Tampilkan postingan dengan label ASME. Tampilkan semua postingan
Tampilkan postingan dengan label ASME. Tampilkan semua postingan

Selasa, 26 April 2011

ASME ( American Society of Mechanical Engineer) Design & Fabrication of Pressure Vessels

ASME ( American Society of Mechanical Engineer) Design & Fabrication of Pressure Vessels



Novotel Hotel, Balikpapan, East Kalimantan |May 2nd- 5th 2011|IDR 7.000.000 / participant



 


Description


Based on the rules for pressure vessel design and construction, this course is a comprehensive introduction to the requirements of Section VIII, Division 1 including background, organization, design, materials, fabrication, inspection, testing and documentation of pressure vessels. It covers the more commonly applied subsections and paragraphs, and includes a practical discussion of individual problems and situations. Designed primarily for beginners, experienced vessel designers, who would like to update their knowledge of the Code, will also benefit from attending.


 


Course Outline




  1. Introduction to ASME Code and section VIII

  2. General Requirements

  3. Material Requirement

  4. General Design Requirement

  5. Design for Internal Pressure

  6. Design for Buckling

  7. Design of Flat Heads and Covers

  8. Design of Opening

  9. Fabrication Requirement

  10. NDE, Testing, Pressure Relief and Documentation Requirement

  11. Requirement for Vessels Fabricated by Welding

  12. Requirement for Carbon and Low Alloy Steel

  13. Requirement for High Alloy Steel

  14. Requirement for Heat Treated Material

  15. Code Appendices

  16. Example Problem


 


Course Method


Presentation, Discussion, Simulation, Case Study, and Evaluation.


 


Who Should Attend




  • Those involved with the purchase, design, fabrication, or inspection of pressure vessels.

  • Some technical background will be helpful


 


Instructor


Ir. Subarmono MT, PE ( Expert in Mechanical Material )


 


Duration: 4 days training


 


Time:


May 2nd- 4th 2011


 


Venue:


Novotel Hotel, Balikpapan, East Kalimantan


 


Course fee:




  • IDR 7.000.000 / participant (non residential)

  • Special rate: IDR 6.500.000/ participant (non residential) for min. 3 participants from same company.


 

Rabu, 28 April 2010

ASME Pressure Vessel: Design, Operation and Maintenance (PASTI JALAN)

ASME Pressure Vessel: Design, Operation and Maintenance



Ibis Slipi Hotel, Jakarta |  3 - 7 Mei 2010 | Rp. 8.250.000,-




COURSE OBJECTIVE



  • Be able to calculate, analyze both stress and strength in pressure vessel design

  • Gain knowledge of proper material selection for pressure vessel application

  • Gain knowledge of welding code standard, which includes inspection, and testing

  • Gain better skill to operate, maintain, and repair of pressure vessel

  • Perform vessel inspection & maintenance per the applicable Codes and Standards

  • Familiar with instrumentation and control system commonly associated with vessel operation


COURSE OUTLINE



Stress and Strength Analysis Calculation Code




  • Tube

  • Tube-Sheet

  • Shell head: Spherical; Hemispherical; Dished; Ellipsoidal; Torispherical; Conical; Toriconical

  • Shell joint with head

  • Shell joint with bracing and staying

  • Ligament on drum and shell

  • Openings

  • Reinforcement on shell and flat plate

  • Bolt on head

  • Wind load

  • Earth quake load

  • Support structure

  • Proof Test and Bursting Test



Materials




  • Material characteristics

  • Heat-treatment effect

  • Effect of alloy additive

  • ASME Material Code

  • Type of material and its selection



Welding




  • Type of welding

  • ASME Welding Code

  • Welding Procedure Specification (WPS)

  • Post Weld Heat Treatment (PWHT)

  • Quality control

  • AWS Classification

  • Weld joint efficiency

  • Welding defect and repair



NDT (Non Destructive Testing)




  • Welding Inspection

  • NDT Selection

  • Visual Radiography: Limitation; Code of weld joint radiography testing

  • Magnetic particle

  • Dye Penetrant

  • Ultrasonic

  • Eddy Current

  • Acoustic Emission

  • Destructive Testing



Operational Aspects




  • Process characteristic consideration

  • Start-up procedure

  • Observation and shut- down



Instrumentation




  • Code of instrumentation for: Pressure gauge; Temperature gauge; Flow meter; Level metering; Density

  • Control: Manual, regulating and control valve; Sensor; Transmitter; Actuator and control

  • ASME Code for control valve: Valve material; Valve selection; Installation; Setting and test

  • Safety and Safety Devices: Alarm indicator, Interlocks; Hard restraints; Restraint of chemical reaction; Pressure relief valve; Pressure safety valve; ASME Code for safety valve; pressure and vacuum relief valve



Effect of Stress and Operating Condition on Pressure Vessel




  • Fatigue cracking

  • Hydrogen embritlement

  • Hydrogen embritlement of welds

  • Crack due to welding

  • Creep

  • Corrosion

  • Type of corrosion on pressure vessel

  • Pitting

  • Crevice

  • Inter-granular

  • Fatigue corrosion

  • Stainless Steel corrosion

  • Corrosion inhibitor



Inspection, Repair and Maintenance




  • Inspection: Inspection of internal and external physical data; Inspection preparation; Safety in performing internal inspection

  • Inspection procedure

  • Inspection interval

  • NDT

  • Hydro test

  • Pneumatic test

  • Leak test

  • Stainless steel overlaid inspection and lined vessel

  • Rotating roll inspection

  • Low-pressure vessel inspection and heat exchanger

  • Maintenance: Preventive maintenance high pressure plant; Predictive maintenance; Maintenance organization; Safety on weldment and cutting; Maintenance management; Maintenance supervision

  • Repair: Pitting repair; Crack repair; Heat exchanger repair; Welding repair to stainless steel; Repair involving dissimilar metals; Management support of pressure vessel safety system


WHO SHOULD ATTEND



  • Engineer, supervisor, superintendent, and manager of power plant, process plant in refinery, petrochemical, marine, pulp & paper, sugar cane, palm oil

  • Maintenance and Operation Engineer, Supervisor, Superintendent

  • Design Engineer, Mechanical Engineer, Process Engineer

  • Everybody who wants to take benefits from this course






Instructor



DR. Ir. Tri Wibowo, M.Sc graduated from Metallurgy Engineering of Mining Department, Institute of Technology Bandung in 1979. After graduated from ITB he worked as Research Engineer. In 1985 he took master degree in Tribology of Metallurgy and Material Engineering Department, Vanderbilt, Nashville, Tennessee University USA and Five years latter he continued his study by taking PhD degree in Mechanic Metallurgy and Material Engineering Department, KU, Leuven, Belgie.



In his study periods he had a lot of experiences in industrial, for example, in 1980 he was a Research Engineer. In the same time he responsible for Material Identification, In-Situ Metallographic, Remaining Life Assessment and Failure analysis in refinery plants of many cases in oil and gas industries. From 1999 on, he is a leader of laboratory for failure Analysis and Remaining Life Assessment (FARLA)



As a matter of fact, he is a lecturer in Post Graduate on Manufacturing in Mechanical Department of ISTN (National Institute for Science and Technology). Other than teaching, he actives as a free-lance instructor for educations, trainings or courses in the field of material of selection, failure analysis and remaining life assessment, tribology and material testing. Mr. Wibowo is also active as member of Expert Committee in INDOCOR (Indonesian Corrosion Association) and Indonesian Engineer Association member (PII). Lot of his experiences in the field of failure analysis so he published many papers in the field of failure analysis, remaining life assessment, fatigue of metal, corrosion and related topics in journals, seminars or symposium in Indonesia.




Schedule

April 5-9, 2010
5 days



Venue
Ibis Slipi Hotel, Jakarta

Tuition Fee

Rp. 8.250.000,- per participant, excluding accommodation & tax.