, the pipeline carrying structure 8 is used to carry the pipeline on the first fixed structure 6 to the second fixed structure 7, the pipeline carrying structure 8 includes movable seat 81, is equipped in the pipeline fixed frame 2;At least one air cylinder 82 is used to control the lifting of movable seat 81, in order to realize the processing of heavier pipeline, the number of air cylinder 82 can be simultaneously provided with multiple;Electric guide rail 83 is horizontally installed on movable seat 81;At least one electric sliding block 84 is slidably assembled on electric guide rail 83;Pipeline supporting plate 85 is fixedly connected on electric sliding block 84, one pipeline supporting plate 85 is installed on each electric sliding block 84, the upper end of pipeline supporting plate 85 has a slot for supporting the pipeline;The pipeline fixed frame 2 has movable groove for the extension of pipeline supporting plate 85;The working principle of pipeline carrying structure 8 is that pipeline supporting plate 85 is lifted under the action of air cylinder 82, the pipeline on the first fixed structure 7 is lifted upwards and is moved to the position of second fixed structure 7 under the action of electric guide rail 83, at this time, pipeline supporting plate 85 is lowered under the action of air cylinder 82, and the pipeline can be placed on the second fixed structure 7.

[0037] As an optional scheme of the utility model, the pipeline carrying structure 8 is also equipped with feeding structure 9 and discharging structure 10, the feeding structure 9 includes feeding wheel frame arranged on one side of the pipeline fixed frame 2, the discharging structure 10 includes discharging inclined slide arranged on the other side of the pipeline fixed frame 2, the distance between feeding structure 9 and first fixed structure 6 is consistent with the distance between first fixed structure 6 and second fixed structure 7, the distance between discharging structure 10 and second fixed structure 7 is consistent with the distance between first fixed structure 6 and second fixed structure 7, a plurality of electric sliding blocks 84 are simultaneously assembled on electric guide rail 83, the distance between adjacent two electric sliding blocks 84 is also consistent with the distance between first fixed structure 6 and second fixed structure 7, so that when pipeline carrying structure 8 carries the pipeline from first fixed structure 6 to second fixed structure 7, the action of carrying the pipeline from feeding structure 9 to first fixed structure 6 and from second fixed structure 7 to discharging structure 10 can be simultaneously completed.

[0038] As an optional scheme of the utility model, the trough structure 4 includes a trough frame 41 and a first movement control structure 42 for pushing the trough frame 41 to move back and forth on the base, the trough frame 41 is installed with a trough motor 43, the output shaft of the trough motor 43 is horizontally arranged, the output shaft end of the trough motor 43 is installed with a trough disc 44, the trough disc 44 is vertically arranged, the trough disc 44 is installed with a first slotting cutter 45 and a second slotting cutter 46, the first slotting cutter 45 is used for cutting off the rubber at the end of the steel wire mesh framework pipe when rotating with the trough disc 44, the second slotting cutter 46 is used for cutting off the steel wire at the end of the steel wire mesh framework pipe when rotating with the trough disc 44, the first slotting cutter 45 is slidably adjusted and assembled in the first sliding groove 44a, and the second slotting cutter 46 is slidably adjusted and assembled in the second sliding groove 44b; through the above structural design, the sliding distance of the first slotting cutter 45 in the first sliding groove 44a and the sliding distance of the second slotting cutter 46 in the second sliding groove 44b can be adjusted, so that the first slotting cutter 45 and the second slotting cutter 46 adapt to the trough processing of steel wire mesh framework pipes of different sizes, different size slotting cutters do not need to be frequently replaced, and the sliding adjustment mode is convenient for operators to adjust.

[0039] As an optional scheme of the utility model, the first slotting cutter 45 and the second slotting cutter 46 are fixedly connected to the trough disc 44 through fasteners, the first fastener can be a bolt or other existing threaded connection structure, which can reduce the operation difficulty of the first slotting cutter 45 and the second slotting cutter 46 during installation, can ensure the connection strength of the first slotting cutter 45 and the second slotting cutter 46 after installation, and can prevent the first slotting cutter 45 and the second slotting cutter 46 from moving outward due to centrifugal force during high-speed rotation cutting, affecting the cutting effect.

[0040] As an optional scheme of the utility model, the hot melt sealing structure 5 includes hot melt sealing frame 51, the base is equipped with second movement control structure 55 for pushing hot melt sealing frame 51 moves back and forth, hot melt sealing frame 51 is equipped with high temperature heating device 52 and low temperature forming die 53, high temperature heating device 52 and low temperature forming die 53 cooperate to make the pipe end hot melt low temperature forming reach the purpose of sealing, low temperature forming die 53 is fixedly installed on hot melt sealing frame 51, the relative position of low temperature forming die 53 and hot melt sealing frame 51 always keeps fixed, high temperature heating device 52 is located in the front side of low temperature forming die 53, hot melt sealing frame 51 is equipped with lifting control structure 54 for controlling the lifting of high temperature heating device 52, lifting control structure 54 can select electric slide rail or cylinder structure, low temperature forming die 53 includes forming die body 531 and several forming grooves 532 arranged in concentric circles on forming die body 531, the pipe port of different diameters is inserted into the corresponding size forming groove 532 to be shaped and sealed, when high temperature heating device 52 is lowered to the front side of low temperature forming die 53 through lifting control structure, high temperature heating device 52 is used for hot melting the pipe end, after hot melting, lifting control structure controls the rising of high temperature heating device 52, and pushes hot melt sealing frame 51 forward through movement control structure to make low temperature forming die 53 abut with the pipe end after hot melting to seal; low temperature forming die 53 always moves back and forth in a fixed direction, and the radial position thereof relative to the pipe always keeps fixed, to ensure that the pipe end can be inserted into the corresponding forming groove 532 to be shaped and sealed stably, so that the sealing effect of low temperature forming die 53 and the pipe radial dislocation can be prevented.

[0041] As an optional scheme of the utility model, high temperature heating device 52 is a medium wave infrared hot melting device, the medium wave infrared hot melting device can heat and melt the pipe end without contacting the pipe, compared with electric heating plate heating, the material of the pipe after hot melting can be prevented from being bonded on high temperature heating device 52, specifically, the medium wave infrared hot melting device includes heat insulation plate and several medium wave infrared heating pipes installed on the heat insulation plate, the several medium wave infrared heating pipes are arranged side by side on the same side of the heat insulation plate, the heat insulation plate is located between the medium wave infrared heating pipe and low temperature forming die 53, the heat of the several medium wave infrared heating pipes can be used for heating and melting the pipe, and the heat insulation plate can prevent low temperature forming die 4 from being heated to affect the subsequent low temperature shaping effect.

[0042] As an optional scheme of the utility model, in order to facilitate the control of the distance between two sealing devices 1 and improve the machining precision, distance measuring structure for measuring the distance between the two sealing devices 1 is further included.

[0043] As an optional solution of the present invention, the first movement control structure 42 and the second movement control structure 55 are both cylinders or electric slide rails.

[0044] The above is a schematic description of the present invention and its embodiments, which is not restrictive. The drawings show only one embodiment of the present invention, and the actual structure is not limited thereto. Therefore, if a person skilled in the art is inspired by this and, without departing from the inventive purpose of the present invention, designs a structure and embodiment similar to the technical solution without inventiveness, they shall fall within the scope of protection of the present invention.

Claims

1. A wire mesh skeleton pipeline sealing device, characterized by: The invention comprises two sealing devices, a plurality of pipe fixing frames arranged between the two sealing devices, and a linear track. The sealing devices and the pipe fixing frames can be fixed on the linear track in a slidable and adjustable manner.

2. The wire mesh skeleton pipe sealing device according to claim 1, characterized in that: The sealing device includes a base, and a grooving structure and a hot-melt sealing structure arranged on the base. The pipe fixing frame is provided with a first fixing structure and a second fixing structure. The grooving structure and the first fixing structure are located on the same axis, and the hot-melt sealing structure and the second fixing structure are located on the same axis.

3. The wire mesh skeleton pipe sealing device according to claim 2, characterized in that: The pipeline fixing frame is provided with a pipeline conveying structure.

4. The wire mesh skeleton pipe sealing device according to claim 3, characterized in that: The pipeline handling structure includes A movable seat is arranged in the pipe fixing frame; At least one cylinder, used to control the lifting and lowering of the movable seat; An electric guide rail is installed on the movable seat; At least one electric slider slidably mounted on the electric guide rail; A pipeline lifting plate is fixedly connected to the electric slider; A pipeline lifting plate is installed on each of the electric slide blocks, and a movable groove for the pipeline lifting plate to extend is provided on the pipeline fixing frame.

5. The wire mesh skeleton pipeline sealing device according to claim 4, characterized in that: The pipeline transport structure is further provided with a loading structure and a unloading structure, and the electric guide rail is simultaneously equipped with a plurality of electric slide blocks.

6. The wire mesh skeleton pipe sealing device according to any one of claims 2 to 5, characterized in that: The trough structure includes a trough frame and a first moving control structure for pushing the trough frame to move forward and backward on the base. A trough motor is installed on the trough frame, and a trough disc is installed on the output shaft end of the trough motor. A first trough cutter and a second trough cutter are installed on the trough disc. The trough disc is provided with a first slide groove and a second slide groove along its radial direction. The first trough cutter can be slidably adjusted to be assembled in the first slide groove, and the second trough cutter can be slidably adjusted to be assembled in the second slide groove.

7. The wire mesh skeleton pipe sealing device according to any one of claims 2 to 5, characterized in that: The hot melt sealing structure includes a hot melt sealing frame, and the base is provided with a second movement control structure for pushing the hot melt sealing frame to move forward and backward. The hot melt sealing frame is provided with a high-temperature heating device and a low-temperature forming mold. The low-temperature forming mold is fixedly installed on the hot melt sealing frame, and the high-temperature heating device is provided on the front side of the low-temperature forming mold. The hot melt sealing frame is provided with a lifting control structure for controlling the lifting of the high-temperature heating device. The low-temperature forming mold includes a forming mold body and a plurality of forming grooves arranged in concentric circles on the forming mold body.

8. The wire mesh skeleton pipeline sealing device according to claim 7, characterized in that: The high-temperature heating device is a medium-wave infrared hot-melt device.

9. The wire mesh skeleton pipe sealing device according to any one of claims 1 to 5, characterized in that: It also includes a distance measuring structure for measuring the distance between the two sealing devices.

Citation Information

Patent Citations

  • End opening packaging device for steel wire mesh framework pipe

    CN114434784A