![]() Method of determining mechanical stress in metallic part
专利摘要:
1476180 Testing material SKF COMPAGNIE D'APPLICATIONS MECANIQUES and ANVAR AGENCE NATIONALE DE VALORISATION DE LA RECHERCHE 24 June 1974 [26 June 1973 21 Feb 1974] 28003/74 Heading G1S A non-destructive process for determining the elastic limit of residual stresses in the material of an article adjacent its surface at various depths comprises passing an element having a hemispherical, cylindrical or ellipsoidal contacting surface against the article surface and plotting deformation against load. A series of elements having spherical surfaces of different radii may be pressed successively against the surface with progressively increasing force and a curve plotted for each element the maxima of the curves corresponding generally to the elastic limit and the "envelope" of the series giving variations with depth of the characteristic through e.g. a surface layer hardened by treatment. A single e.g. cylindrical element may be engaged with the article in successive orientations differing by 90 degrees in the plane of the surface, Tresca or Von Mises criteria being used to determine residual stresses in the article. Strain gauges attached to the article surface adjacent the test area indicate when the elastic limit of the material is reached. 公开号:SU897122A3 申请号:SU762372396 申请日:1976-06-24 公开日:1982-01-07 发明作者:Зарка Жозеф 申请人:Скф Компани Д,Аппликасьон Меканик (Инофирма);Анвар/Ажанс Насьональ Де Валоризасьон Де Ля Решерш (Инофирма); IPC主号:
专利说明:
(5) METHOD FOR DETERMINING MECHANICAL STRESSES IN THE METAL DETAIL one The invention relates to the measurement of the mechanical characteristics of machine parts, namely the residual mechanical stresses in them, and can be used for non-destructive testing of any metal machine parts. A known method for determining mechanical stresses in metal parts, which consists in that, JQ. On the surface of the test piece with a punch creates a stress state from an external force, the relationship between force and deformation in the elastic and flat j / j region is measured tical deformations and from this data the value of residual mechanical stresses is judged 11. However, this method leads to the destruction of the surface of the part by the punch 20 and can be used only in a limited number of cases. The closest in technical essence and the achieved result to the proposed method is to determine dividing mechanical stresses in metal parts, which means that on the surface of a controlled part, using punches of various geometric shapes, they create a stress state from an external force, measure the relationship between force and deformation, and determine the residual stresses by measuring results x 2. However, the known method does not guarantee prevention of destruction of the part surface, since the radii of the punches and the magnitude of the load are chosen arbitrarily. The purpose of the invention is to prevent the destruction of the surface during measurement. This goal is achieved by the fact that the stress state is created by successive pressing of the punches of various shapes and sizes, and the limiting value of the force for each punch is chosen such that it does not create stresses in the part. exceeding the maximum allowable for obtaining elastic deformations. In addition, hemispherical punches with a different radius of curvature are used. Moreover, the punch must be cylindrical or elliptical in shape, which is turned at a certain angle after each indentation. The method is carried out as follows. On the surface of the tested part, near the point of application of force from the punch, strain gauges are installed. Then, by pressing in a punch of the corresponding shape, a stress state is created in the part. The force on the punch is controlled by a force meter; in the process of increasing the load, the presence of a linear relationship between the force shown by the load cell and the deformation detected by the strain gauges is monitored. When appearances from linear dependence appear, the loading process is stopped, the axisymmetric punch is replaced, or the cylindrical or elliptical punch is turned at a certain angle and all the operations described above are repeated. The magnitude of the force limit for each punch and the radii of curvature of the punches determines the distribution of residual stresses in the part in the zone near the surface. The application of the proposed method makes it possible to measure the mechanical characteristics of any metal parts, including especially large ones, which have undergone such technological processes as hardening, carburizing and working hardening. This provides an increase in the quality of the parts produced and the reliability of the machines assembled from them.
权利要求:
Claims (3) [1] 1. A method for determining the mechanical stresses in a metal part, which consists in the fact that on the surface of the part being monitored using punches of various geometric shapes, creates a stress state against an external force, the relationship between force and strain is measured and according to the measurement results, residual stresses are judged, characterized in that, in order to prevent the destruction of the surface during the measurement, the stress state is created by successive pressing of punches of various shapes and sizes, and the limiting value of the force for each punch is chosen so that did not create stresses in the part exceeding the maximum allowable for obtaining elastic deformations. [2] 2. Method POP.1, it is different, and that they use hemispherical punches with different radii of curvature. [3] 3. The method according to claim 1, distinguished by the fact that they use a cylindrical or elliptical punch that is rotated at a certain angle after each indentation. Priority points: 06.26.73 according to Clause 1 21 .02.7 to PP.2 and 3 Sources of information taken into account in the examination 1.Ryzhov, EV. The basis for calculating the butt surfaces of machine parts for contact stiffness. M., Mashgiz, 1962, p.89-90 .. 2. Avdeev B, A. Technique for determining the mechanical properties of metals. M., Mashgiz, 1952, pp.260-271.
类似技术:
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同族专利:
公开号 | 公开日 DE2430272A1|1975-01-16| JPS50116085A|1975-09-11| US3969928A|1976-07-20| DD114459A5|1975-08-05| GB1476180A|1977-06-10| DE2430272C2|1982-12-23|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题 RU2494359C1|2012-02-10|2013-09-27|Федеральное государственное бюджетное образовательное учреждение высшего профессионального образования "Иркутский государственный технический университет" |Method for determining residual hardening stresses|US1312805A|1919-08-12|Planoqkapii | US1825387A|1926-06-30|1931-09-29|Esnault-Pelterie Robert|Apparatus for testing physical properties of materials| GB289960A|1927-02-04|1928-05-04|Robert Esnault Pelterie|Improved method of and apparatus for use in testing the physical properties of materials| US2377590A|1943-05-14|1945-06-05|Converse Rubber Company|Apparatus for determining hardness| US3106837A|1959-03-18|1963-10-15|Lewis R Plumb|Measuring method using hertz contact regions| US3763697A|1970-04-15|1973-10-09|Sturm Stress Inc|Method and apparatus for determining stress|US4621523A|1983-10-24|1986-11-11|Aluminum Company Of America|Rapid determination of metal strength from hardness tests| US4530235A|1983-10-24|1985-07-23|Aluminum Company Of America|Rapid determination of metal strength from hardness tests| DE3404267A1|1984-02-03|1985-08-08|Schering AG, 1000 Berlin und 4709 Bergkamen|METHOD FOR FULLY AUTOMATIC CONTROL OF THE GALVANIC DEPOSITION OF COPPER COATINGS FROM ACID COPPER BATHS| DE4004344A1|1989-08-09|1991-08-14|Gerhard Dr Schmirler|Thin cylinder hardness testing method - being produced by knife edge of standard material pressed into and then retracted to produce response curves| US5193395A|1991-12-02|1993-03-16|The United States Of America As Represented By The Administrator Of The National Aeronautics And Space Administration|Method and apparatus for determination of material residual stress| DE19720864C2|1997-05-06|1999-07-01|Xuejun Dipl Ing Yin|Method and device for the non-destructive determination of the elasticity of materials| US6155104A|1998-05-26|2000-12-05|Subra Suresh|Method and apparatus for determining preexisting stresses based on indentation or other mechanical probing of a material| US6568250B1|2000-09-22|2003-05-27|International Business Machines Corporation|Apparatus and method for determining residual stress| US6883367B2|2001-11-20|2005-04-26|The University Of Hong Kong|Method for measuring elastic properties| US20040115634A1|2002-12-11|2004-06-17|Isis Pharmaceuticals, Inc.|Modulation of stat 6 expression| US7165463B2|2003-10-14|2007-01-23|Northwestern University|Determination of young's modulus and poisson's ratio of coatings from indentation data| US8042405B2|2008-07-23|2011-10-25|University Of Kentucky Research Foundation|Method and apparatus for characterizing microscale formability of thin sheet materials| CN102455263B|2010-10-27|2014-10-15|中国科学院金属研究所|Method for obtaining mechanical property of metal material based on load-depth curve| US20130247645A1|2012-03-26|2013-09-26|Matsuzawa Co., Ltd.|Hardness tester and hardness testing method| CN105890970B|2016-04-26|2018-06-19|重庆大学|The determining method of the annular membrane maximum defluxion of center band rigid plate under uniform load| RU2686572C1|2017-11-07|2019-04-29|Федеральное государственное бюджетное образовательное учреждение высшего образования " Юго-Западный государственный университет" |Method of determining value of material proportionality limit| CN113125258A|2021-03-30|2021-07-16|中国科学院金属研究所|Method for measuring mechanical property of metal material|
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申请号 | 申请日 | 专利标题 FR7323319A|FR2235625A5|1973-06-26|1973-06-26|Ball indentation test - uses different radii of curvature to determine elastic limit changes in depth| FR7405884A|FR2262295B1|1974-02-21|1974-02-21| 相关专利
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