• Title/Summary/Keyword: 파이프 절단

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Measurement and verification of pipe cutting power using Labview software (Labview 소프트웨어를 활용한 파이프 절단 파워 측정 및 검증)

  • Jang, Tae-ho;Kim, Youngshik;Jang, Tae-soo;Ryu, Bong-Jo
    • Journal of Digital Contents Society
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    • v.18 no.7
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    • pp.1387-1391
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    • 2017
  • Cutting power estimation can be used to select appropriate actuators in the design process of machine tools. Therefore, accurate estimation of cutting power is an important part of the design process. In this study, pipe cutting power is first calculated theoretically using the slotting cutting power equation and then verified experimentally. In this case, a pipe cutting machine is used to cut two pipes made of different materials. Power consumptions in the motor during pipe cutting are measured by using the embedded software, Labview, and NI hardware. The slotting cutting power equation can thus be confirmed easily comparing theoretically calculated cutting powers with experimentally measured cutting powers. The pipe materials used in this study are SUS304 and AL6N01. The specific cutting power of AL6N01 material is proposed through our cutting experiment. As a result, this cutting power can be used to design machining tools for AL6N01 material.

A Study on the Design of the Automatic Cutting Mechanism of the Perforation Pipes in an Automobile Muffler (차량 소음기용 다공파이프 자동절단 메커니즘 설계에 관한 연구)

  • Kim, Yong-Seok;Jeong, Chan-Se;Yang, Soon-Young
    • Journal of the Korean Society of Manufacturing Technology Engineers
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    • v.20 no.3
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    • pp.350-356
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    • 2011
  • In this paper, we proposed the automatic cutting mechanism of the perforation pipes in an automobile muffler. This cutting mechanism makes continuous work possible, because it performs the batch work via the sequential operation of loading, feeding, cutting, and discharging. The proposed cutting mechanism consists of the frame unit, escape unit, turning unit, feeding unit, vision system, clamping unit, spindle/cutting unit and cooling unit. And, these mechanisms have been modularized through mechanical, dynamical and structural optimized design using the SMO (SimDesigner Motion) analysis module. Also, the virtual prototype was carried out using the 3-D CAD program. The cutting process cycle is performed in the order of loading, vision processing, feeding, clamping, cutting and discharging. And the cycle time for cutting one piece was designed to be completed in four seconds.

A Study on the Selection of Cutting Conditions in High Speed Pipe Cutting Machine (고속 파이프 절단기의 절단 조건 선정에 관한 연구)

  • Ahn, Sung-Hwan;Shin, Sang-Hun;Lee, Choon-Man
    • Transactions of the Korean Society of Machine Tool Engineers
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    • v.17 no.1
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    • pp.144-149
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    • 2008
  • This study presents the selection of cutting conditions in high speed pipe cutting machine for the better quality. A high speed pipe cutting machine which uses a rotary knife can make good quality products in short time. But, the machine is much sensitive by cutting conditions because of the complicated mechanism. In this reason, many experiments for cutting condition selection are necessary to improve quality of production. This study carried out cutting experiments with the three factors that are cutting RPM, cutting force and pooling force. 2-dimensional profile measuring instrument is used to measure which is represented by ${\Delta}h$, a sum of burr and collapse height. The effects of factors are analyzed by using MINITAB, the commercial software.

Development of Automatic 3-Axis Pipe Profile-Cutting System with Bevelling of Welds Using PLC (PLC를 이용하여 궤적절단과 동시에 용접부 개선이 가능한 자동 3축 파이프 형상절단 시스템 개발)

  • Lho, Tae-Jung;Kim, Hwa-Il
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.10 no.11
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    • pp.3066-3073
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    • 2009
  • Joint paths of master and branch pipes are induced mathematically for many kinds of joint patterns between both pipes in 3-axis pipe profile-cutting machines. By compensating them with a kerf width, the real cutting paths are determined, and their CL-data are generated, and the tool paths generated by CL-data are verified by a ghost function. A bevelling of welds is implemented through tilting a cutting torch in the $\beta$-axis direction for 8 sections in the chuck rotation of $\alpha$-axis. A PLC controls simultaneously position and velocity in a real time for $\alpha$, X, $\beta$-axis by loading CL-data generated. We developed the PLC-controlled 3-axis pipe profile-cutting system which can cut a master or branch pipe along the cutting path and simultaneously do a bevelling process.

A Study on Performance Evaluation of 3-Axis Pipe Profile-Cutting Machine (3축 파이프 형상 절단기의 성능평가에 관한 연구)

  • Lho, Tae-Jung;Lee, Wook-Jin;Kim, Hwa-Il
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.11 no.6
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    • pp.1955-1960
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    • 2010
  • A performance of CNC 3-axis pipe profile-cutting machine we developed was evaluated by measuring and verifying a positioning accuracy of its feeding unit and a cutting shape accuracy of pipe workpiece. The positioning accuracy was verified by comparing moving distance actuated by PLC motion controller with actual one measured by a laser interferometer. The cutting shape accuracy was also verified by comparing a cutting shape obtained through scanning and 3D modeling the pipe workpiece with that through CL data.

Implementation of CAM Program for 6-Axis CNC Pipe Coaster (6축 CNC 파이프 코스터 전용 CAM 프로그램 구현)

  • Lho, Tae-Jung;Lee, Wook-Jin
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.10 no.9
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    • pp.2202-2209
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    • 2009
  • Joint paths are induced mathematically for many kinds of joint pattern between master- and sub-pipes. By compensating them with root gap of welds and kerf width, real cutting paths are determined. Their NC codes are generated, and the paths generated by NC code are verified by a ghost function. A beveling is implemented through tilting a torch in the A- and B-axis direction for 8 sections in the chuck rotation of C-axis. The effective CAM program was developed specially for 6-axis CNC pipe coasters which cut a master or sub- pipe along the cutting path and simultaneously fulfill a beveling process.

A Study on the development of transfer system of cutting punched pipes. (타공파이프 절단을 위한 이송시스템 개발에 관한 연구)

  • Park, J.S.;Yoon, D.H.;Jung, C.S.;Kim, Y.S.;Yang, S.Y.
    • 유공압시스템학회:학술대회논문집
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    • 2010.06a
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    • pp.66-69
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    • 2010
  • A punched pipe in a muffler for an automobile has many important variables, like location of holes in the pipe and length of the pipe related to noise reduction of a diffuser. This pipe is cut depending on length of product and this process, generally workers cut pipes by hands. In this process, there are many errors and it relies on the skill of workers, so it can happen that cycle time for complete product gets long and productivity gets low. Therefore, we need a vision system to distinguish holes in the punched pipe and a transfer system to set the cutting position automatically by moving the pipe depending on forward and backward part of the holes. This paper explains the development of an automatic transfer device which will cause the beating pipe to be cut correctly, exactly the same length as the product.

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A study for weldability of stainless steel using fiber laser (스테인리스강의 화이버 레이저 용접성 연구)

  • Lee, Mok-Young;Dong, Hyun-Woo;Lee, Heung-Gyu;Eun, Seong-Su
    • Proceedings of the KWS Conference
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    • 2009.11a
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    • pp.120-120
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    • 2009
  • 스테인리스강은 내식성이 우수하여 열교환기, 화학플랜트 등 부식환경의 구조물 혹은 파이프에 널리 사용되고 있다. 스테인리스 파이프 제조에 사용되는 용접방법은 주로 GTA 용접이 적용되고 있는데, 이 방법은 용접부 품질은 우수하지만 용접 생산성이 늦은 단점이 있다. 또한 이상스테인리스 등과 같은 특수한 용도의 스테인리스 강은 기존의 용접으로는 용접부 성능 확보가 어렵다. 레이저는 고밀도로 집속되고 직진성이 우수한 일종의 빛으로 용접/절단 등 금속 혹은 비금속의 가공에 널리 사용되고 있다. 레이저 용접의 장점은 비접촉으로 용접이 가능하고, 용접 속도가 매우 빠르고, 용접이 가능한 소재의 종류 혹은 두께의 제약이 적고, 용접부가 작아 변형이 적다는 것이다. 이러한 장점으로 인하여 자동차산업에 적용이 급격히 증가하였으며, 최근에는 다양한 분야에 적용이 추진되고 있다. 본 발표에서는 스테인리스강의 파이프 제조 공정에 레이저용접을 적용하기 위한 기초 연구를 수행하였다. 사용된 소재는 오스테나이트계 및 이상스테인리스강이었으며, 용입특성, 용접부 기계적 특성 등을 알아 보았으며, 열처리에 따른 특성 변화를 평가하였다.

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