CN218701417U - Bead entering tool for pipeline - Google Patents

Bead entering tool for pipeline Download PDF

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Publication number
CN218701417U
CN218701417U CN202222467490.9U CN202222467490U CN218701417U CN 218701417 U CN218701417 U CN 218701417U CN 202222467490 U CN202222467490 U CN 202222467490U CN 218701417 U CN218701417 U CN 218701417U
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China
Prior art keywords
pipeline
moving
guide sleeve
tool
mounting port
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Active
Application number
CN202222467490.9U
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Chinese (zh)
Inventor
吴平
张茂斌
卢锦重
蔡剑华
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Fujian Jp Solar Co ltd
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Fujian Jp Solar Co ltd
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Priority to CN202222467490.9U priority Critical patent/CN218701417U/en
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Abstract

The utility model provides a pipeline bead-entering tool, which comprises a pipeline fixing part, a guide sleeve embedded pin moving part and a moving feed control part, wherein the pipeline fixing part, the guide sleeve embedded pin moving part and the moving feed control part are arranged on a base; the pipeline fixing part is provided with a pipeline mounting port, and the guide sleeve embedding pin moving part is provided with a guide sleeve embedding pin mounting port; the pipeline mounting port and the guide sleeve embedding pin mounting port are linearly distributed; the moving feed control member is connected to the guide bush fitting pin moving member to control the feed amount and feed force of the guide bush fitting pin moving member. By the pipeline bead-loading tool, the embedding guide sleeve is quickly embedded into the pipeline under the condition of no heating, so that quick cold bead loading is realized, and the maximum plasticity and elasticity of the pipeline and the sealing property of the installed interface are ensured; meanwhile, the operation time is saved, and the operation safety is ensured.

Description

Bead entering tool for pipeline
Technical Field
The utility model relates to a pearl frock is gone into to pipeline.
Background
PFA (also called as cloned polytetrafluoroethylene) is used as a special plastic material, and is often used in the industries of semiconductors, solar energy, liquid crystal panels, or other industries requiring ultra-pure fluids for liquid medicine delivery due to its excellent properties such as corrosion resistance (especially concentrated sulfuric acid, concentrated hydrochloric acid, and concentrated nitric acid), wear resistance, high and low temperature resistance (-200 to-260 ℃), and good sealing property. The PFA pipeline is connected and arranged by PFA joints in use. The PFA joint mainly has two sealing modes, namely a flared joint seal and a bead-in joint seal. The pipeline is all filled in with dedicated embedding guide pin bushing to two kinds of sealed modes, and wherein the flared type is through filling in the guide pin bushing to heating pipeline after making its inflation, goes into the pearl formula and fills in the pipeline with embedding guide pin bushing through frock and supporting.
At present most use heating method to make the pipeline be heated after the inflation and will go into pearl formula embedding guide pin bushing again and fill in the pipeline fast, wait again that the shrink reaches and go into the pearl purpose after the pipeline cooling, consuming time and wasting power, and can release toxic gas after some special pipeline heats, threatens personnel's safety, and some special pipeline characteristics can change after the heating and lead to the leakproofness variation. The strength and the sealing effect of the pipeline after the pipeline is installed can not reach the ideal effect, and the situation that the liquid medicine leaks to the outside of the pipeline occurs.
Disclosure of Invention
For solving the problem that prior art exists, the utility model provides a pearl frock is gone into to pipeline uses the pipeline to go into pearl frock and realizes the quick cold pearl of packing into under the condition of not being heated, has guaranteed the biggest plasticity and the elasticity of pipeline to and the leakproofness of installation back kneck.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the pipeline bead entering tool is characterized by comprising a pipeline fixing part, a guide sleeve embedded pin moving part and a moving feed control part, wherein the pipeline fixing part, the guide sleeve embedded pin moving part and the moving feed control part are arranged on a base; the pipeline fixing part is provided with a pipeline mounting port, and the guide sleeve embedding pin moving part is provided with a guide sleeve embedding pin mounting port; the pipeline mounting port and the guide sleeve embedding pin mounting port are linearly distributed; the moving feed control member is connected to the guide bush fitting pin moving member to control the feed amount and feed force of the guide bush fitting pin moving member.
Preferably, the pipe fixing member further comprises a pipe clamping mechanism for locking and fixing the pipe.
Preferably, the pipe clamping mechanism is one of a pipe hoop and a hoop.
Preferably, the guide bush fitting pin moving means includes a slide mechanism and a slide accuracy control mechanism fixed to the slide mechanism.
Preferably, the sliding mechanism comprises a rail fixed on the base and a sliding block matched with the rail.
Preferably, the sliding precision control mechanism comprises a rack fixed on the sliding mechanism and a gear matched with the rack, and the guide sleeve embedding pin mounting opening is formed in the tail end of the rack.
Preferably, the moving feed control part is a manual feed control part or an automatic feed control part.
Preferably, the manual feeding control component is an operation rocker, and the moving feeding direction is controlled by the shaking direction of the operation rocker; the moving feeding force is compensated by adjusting the length of the handle of the operating rocker.
Preferably, the automatic feeding control part is a servo motor; the moving feed amount and the feed force control the automatic feeding movement through a servo motor.
Compared with the prior art, the utility model discloses following beneficial effect has:
the utility model provides a pipeline goes into pearl frock, through pipeline fixed part, guide pin bushing embedding round pin moving part and removal feed control part mutually support, under the unheated condition, imbed the guide pin bushing and imbed the pipeline fast, realize that quick cold packs into the pearl, guaranteed the maximum plasticity and the elasticity of pipeline, and the department leakproofness of the interface after the installation; meanwhile, the operation time is saved, and the operation safety is ensured.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of this application, are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. In the drawings:
fig. 1 is a schematic structural view of a bead-entering tool for a pipeline according to an embodiment of the present invention;
fig. 2 is a schematic view of a process of loading beads into a pipeline beader according to an embodiment of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
A pipeline bead entering tool comprises a pipeline fixing part, a guide sleeve embedded pin moving part and a moving feed control part, wherein the pipeline fixing part, the guide sleeve embedded pin moving part and the moving feed control part are arranged on a base; the pipeline fixing part is provided with a pipeline mounting port, and the guide sleeve embedding pin moving part is provided with a guide sleeve embedding pin mounting port; the pipeline mounting port and the guide sleeve embedding pin mounting port are linearly distributed; the moving feed control member is connected to the guide bush fitting pin moving member to control the feed amount and feed force of the guide bush fitting pin moving member.
Wherein, the pipeline fixing part also comprises a pipeline clamping mechanism for locking and fixing the pipeline. The pipeline clamping mechanism is one of a pipe hoop or a hoop.
The guide sleeve embedding pin moving component comprises a sliding mechanism and a sliding precision control mechanism fixed on the sliding mechanism. The sliding mechanism comprises a track fixed on the base and a sliding block matched with the track. The sliding precision control mechanism comprises a rack fixed on the sliding mechanism and a gear matched with the rack, and a guide sleeve embedding pin mounting hole is formed in the tail end of the rack and used for mounting a guide sleeve embedding pin.
The moving feeding control part is a manual feeding control part or an automatic feeding control part. The manual feeding control component is an operation rocker, and the moving feeding direction is controlled by the shaking direction of the operation rocker; the moving feeding force is compensated by adjusting the length of the handle of the operating rocker. The automatic feeding control part is a servo motor; the moving feed amount and the feed force control the automatic feeding movement through a servo motor.
Example 1
As shown in fig. 1, a pipe bead-entering tool comprises a pipe fixing part 1, a guide sleeve embedded pin moving part 2 and a moving feed control part on a base; the pipeline fixing component 1 is provided with a pipeline mounting opening 11 and a pipeline clamping mechanism 12 for locking and fixing the pipeline. The pipe clamp mechanism 12 is a pipe clamp. The guide bush fitting pin moving member 2 includes a slide mechanism 21 and a slide accuracy control mechanism 22 fixed to the slide mechanism 21. The sliding mechanism 21 comprises a track 21-1 fixed on the base and a slide block 21-2 matched with the track. The sliding precision control mechanism 22 comprises a rack 22-1 fixed on the sliding block 21-2 and a gear 22-2 matched with the rack 22-1, and meanwhile, the tail end of the rack is provided with a guide sleeve embedding pin mounting opening 22-1-1.
The moving feed control part is a manual feed control part, the manual feed control part is an operation rocker 31, the operation rocker 31 is connected with the gear 22-2, and the gear 22-2 is driven to rotate by operating the rocker 31 so as to drive the rack 22-1 to move. The moving feed direction of the rack 22-1 is controlled by operating the rocking direction of the rocker 31; the moving feeding force is compensated by adjusting the length of the handle of the operating rocker.
The cooling and bead entering process of the pipeline bead entering tool comprises the following steps: as shown in fig. 2, firstly, a pipeline a01 is installed on a pipeline installation opening 11, and the pipeline a01 is clamped and fixed by a pipeline clamping mechanism pipe hoop 12; then, a guide sleeve embedding pin A02 for installation is installed on a guide sleeve embedding pin installation opening 22-1-1 at the tail end of the rack 22-1 and is tightly pressed by a screw. The bead-entering embedded guide sleeve A03 is sleeved on the guide sleeve embedding pin A02, the embedded guide sleeve A03 and the pipeline A01 are in the same straight line, then the operation rocker 31 is operated manually, the operation rocker 31 drives the gear 22-2 to rotate, the rack 22-1 is pushed to move towards the pipeline A01 by matching with the rail 21-1 and the slider 21-2, the embedded guide sleeve A03 is driven to slowly approach the pipeline A01, then the feeding force is controlled to push by operating the rocker 31, the embedded guide sleeve A03 is embedded into the pipeline A01, and accurate cooling and rapid bead entering are achieved.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the invention, and any modifications, equivalents and improvements made within the spirit and principle of the present invention are intended to be included within the scope of the present invention.

Claims (9)

1. The utility model provides a pearl frock is gone into to pipeline which characterized in that: the pipeline bead entering tool comprises a pipeline fixing part, a guide sleeve embedding pin moving part and a moving feed control part, wherein the pipeline fixing part, the guide sleeve embedding pin moving part and the moving feed control part are arranged on a base; the pipeline fixing part is provided with a pipeline mounting port, and the guide sleeve embedding pin moving part is provided with a guide sleeve embedding pin mounting port; the pipeline mounting port and the guide sleeve embedding pin mounting port are linearly distributed; the moving feed control member is connected to the guide bush fitting pin moving member to control the feed amount and feed force of the guide bush fitting pin moving member.
2. The tool for putting the pipeline into the bead according to claim 1, further characterized in that: the pipeline fixing part also comprises a pipeline clamping mechanism for locking and fixing the pipeline.
3. The tool for putting the pipeline into the bead as claimed in claim 2, further characterized in that: the pipeline clamping mechanism is one of a pipe hoop or a hoop.
4. The tool for putting the pipeline into the bead according to claim 1, further characterized in that: the guide sleeve embedding pin moving component comprises a sliding mechanism and a sliding precision control mechanism fixed on the sliding mechanism.
5. The tool for putting the pipeline into the bead according to claim 4, further characterized in that: the sliding mechanism comprises a track fixed on the base and a sliding block matched with the track.
6. The tool for putting the pipeline into the bead according to claim 4, further characterized in that: the sliding precision control mechanism comprises a rack fixed on the sliding mechanism and a gear matched with the rack, and a guide sleeve embedding pin mounting port is arranged at the tail end of the rack.
7. The tool for putting the pipeline into the bead according to claim 1, further characterized in that: the moving feeding control part is a manual feeding control part or an automatic feeding control part.
8. The tool for putting the pipeline into the bead according to claim 7, further characterized in that: the manual feeding control component is an operation rocker, and the moving feeding direction is controlled by the shaking direction of the operation rocker; the moving feeding force is compensated by adjusting the length of the handle of the operating rocker.
9. The tool for putting the pipeline into the bead according to claim 7, further characterized in that: the automatic feeding control part is a servo motor; the moving feed amount and the feed force control the automatic feeding movement through a servo motor.
CN202222467490.9U 2022-09-19 2022-09-19 Bead entering tool for pipeline Active CN218701417U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222467490.9U CN218701417U (en) 2022-09-19 2022-09-19 Bead entering tool for pipeline

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222467490.9U CN218701417U (en) 2022-09-19 2022-09-19 Bead entering tool for pipeline

Publications (1)

Publication Number Publication Date
CN218701417U true CN218701417U (en) 2023-03-24

Family

ID=85636093

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222467490.9U Active CN218701417U (en) 2022-09-19 2022-09-19 Bead entering tool for pipeline

Country Status (1)

Country Link
CN (1) CN218701417U (en)

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