1) gold-manganese alloys
金锰合金
2) silicon-manganese alloy
硅锰合金
1.
Rapid analysis of silicon,phosphorus and manganese contents in silicon-manganese alloy;
硅锰合金中硅、磷、锰的快速分析
2.
Dissolving sample with nitric acid and hydrofluoric acid,the silicon content of silicon-manganese alloy was made a measurement with ICP-AES method in the hydrofluoric acid-resistant spray devices.
用硝酸和氢氟酸溶解试样,采用耐氢氟酸雾化装置,用ICP-AES法测定硅锰合金中的硅。
3) Al-Mn allays
锰铝合金
1.
The solid-liquid mixed casting of Al-Mn allays was studied by adding same alloys powder, the structure and performance of the material prepared by solid-liquid mixed casting was analyzed.
2%;优于传统铸造和半固态铸造合金,使难以应用的高锰铝合金有了应用可能。
4) Ni-Mn alloy
镍锰合金
1.
Study on Ni-Mn Alloy Electroforming of Nozzle and Its Fracture Problem;
喷管的镍锰合金电铸及其开裂问题的研究
2.
Ni-Mn alloy,as a matrix of wear-resistance skid-plate,was electrodeposited from sulfate-chloride baths at ambient temperature,current density of 0.
用于耐磨滑履胎体的镍锰合金在硫酸盐-氯化物电镀溶液中沉积,试验在室温下进行,pH在3。
3.
The electroforming of Ni-Mn alloy for the thin-wall revolving part was carried out with a device that could be used to electroform a revolving part.
利用可以电铸回转体零件的装置,开展了薄壁回转体零件的镍锰合金电铸试验。
5) Mn-Cu alloy
锰铜合金
1.
The dynamics characters of axis sleeve made of the new Mn-Cu alloy is investigated, which is used as absorber in the high-speed rotary fusee-testing machine.
根据基础激振—共振质量法测试原理设计专用的实验测试系统,对作为高速旋转引信实验机减振部件使用的新型锰铜合金圆环类部件进行动力学特性测试。
2.
Variance of phyxics and mechanical property of Steel and Mn-Cu alloy are enormous, obtain good joint is difficult by conventional welding method.
钢与ZMnD-1J锰铜合金在物理、力学性能方面差异巨大,用传统的方法焊接,难以得到性能良好的接头。
6) MnSi alloy
硅锰合金
1.
Experimental research on cold bonding briquette of MnSi alloy powder with adding manganese ore fines;
硅锰合金粉料添加富锰矿粉冷固结压块试验研究
2.
An experimental research on the cold bonding briquette of MnSi alloy powder materials by using different kinds of adhesives is carried out.
通过使用不同的粘结剂对硅锰合金粉料进行冷固结压块的试验,确定了最佳的硅锰铁压块配料方案,使原本难以再利用的硅锰合金粉料压成符合炼钢要求的成品块,在低成本的条件下为硅锰合金粉料这种二次资源以及其他类似资源的合理再利用找到了新的途径。
补充资料:金锰合金
分子式:
CAS号:
性质: 金基含有锰的二元合金。在960℃,锰在金中的溶解度为11.6%;在100℃,约5%。锰可提高金的电阻系数,降低电阻温度系数。最好采用真空中频炉充氩保护熔炼。用作电位器绕组材料。如PtAuMn5.3合金中加1%Cr,则新合金电阻温度系数进一步降低,电阻系数又大幅度提高,而且性能较稳定。
CAS号:
性质: 金基含有锰的二元合金。在960℃,锰在金中的溶解度为11.6%;在100℃,约5%。锰可提高金的电阻系数,降低电阻温度系数。最好采用真空中频炉充氩保护熔炼。用作电位器绕组材料。如PtAuMn5.3合金中加1%Cr,则新合金电阻温度系数进一步降低,电阻系数又大幅度提高,而且性能较稳定。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条