Chinese translation for "裂纹形成"
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- clinking
crack formation
Related Translations:
时效裂纹: ageing crackageing induced crackaging crack 网状裂纹: alligatoringpattern crackingresillage 热裂纹: fire checkheat checkingheat crackingheating crackhot crackinghot fi urethermal crack 裂纹试验: controlled thermal severity cracking testcrack testiiw cracking test 宏观裂纹: macro crackmacrocrackmacroscopic cracking 裂纹敏感性: crack se itivitycrack sensitivitycrack susceptibilitycrack-sensitivitycracking sensibilitycracking susceptibility
- Example Sentences:
| 1. | The fatigue crack initiation life of x60 pipeline steel after pre - tension deformation 60管线钢疲劳裂纹形成寿命的影响 | | 2. | Abstract : in the paper , the hot crack for the forging die made by methodsof squeeze casting is analyzed , how to reduce the hot crack is also given out 文摘:从生产实际出发,分析了锻模液态模锻成形过程中热裂纹形成的主要原因,提出了降低锻模热裂纹的几点措施。 | | 3. | From the work done above , we can get the following conclusion " all these life estimation approaches can be smoothly used to predict the life of aircraft , but they have their own limits 通过上述工作,得到如下结论:各寿命估算方法都能较顺利估算飞机结构的裂纹形成寿命,但各寿命估算方法又都有自身的缺点。 | | 4. | Fatigue life estimation is the basis of the fatigue analysis . by the investigation , we can get fatigue analysis methods and choose the proper structure crack - forming life assess method 通过研究以确定疲劳分析的途径,疲劳分析的关键是结构的疲劳寿命的估算,进而确定结构裂纹形成寿命估算的比较适合的方法。 | | 5. | According to the characteristics of the plexiglas , using the principles of the stress field intensity ( sfi ) , a local stress approach for the evaluation of the fatigue life of the plexiglas structures is proposed 根据有机玻璃特点,利用场强法原理,建立了有机玻璃裂纹形成寿命的局部应力估算方法,采用该方法估算得到的玻璃螺栓孔处的疲劳寿命与边缘连接件疲劳试验结果吻合较好。 | | 6. | Cracking failure of centrifugal compressor ' s impellers was analyzed , the welding craters in the impellers led to stress concentration . the unsteady gas flow accelerated the development of cracks in the impeller 摘要针对某石化公司离心压缩机叶轮多次发生开裂、掉块等故障以及裂纹形成机理进行了分析。分析结果表明了叶轮开裂原因系疲劳开裂,叶轮焊接缺陷产生了焊接弧坑,造成表面应力集中,气流激振加速了裂纹扩展。 | | 7. | Energy estimating approach of fatigue crack initiation life for welded steel structures is obtained by using molski - glinka energy density equation , introducing the worst - case fatigue notch factor , and considering the effects of residual stress on fatigue 本文采用应力应变能密度的molski - glinka方程,建立了一种预测焊接钢结构疲劳裂纹形成寿命的能量方法。该方法引入了极值疲劳切口系数,并考虑了焊接残余应力对裂纹形成寿命的影响。 | | 8. | Based on the aircraft structure fatigue theory , the article discussed the theoretical basis of methods that are usually used for aircraft structure fatigue crack - forming life estimation , i . e . the stress severity factor approach ( normal stress approach ) , the local stress & strain approach , detail fatigue rating approach ( dfr ) . also the processes of life estimation of these approaches are studied in the article 文章在简要介绍飞机结构疲劳强度理论的基础上,对目前飞机结构劳疲劳裂纹形成寿命估算常用的应力严重系数法(名义应力法) ,局部应力应变法,细节疲劳额定值dfr法的理论依据作了较详细的论述,同时对这些估算方法进行寿命估算的过程与步骤也作了详尽的阐述。 | | 9. | In industry , about over 80 % damages of the oscillatory components under dynamic loads are caused by the fatigue failure , but with traditional ndt methods , the damages ca n ' t be tested and evaluated before the fatigue crack coming into being , which result in serious accident in the long period running of these equipments 工业生产中,约有80 %以上受动载荷作用的振动构件破坏是由疲劳失效引发的,而传统的无损检测技术无法解决疲劳裂纹形成前损伤的检测和评价问题,造成设备在长周期运行过程中发生严重事故。 | | 10. | " second , jhe failure process of lpg vessel usually includes two phasest the crack formation and the crack propagation . after the temperatat field distribution and the iil . stress field distribution of lpg vessel without cracks are calculated , the stress intensity factor of lpg vessel with initial radial crack as well as surface crack are calculated and analyzed 其次,液化气容器的失效过程通常分为裂纹形成和裂纹扩展两个阶段,本文在对无裂纹液化气容器的瞬态温度场和应力场进行了计算后,对含有初始表面裂纹的液化气容器的瞬态应力强度因子进行了计算和分析。 |
- Similar Words:
- "裂纹稳定扩展" Chinese translation, "裂纹现象" Chinese translation, "裂纹线" Chinese translation, "裂纹效果" Chinese translation, "裂纹型式" Chinese translation, "裂纹形貌" Chinese translation, "裂纹形状因子" Chinese translation, "裂纹性湿疹" Chinese translation, "裂纹岩块" Chinese translation, "裂纹延伸" Chinese translation
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