Thermal displacement correction method and thermal placement correction apparatus of machine tool

US2020230764A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2020230764-A1
Application numberUS-201916726399-A
CountryUS
Kind codeA1
Filing dateDec 24, 2019
Priority dateJan 21, 2019
Publication dateJul 23, 2020
Grant date

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  1. Title

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  4. Key dates

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  5. First independent claim

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Abstract

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A method includes four steps, (1) setting an initial tool temperature, (2) estimating a temperature of a tool or a position measurement sensor based on the initial tool temperature and a temperature of a spindle, (3) estimating an amount of thermal displacement of the tool or the position measurement sensor with a preliminarily set tool thermal displacement estimation formula based on the estimated temperature, and (4) moving a feed shaft of the machine tool based on the estimated amount of thermal displacement to perform a correction. In the second step, the temperature of the spindle is measured, then a tool-mounted portion temperature of the spindle from the measured temperature is estimated. Further, the temperature of the tool or the position measurement sensor is estimated with the tool-mounted portion temperature, the initial tool temperature of the tool or the position measurement sensor, and the preliminarily set tool temperature estimation formula.

First claim

Opening claim text (preview).

What is claimed is: 1 . A thermal displacement correction method for a machine tool including a tool-mounted portion and a spindle, a tool or a position measurement sensor being removably attachable to the tool-mounted portion, the spindle being rotatable with the tool mounted, the method comprising: setting an initial tool temperature of the tool or the position measurement sensor at a time point when the tool or the position measurement sensor is mounted to the spindle using any information of a use history of the tool or the position measurement sensor, a temperature of the tool or the position measurement sensor before the tool or the position measurement sensor is mounted to the spindle, a body temperature of the machine tool, and an ambient temperature of the machine tool; estimating a temperature of the tool or the position measurement sensor based on the initial tool temperature and a temperature of the spindle; estimating an amount of thermal displacement of the tool or the position measurement sensor with a preliminarily set tool thermal displacement estimation formula depending on the temperature estimated at the preceded estimating; and moving a feed shaft of the machine tool based on the estimated amount of thermal displacement to perform a correction, wherein the temperature of the spindle is measured by a temperature sensor mounted to the spindle, then a tool-mounted portion temperature of the spindle is estimated from the measured temperature of the spindle and a tool-mounted portion temperature estimation formula being set differently depending on whether the spindle rotates or stops, and the temperature of the tool or the position measurement sensor is estimated with the tool-mounted portion temperature, the initial tool temperature of the tool or the position measurement sensor, and the preliminarily set tool temperature estimation formula. 2 . The thermal displacement correction method for the machine tool according to claim 1 , wherein the tool-mounted portion temperature estimation formula is set to have respective different formulae depending on whether a tool exchange is performed and whether the tool is mounted to the spindle after the rotating spindle is stopped. 3 . The thermal displacement correction method for the machine tool according to claim 1 , wherein the tool-mounted portion temperature estimation formula is expressed by a first-order lag expression using the temperature of the spindle as an input. 4 . The thermal displacement correction method for the machine tool according to claim 1 , wherein the tool temperature estimation formula and the tool thermal displacement estimation formula use estimation formulae according to a type of the tool or the position measurement sensor. 5 . A thermal displacement correction apparatus for a machine tool including a tool-mounted portion and a spindle, a tool or a position measurement sensor being removably attachable to the tool-mounted portion, the spindle being rotatable with the tool mounted, the thermal displacement correction apparatus comprising: an initial tool temperature setting unit configured to set an initial tool temperature of the tool or the position measurement sensor at a time point at which the tool or the position measurement sensor is mounted to the spindle using any information of a use history of the tool or the position measurement sensor, a temperature of the tool or the position measurement sensor before the tool or the position measurement sensor is mounted to the spindle, a body temperature of the machine tool, and an ambient temperature of the machine tool; a tool temperature estimating unit configured to estimate a temperature of the tool or the position measurement sensor based on the initial tool temperature and a temperature of the spindle; an amount-of-thermal-displacement estimating unit configured to estimate an amount of thermal displacement of the tool or the position measurement sensor with a preliminarily set tool thermal displacement estimation formula based on the temperature estimated by the tool temperature estimating unit; and a thermal displacement correcting unit configured to move a feed shaft of the machine tool based on the estimated amount of thermal displacement to perform a correction, wherein the tool temperature estimating unit is configured to measure the temperature of the spindle by a temperature sensor mounted to the spindle, the tool temperature estimating unit being configured to estimate a tool-mounted portion temperature of the spindle from the measured temperature of the spindle and a tool-mounted portion temperature estimation formula, the tool-mounted portion temperature estimation formula being set differently depending on whether the spindle rotates or stops, and the temperature of the tool or the position measurement sensor is estimated with the tool-mounted portion temperature, the initial tool temperature of the tool or the position measurement sensor, and the preliminarily set tool temperature estimation formula.

Assignees

Inventors

Classifications

  • B23Q3/1552Primary

    parts of devices for automatically inserting or removing tools · CPC title

  • G05B19/404Primary

    characterised by control arrangements for compensation, e.g. for backlash, overshoot, tool offset, tool wear, temperature, machine construction errors, load, inertia (G05B19/19, G05B19/41 take precedence) · CPC title

  • Temperature of tool · CPC title

  • by compensating occurring thermal dilations (B23Q15/18 takes precedence) · CPC title

  • B23Q17/00Primary

    Arrangements for {observing,} indicating or measuring on machine tools (for automatic control or regulation of feed movement, cutting velocity or position of tool or work B23Q15/00) · CPC title

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What does patent US2020230764A1 cover?
A method includes four steps, (1) setting an initial tool temperature, (2) estimating a temperature of a tool or a position measurement sensor based on the initial tool temperature and a temperature of a spindle, (3) estimating an amount of thermal displacement of the tool or the position measurement sensor with a preliminarily set tool thermal displacement estimation formula based on the estim…
Who is the assignee on this patent?
Okuma Machinery Works Ltd
What technology area does this patent fall under?
Primary CPC classification B23Q3/1552. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Thu Jul 23 2020 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).