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1)  stainless steel 304
不锈钢304
1.
The wear of reamers made of three kinds of material,which are stainless steel 304,high speed steel(W18Cr4V) and Cr12,under different conditions was studied.
用表面形貌仪,采用平行试验方法,研究FL150型风冷式粉碎机粉碎手机边框板在常温和低温2种条件下,不锈钢304刀具、高速钢(W18Cr4V)刀具、Cr12刀具3种材料刀具的磨损情况。
2)  304 stainless steel
304不锈钢
1.
A Study on Non-Metallic Inclusion in 304 Stainless Steel Produced by Twin Roll Thin Strip Casting;
双辊薄带连铸304不锈钢中非金属夹杂物研究
2.
An Analysis on Formation and Distribution of Cracks in 2mm 304 Stainless Steel Concasting Thin Strip;
304不锈钢2mm连铸薄带中的裂纹分布和形成分析
3.
Study on corrosion resistance of bright annealing treated 304 stainless steel in NaCl solutions;
光亮退火处理304不锈钢在NaCl溶液中的耐蚀性
3)  Stainless Steel
304不锈钢
1.
Numerical Simulation of Temperature Field of 304 Stainless Steel Rod and Wire Hot Continuous Rolling;
304不锈钢棒线材热连轧温度场的数值模拟
2.
Effect of Secondary Cooling Water Rate on Concasting Slab Quality of 304 Stainless Steel;
二冷配水对304不锈钢连铸板坯质量的影响
3.
The corrosion behavior of 304 stainless steel and its corrosion protection by organic silicone coatings with Al powder and Ti powder in the presence of a pre-deposited solid NaCl and water vapor at 400℃ was studied.
研究了304不锈钢在400℃、盐和水蒸气综合作用下的腐蚀行为及添加Al粉和Ti粉的有机硅涂层对不锈钢的防护作用。
4)  type 304 stainless steel
304不锈钢
1.
After a specimen of type 304 stainless steel was pre-crept at a constant load in silicon oil at 143℃ for 24 h, and underwent stress corrosion cracking (SCC) at the same constant load in a MgCl2 solution at 143℃ at open-circuit potential for 2 h, α' martensite on the surface and over the entire specimen increased 14% and 1.
304不锈钢在143℃硅油中恒载荷预蠕变足够长时间后,再在143℃ MgCl2溶液中相同恒载荷下进行应力腐蚀。
5)  AISI 304 stainless steel
AISI 304不锈钢
1.
Nanostructured surface layer was synthesized on an AISI 304 stainless steel by using surface mechanical attrition treatment (SMAT), the grain refinement behavior and the hardness variation were examined.
采用表面机械研磨处理(SMAT)在AISI 304不锈钢上制备出纳米结构表层,研究纳米化行为及其对硬度的影响。
6)  304 stainless steel tubes
304不锈钢管
1.
It shows that 304 stainless steel tubes possesses much better corrosion resistance rather than copper tubes in ammonia solution.
采用电化学极化和失重法研究了纯铜管、304不锈钢管于开口、低氧密闭两种状态下在不同浓度氨溶液中的腐蚀性能。
补充资料:304
CAS: 548-62-9
分子式: C25H30ClN3
分子量: 407.98
熔点: 215℃

中文名称: 龙胆紫;结晶紫;碱性紫5BN;盐基品紫;甲基紫5GN;碱性紫6BN;碱性艳紫3B;盐基青莲;盐基结晶紫;碱性青莲;303盐基青莲粉2B;304;盐基青莲粒2B

英文名称: Basic violet 5BN;Methyl violet 5BN;Gentian violet;Crystal violet;C.I. Basic violet 3;ammonium, (4-(bis(p-(dimethylamino)phenyl)methylene)-2,5-cyclohexadien-1-yliden
adergon
aizen crystal violet
aizen crystal violet extra pure
ammonium, (4-(bis(p-(dimethylamino)phenyl)methylene)-2,5-cyclohexadien-1- yl-id
aniline violet
aniline violet pyoktanine
atmonil
avermin
axuris
badil
basic violet 3

性质描述: 暗绿色闪光粉状或粒状物。溶于水呈紫色,极易溶于酒精呈紫色。在浓硫酸中呈红光黄(橙)色,稀释后呈暗绿光黄色转蓝到紫色,在浓硝酸中呈橄榄色。其水溶液加氢氧化钠成紫色沉淀;加盐酸变蓝色。属三苯甲烷类碱性染料。

生产方法: N,N-二甲基苯胺在硫酸铜;苯酚和盐的作用下进行氧化缩合,而后用氢氧化钠和硫化钠进行碱性转化,接着用硫酸进行转化,最后经盐析;过滤及干燥即得成品。原料消耗(kg、t)N,N-二甲基苯胺 985苯酚 200硫酸 190硫酸铜(96%) 625氢氧化钠(100%) 360硫化钠(63.5%) 135工业盐 2700

用途: 可用于染色,也可制成色淀。在医药上,用作皮肤科消毒防腐药。
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