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Patent · US2008086276A1 · A1 · US

Stress component measurement method

(11) Publication number
US2008086276A1
(21) Application number
US-86922407-A
(22) Filing date
2007-10-09
(30) Priority date
2006-10-10
(43) Publication date
2008-04-10
(52) CPC
  • G01L Measuring force, stress, torque, work, mechanical power, mechanical efficiency, or fluid pressure: 1/24, 5/0047
  • G01J Measurement of intensity, velocity, spectral content, polarisation, phase or pulse characteristics of infrared, visible or ultraviolet light; colorimetry; radiation pyrometry: 3/44
  • G01N Investigating or analysing materials by determining their chemical or physical properties: 21/65, 21/9501
(73) Assignee
NAKA NOBUYUKI; KASHIWAGI SHINSUKE
(54) Title
Stress component measurement method
(57) Abstract

An object of this invention is to provide a method that can measure a stress component in a short period of time in a nondestructive manner. The stress component measurement device 1 comprises a stress component comparison section 413 that compares a Raman spectrum L obtained in a predetermined area W 1 of a reference specimen W to which a given stress component is applied with the stress component, a correlation data production section 414 that produces correlation data indicating a correlation between the Raman spectrum L and the stress component by the use of a multivariate analysis method based on the comparison results conducted by the stress component comparison section 413 wherein comparison is conducted multiple times on different predetermined areas W 1, a correlation data storage section 41 that stores the correlation data, and a stress component calculation section 43 that calculates a stress component applied to an area (hereinafter called as a measurement area) W 1 ′ of a measurement specimen W′ whose composition is the same as that of the reference specimen W based on the Raman spectrum L obtained from the measurement area W 1 ′ and the correlation data.

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Claims (4)

  1. A stress component measurement method comprising a stress component comparison step that compares a Raman spectrum obtained in a predetermined area (hereinafter called as a reference area) of a reference specimen to which a given stress component is applied with the stress component, a correlation data production step that conducts the stress component comparison step on each of the multiple reference areas to which a different stress component is applied and that produces correlation data indicating a correlation between the Raman spectrum and the stress component by the use of a multivariate analysis method based on the result of the stress component comparison step, and a stress component calculation step that calculates a stress component applied to a measurement area based on a Raman spectrum obtained in an area (hereinafter called as a measurement area) of a measurement specimen whose composition is the same as that of the reference specimen and the correlation data.
  2. A stress component measurement device comprising a stress component comparison section that compares a Raman spectrum obtained in a predetermined area (hereinafter called as a reference area) of a reference specimen to which a given stress component is applied with the stress component, a correlation data production section that obtains comparison results conducted by the stress component comparison section for each of the multiple reference areas to which a different stress component is applied and that produces correlation data indicating a correlation between the Raman spectrum and the stress component by applying a multivariate analysis method to the comparison results, a correlation data storage section that stores the correlation data, and a stress component calculation section that calculates a stress component applied to a measurement area based on a Raman spectrum obtained in an area (hereinafter called as a measurement area) of a measurement specimen whose composition is the same as that of the reference specimen and the correlation data.
  3. The stress component measurement method described in claim 1, wherein the correlation data indicates a correlation between a peak shift value, a peak intensity value and a spectrum FWHM (Full Width at Half Maximum) of the Raman spectrum and each stress component.
  4. A stress component measurement device comprising a stress component comparison section that compares a Raman spectrum obtained in a predetermined area (hereinafter called as a reference area) of a reference specimen to which a given stress component is applied with the stress component, a correlation data production section that obtains comparison results conducted by the stress component comparison section for each of the multiple reference areas to which a different stress component is applied and that produces correlation data indicating a correlation between the Raman spectrum and the stress component based on the comparison results, a correlation data storage section that stores the correlation data, and a stress component calculation section that calculates a stress component applied to a measurement area based on a Raman spectrum obtained in an area (hereinafter called as a measurement area) of a measurement specimen whose composition is the same as that of the reference specimen and the correlation data.

Citations (3)

  • US2007222472A1
  • US2008084552A1
  • US5999255A
Record as JSON
{
  "publication_number": "US2008086276A1",
  "country": "US",
  "kind": "A1",
  "title": "Stress component measurement method",
  "abstract": "An object of this invention is to provide a method that can measure a stress component in a short period of time in a nondestructive manner. The stress component measurement device 1 comprises a stress component comparison section 413 that compares a Raman spectrum L obtained in a predetermined area W 1 of a reference specimen W to which a given stress component is applied with the stress component, a correlation data production section 414 that produces correlation data indicating a correlation between the Raman spectrum L and the stress component by the use of a multivariate analysis method based on the comparison results conducted by the stress component comparison section 413 wherein comparison is conducted multiple times on different predetermined areas W 1, a correlation data storage section 41 that stores the correlation data, and a stress component calculation section 43 that calculates a stress component applied to an area (hereinafter called as a measurement area) W 1 ′ of a measurement specimen W′ whose composition is the same as that of the reference specimen W based on the Raman spectrum L obtained from the measurement area W 1 ′ and the correlation data.",
  "claims": [
    "1. A stress component measurement method comprising a stress component comparison step that compares a Raman spectrum obtained in a predetermined area (hereinafter called as a reference area) of a reference specimen to which a given stress component is applied with the stress component, a correlation data production step that conducts the stress component comparison step on each of the multiple reference areas to which a different stress component is applied and that produces correlation data indicating a correlation between the Raman spectrum and the stress component by the use of a multivariate analysis method based on the result of the stress component comparison step, and a stress component calculation step that calculates a stress component applied to a measurement area based on a Raman spectrum obtained in an area (hereinafter called as a measurement area) of a measurement specimen whose composition is the same as that of the reference specimen and the correlation data.",
    "2. A stress component measurement device comprising a stress component comparison section that compares a Raman spectrum obtained in a predetermined area (hereinafter called as a reference area) of a reference specimen to which a given stress component is applied with the stress component, a correlation data production section that obtains comparison results conducted by the stress component comparison section for each of the multiple reference areas to which a different stress component is applied and that produces correlation data indicating a correlation between the Raman spectrum and the stress component by applying a multivariate analysis method to the comparison results, a correlation data storage section that stores the correlation data, and a stress component calculation section that calculates a stress component applied to a measurement area based on a Raman spectrum obtained in an area (hereinafter called as a measurement area) of a measurement specimen whose composition is the same as that of the reference specimen and the correlation data.",
    "3. The stress component measurement method described in claim 1, wherein the correlation data indicates a correlation between a peak shift value, a peak intensity value and a spectrum FWHM (Full Width at Half Maximum) of the Raman spectrum and each stress component.",
    "4. A stress component measurement device comprising a stress component comparison section that compares a Raman spectrum obtained in a predetermined area (hereinafter called as a reference area) of a reference specimen to which a given stress component is applied with the stress component, a correlation data production section that obtains comparison results conducted by the stress component comparison section for each of the multiple reference areas to which a different stress component is applied and that produces correlation data indicating a correlation between the Raman spectrum and the stress component based on the comparison results, a correlation data storage section that stores the correlation data, and a stress component calculation section that calculates a stress component applied to a measurement area based on a Raman spectrum obtained in an area (hereinafter called as a measurement area) of a measurement specimen whose composition is the same as that of the reference specimen and the correlation data."
  ],
  "cpc": [
    "G01L 1/24",
    "G01J 3/44",
    "G01L 5/0047",
    "G01N 21/65",
    "G01N 21/9501"
  ],
  "assignees": [
    "NAKA NOBUYUKI",
    "KASHIWAGI SHINSUKE"
  ],
  "filing_date": "2007-10-09",
  "publication_date": "2008-04-10",
  "priority_date": "2006-10-10",
  "application_number": "US-86922407-A",
  "family_id": "38787825",
  "citations": [
    "US2007222472A1",
    "US2008084552A1",
    "US5999255A"
  ]
}

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