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水稻秸秆与园林基质混配用作无土草毯生产技术研究
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作者 黄思怡 向佐湘 +1 位作者 覃韦玮 陈桂华 《作物研究》 2024年第2期117-124,共8页
为了筛选适宜的无土草毯基质配方,降低无土草毯生产成本,以水稻秸秆与园林基质为材料,将其按不同的比例混合,并添加2种不同来源的菌剂进行有氧发酵,配制成不同的基质处理,对不同混配基质的理化性状、植物毒性和种植草毯的坪用性状等指... 为了筛选适宜的无土草毯基质配方,降低无土草毯生产成本,以水稻秸秆与园林基质为材料,将其按不同的比例混合,并添加2种不同来源的菌剂进行有氧发酵,配制成不同的基质处理,对不同混配基质的理化性状、植物毒性和种植草毯的坪用性状等指标进行比较分析。结果表明:添加北京金宝贝菌剂进行发酵且水稻秸秆与园林基质体积比为6∶4的处理基质物理性状较理想,有机质含量显著高于其他处理,且其养分含量较均衡,重金属含量符合NY/T 525-2021有机肥标准要求,其所建植的草毯坪用性状显著高于其他处理。在本试验条件下,该配方基质比较适合用于无土草毯栽培。 展开更多
关键词 无土草毯 水稻秸秆 资源化利用 栽培基质 结缕草
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Friction Stir Welding of Zr_(55)Al_(10)Ni_5Cu_(30) Bulk Metallic Glass to Crystalline Aluminum 被引量:2
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作者 zuoxiang qin Cuihong Li +3 位作者 Haifeng Zhang Zhongguang Wang Zhuangqi Hu Zhiqiang Liu 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2009年第6期853-856,共4页
The Zr55Al10Ni5Cu30 bulk metallic glass plate were successfully welded to crystalline aluminum plates by using a friction stir welding (FSW) method. The welded zone was examined. No defects, cracks or pores were obs... The Zr55Al10Ni5Cu30 bulk metallic glass plate were successfully welded to crystalline aluminum plates by using a friction stir welding (FSW) method. The welded zone was examined. No defects, cracks or pores were observed and no other crystalline phases except for aluminum were found in the welded joint. The strength of the joint is higher than that of aluminum. The glassy phase in the stir zone keeps the amorphous state, showing a successful welding. The storage modulus softens over the glass transition. And the weldability was discussed according to this phenomena. 展开更多
关键词 Bulk metallic glass Zr-based alloy Friction stir welding
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Effect of Carbon on the Paramagnetic-Antiferromagnetic Transition and γ→εMartensitic Transformation of Fe-24Mn Alloys 被引量:2
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作者 Xing LU, zuoxiang qin, Yansheng ZHANG, Xingyu WANG and Fengxian LI (Department of Materials Science & Engineering, Dalian Railway Institute, Dalian 116028, China) Bingzhe DING and Zhuangqi HU (State Key Laboratory for RSA, Institute of Metal Research, Chi 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2000年第3期297-301,共5页
The effect of C content (0.014-0.39 wt pct) on the paramagnetic-antiferromagnetic transition and γ→ε martensitic transformation of Fe-24Mn alloys has been investigated by the resistivity, dilation, tensile properti... The effect of C content (0.014-0.39 wt pct) on the paramagnetic-antiferromagnetic transition and γ→ε martensitic transformation of Fe-24Mn alloys has been investigated by the resistivity, dilation, tensile properties measurement and microstructure examination. The results have shown that C decreases T_N; increases the thermal expansion coefficients both above and below the T_N; increases the resistivity above the T_N and antiferromagnetic scattering resistivity below T_N. It strongly depresses the γ→ε martensitic transformation and reduces the M_s of Fe-24Mn alloys. Moreover, it increases the lattice parameter of austenite, enhances the tensile ductility, but almost does not affect the tensile strength. With increasing C content from 0.014 to 0.19 wt pct, the yield strength of Fe-24Mn alloy decreases obviously arising from the decreasing of preexisting ε martensite. but it increases from 0.19 to 0.39 wt pct C due to the solution hardening of C. 展开更多
关键词 MN Effect of Carbon on the Paramagnetic-Antiferromagnetic Transition and Martensitic Transformation of Fe-24Mn Alloys Fe
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Accelerated exploration of TRIP metallic glass composite by laser additive manufacturing
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作者 Zejiang Yu Wei Zheng +4 位作者 Zhiqiang Li Yunzhuo Lu Xinbing Yun zuoxiang qin Xing Lu 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2021年第19期68-73,共6页
Introducing transformation-induced plasticity(TRIP)effect into bulk metallic glass composites(BMGCs)is an effective route to improve their ductility and strain-hardening ability.Since the morphology and structure of t... Introducing transformation-induced plasticity(TRIP)effect into bulk metallic glass composites(BMGCs)is an effective route to improve their ductility and strain-hardening ability.Since the morphology and structure of the crystalline austenite phases responsible for the TRIP phenomenon are strongly dependent on the alloy composition and cooling rate during freezing,distinguishing the optimal cases from a vast variety of candidates is the primary task of exploring TRIP BMGCs.However,without a suitable theoretical guidance,the exploration of BMGCs is usually performed via the traditional trial-and-error route,making the BMGC development extremely time consuming and labor intensive.Here,we present a novel high-throughput strategy to accelerate the exploration process of TRIP BMGCs.The efficiency of this strategy was demonstrated on a well-studied Cu-Zr-Al alloy system.A screening library,comprised by121 cylindrical samples with different conditions,was rapidly prepared by laser additive manufacturing(LAM).The phases of the library were efficiently identified by micro-area X-ray diffraction(M-XRD)to screen the optimal compositions and cooling rates that precipitate only B2-Cu Zr phase.The distribution uniformity of the B2-Cu Zr phase was further evaluated based on digital image processing technology to screen the candidates of better ductility.The high-throughput results are in good agreement with the previous casting investigations of discrete samples,confirming the validity of the present high-throughput strategy. 展开更多
关键词 Bulk amorphous materials COMPOSITES HIGH-THROUGHPUT Laser deposition Metastable phases
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