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国家自然科学基金(51125023)

作品数:9 被引量:26H指数:3
相关作者:徐滨士王海斗董美伶朱丽娜金国更多>>
相关机构:装甲兵工程学院中国地质大学(北京)哈尔滨工程大学更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划北京市自然科学基金更多>>
相关领域:机械工程金属学及工艺一般工业技术理学更多>>

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9 条 记 录,以下是 1-9
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Health condition monitoring with multiple physical signals in tensile test for double-material friction welding
2012年
The manifold physical signals including micro resistance,infrared thermal signal and acoustic emission signal in the tensile test for double-material friction welding normative samples were monitored and collected dynamically by TH2512 micro resistance measuring apparatus,flir infrared thermal camera and acoustic emission equipment which possesses 18 bit PCI-2 data acquisition board.Applied acoustic emission and thermal infrared NDT(non-destructive testing) means were used to verify the feasibility of using resistance method and to monitor dynamic damage of the samples.The research of the dynamic monitoring system was carried out with multi-information fusion including resistance,infrared and acoustic emission.The results show that the resistance signal,infrared signal and acoustic emission signal collected synchronously in the injury process of samples have a good mapping.Electrical,thermal and acoustic signals can more accurately capture initiation and development of micro-defects in the sample.Using dynamic micro-resistance method to monitor damage is possible.The method of multi-information fusion monitoring damage possesses higher reliability,which makes the establishing of health condition diagnosing and early warning platform with multiple physical information monitoring possible.
张玉波徐滨士王海斗杨大祥朱丽娜
关键词:双材料声发射信号
Advanced Surface Engineering Technologies for Remanufacturing Forming被引量:3
2012年
Based on the foreign remanufacturing mode,which relies mainly on Part-Replacing Repair Method and Size-Changing Repair Method,China has explored and practiced the new remanufacturing mode,which relies mainly on Surface Repair and Performance Improving Method.The aim of remanufacturing forming is to renew rapidly the original size of the waste components rapidly,and then improve their service performance.The advanced surface engineering technology,especially the high density heat source surface forming technology,is the important technique to carry out rapid forming.Based on the arc heat source,plasma heat source and laser heat source,three kinds of high density heat source remanufacturing forming technologies,such as high speed arc spraying forming technology,micro-arc plasma forming technology,and laser cladding forming technology,have been developed.The benefits of remanufacturing forming based on advanced surface engineering technologies are great.
Xu BinshiWang HaidouMa Guozheng
关键词:REMANUFACTURINGFORMINGENGINEERINGDENSITYSOURCE
Effects of Service Condition on Rolling Contact Fatigue Failure Mechanism and Lifetime of Thermal Spray Coatings——A Review被引量:12
2015年
The service condition determines the Rolling Contact Fatigue(RCF) failure mechanism and lifetime under ascertain material structure integrity parameter of thermal spray coating. The available literature on the RCF testing of thermal spray coatings under various condition services is considerable; it is generally difficult to synthesize all of the result to obtain a comprehensive understanding of the parameters which has a great effect on a thermal spray coating's resistance of RCF. The effects of service conditions(lubrication states, contact stresses, revolve speed, and slip ratio) on the changing of thermal spray coatings' contact fatigue lifetime is introduced systematically. The effects of different service condition on RCF failure mechanism of thermal spray coating from the change of material structure integrity are also summarized. Moreover, In order to enhance the RCF performance, the parameter optimal design formula of service condition and material structure integrity is proposed based on the effect of service condition on thermal spray coatings' contact fatigue lifetime and RCF failure mechanism. The shortage of available literature and the forecast focus in future researches are discussed based on available research. The explicit result of RCF lifetime law and parameter optimal design formula in term of lubrication states, contact stresses, revolve speed, and slip ratio, is significant to improve the RCF performance on the engineering application.
CUI HuaweiCUI XiufangWANG HaidouXING ZhiguoJIN Guo
关键词:接触疲劳寿命热喷涂涂层滚动接触疲劳
Accumulated damage process of thermal sprayed coating under rolling contact by acoustic emission technique
2016年
卷喷洒血浆的涂层的接触疲劳(RCF ) 的积累的损坏过程被调查。表面粗糙,装载条件,和涂层的积累的损坏地位上的压力周期频率的影响被讨论。一台 ball-ondisc 机器被采用进行 RCF 实验。声学的排放(AE ) 技术被介绍监视涂层的 RCF 进程。AE 信号特征被调查揭示积累的损坏过程。结果证明擦亮的涂层将抵抗粗糙接触并且汇寄积累的损坏。RCF 一生然后将延长。重负担将加重积累的损坏地位并且导致表面骨折。穿成为了减少了 RCF 一生的主要失败模式。经常的压力周期将加重积累的损坏地位并且导致接口骨折。疲劳然后成为了也减少了 RCF 一生的主要失败模式。
Jia XUZhen-yu ZHOUZhong-yu PIAO
关键词:滚动接触疲劳
Response surface regression analysis on FeCrBSi particle in-flight properties by plasma spray被引量:1
2016年
这个工作由能在预言并且分析平均速度和温度被使用的血浆水花和构造模型在飞行中的粒子上讨论在二氩流动率,电压,和水花距离之间的交互效果。反应表面方法论的结果证明在粒子上的电压和水花距离之间的交互效果飞行中的性质重要。为给定的氩流动率,粒子速度和温度反应表面显然正在弯曲,并且一个僵绳点存在。随水花距离,在电压之间的交互效果和粒子上的氩流动率的增加,飞行中的性质逐渐地出现然后变弱。随电压的增加,在水花距离和氩流动之间的交互效果在飞行中的性质从出现到加强然后到变弱改变的粒子上评价。
Runbo MALihong DONGHaidou WANGShuying CHENZhiguo XING
异种材料摩擦焊件的多物理信息融合临界失效监测新方法(英文)被引量:1
2016年
疲劳断裂是异种材料摩擦焊件常见的失效形式。为减少摩擦焊件突然断裂导致的重大事故,从疲劳能量耗散和微观缺陷演化等角度,对联合应用微红外、声发射和微电阻无损检测技术同步动态监测摩擦焊件临界疲劳损伤的可行性进行了探讨。研究发现,疲劳试验过程中,3种信号可同步采集,互不干扰,互相印证。进入临界断裂阶段后,对于试件的异常和正常疲劳断裂,微电阻与声发射的幅值和能量参数变化规律存在良好的映射关系,它们均可作为预警临界断裂失效的参数。虽然红外热像技术常被用于通过监测试样温度场的变化预测材料疲劳极限,但指数增长式的温度快速上升阶段在临界断裂前未必出现。与单信号监测相比,多物理信息融合健康监测预警的可信度更高,有利于提高摩擦焊件的服役安全性和可靠性。
张玉波徐滨士王海斗何鹏飞邢志国
关键词:微电阻红外声发射
不同基底温度对Ti薄膜表面形貌及残余应力的影响(英文)被引量:3
2016年
采用纳米压痕法中的Suresh模型和Lee模型研究不同基底温度对直流磁控溅射制备的Ti薄膜中残余应力大小及分布的影响。将压痕法计算结果与曲率法结果进行比较研究,同时采用原子力显微镜和X射线衍射仪对Ti薄膜的表面形貌及相结构进行分析。结果表明:Suresh模型计算得到的Ti薄膜残余应力值与曲率法结果最为接近,因此Suresh模型更适合测量Ti薄膜中的残余应力。结合纳米压痕和显微结构的分析发现,随着Ti薄膜基底温度的升高,Ti薄膜的晶粒尺寸先增大后变小,残余应力则从压应力转变为拉应力。
董美伶崔秀芳王海斗朱丽娜金国徐滨士
关键词:纳米压痕残余应力
The Erosion Effect of Kapton Film in a Ground-based Atomic Oxygen Irradiation Simulator被引量:4
2014年
In order to investigate the effect of space environmental factors on spacecraft materials, a ground-based simulation facility for space atomic oxygen(AO) irradiation was developed in our laboratory. Some Kapton film samples were subjected to AO beam generated by this facility. The Kapton films before and after AO exposure were analyzed comparatively using optical microscopy, scanning electronic microscopy, atomic force microscopy, high-precision microbalance, and X-ray photoelectron spectroscopy. The experimental results indicate that the transmittance of Kapton film will be reduced by AO irradiation notably, and its color deepens from pale yellow to brown. Surface roughness of the AO-treated sample is already increased obviously after AO irradiation for 5 hours, and exhibits a flannel-like appearance after 15 hours' exposure in AO beam. The imide rings and benzene rings in kapton molecule are partially decomposed, and some new bonds form during AO irradiation. The mass loss of kapton film increases linearly with the increase of AO fluence, which is resulted from the formation of volatile products, such as CO, CO2 and NOx. The breakage in structure and degradation in properties of AO-treated Kapton film can be attributed to the integrated effect ofimpaction and oxidization of AO beam. The test results agree well with the space flight experimental data.
王海斗MA GuozhengXU BinshiXING ZhiguoLI GuoluZHANG Sen
关键词:原子氧扫描电子显微镜
Progress of remanufacturing engineering and future technology expectation被引量:3
2013年
After development for decades,abroad remanufacturing has formed a complete industrial system.At present,the research emphases are on marking logistics management and market cultivation theory of remanufacturing products,and so on.The Chinese remanufacturing starts fairly late.After 10 years of development,it formed a remanufacturing mode with Chinese characteristics that is sustained by high-tech industries,using the surface engineering technology to restore the size and improve properties,and combining manufacturing,study and research together.The remanufacturing mode is not only circular but also economic.With the development of science and technology,future remanufacturing technology will break the previous limits,explore and understand the limits of micro machining.It will carry out the waste product remanufacturing in the micro-nano scale,and extend the remanufacturing industry to a more broad space.
Bin-Shi Xu
关键词:高新技术产业再制造工程再制造技术再制造产业
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