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Strengthening of HT250 by modified ultra-fine ceramic powders 被引量:1
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作者 Bo Yuan Mei-ling Chen +2 位作者 Jun Yang Gui-lin Liu Zhi-ming Yan 《China Foundry》 SCIE 2015年第6期418-424,共7页
In this study, three kinds of modified ultra-fine ceramic powders marked A, B and C, which were prepared by each of three different modifiers mixing with a commercial SiC, were added to HT250 cast iron, respectively, ... In this study, three kinds of modified ultra-fine ceramic powders marked A, B and C, which were prepared by each of three different modifiers mixing with a commercial SiC, were added to HT250 cast iron, respectively, and the effects of the modified ultra-fine ceramic powders on microstructure, mechanical properties and wear resistance were studied. Metallographic examination, tensile test, scanning electron microscopy, and three-dimensional surface topography were applied to analyze and compare the samples containing modified powder with the original samples. The results showed that the most obvious modification effect among the powders was seen in the sample containing powder A, with the graphite and eutectic cells being refined, the tensile strength being increased by 36.9%, and the wear resistance being improved by 45.5% and 47.2% under loads of 150 N and 300 N, respectively. The improvements of mechanical properties and wear resistance in the HT250 cast iron with the modified ultra-fine ceramic powders were attributed to the synergistic effect of the grain refinement with the powder acting as a hard particle phase and the lubrication by the graphite. 展开更多
关键词 modified ultra-fine ceramic powders HT250 MICROSTRUCTURE mechanical properties wear resistance
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Basic Properties of Concrete Incorporating Recycled Ceramic Aggregate and Ultra-fine Sand
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作者 刘凤利 LIU Junhua +2 位作者 马保国 HUANG Jian LI Hainan 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2015年第2期352-360,共9页
Recycled ceramic mixed sand(RCMS) was obtained by partially replacing ultra-fine sand with recycled ceramic coarse sand(RCCS). The effects of RCCS replacement rate on the apparent density, workability, compressive... Recycled ceramic mixed sand(RCMS) was obtained by partially replacing ultra-fine sand with recycled ceramic coarse sand(RCCS). The effects of RCCS replacement rate on the apparent density, workability, compressive strength and splitting tensile strength of recycled ceramic concrete(RCC) were investigated. In addition, the relationship between the water-cement ratio and compressive strength of RCC was also studied. The experimental results indicate that the reusing of recycled ceramic aggregate can improve the cohesiveness and water retentiveness of fresh concrete and benefit the mechanical properties development. When the RCCS replacement rate is not less than 40%, the mechanical properties of RCC are superior to those of the reference concrete. Moreover, when recycled ceramic medium sand was completely used as fine aggregate, the maximum increase in both compressive strength and splitting tensile strength were obtained, comparing with those of reference concrete, the increment ratio was 19.85% and 32.73%, respectively. The microscopic analysis shows that the using of recycled ceramic aggregate can meliorate distinctly the structure of the interfacial transition zone(ITZ) and increase the compaction degree of cement paste. Furthermore, an expression of the compressive strength of RCC and the cement-water ratio is regressed and gains a good linear relativity. It is an effective way to recycle waste ceramic, and the consumption of recycled ceramic aggregate could reach from 26.9% to 47.6% of the total weight of aggregate in producing concrete. 展开更多
关键词 recycled ceramic coarse sand(RCCS) ultra-fine sand recycled ceramic concrete(RCC) property regression analysis sustainability
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Investigation of compaction and sintering behavior of SiC powder after ultra-fine treatment 被引量:3
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作者 郭兴忠 杨辉 《Journal of Zhejiang University Science》 EI CSCD 2004年第8期950-955,共6页
Silicon carbide ceramics were prepared with SiC powder treated by the fluidized bed opposed jet mill as raw materials, and the effects of the ultra-fine treatment mechanism on the compaction and sintering behavior of ... Silicon carbide ceramics were prepared with SiC powder treated by the fluidized bed opposed jet mill as raw materials, and the effects of the ultra-fine treatment mechanism on the compaction and sintering behavior of SiC ceramics were investigated. The results showed that the compacts had higher density and microstructure homogeneity when the sintering temperature of the compact was decreased; and that the surface microstructure, densification and mechanical properties of the sintered body could be ameliorated obviously. 展开更多
关键词 SiC ceramic ultra-fine treatment Compaction efficiency Sintering behavior
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超细ATC陶瓷制备及其干滑动磨损研究 被引量:1
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作者 朱流 郦剑 +1 位作者 凌国平 王幼文 《浙江大学学报(工学版)》 EI CAS CSCD 北大核心 2005年第12期1842-1846,共5页
为提高陶瓷刀具材料的耐磨性能和断裂韧性,制备新型超细Al2O3-TiC-8%Co(ATC)陶瓷样品.采用低温化学镀方法对亚微米级Al2O3和TiC粉末表面进行金属钴包覆,热压烧结复合粉体制备该ATC样品.在销盘式磨损试验机上对ATC陶瓷的耐磨性能进行考察... 为提高陶瓷刀具材料的耐磨性能和断裂韧性,制备新型超细Al2O3-TiC-8%Co(ATC)陶瓷样品.采用低温化学镀方法对亚微米级Al2O3和TiC粉末表面进行金属钴包覆,热压烧结复合粉体制备该ATC样品.在销盘式磨损试验机上对ATC陶瓷的耐磨性能进行考察,采用SEM对ATC陶瓷的磨损形貌进行分析.结果表明,干滑动摩擦条件下,断裂韧性对陶瓷材料耐磨性能的影响非常明显.各摩擦副磨损过程中,随磨损时间延长ATC陶瓷样品表面微细突起脱落,磨损面趋于平滑,相对磨损率降低.金属钴的独特复合方式抑制了烧结过程中晶粒长大,并增大ATC陶瓷的断裂韧性和耐磨性能. 展开更多
关键词 低温化学镀 超细atc陶瓷 干滑动磨损
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精细陶瓷ATC在固相颗粒作用下的磨损行为
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作者 郦剑 毛志远 +5 位作者 葛曼珍 杨辉 茅东升 郭绍义 许明浩 牟军 《浙江大学学报(自然科学版)》 CSCD 1996年第6期721-728,共8页
本工作研究了本组所开发的新型精细陶瓷ATC的抗磨粒磨损和抗冲蚀磨损性能,与AT30陶瓷相比,ATC陶瓷的耐磨性较好,在磨粒磨损与大角度冲蚀磨损时更为明显,磨损表面细致,存在明显的塑性变形,磨损由单个颗粒脱落和块状脱落... 本工作研究了本组所开发的新型精细陶瓷ATC的抗磨粒磨损和抗冲蚀磨损性能,与AT30陶瓷相比,ATC陶瓷的耐磨性较好,在磨粒磨损与大角度冲蚀磨损时更为明显,磨损表面细致,存在明显的塑性变形,磨损由单个颗粒脱落和块状脱落构成.ATC陶瓷样品耐磨性与其强韧化水平有关. 展开更多
关键词 atc陶瓷 磨粒磨损 冲蚀磨损 陶瓷 磨损
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一种新型陶瓷材料及其耐磨性 被引量:5
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作者 郦剑 茅东升 +3 位作者 郭绍义 毛志远 葛曼珍 杨辉 《高技术通讯》 EI CAS CSCD 1997年第7期15-20,共6页
对新型Al2O3-TiC-Co陶瓷的磨粒磨损、冲蚀磨损及其在单颗粒作用下的摩擦磨损行为进行了研究。与AT30(70wt%Al2O3-30wt%TiC)陶瓷相比,Al2O3-TiC-Co陶瓷具有更为良好的耐磨性。金属钴的存在提高了基体的韧性,细化了晶粒,其综... 对新型Al2O3-TiC-Co陶瓷的磨粒磨损、冲蚀磨损及其在单颗粒作用下的摩擦磨损行为进行了研究。与AT30(70wt%Al2O3-30wt%TiC)陶瓷相比,Al2O3-TiC-Co陶瓷具有更为良好的耐磨性。金属钴的存在提高了基体的韧性,细化了晶粒,其综合力学性能得到显著提高。ATC陶瓷样品耐磨性与其强韧化水平和细致的组织结构有关。 展开更多
关键词 atc陶瓷 磨损 耐磨性
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Al_2O_3—TiC—Co与Al_2O_3—TiC陶瓷冲蚀磨损行为的比较研究 被引量:1
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作者 茅东升 郦剑 +1 位作者 郭绍义 毛志远 《无机材料学报》 SCIE EI CAS CSCD 北大核心 1997年第5期693-698,共6页
通过特殊的化学处理方法,完成了对Al_2O_3及TiC陶瓷粉末的钴包覆.将包覆后的两种粉末按70wt%Al2O3-Co和300wt%TiC-Co的比例混合烧结出硬度和韧性都较理想的Al_2O_3-TIC-Co(ATC)精细陶瓷.通过SEM观察研究其冲依磨损行为,并对AT3... 通过特殊的化学处理方法,完成了对Al_2O_3及TiC陶瓷粉末的钴包覆.将包覆后的两种粉末按70wt%Al2O3-Co和300wt%TiC-Co的比例混合烧结出硬度和韧性都较理想的Al_2O_3-TIC-Co(ATC)精细陶瓷.通过SEM观察研究其冲依磨损行为,并对AT30(70wt%Al_2O_3-30wt%TiC)和ATC陶瓷的冲蚀行为及冲蚀机制进行了比较研究.与AT30陶瓷相比,ATC陶瓷良好的综合力学性能和细致的微观结构使得其比AT30陶瓷更为耐磨;磨损表面表现为浅层的颗粒脱落、微裂纹和塑性变形.而AT30陶瓷则表现为深层的颗粒脱落. 展开更多
关键词 陶瓷 冲蚀磨损 力学性 复合陶瓷 碳化硅 氧化铝
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