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原位合成TiB_2-SiC基复相陶瓷高温磨损断裂力学特性的研究 被引量:2
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作者 周松青 肖汉宁 李贵毓 《润滑与密封》 CAS CSCD 北大核心 2007年第7期59-65,共7页
在SiC基体中,用TiC和B4C为原料采用固相反应原理原位合成了高温自润滑TiB2-SiC基复相陶瓷,提高了SiC陶瓷高温摩擦学性能;高温摩擦氧化是TiB2-SiC/TiB2-SiC高温自润滑的主要机制。试样磨损断面氧化层和过渡层接触紧密;摩擦表面具有塑性... 在SiC基体中,用TiC和B4C为原料采用固相反应原理原位合成了高温自润滑TiB2-SiC基复相陶瓷,提高了SiC陶瓷高温摩擦学性能;高温摩擦氧化是TiB2-SiC/TiB2-SiC高温自润滑的主要机制。试样磨损断面氧化层和过渡层接触紧密;摩擦表面具有塑性变形性能,由脆性体向塑性体或者弹塑性体过渡。复相陶瓷中TiB2颗粒产生的“钉扎效应”,导致裂纹扩展路径偏转,改变了应力场的分布特性,降低了微裂纹尖端应力场强度,提高了裂纹扩展门槛值。TiB2-SiC磨损中存在断裂力学上的(Ⅰ+Ⅱ)型和(Ⅰ+Ⅲ)复合裂纹非平面扩展,以及裂纹尖端微小塑性屈服区的存在,使得裂纹扩展门槛值在“极限上值”和“极限下值”间随着裂纹扩展实际有效长度的变化而动态变化,导致材料延迟断裂。 展开更多
关键词 TiB2-SiC基复相陶瓷 原位合成 磨损断裂力学 裂纹扩展偏转 非平面扩展
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原位合成TiB_2-SiC基复相陶瓷高温性能及其磨损断裂力学机理的研究
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作者 周松青 肖汉宁 李贵毓 《陶瓷》 CAS 2008年第8期45-51,共7页
在SiC基体中,用TiC和B4C为原料采用固相反应原理原位合成了高温自润滑TiB2-SiC基复相陶瓷,该复相陶瓷从400℃开始呈现高温减磨性能;复相陶瓷中TiB2颗粒产生的"钉扎效应",导致裂纹扩展路径偏转,改变了应力场的分布特性,降低了... 在SiC基体中,用TiC和B4C为原料采用固相反应原理原位合成了高温自润滑TiB2-SiC基复相陶瓷,该复相陶瓷从400℃开始呈现高温减磨性能;复相陶瓷中TiB2颗粒产生的"钉扎效应",导致裂纹扩展路径偏转,改变了应力场的分布特性,降低了微裂纹尖端应力场强度,提高了裂纹扩展门槛值。TiB2-SiC磨损中存在断裂力学上的(Ⅰ+Ⅱ)型和(Ⅰ+Ⅲ)复合裂纹非平面扩展,以及裂纹尖端微小塑性屈服区的存在,使得裂纹扩展门槛值在"极限上值"和"极限下值"间随着裂纹扩展实际有效长度的变化而动态变化,导致材料延迟断裂。 展开更多
关键词 TiB2-SiC基复相陶瓷 原位合成 磨损断裂力学 裂纹扩展偏转 非平面扩展
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Effects of titanium addition on structural, mechanical, tribological, and corrosion properties of Al-25Zn-3Cu and Al-25Zn-3Cu-3Si alloys 被引量:3
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作者 Ali Pa?a HEK?MO?LU Merve ?ALI? 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第2期303-317,共15页
To investigate the effect of grain refinement on the material properties of recently developed Al-25 Zn-3 Cu based alloys,Al-25 Zn-3 Cu,Al-25 Zn-3 Cu-0.01 Ti,Al-25 Zn-3 Cu-3 Si and Al-25 Zn-3 Cu-3 Si-0.01 Ti alloys we... To investigate the effect of grain refinement on the material properties of recently developed Al-25 Zn-3 Cu based alloys,Al-25 Zn-3 Cu,Al-25 Zn-3 Cu-0.01 Ti,Al-25 Zn-3 Cu-3 Si and Al-25 Zn-3 Cu-3 Si-0.01 Ti alloys were produced by permanent mold casting method.Microstructures of the alloys were examined by SEM.Hardness and mechanical properties of the alloys were determined by Brinell method and tensile tests,respectively.Tribological characteristics of the alloys were investigated by a ball-on-disc type test machine.Corrosion properties of the alloys were examined by an electrochemical corrosion experimental setup.It was observed that microstructure of the ternary A1-25 Zn-3 Cu alloy consisted ofα,α+ηandθ(Al2Cu)phases.It was also observed that the addition of 3 wt.%Si to A1-25Zn-3Cu alloy resulted in the formation of silicon particles in its microstructure.The addition of 0.01 wt.%Ti to the Al-25Zn-3Cu and Al-25 Zn-3 Cu-3 Si alloys caused a decrement in grain size by approximately 20%and 39%and an increment in hardness from HRB 130 to 137 and from HRB 141 to 156,respectively.Yield strengths of these alloys increased from 278 to 297 MPa and from 320 to 336 MPa while their tensile strengths increased from 317 to 340 MPa and from 334 to 352 MPa.Wear resistance of the alloys increased,but corrosion resistance decreased with titanium addition. 展开更多
关键词 Al-Zn-Cu alloy as-cast microstructure characterization CORROSION fracture friction and wear characteristics mechanical properties
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Influence of Mg addition and T6 heat treatment on microstructure,mechanical and tribological properties of Al-12Si-3Cu based alloy 被引量:2
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作者 M.BEDER Y.ALEMDAG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第8期2208-2219,共12页
The aim of the present study was to investigate the influence of Mg addition and T6 heat treatment on microstructure,mechanical and tribological properties of the Al-Si-Cu-Mg alloys.In this context,a series of Al-12Si... The aim of the present study was to investigate the influence of Mg addition and T6 heat treatment on microstructure,mechanical and tribological properties of the Al-Si-Cu-Mg alloys.In this context,a series of Al-12Si-3Cu-(0.5-2.5)Mg(wt.%)alloys were produced by permanent mould casting,and then subjected to T6 treatment.Their microstructure and mechanical properties were investigated using OM,XRD,SEM,EDS along with hardness,tension,compression and Charpy impact tests.Dry sliding friction and wear properties of the alloys were studied using a ball-on-disk type tester.It was observed that the microstructure of as-cast Al-12Si-3 Cu-Mg alloys consisted of a(Al),Si,O-CuAb,0-Mg_(2)Si,0-AbMg_(8)Cu(2)Si_(6) and π-AhMg_(3)FeSi_(6) phases.T6 heat treatment gave rise to nearly spherodization of eutectic Si particles,formation of finer 0-CuAH and 0-Mg_(2)Si precipitates and elimination of Chinese script morphology of 0-Mg_(2)Si phase.The addition of Mg up to 2.5 wt.%decreased the hardness,tensile and compressive strengths,tensile elongation and impact toughness of the as-cast and T6-treated alloys and increased their friction coefficient and volume loss.T6 treatment,on the other hand,led to a significant increase in mechanical properties and wear resistance of as-cast alloys. 展开更多
关键词 Al-Si-Cu alloys Mg content T6 treatment MICROSTRUCTURE mechanical properties wear properties fracture surface
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