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1)  scandium losing
钪损失
2)  Sc
1.
Effects of Minor Sc on Microstructure and Mechanical Properties of Al-Zn-Mg-Zr Alloy Welded Joint;
微量钪对Al-Zn-Mg-Zr焊接接头组织性能的影响
2.
As-Cast Microstructures and Properties of Al-9.0Zn-2.5Mg-1.2Cu-0.15Zr Alloys Adding Sc;
含钪Al-9.0Zn-2.5Mg-1.2Cu-0.15Zr合金铸态组织与力学性能
3.
The Present Situation and the Development Prospect of Aluminum Alloy with Scandium Contained;
含钪铝合金的现状与开发前景
3)  scandium [英]['skændiəm]  [美]['skændɪəm]
1.
Recovery Scandium from Leaching Liquor of Red Mud;
从赤泥盐酸浸出液中提取钪
2.
Extraction technique of the scandium from titania waste acid;
钛白废酸中钪的提取工艺改进
3.
Effect of Trace Scandium on Properties and Micro structure of 5A01 Alloy;
微量钪(Sc)对5A01合金性能与显微组织的影响
4)  losses [英][lɔs]  [美][lɔs]
损失
1.
The Losses and Compensations in Literary Translation;
文学翻译中的损失与补偿
2.
On Guilin s losses in the Anti-Japanese War and Its Research Work;
桂林抗战损失程度及调查研究工作的基本估计
5)  loss [英][lɔs]  [美][lɔs]
损失
1.
Study on the loss of gas storage capacity of underground gas storage in aquifer;
含水岩层型地下储气库储气量损失研究
2.
A study of the ore loss and dilution in bottom-pillar-free stepped collapse mining;
无底柱分段崩落采矿法的损失、贫化问题探讨
3.
Brief analysis of loss and dilution of ore in Helanshan Phosphate Mine;
贺兰山磷矿矿石损失贫化浅析
6)  Exergy loss
损失
1.
The steam-using system optimization model is established inthis paper with the objective function of minimum exergy loss.
建立了以用汽系统的 损失最小为目标函数的优化数学模型,确定了各级蒸汽用户应充分利用对应本等级的外界输入蒸汽,使节流下来的蒸汽达到最小的基本原则,实现对用汽系统的优化操作。
2.
The effect of the C3/MRC process parameters on the exergy loss of equipment was analyzed, which are the pressure of natural gas, the temperature of the natural gas cooled by propane cycle, the temperature of the mixed refrigerant entering MR compressor, the absorbing and discharging pressure of MR compressor.
在丙烷预冷的混合制冷剂循环液化流程热力分析的基础上,对流程进行分析,并分析了流程中天然气压力、丙烷预冷后天然气的温度、制冷剂进入压缩机时的温度和压力及制冷剂压缩机排气压力对流程各设备损失的影响。
3.
The exergy loss of each part, the energy utilization, and its weakness and the energy-saving method are presented here after the simulated computation.
通过对一种常见的燃气蒸汽联合循环系统的模拟计算,给出了各部位损失的大小及分布,对其能量利用情况进行了评价,并找出了薄弱环节,提出了节能措施。
补充资料:氟化钪
分子式:ScF3 
CAS号:

性质:白色粉末。熔点1242℃,易溶于过量的氟化物溶液里。制备方法及其他化学性质同于氟化镧。可制取金属钪和改进合金性能的添加剂。

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