1) cellular aluminum
胞状铝
1.
The characteristics of cellular aluminum specimen under compression were investigated, and the effects of porosity and pore-diameter on energy absorption of cellular aluminum were revealed.
研究了胞状铝的压缩形变特征以及孔隙率、孔径对吸能性能的影响 ;提出了不同孔隙率和孔径的胞状铝吸能性能的综合判别方法 。
2) cellular Al alloy
胞状铝合金
1.
The compressive stress(σ)-strain(ε) curves of cellular Al alloy (ZL111) and cellular Al have been investigated.
09ρ0,ρ0 为纯铝的密度)高强度胞状铝合金(ZL111)和胞状纯铝的压缩应力(σ) 应变(ε)曲线。
2.
The compressive stress (σ) versus strain (ε) curves of cellular Al alloy (ZL111) and cellular Al had been investigated.
测量分析了新型轻质、高强度胞状铝合金(ZL111)和胞状纯铝的压缩应力应变σ-ε曲线。
3.
The compressive behavior of cellular Al alloy under high strain rate (600~1800s~(-1)) had been studied by split Hopkinson pressure bar (SHPB).
用分段式Hopkison压杆研究了胞状铝合金及胞状纯铝在高应变速率(600~1800s 1)下的压缩行为。
3) cellulation
胞状
4) Cellular Decomposition
胞状分解
1.
The result from Diferental Scanning Calorimetry(DSC) shows that the pace of cellular decomposition of Zn-Al based alloy prepared by rapid solidification is accelerated compared with as-cast one.
通过DSC研究发现,快速凝固Zn-Al合金等温时效过程中胞状分解比铸态提前,结合XRD分析结果可知,合金等温时效过程中,调幅分解和胞状分解并行发生,时效15min后胞状分解结束,紧接着发生共析反应。
5) cellular reaction
胞状脱溶
6) round cellule
胞状体
参考词条
胞状η相
胞状组织
胞状位错
细胞状态
胞状转变
胞状树枝晶
细胞状云系
位错胞状组织
胞状组织结构
界面胞状结构
细胞状遗传算法
KNbO_3胞状结晶的生长
胞状结构台阶生长
ZrO_2粉体
代数无关性
补充资料:梭状芽胞杆菌性蜂窝织炎
梭状芽胞杆菌性蜂窝织炎
clostridial cellulitis
是由梭状芽胞杆菌和诺氏水肿杆菌引起的主要局限于皮下蜂窝组织的急性感染。通常3~5d后发病,主要表现为皮下组织广泛炎性、坏死,但肌肉通常无坏死,全身症状轻。诊断主要根据临床特点和渗液涂片。一旦确诊,伤口应立即切开引流,切除坏死组织,伤口敞开,用大量3%过氧化氢溶液冲洗或湿敷。静脉滴注青霉素G。加强支持疗法。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。