Boronizing mitigate failure mechanisms with extended life in oil gas steel piping under acoustic induced vibration (AIV)‎

العناوين الأخرى

التغطية بالبورون تخفف من الإنهيار وتزيد عمر الاستخدام في الأنابيب الفولاذية للنفط الغاز تحت تأثير الإنبعاثات المسموعة

المؤلفون المشاركون

Said, Marwah Muhammad
Bayyumi, Muhammad. A.
Rabi, Bakr Muhammad

المصدر

Journal of al Azhar University : Engineering Sector

العدد

المجلد 16، العدد 59 (30 إبريل/نيسان 2021)، ص ص. 252-263، 12ص.

الناشر

جامعة الأزهر كلية الهندسة

تاريخ النشر

2021-04-30

دولة النشر

مصر

عدد الصفحات

12

التخصصات الرئيسية

الهندسة المدنية

الموضوعات

الملخص AR

تعاني أنظمة أنابيب النفط و الغاز من الاهتزازات الناتجة عن الصوت AIV و التي تنتهي بفقدان السمع و استهلاك حياة العاملين.

و مع ذلك تم تطوير منهجية التسرب قبل الكسر (LBB) للتخفيف من الفشل حيث تظهر أنظمة الأنابيب الأولية احتمالية منخفضة للغاية للتمزق.

(xLPR) لفهم آليات فشل الأنابيب بموجب AIV تم إجراء اختبارات الانحناء من 3 نقاط لدراسة السلامة الهيكلية في أنابيب النفط / الغاز المستخدمة (

الملخص EN

Oil and gas piping systems suffer from acoustically induced vibration, AIV, that end with hearing losses and consuming personnel's lives.

However, Leak-Before-Break (LBB) methodology was developed to mitigate failure, the primary piping systems exhibit an extremely low probability of rupture (xLPR).

For understanding of piping failure mechanisms under AIV, 3-point bending tests are conducted to study structural integrity in oil/gas piping (ASTM A333 Carbon Steel GR.6 Seamless).

Besides, for ultra-fast surface hardening and strengthening, a non-traditional powder pack boronizing technique is introduced at 950oC for 10 and 30 minutes.

Mechanical characterization as well as microstructural analysis are conducted for continuous and incremental bending tests.

In addition, FE modeling, ANSYS, is conducted on actual “case study” of oil/gas piping to study the changes in dynamic characteristics for both as-received (AR) and boronized steel Under AIV(173 dB).

Failure mechanisms is established in AR sample with clear banding and early localized micro-plasticity at 0.2 flexural stress (sf).

Void coalescence induce crack initiation at 0.3 sf.

Crack propagation (at 0.5 sf), crack evolution (at 0.7sf) and catastrophic failure are captured.

Boronizing with the diffusion of Boron into the outer surface dominate functional-graded materials (FGM), with surface and bulk hardening.

Surface hardening via boronizing mitigate fracture mechanisms with no clear micro-plasticity, but with clear twinning and banding elimination.

In addition, to investigate the sustainability of piping and the effect of boronizing, under AIV, FE modeling is introduced with two different steel piping systems (AR with strength 580 MPa, and boronized steel with strength 1390 MPa).

Failure mitigation is introduced with the increase of endurance limit as well as increase of piping life.



نمط استشهاد جمعية علماء النفس الأمريكية (APA)

Said, Marwah Muhammad& Bayyumi, Muhammad. A.& Rabi, Bakr Muhammad. 2021. Boronizing mitigate failure mechanisms with extended life in oil gas steel piping under acoustic induced vibration (AIV). Journal of al Azhar University : Engineering Sector،Vol. 16, no. 59, pp.252-263.
https://search.emarefa.net/detail/BIM-1241095

نمط استشهاد الجمعية الأمريكية للغات الحديثة (MLA)

Said, Marwah Muhammad…[et al.]. Boronizing mitigate failure mechanisms with extended life in oil gas steel piping under acoustic induced vibration (AIV). Journal of al Azhar University : Engineering Sector Vol. 16, no. 59 (2021), pp.252-263.
https://search.emarefa.net/detail/BIM-1241095

نمط استشهاد الجمعية الطبية الأمريكية (AMA)

Said, Marwah Muhammad& Bayyumi, Muhammad. A.& Rabi, Bakr Muhammad. Boronizing mitigate failure mechanisms with extended life in oil gas steel piping under acoustic induced vibration (AIV). Journal of al Azhar University : Engineering Sector. 2021. Vol. 16, no. 59, pp.252-263.
https://search.emarefa.net/detail/BIM-1241095

نوع البيانات

مقالات

لغة النص

الإنجليزية

الملاحظات

-

رقم السجل

BIM-1241095