硬度变化的英文
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"硬度变化"怎么读用"硬度变化"造句
英文翻译手机版
- variation in hardness
- "硬度"英文翻译 hardness; solidity; scirrhos ...
- "变化"英文翻译 change; variety; transformat ...
- "不同深度伯硬度变化曲线" 英文翻译 : hardness-depth curve
- "薄膜打字色带硬度变化的试验方法" 英文翻译 : standard test method for determining variations in hardness of film ribbon pancakes
- "硬度变异" 英文翻译 : hardness variation
- "长度变化" 英文翻译 : change in length; changeinlength; length change
- "分度变化量" 英文翻译 : index variation
- "幅度变化" 英文翻译 : amplitude of variation; amplitude variation
- "高度变化" 英文翻译 : altitude change; altitude variation
- "高度变化率" 英文翻译 : rate of change in altitude
- "高度变化图" 英文翻译 : height-change chart
- "骨密度变化" 英文翻译 : skeletal density change
- "光强度变化" 英文翻译 : variation in light intensity
- "厚度变化" 英文翻译 : variation in thickness
- "角度变化" 英文翻译 : angular change; angular variation
- "进度变化" 英文翻译 : schedule variance
- "经度变化" 英文翻译 : variation of longitude
- "孔隙度变化" 英文翻译 : porosity variation
- "宽度变化" 英文翻译 : width variation
- "粒度变化" 英文翻译 : change in particle size
- "亮度变化" 英文翻译 : brightness variations
- "灵敏度变化" 英文翻译 : sensitivingshift; sensitivity drift; sensitivity shift
- "密度变化" 英文翻译 : change in density; density change; density fluctuations; density variation
- "密度变化区" 英文翻译 : density transition zone
- "年度变化" 英文翻译 : annual variation
例句与用法
- Physical and chemical analyzation on firmness change
番茄果实采后硬度变化的理化解析 - Test method for determining variations in hardness of film ribbon pancakes
薄膜打字色带硬度变化的试验方法 - Study on the relationship between the melting point the hardness of the alkaline earth metal oxide and the electron structure
碱土金属氧化物熔点和硬度变化规律与电子结构的关系 - The result showed that after adding grain refiner , the hardness of magnesium alloys changed little while the impact toughness increased
结果表明,添加细化剂后,镁合金的硬度变化不大,而冲击韧性提高。 - The results show that with the increase of the powder feeding rate , the cladding layer gets thicker , its structure finer and its hardness changes slightly only
实验结果表明,随粉末送给率的增加,熔覆层厚度增加,熔覆层组织细化,熔覆层的硬度变化不大。 - The result showed with the increase of the acrylonitrile content , the density , tensile strength , and bending strength of the copolymer increased at the same time , while the impact strength , vicat softening temperature and hardness of the copolymer changed little
结果表明,共聚物中丙烯腈含量增加,共聚物的密度、拉伸强度和弯曲强度均相应地提高,而冲击强度、维卡软化温度及硬度变化不明显。 - Secondly , the effect of transverse deforming on the property of the wedge pressing was studied . the results showed that : the wedge pressing stock with the transverse deforming amount of 10 % acquired the best performance . the highest density got the biggest rate of slope while with the amount of 30 % the curve was more some special structure and performance as following : the large porosities was crushed into small or linear ones with the high - direction deformation amount of 20 % ; as the increasing of the high - direction deforming , the particles got a further deforming , the porosities got a further crushing , the small porosities were mergered by the large ones and the former then disappeared ; when the amound reached 60 % , the quantity of the porosities would obviously decrease which made the materials compact , the microstructure more uniform and the density and hardness curves more horizontal , the relative desity could reach 99 . 7 % , the tensile strength b of the as - compacted samples reached 408mpa with the yield strength s teached 289mpa and the elongation percentage reached 13 . 6 % . in addition , the microstructure of the wedge pressing stock under the pressing temperectureof 450 was uniform , the porosities and the boundries of the grains basically disappeared and the conjunction between particles was great
采用双向楔形压制,大尺寸喷射沉积5a06铝合金楔压坯的组织和性能变化具有如下特点:当高向变形量为20 %时,大的孔洞变形破碎为小的孔洞,或呈线状孔;随着高向变形量的增加,颗粒进一步变形,孔洞进一步破碎,大孔“吞并”小孔,小孔塌陷并逐步消失;当高向变形量达到60 %时,孔洞量大为减少,材料基本致密,组织趋于均匀,楔压坯料的密度、硬度变化曲线接近水平线,坯料的相对密度达99 . 7 % ,抗拉强度_ b = 408mpa ,屈服强度_ ( 0 . 2 ) = 289mpa ,延伸率= 13 . 6 % ;对比其它的压制温度,在450楔形压制的坯料组织均匀,孔洞及颗粒边界基本消失,颗粒之间冶金结合良好。 - The result shows that under the effect of repeated impact load , the stress wave produces reflection in the metallurgical junction plane between coating and basal body , and forms stretch wave causing longitudinal split and angle split of coat ; the microcosmic spot pitting and deep layered peeling off occur in coating surface due to stress concentration ; the energy accumulation of impact loading causes rigidity variation and plastic deformation
结果表明:在多冲载荷作用下,应力波在涂层和基体的冶金接合面发生反射,形成拉伸波造成涂层的纵裂和角裂;在涂层表面由于应力集中,涂层表面发生微观点蚀和深层剥落;冲击载荷能量的积累,造成涂层试样硬度变化和塑性变形。
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