برتری دانشمند بر عابد، مانند برتری ماه شب چهارده بر دیگر ستارگان است . [پیامبر خدا صلی الله علیه و آله]
 
شنبه 95 آبان 29 , ساعت 11:37 عصر

 

برای دریافت پروژه اینجا کلیک کنید

مقاله EXPERIMENTAL STUDY OF CHARPY IMPACT CHARACTERISTICS OF HIGHدرSTRENGTH SPIRAL WELDED GAS PIPELINE در pdf دارای 7 صفحه می باشد و دارای تنظیمات در microsoft word می باشد و آماده پرینت یا چاپ است

فایل ورد مقاله EXPERIMENTAL STUDY OF CHARPY IMPACT CHARACTERISTICS OF HIGHدرSTRENGTH SPIRAL WELDED GAS PIPELINE در pdf کاملا فرمت بندی و تنظیم شده در استاندارد دانشگاه و مراکز دولتی می باشد.

این پروژه توسط مرکز مرکز پروژه های دانشجویی آماده و تنظیم شده است

توجه : در صورت  مشاهده  بهم ریختگی احتمالی در متون زیر ،دلیل ان کپی کردن این مطالب از داخل فایل ورد می باشد و در فایل اصلی مقاله EXPERIMENTAL STUDY OF CHARPY IMPACT CHARACTERISTICS OF HIGHدرSTRENGTH SPIRAL WELDED GAS PIPELINE در pdf ،به هیچ وجه بهم ریختگی وجود ندارد


بخشی از متن مقاله EXPERIMENTAL STUDY OF CHARPY IMPACT CHARACTERISTICS OF HIGHدرSTRENGTH SPIRAL WELDED GAS PIPELINE در pdf :

سال انتشار: 1386

محل انتشار: اولین کنفرانس لوله و صنایع وابسته

تعداد صفحات: 7

چکیده:

Charpy upper shelf energy is widely used as a fracture controlling parameter to estimate the crack arrest/propagation performance of gas transportation pipeline steels. The measurement of this fracture criterion particularly for modern steels and its apportion into different components (i.e. fracture and non-related fracture energy) are of great importance for pipeline engineers in order to transfer laboratory data from Charpy experiment to real structure. As the conventional Charpy impact test has only one output (i.e. the overall fracture energy) the instrumented test has been used to achieve full failure information from impact test samples. In this paper the results of instrumented Charpy impact experiments on high-strength spiral welded pipeline steel of grade API X70 are presented. First, the instrumentation technique including the design and implementation of a strain gauge load-cell and the details of the data-recording scheme are reviewed. Next, the experimental data obtained from the Charpy impact machine so instrumented are given. These include test data obtained at room temperature from different sets of standard full size Charpy V-notched specimens taken from the pipe material, seam weld and heat affected zone (HAZ).
The instrumented Charpy machine was able to capture the load history in full during the fracture process of the test specimens resulting in a smooth load-time response. This eliminated the need for filtering used in similar test techniques. From the recorded test data the hammer displacement, impact velocity and fracture energy were numerically calculated. The numerical results showed good agreement between the
instrumentation data and those read from dial indicator. 1Corresponding author:
From fracture energy plots it was found that the maximum and minimum fractureenergy were associated with the pipe material and seam weld (in average), respectively. In all test samples a significant amount of energy was consumed in nonrelated fracture processes including crack initiation, bending and gross deformation of test specimen, and indentation at the support anvils and at the impact point. This non-related
fracture energy should be accounted for if the current failure models are going to be used for toughness assessment of highstrength low-alloy gas pipeline steels.

 

 

برای دریافت پروژه اینجا کلیک کنید

لیست کل یادداشت های این وبلاگ