THERMAL DISPLACEMENT CORRECTION DEVICE OF MACHINE TOOL

PROBLEM TO BE SOLVED: To relatively accurately estimate a thermal displacement amount, in a thermal displacement correction device of a machine tool which estimates the thermal displacement amount of a structure of the machine tool, and corrects thermal displacement at a processing point.SOLUTION: A...

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Hauptverfasser: SAKURAI YASUTADA, SASAKI YUJI, IWAI HIDEKI
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Sprache:eng ; jpn
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creator SAKURAI YASUTADA
SASAKI YUJI
IWAI HIDEKI
description PROBLEM TO BE SOLVED: To relatively accurately estimate a thermal displacement amount, in a thermal displacement correction device of a machine tool which estimates the thermal displacement amount of a structure of the machine tool, and corrects thermal displacement at a processing point.SOLUTION: A thermal displacement correction device 90 of a machine tool 1 comprises: a temperature sensor 70 which detects a representative temperature and a non-representative temperature of a structure of the machine tool 1; a standard temperature acquisition part 91 which acquires a standard representative temperature being a representative temperature by the sensor 70 when the structure is in a standard state, and a standard non-representative temperature being a non-representative temperature in the case that a state that a shape of the structure is within a range of a prescribed geometric tolerance is designated as the standard state of the structure when the representative temperature is a prescribed temperature; a reference temperature derivation part 92 which derives the standard non-representative temperature as a reference non-representative temperature when the structure is in the standard state, and the standard representative temperature is a prescribed temperature; and an FEM analysis part 95 which performs a structural analysis in a finite element method with the reference non-representative temperature which is derived by the reference temperature derivation part 92 as a reference temperature.SELECTED DRAWING: Figure 2 【課題】工作機械の構造体の熱変位量を推定し、加工点における熱変位を補正する工作機械の熱変位補正装置において、熱変位量の推定を比較的高精度に行うことを目的とする。【解決手段】工作機械1の熱変位補正装置90は、工作機械1の構造体の代表温度および非代表温度を検出する温度センサ70と、代表温度が所定温度である時に、構造体の形状が所定の幾何公差の範囲内となる状態を構造体の標準状態と定義する場合、構造体が標準状態であるときの代表温度である標準代表温度および非代表温度である標準非代表温度を、温度センサ70によって取得する標準温度取得部91と、構造体が標準状態であり、かつ、標準代表温度が所定温度であるときの標準非代表温度を基準非代表温度として導出する基準温度導出部92と、基準温度導出部92によって導出された基準非代表温度を基準温度として、有限要素法における構造解析を行うFEM解析部95と、備えている。【選択図】 図2
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a standard temperature acquisition part 91 which acquires a standard representative temperature being a representative temperature by the sensor 70 when the structure is in a standard state, and a standard non-representative temperature being a non-representative temperature in the case that a state that a shape of the structure is within a range of a prescribed geometric tolerance is designated as the standard state of the structure when the representative temperature is a prescribed temperature; a reference temperature derivation part 92 which derives the standard non-representative temperature as a reference non-representative temperature when the structure is in the standard state, and the standard representative temperature is a prescribed temperature; and an FEM analysis part 95 which performs a structural analysis in a finite element method with the reference non-representative temperature which is derived by the reference temperature derivation part 92 as a reference temperature.SELECTED DRAWING: Figure 2 【課題】工作機械の構造体の熱変位量を推定し、加工点における熱変位を補正する工作機械の熱変位補正装置において、熱変位量の推定を比較的高精度に行うことを目的とする。【解決手段】工作機械1の熱変位補正装置90は、工作機械1の構造体の代表温度および非代表温度を検出する温度センサ70と、代表温度が所定温度である時に、構造体の形状が所定の幾何公差の範囲内となる状態を構造体の標準状態と定義する場合、構造体が標準状態であるときの代表温度である標準代表温度および非代表温度である標準非代表温度を、温度センサ70によって取得する標準温度取得部91と、構造体が標準状態であり、かつ、標準代表温度が所定温度であるときの標準非代表温度を基準非代表温度として導出する基準温度導出部92と、基準温度導出部92によって導出された基準非代表温度を基準温度として、有限要素法における構造解析を行うFEM解析部95と、備えている。【選択図】 図2</description><language>eng ; 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a standard temperature acquisition part 91 which acquires a standard representative temperature being a representative temperature by the sensor 70 when the structure is in a standard state, and a standard non-representative temperature being a non-representative temperature in the case that a state that a shape of the structure is within a range of a prescribed geometric tolerance is designated as the standard state of the structure when the representative temperature is a prescribed temperature; a reference temperature derivation part 92 which derives the standard non-representative temperature as a reference non-representative temperature when the structure is in the standard state, and the standard representative temperature is a prescribed temperature; and an FEM analysis part 95 which performs a structural analysis in a finite element method with the reference non-representative temperature which is derived by the reference temperature derivation part 92 as a reference temperature.SELECTED DRAWING: Figure 2 【課題】工作機械の構造体の熱変位量を推定し、加工点における熱変位を補正する工作機械の熱変位補正装置において、熱変位量の推定を比較的高精度に行うことを目的とする。【解決手段】工作機械1の熱変位補正装置90は、工作機械1の構造体の代表温度および非代表温度を検出する温度センサ70と、代表温度が所定温度である時に、構造体の形状が所定の幾何公差の範囲内となる状態を構造体の標準状態と定義する場合、構造体が標準状態であるときの代表温度である標準代表温度および非代表温度である標準非代表温度を、温度センサ70によって取得する標準温度取得部91と、構造体が標準状態であり、かつ、標準代表温度が所定温度であるときの標準非代表温度を基準非代表温度として導出する基準温度導出部92と、基準温度導出部92によって導出された基準非代表温度を基準温度として、有限要素法における構造解析を行うFEM解析部95と、備えている。【選択図】 図2</description><subject>COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOTDIRECTED TO A PARTICULAR RESULT</subject><subject>CONTROL OR REGULATING SYSTEMS IN GENERAL</subject><subject>CONTROLLING</subject><subject>DETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g.ARRANGEMENTS FOR COPYING OR CONTROLLING</subject><subject>FUNCTIONAL ELEMENTS OF SUCH SYSTEMS</subject><subject>MACHINE TOOLS</subject><subject>MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OFPARTICULAR DETAILS OR COMPONENTS</subject><subject>METAL-WORKING NOT OTHERWISE PROVIDED FOR</subject><subject>MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS ORELEMENTS</subject><subject>PERFORMING OPERATIONS</subject><subject>PHYSICS</subject><subject>REGULATING</subject><subject>TRANSPORTING</subject><fulltext>true</fulltext><rsrctype>patent</rsrctype><creationdate>2017</creationdate><recordtype>patent</recordtype><sourceid>EVB</sourceid><recordid>eNrjZDAL8XAN8nX0UXDxDA7wcXR29XX1C1Fw9g8KcnUO8fT3U3BxDfN0dlXwd1PwdXT28PRzVQjx9_fhYWBNS8wpTuWF0twMSm6uIc4euqkF-fGpxQWJyal5qSXxXgFGBobmBhbmJgamjsZEKQIAXk0oSw</recordid><startdate>20170525</startdate><enddate>20170525</enddate><creator>SAKURAI YASUTADA</creator><creator>SASAKI YUJI</creator><creator>IWAI HIDEKI</creator><scope>EVB</scope></search><sort><creationdate>20170525</creationdate><title>THERMAL DISPLACEMENT CORRECTION DEVICE OF MACHINE TOOL</title><author>SAKURAI YASUTADA ; 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a standard temperature acquisition part 91 which acquires a standard representative temperature being a representative temperature by the sensor 70 when the structure is in a standard state, and a standard non-representative temperature being a non-representative temperature in the case that a state that a shape of the structure is within a range of a prescribed geometric tolerance is designated as the standard state of the structure when the representative temperature is a prescribed temperature; a reference temperature derivation part 92 which derives the standard non-representative temperature as a reference non-representative temperature when the structure is in the standard state, and the standard representative temperature is a prescribed temperature; and an FEM analysis part 95 which performs a structural analysis in a finite element method with the reference non-representative temperature which is derived by the reference temperature derivation part 92 as a reference temperature.SELECTED DRAWING: Figure 2 【課題】工作機械の構造体の熱変位量を推定し、加工点における熱変位を補正する工作機械の熱変位補正装置において、熱変位量の推定を比較的高精度に行うことを目的とする。【解決手段】工作機械1の熱変位補正装置90は、工作機械1の構造体の代表温度および非代表温度を検出する温度センサ70と、代表温度が所定温度である時に、構造体の形状が所定の幾何公差の範囲内となる状態を構造体の標準状態と定義する場合、構造体が標準状態であるときの代表温度である標準代表温度および非代表温度である標準非代表温度を、温度センサ70によって取得する標準温度取得部91と、構造体が標準状態であり、かつ、標準代表温度が所定温度であるときの標準非代表温度を基準非代表温度として導出する基準温度導出部92と、基準温度導出部92によって導出された基準非代表温度を基準温度として、有限要素法における構造解析を行うFEM解析部95と、備えている。【選択図】 図2</abstract><oa>free_for_read</oa></addata></record>
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subjects COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOTDIRECTED TO A PARTICULAR RESULT
CONTROL OR REGULATING SYSTEMS IN GENERAL
CONTROLLING
DETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g.ARRANGEMENTS FOR COPYING OR CONTROLLING
FUNCTIONAL ELEMENTS OF SUCH SYSTEMS
MACHINE TOOLS
MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OFPARTICULAR DETAILS OR COMPONENTS
METAL-WORKING NOT OTHERWISE PROVIDED FOR
MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS ORELEMENTS
PERFORMING OPERATIONS
PHYSICS
REGULATING
TRANSPORTING
title THERMAL DISPLACEMENT CORRECTION DEVICE OF MACHINE TOOL
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