서지주요정보
Toolpath generation and verification for optimal machining of sculptured surface = 자유곡면의 최적가공을 위한 공구경로의 생성과 검증
서명 / 저자 Toolpath generation and verification for optimal machining of sculptured surface = 자유곡면의 최적가공을 위한 공구경로의 생성과 검증 / Chan-Bong Kim.
발행사항 [대전 : 한국과학기술원, 1995].
Online Access 원문보기 원문인쇄

소장정보

등록번호

8005903

소장위치/청구기호

학술문화관(문화관) 보존서고

DME 95026

휴대폰 전송

도서상태

이용가능(대출불가)

사유안내

반납예정일

리뷰정보

초록정보

This thesis suggests a new methods for the generation of the toolpath and the verification of the NC code. To generate toolpath for rough cutting, the offset surface is generated from the Z-map. To generate the offset surface from Z-map, the triangular faces are used. After obtaining the offset surface, comparing the offset surface and the height of rough machining area determines the rough machining area. This thesis uses three inclination angles (x-axis parallel, y-axis parallel, major- axis parallel ) and three machining methods (one-way milling, zigzag milling, hybrid milling) to evaluate the toolpath for rough cutting. The objective function is proposed to select the optimal toolpath. Since the tool life in down-milling and up-milling is considerably different from each other, tool life is considered separately in the objective function. When 9 candidate toolpath patterns are given, the most effective toolpath for rough cutting is selected by using the objective function. In this research, the bi-arc interpolation is used to improve surface roughness and productivity. Using the by-arc interpolation, the workpiece can be produced by circular interpolation only. The surface roughness of bi-arc interpolation is better than that of linear interpolation. This paper describes the geometric verification as well as manual & automatic editing. The new method is proposed to quickly find out and easily edit the errors. The verification system developed in this research displays the texts of the NC code and the graphics of toolpath at the same time. Furthermore, in the case that it is impossible to verify the toolpath by the manual editing, the verification system presents the automatic editing. In the automatic editing, the NC codes causing the overact are updated first, and then NC codes for undercut are regenerated. This study represents the non-dimensional cutting force model. With non-dimensional cutting force model it is possible to estimate efficiently the maximum cutting force during one revolution of cutter. Using the non-dimensional cutting force model, the feed rate and spindle speed are adjusted so as to satisfy the maximum cutting force and maximum machining error. To verify the accuracy and efficiency of the non-dimensional cutting force model, a series of experiments were conducted, and experimental results proved and verified the non-dimensional cutting force model. Methodology has been implemented in a system called NCART. The NCART system was implemented on a pentium PC with the aid of MS-Windows. The various capabilities of MS-Windows were used to develop the NCART system, so that a novice could use the software. The NCART can be used to machine automotive, aerospace and die and mold effectively.

서지기타정보

서지기타정보
청구기호 {DME 95026
형태사항 xii, 143 p. : 삽화 ; 26 cm
언어 영어
일반주기 저자명의 한글표기 : 김찬봉
지도교수의 영문표기 : Yang-Min Yang
지도교수의 한글표기 : 양민양
학위논문 학위논문(박사) - 한국과학기술원 : 기계공학과,
서지주기 Reference : p. 136-143
QR CODE

책소개

전체보기

목차

전체보기

이 주제의 인기대출도서