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1.
Study on Microstructure and Property of AZ31B Magnesium Alloy Prepared by Solid State Recycling
固相再生AZ31B镁合金组织及性能研究
2.
Study on Microstructure and Mechanical Property of AZ91D Magnesium Alloy Prepared by Solid State Recycling;
固相再生AZ91D镁合金组织结构及性能研究
3.
Study on Microstructure and Mechanical Property of ZM6 Heat-resistant Magnesium Alloy Prepared by Solid State Recycling
固相再生ZM6耐热镁合金组织和性能研究
4.
Mechanical properties and fracture behaviors of ZM6 magnesium alloy prepared by solid recycling process
固相再生ZM6镁合金的力学性能和断裂行为
5.
Research progress in reclaiming waste rubber by solid state shear and ultrasonic wave processes
固相剪切法与超声波法再生废旧橡胶的研究进展
6.
reproducible fixed assets
可再生产的固定资产
7.
Among non-regenerative processes, the lime or limestone is added to flue gas and the reaction follows gas/liquid, Liquid/liquid and liquid/solid.
在不可再生法中,将石灰或石灰石加入燃料中,气液、液液和液固三相反应随之发生。
8.
stocks of reproducible fixed assets
能再生产的固定资产储存
9.
Tests and Research on Bond Behavior between Steel Bar and Recycled Aggregate Concrete;
再生混凝土粘结锚固性能的试验研究
10.
TEXT STUDY ON THE INORGANIC SOLID CONSTRUCTION WASTE RE-USED
无机固体建筑垃圾再生利用试验研究
11.
Analysis of Correlation between Growth Quantity and N-Fixation Efficiency of 29 N-fixing Trees
29种固氮树种生长量与固氮效率相关性研究
12.
Prior work used renewable hydrogen to maximize CO2 capture.
早期研究中用可再生的氢来固定二氧化碳。
13.
Effector Mechanisms of Innate Immune Cells in Liver Injury and Regeneration;
固有免疫细胞在肝脏损伤和再生中的效应机制
14.
The Research on the Chemical Phosphorous Removal by Immobilization of Activated La_2O_3 and Vacuum Regeneration Phosphors in Reducing Phosphate from Wastewater;
固定化活性氧化镧化学除磷及其真空再生研究
15.
Ionic Liquids-Regenerated Cellulose for Enzymatic Hydrolysis and Enzyme Immobilization
离子液体再生纤维素的酶解表征与固载酶应用
16.
Study on Durable Experiment of Recycled Aggregate Concrete Used by Solid Waste
固体废弃物再生骨料混凝土的耐久性试验研究
17.
Synthesizing Technique of Ester-Cured Alkaline Phenolic Resin for Reclaimed Sand
再生砂用酯固化碱性酚醛树脂合成工艺
18.
Under the same conditions, the capacities were alike in both of bone char and purified bone salt.
在相同条件下 ,骨炭和再生骨盐两者再生后的除氟容量相似。