1)ZL101 alloyZL101合金
1.Effects of Composite Modification on the Mechanical Properties of ZL101 Alloy;复合变质对ZL101合金力学性能的影响
2.Study on Microstructure Evolution of ZL101 Alloy During Melt Isothermal Treatment;ZL101合金等温熔体处理中组织演变的研究
3.Fabrication and Mechanism of Non-dendrite Structure in Semi-solid ZL101 Alloy by Controlled Pouring Temperature控制浇注温度制备的半固态ZL101合金的非枝晶组织
英文短句/例句
1.Effect of Sr Modification on Morphology of Eutectic Silicon in ZL101 AlloySr变质对ZL101合金中共晶Si形貌的影响
2.Fabrication and Mechanism of Non-dendrite Structure in Semi-solid ZL101 Alloy by Controlled Pouring Temperature控制浇注温度制备的半固态ZL101合金的非枝晶组织
3.Study on Fluidity of ZL101 in Semi-solid Micro-ExtrusionZL101铝合金半固态微挤压流动性研究
4.Laser Cladding Fe-Al Intermetallics Coatings on ZL101 SubstrateZL101铝合金表面激光熔覆Fe-Al金属间化合物涂层
5.Influence of Stibium on Low Cycle Fatigue Capability of Cast Aluminum Alloy ZL101;Sb对ZL101铸造铝合金低周疲劳性能的影响
6.Experimental research on fluidity of semi-solid alloy ZL101 mircoextrusionZL101铝合金半固态微挤压流动性实验研究
7.Effects of Pressure Field on Structure and Properties of Lost Foam Casting ZL101 Alloy压力场对ZL101铝合金消失模铸造性能的影响
8.Research on Semi-Solid ZL101-Sc Alloy Prepared by Low Superheat Pouring用低过热度浇注技术制备半固态ZL101-Sc铝合金
9.Influence of Brightener Content on the Electroless Deposit Ni-P Coatings for ZL101 Aluminum Alloy光亮剂对ZL101铝合金表面化学镀镍磷合金层的影响
10.The Study of (TiB_2+Al_3Ti)/ZL101 in Situ Composite;(TiB_2+Al_3Ti)/ZL101原位复合材料的研究
11.Study on the orthorhombic experiment of the AlN/ZL101 In Situ composite;AlN/ZL101原位复合材料的正交实验研究
12.Preparation of SiCp/ZL101 Composites by High-intensity Ultrasonic Treatment高能超声半固态复合法制备SiCp/ZL101复合材料的研究
13.Microstructure and Cutting Performance of TiB_2/ZL101 Composites Prepared by Direct Reaction Method熔体直接反应法制备TiB_2/ZL101复合材料的显微组织及切削性能
14.Effects of Mechanical Vibration on Microstructure and Properties of Lost Foam Casting (LFC) ZL101 Alloy机械振动对ZL101消失模铸造组织及性能的影响
15.non-metal-non-metal eutectic alloy非金属-非金属共晶合金
16.metal-nonmetal eutectic alloy金属-非金属共晶合金
17.metal-metal eutectic alloy金属-金属共晶合金
18.Research on Process and Coating Formation Mechanism in Plasma Electrolytic Oxidation of ZL101;ZL101等离子体电解氧化工艺及膜层形成机理的研究
相关短句/例句
aluminium alloy 101ZL101-T6合金
3)ZL101-La alloyZL101-La合金
4)ZL101 Al alloyZL101铝合金
1.Evolution on morphology of primary phase in semi-solid ZL101 Al alloy during isothermal holding in the solid-liquid area is investigated and the effect of processing parameters on the morphology is discussed.研究了半固态ZL101铝合金初生相在固液相区等温保温下初生相形貌的演变,探讨了工艺参数对ZL101铝合金初生相在固液相区等温保温的影响。
2.The semi-solid slurry of ZL101 Al alloy,which was grain-refined by RE master alloy,was prepared by low temperature pouring.利用稀土中间合金对液态ZL101铝合金进行了细化处理,并用低温浇注技术制备了ZL101铝合金半固态浆料,研究了细化处理对所制备ZL101铝合金的半固态初生α相形貌和尺寸的影响。
5)ZL101 aluminum cast alloysZL101铸造铝合金
6)SiCp/ZL101 compositesSiCp/ZL101复合材料
1.The precast block of SiCp/ZL101 composites were prepared by using infiltration method.用浸渗法制备了SiCp/ZL101复合材料预制块,通过在预制块的稀释过程中施加高能超声波搅拌,获得了增强颗粒弥散均匀,基体合金组织细小的复合材料。
2.SiCp/ZL101 composites are used extensive in aviation, military affairs, automotive industry, electronic device, athletic sports and many other industrial fields, due to their unique properties such as high wear-resistance, low expansion coefficient, lightweight, specific strength and specific modular.本文采用加压渗流法制备SiC/Al预制块与高能超声波搅拌法相结合的方法制备SiCp/ZL101复合材料,研究了这种方法制备复合材料的各工艺参数及控制方法,并对复合材料的微观组织、界面以及宏观及显微硬度、摩擦磨损性能等开展较为深入的研究。
延伸阅读
MT-101分子式:C19H17NO2分子量:291.35CAS号:52570-16-8性质:白色结晶。熔点128℃,相对密度(25/4℃)1.256,蒸气压(110℃)为6.65×10-2kPa。溶解度(27℃,g/L):乙醇17,丙酮171,苯46,甲苯42,水0.74ppm。在中性和弱酸性介质中稳定,在碱性或热强酸不稳定,对光稳定。制备方法:由乙萘酚、α-卤代丙酸和苯胺为原料,经下述反应制得。1.α-溴丙酰替苯胺的制备 将α-溴丙酮加入反应器中,搅拌下滴加三氯氧磷,温度保持在40℃以下,加毕,慢慢加入苯胺,升温至110-120℃反应1.5h,冷却至80℃后加入少量水,冷却,过滤,滤饼用水洗,在50-60℃干燥,再用乙醇水溶液重结晶得α-溴丙酰替苯胺。熔点96-97.5℃。摩尔配料比 苯胺:α-溴丙酸:三氯氧磷=1.0:1.2:0.4。2.萘丙胺的制备 将乙萘酚和10%NaOH溶液加热溶解,加入氯化三乙基苄胺(TEBA)。另外,将α-溴丙酰替苯胺溶解于苯中。将乙萘酚钠水溶液加热至60-70℃,滴加α-溴丙酰替苯胺的苯溶液。加毕,反应4h,冷却,静置分层。水层用苯抽提,抽提液与苯层合并,常压脱苯得到的粗品用乙醇水溶液重结晶,得苯丙胺。摩尔配料比 α-溴丙酰替苯胺:乙萘酚:碱=1.0:1.2:1.2。用途:该品对多年生和一年生杂草具有触杀作用,如瓜皮草、牛毛毡、水莎草等防效良好。对瓜皮草有特效。
