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無(wú)相變合金淬火熱應(yīng)力演變機(jī)理的理論模型--(1)角端和邊緣淬火熱應(yīng)力模型與淬火角端效應(yīng)
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The Theoretical Model of the Thermal Stress Evolution Mechanism during Quenching of no Phase Change Alloy--(1) The Corner and Edge Model for Thermal Stress during Quenching and the Corner Effect during Quenching
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    摘要:

    淬火過(guò)程中率先引發(fā)塑性變形的動(dòng)力是拉應(yīng)力,此后拉應(yīng)力和壓應(yīng)力交替引發(fā)塑性變形.拉應(yīng)力可以誘發(fā)壓應(yīng)力的出現(xiàn).在淬火試樣表層可以出現(xiàn)壓應(yīng)力,這不同于傳統(tǒng)觀點(diǎn)認(rèn)為淬火表層只能是拉應(yīng)力的結(jié)論.淬火熱應(yīng)力與溫度高低關(guān)系不大,主要由相對(duì)溫差(即溫度梯度)決定,相對(duì)溫度高的部分會(huì)趨向發(fā)展成壓應(yīng)力狀態(tài),相對(duì)溫度低的部分趨向發(fā)展成拉應(yīng)力狀態(tài),這是淬火和快速加熱產(chǎn)生熱應(yīng)力、塑性變形和殘余應(yīng)力的根本原因.建立了角端、邊緣兩種淬火熱應(yīng)力模型,提出了淬火角端效應(yīng),即在角端拉應(yīng)力率先引發(fā)塑性變形并引起溫度梯度、熱應(yīng)力、塑性變形等交替衰減的現(xiàn)象.

    Abstract:

    The plastic deformation during quenching is first induced by tension stress, and then alternative occurrence of tension and compression stress induce plastic deformation. The tension stress may induce compression stress. Compression stress occur in the surface, which is different from conventional view that only tension stress occurs in the surface. The thermal stress during quenching is mainly determined by temperature difference other than temperature. Compression stress occur and develop in the relative high temperature zone, and tension stress occur and develop in the relative low temperature zone. It is the source of thermal stresses, plastic deformation, residual stresses when quenching or quickly heating. The corner and edge models for thermal stress during quenching are established in this paper, and the corner effect, which go with the recession of, temperature grads, thermal stresses and plastic deformation after the first plastic deformation is induced by tension stress, is proposed in the course of quenching.

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胡少虬 曾蘇民.無(wú)相變合金淬火熱應(yīng)力演變機(jī)理的理論模型--(1)角端和邊緣淬火熱應(yīng)力模型與淬火角端效應(yīng)[J].稀有金屬材料與工程,2006,35(4):538~541.[Hu Shaoqiu, Zeng Sumin. The Theoretical Model of the Thermal Stress Evolution Mechanism during Quenching of no Phase Change Alloy--(1) The Corner and Edge Model for Thermal Stress during Quenching and the Corner Effect during Quenching[J]. Rare Metal Materials and Engineering,2006,35(4):538~541.]
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  • 最后修改日期:2004-12-17
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