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Research on Containment Relationships between Rapid Prototyping Part and CAD Model
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作者 WANG Wei-chen ZHU Zhen-cai +1 位作者 FANG Liang XING Bang-sheng 《Computer Aided Drafting,Design and Manufacturing》 2009年第2期13-20,共8页
Aiming at the geometrical features of different containment relationships in Rapid Prototyping (RP), a general method of achieving the RP layer's cusp distribution of the positive, negative and mixed tolerance is p... Aiming at the geometrical features of different containment relationships in Rapid Prototyping (RP), a general method of achieving the RP layer's cusp distribution of the positive, negative and mixed tolerance is proposed to meet the part's different applications. The procedure is executed by projecting the current and the next section of the CAD model onto a horizontal plane, computing the union and the intersection of the sections to get the outer and the inner boundary, and then blending the boundaries using a rotary vector through a proper inner point in the intersection to achieve the current layer's scanning contour. The method can realize the layer's cusp distribution of the mixed tolerance with unequal cusp height, expanding the connotation of the mixed tolerance. 展开更多
关键词 rapid prototyping (RP) containment relationship cusp tolerance distribution blending contour boundaries
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Bioaccumulation, subcellular distribution and chemical forms of yttrium in rice seedling 被引量:4
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作者 Shengnan Zheng Caiyun Zhang +5 位作者 Kailun Shi Jinxiao Wang Guanjun Sun Qiaochu Hu Fengyun Zhao Xue Wang 《Journal of Rare Earths》 SCIE EI CAS CSCD 2018年第3期331-336,共6页
Yttrium(Y) accumulation in soil is a serious environment problem in China. To understand the mechanisms involved in Y tolerance and detoxification in rice seedling, the bioaccumulation, subcellular distribution, and... Yttrium(Y) accumulation in soil is a serious environment problem in China. To understand the mechanisms involved in Y tolerance and detoxification in rice seedling, the bioaccumulation, subcellular distribution, and chemical forms of Y was investigated in the present study. The results show that the content of Y both in roots and shoots increases with the increasing concentration of Y, and a large amount of Y is stored in roots. Subcellular distribution of Y in rice indicates that the majority of Y is bound to cell wall. Meanwhile, various chemical forms of Y is absorbed by rice. The greatest amount of Y is extracted by 2% hydrate acetic acid(HAc) and 0.6 mol/L HCl(particularly 2% HAc), which indicates that most of Y is combined with un-dissolved phosphate and oxalate(particularly phosphate). Cluster analysis, based on Y abundance levels, reveals the relationship between Y distribution patterns and chemical forms. Our results imply that Y forming of precipitates with phosphate(and/or oxalate) and depositing in the cell wall may be a key strategy for Y detoxicity and tolerance in rice. 展开更多
关键词 Subcelluar distribution Yttrium Detoxicity tolerance Rice Rare earths
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