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鸡饲料加锰可提高蛋壳强度
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作者 李惠萍 《畜禽业》 1995年第1期39-39,共1页
美国一所大学的研究人员经试验证明,在鸡饲料中加入一定数量的锰元素(加入量为100~200PPM),可以使母鸡不下软壳蛋。蛋鸡食用了加锰饲料后生的蛋,蛋壳厚度不增加,而其强度却大为提高,从而能大大减少鸡蛋的破损率。
关键词 鸡饲料 加锰 蛋壳厚度 元素 软壳蛋 蛋壳强度 破损率 研究人员 蛋鸡 入量
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Tl-Ba-Ca-Cu-O系超导体相结构和掺Mn影响的电镜研究
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作者 林明柱 周善元 +7 位作者 李永良 唐为华 涂青云 桑丽华 刘振兴 任燕如 林振金 孟宪仁 《北京师范大学学报(自然科学版)》 CAS CSCD 1989年第A04期25-28,共4页
Tl-Ba-Ca-Cu-O系超导体多相同时存在,多至6相,均属四方晶系钙钛矿结构,其中(2223)(2212)相共生,其衍射谱给出c≈33A的假象.加Mn可以部分取代Tl,但增加Mn的含量将失去高温超导性.
关键词 超导体 Tl-Ba-Ca-Cu-O体系 电子衍射 四方品系相 加锰
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Effect of Sc and Er additions on superplastic ductilities in Al-Mg-Mn-Zr alloy 被引量:4
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作者 段雨露 钱健 +2 位作者 肖丹 崔学敏 徐国富 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第6期1283-1292,共10页
The superplasticity of Al-6Mg-0.4Mn-0.25Sc-0.12Zr and Al-6Mg-0.4Mn-0.25Er-0.12Zr(mass fraction,%)alloys sheet was investigated,and the effect of Sc and Er was discussed.The results show that the superplastic ductiliti... The superplasticity of Al-6Mg-0.4Mn-0.25Sc-0.12Zr and Al-6Mg-0.4Mn-0.25Er-0.12Zr(mass fraction,%)alloys sheet was investigated,and the effect of Sc and Er was discussed.The results show that the superplastic ductilities of Al-Mg-Mn-Sc-Zr alloy was higher than that of Al-Mg-Mn-Er-Zr alloy at a wide temperature range of 400-540°C and high strain rate range of1.67×10-4-1.67×10-1 s-1.A maximum elongation 673%is obtained at 520°C and 1.67×10-3 s-1 in the Sc-containing alloy;while the Er-containing alloy only gets a maximum elongation 253%at 520°C and 1.67×10-3 s-1.Moreover,the average stress exponent of Sc-containing alloy is about 2.84,which is smaller than that of Er-containing alloy(3.64).Besides,the activation energies of the Sc-containing and Er-containing alloy are 84.8 k J/mol and 87.2 k J/mol,respectively.It is indicated that grain boundary sliding is the dominant mechanism during tensile deformation.According to microstructure examination,the better superplasticity of Sc-containing alloy may be attributed to the presence of Al3_(Sc,Zr)dispersoids,which can inhibit recrystallization and grain growth effectively. 展开更多
关键词 Al-Mg-Sc alloy Al-Mg-Er alloy SUPERPLASTICITY microstructure
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