首页|切向位移对Cr涂层Zr-1Nb合金包壳微动磨损的影响

切向位移对Cr涂层Zr-1Nb合金包壳微动磨损的影响

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随着核电技术更新迭代,由于传统Zr合金包壳存在安全性能缺陷,核燃料组件安全面临严峻挑战,探索开发新型核燃料包壳管成为核电安全防护领域的重点研究.以Cr涂层Zr-1Nb合金包壳管(改良型ATF材料)为研究对象,探究切向位移对Cr涂层Zr-1Nb合金包壳管微动磨损行为及磨损机理的影响.采用白光干涉仪表征出Cr涂层Zr-1Nb合金包壳管表面磨痕的三维形貌,对Cr涂层Zr-1Nb合金包壳管表面磨痕的截面轮廓以及磨损深度进行测算.通过扫描电子显微镜(SEM)和能谱仪(EDS)对表面磨痕的微观形貌以及元素组成进行表征.结果表明:随着切向位移增加最大磨损深度随之增加,微动运行状态由部分滑移逐渐转变为完全滑移,Cr涂层Zr-1Nb合金包壳管表面的磨屑黏着现象逐渐减弱,磨损机理由黏着磨损转变为剥层磨损.所有试验中Cr涂层Zr-1Nb合金包壳管存在明显的氧化磨损.从微观角度探索了接触模型为GTR构型的改良型ATF包壳材料微动磨损机理以及微动磨损行为,制备的Cr涂层能够提高Zr-1Nb合金包壳管的微动磨损性能,有效延长包壳管的服役寿命.
Effect of Tangential Displacement on Fretting Wear of Cr-coated Zr-1Nb Alloy Cladding Tube
Zr alloys are widely used as fuel rod cladding materials in nuclear reactors because of their small neutron absorption cross-section,high strength at high temperatures,and strong corrosion resistance.With the new iteration of nuclear power technology,the traditional Zr alloy cladding tube has exposed serious defects in safety performance,and the safety of nuclear fuel assemblies has been severely challenged.Currently,the exploration and development of new ATF materials have focused on nuclear reactor safety.The physical and chemical properties of the substrate can be improved by spraying a wear-resistant coating on the Zr alloy surface.The Cr coating has excellent high-temperature wear resistance and is currently the most important coating material.However,there are few reports on the fretting wear properties of Cr-coated Zr alloy cladding tubes and dimple structures that are in actual use in nuclear reactors.In this paper,the effect of tangential displacement on the fretting wear mechanism and wear properties of Cr-coated Zr-1Nb alloy coated tubes are investigated at room temperature.Scanning electron microscopy and energy-dispersive spectrometry were used to observe the surface morphology and elemental composition of the wear marks,respectively.The wear volume and maximum wear depth of the wear marks were measured using a white light interferometer.The results showed that the surface material underwent repeated alternating loads,resulting in cracks within the microstructure that eventually expanded to form wear debris.The tangential displacement amplitude is the key factor affecting fretting wear.As the amplitude increased,the wear debris was discharged more easily,the direct contact area between the samples increased,the sliding zone increased,and the fretting running status changed from a mixed fretting regime to a gross slip regime.This resulted in more evident delamination wear,oxidation wear,and increased surface stress,which led to the intensification of wear.When the tangential displacement is small,the Cr-coated Zr-1Nb alloy cladding tube only comes into contact with the dimple ends,wear debris is difficult to discharge,and its presence changes the friction from two-body contact to three-body contact.A large amount of wear debris accumulated between the samples and underwent repeated grinding and oxidation sintering,forming a third body layer.This layer can be regarded as a solid lubricant that prevents direct contact with the sample surface and further wear damage.When the displacement is large,the wear debris is easily discharged;therefore,less wear debris accumulates on the surface.The Cr-coated Zr-1Nb alloy cladding tube and dimple primarily contact each other through two-body contact;however,there is also three-body contact in the central region of the wear mark.Excessive shear stress and strain on the sample surface caused material detachment or delamination.In all experiments,the surface of the Cr-coated Zr-1Nb alloy cladding tube exhibited an evident abrasive adhesion phenomenon.However,with the increase in tangential displacement,the relative slip distance between the samples increased,and the debris was more easily discharged during the fretting process;thus,the accumulation and adhesion phenomenon of the debris was gradually weakened.Because there was a phenomenon of stress concentration at the contact edge area between the contact surfaces of the specimen,wear preferentially occurred in the contact edge area.It can be observed from the micromorphology of the wear surface that its characteristics are material accumulation,lamellar stripping,and microcracks in local areas.Therefore,the wear mechanism of the Cr-coated Zr-1Nb alloy cladding tube was primarily adhesive and peeling wear,and the elemental composition of the wear surface indicated that the O element entered the contact area during the test and oxidized wear.

Cr-coated Zr-1Nb alloy cladding tubeadhesive wearstripping wearcomplete slip

李加玲、沈火明、廖业宏、王宇星、任啟森、彭振驯

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西南交通大学力学与航空航天学院 成都 610031

中广核研究院有限公司核燃料与材料研究所 深圳 518026

西南交通大学机械工程学院 成都 610031

Cr涂层Zr-1Nb合金包壳管 黏着磨损 剥层磨损 完全滑移

四川省自然科学基金四川省自然科学基金中央高校基本科研业务费专项经费

2022NSFSC20032023NSFSC13002682022CX056

2024

中国表面工程
中国机械工程学会

中国表面工程

CSTPCD北大核心
影响因子:0.652
ISSN:1007-9289
年,卷(期):2024.37(4)