The redistribution of solutes during steel solidification induces macrosegregation ultimately.
铸钢凝固过程的溶质再分配是产生宏观偏析的根本原因。
The redistribution of solutes during steel solidification induces macrosegregation ultimately.
铸钢凝固过程的溶质再分配是产生宏观偏析的根本原因。
In complicated frequency components domain, wavelet scalogram and assigned wavelet scalogram were used to further analyze vibration signals.
在频率成分较复杂的地方,利用小波尺度图和再分配小波尺度图行细化分析。
The microporosity morphology and formation mechanism of cast magnesium alloy was investigated with software for analysis percentage of microporosity and field scanning electron microscopy.
铸造镁合金微孔的组织形态形成符合气体形成模型和溶质再分配
论,从而验证氢气析出形成显微气孔
。
明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
The redistribution of solutes during steel solidification induces macrosegregation ultimately.
摘要铸钢凝固过程的溶质再分配是产生宏观偏析的根本原因。
In complicated frequency components domain, wavelet scalogram and assigned wavelet scalogram were used to further analyze vibration signals.
在频率成分较复杂的地方,利用小波尺再分配小波尺
行细化分析。
The microporosity morphology and formation mechanism of cast magnesium alloy was investigated with software for analysis percentage of microporosity and field scanning electron microscopy.
铸造镁孔的组织形态形成机理符
气体形成模型
溶质再分配理论,从而验证氢气析出形成显
气孔机理。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
The redistribution of solutes during steel solidification induces macrosegregation ultimately.
摘要铸钢凝固过程的溶质再产生宏观偏析的根本原因。
In complicated frequency components domain, wavelet scalogram and assigned wavelet scalogram were used to further analyze vibration signals.
在频率成较复杂的地方,利用小波尺度图和再
小波尺度图
行细化
析。
The microporosity morphology and formation mechanism of cast magnesium alloy was investigated with software for analysis percentage of microporosity and field scanning electron microscopy.
铸造镁合金微孔的组织形态形成机理符合气体形成模型和溶质再理论,从
氢气析出形成显微气孔机理。
声明:以上例句、词性类均由互联网资源自动生成,部
未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
The redistribution of solutes during steel solidification induces macrosegregation ultimately.
摘要铸钢凝固过程的溶质再是产生
析的根本原因。
In complicated frequency components domain, wavelet scalogram and assigned wavelet scalogram were used to further analyze vibration signals.
在频率成较复杂的地方,利用小波尺度图和再
小波尺度图
行细化
析。
The microporosity morphology and formation mechanism of cast magnesium alloy was investigated with software for analysis percentage of microporosity and field scanning electron microscopy.
铸造镁合金微孔的组织形态形成机符合气体形成模型和溶质再
论,从而验证氢气析出形成显微气孔机
。
声明:以上例句、词性类均由互联网资源自动生成,部
未经过人工审核,其表达内容亦不代表本软件的
点;若发现问题,欢迎向我们指正。
The redistribution of solutes during steel solidification induces macrosegregation ultimately.
钢凝固过程的溶质再分配是产生宏观偏析的根本原因。
In complicated frequency components domain, wavelet scalogram and assigned wavelet scalogram were used to further analyze vibration signals.
在频率成分较复杂的地方,利用小波尺度图和再分配小波尺度图行细化分析。
The microporosity morphology and formation mechanism of cast magnesium alloy was investigated with software for analysis percentage of microporosity and field scanning electron microscopy.
造镁合金微
的组织形态形成
符合气体形成模型和溶质再分配
论,从而验证氢气析出形成显微气
。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
The redistribution of solutes during steel solidification induces macrosegregation ultimately.
摘要铸钢凝固过程再分配是产生宏观偏
根本原因。
In complicated frequency components domain, wavelet scalogram and assigned wavelet scalogram were used to further analyze vibration signals.
在频率成分较复杂地方,利用小波尺度图和再分配小波尺度图
行细化分
。
The microporosity morphology and formation mechanism of cast magnesium alloy was investigated with software for analysis percentage of microporosity and field scanning electron microscopy.
铸造镁合金微孔组织形态形成机理符合
体形成模型和
再分配理论,从而验证氢
形成显微
孔机理。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件观点;若发现问题,欢迎向我们指正。
The redistribution of solutes during steel solidification induces macrosegregation ultimately.
摘要铸钢凝固过程的溶质再分配是产生宏观偏析的根本原因。
In complicated frequency components domain, wavelet scalogram and assigned wavelet scalogram were used to further analyze vibration signals.
在分较复杂的地方,利用小波尺度图和再分配小波尺度图
行细化分析。
The microporosity morphology and formation mechanism of cast magnesium alloy was investigated with software for analysis percentage of microporosity and field scanning electron microscopy.
铸造镁合金微孔的组织态
机理符合
模型和溶质再分配理论,从而验证氢
析出
显微
孔机理。
声明:以上例句、词性分类均由互联网资源自动生,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
The redistribution of solutes during steel solidification induces macrosegregation ultimately.
摘要铸钢凝固过程的溶质再配是产生宏观偏析的根本原因。
In complicated frequency components domain, wavelet scalogram and assigned wavelet scalogram were used to further analyze vibration signals.
在频较复杂的地方,利用小波尺度图和再
配小波尺度图
行细化
析。
The microporosity morphology and formation mechanism of cast magnesium alloy was investigated with software for analysis percentage of microporosity and field scanning electron microscopy.
铸造镁金微孔的组织形态形
机理符
形
模型和溶质再
配理论,从而验证氢
析出形
显微
孔机理。
声明:以上例句、词性类均由互联网资源自动生
,部
未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
The redistribution of solutes during steel solidification induces macrosegregation ultimately.
摘要铸钢凝固过程的溶质再配是产生宏观偏析的根本原因。
In complicated frequency components domain, wavelet scalogram and assigned wavelet scalogram were used to further analyze vibration signals.
在频率成较复杂的地方,利用小波尺度图和再
配小波尺度图
行细化
析。
The microporosity morphology and formation mechanism of cast magnesium alloy was investigated with software for analysis percentage of microporosity and field scanning electron microscopy.
铸造镁合金微孔的组织形态形成机理符合气体形成模型和溶质再配理论,从而验证氢气析出形成显微气孔机理。
声明:以上例句、词类均由互联网资源自动生成,部
未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。