Sunday, July 31, 2011

TUBULAR EXCHANGER MANUFACTURERS ASSOCIATION

This is the first day of Ramadhan and that mean I have to fasting and that's the obligation of me, but now Piping & Fabrication will continue this posting.
TUBULAR EXCHANGER MANUFACTURERS ASSOCIATION
The Tabular Exchanger Manufacturers Association (TEMA) publishes standards for use by manufacturers and users. The following is a list of some Heat Exchange Institute (HEI) publications that may be of interest:
HEI 8     Standards for Power Plant Heat Exchangers, Second Edition
HEI 8A     Standards for Steam Jet Vacuum Systems, Fourth Edition
HEI 10     Standards for Steam Surface Condensers, Eighth Edition
HEI 10A     Standards for Steam Surface Condensers Addendum, Eighth Edition
HEI TSD     Standards and Typical Specifications for Deaerators, Fifth Edition

UNDERWRITERS LABORATORIES
The UL is a nonprofit organization that develops specifications and standards directed toward assuring the safety of materials, products, and equipment when used in accordance with the conditions for which they were designed. It also tests items for conformance to these and other nationally recognized standards and publishes lists of items approved as a result of the tests. The NFPA codes require that items to be used in fire protection and prevention systems be approved and listed. The UL-published UL Fire Protection Equipment List (such as a listing of fire-loop piping material and equipment manufacturers) is one of the publications normally used by those involved in piping associated with fire protection systems.

Thursday, July 28, 2011

STEEL STRUCTURES PAINTING COUNCIL

STEEL STRUCTURES PAINTING COUNCIL
The Steel Structures PaintingCouncil (SSPC) publishes specifications, which include surface preparation (SP), pretreatment (PT), paint application (PA), and paint and paint systems (PS). These specifications identify practical and economical methods of surface preparation and painting steel structures. They are used to clean and paint piping and other steel equipment. With the exception of paint and paint system specifications, the following are the commonly used SSPC specifications:

Surface Preparation (SP) Specifications
SSPC-Vis I-89     Pictorial Surface Preparation Standard for Painting Steel Surfaces
SSPC-Vis 2-82     Standard Method of Evaluating Degree of Rusting on Painted Steel Surfaces
SSPC-SP 1-82     Solvent Cleaning
SSPC-SP 2-95     Hand Tool Cleaning
SSPC-SP 3-95     Power Tool Cleaning
SSPC-SP 5-94     White Metal Blast Cleaning
SSPC-SP 6-94     Commercial Blast Cleaning
SSPC-SP 7-94     Brush-Off Blast Cleaning
SSPC-SP 8-91     Pickling
SSPC-SP 10-94     Near-White Blast Cleaning
SSPC-SP 11-95     Power Tool Cleaning and Base Metal

Pretreatment Specifications (PT)
SSPC-PT 1     Wetting Oil Treatment
SSPC-PT 2     Cold Phosphate Surface Treatment
SSPC-PT 3     Basic Zinc Chromate-Vinyl Butyral Washcoat
SSPC-PT 4     Hot Phosphate Surface Treatment

Paint Application (PA) Guides
SSPC-PA I-91     Shop, Field, and Maintenance Painting
SSPC-PA 2-91     Measurement of Dry Paint Thickness with Magnetic Gauges

Wednesday, July 27, 2011

PLASTICS PIPE INSTITUTE

In my country soon will be puasa / Ramadhan and then Lebaran, so everyone will get some bonus or we use to call THR. But today the boss told me to e-mail request for an incentive for all the Supervisor and Foreman, because they already do the best for the company and they deserve to it. And even I'm new here, maybe about eight months, but I still got that incentive and that make me feel so happy and in the good mood to post this Piping & Fabrication.
PLASTICS PIPE INSTITUTE
Those interested in the application of plastics piping systems may find the following Plastics Pipe Institute (PPI) publications of help:
PPI Handbook of Polyethylene Piping
Engineering Basics of Plastics Piping
Plastic Piping Manual
In addition, the PPI publishes technical reports (TR), technical notes (TN), recommendations (REC), statements (STA), and model specifications (MS) dealing with plastics piping.

Technical Reports (TR)
PPI TR2/6     Policies and Procedures for the Listing of Thermoplastic Pipe, Fittings and Fixture Materials when Evaluated under Constant Internal Pressure with Flow (ASTM F 948) (1987)
PPI TR-3     Policies and Procedures for Developing Recommended Hydrostatic Design Stresses for Thermoplastic Pipe Materials; Addendum—1992 (1992)
PPI TR-4     Recommended Hydrostatic Strengths and Design Stresses for Thermoplastic Pipe and Fittings Compounds; Correction Notice (1994)
PPI TR-5     Standards for Plastics Piping (1990)
PPI TR-7     Recommended Method for Calculation of Nominal Weight of Plastic Pipe (1988)
PPI TR-9     Recommended Design Factors for Pressure Applications of Thermoplastic Pipe Materials (1992)
PPI TR-11     Resistance of Thermoplastic Piping Materials toMicro- and Macro-Biological Attack (1989)
PPI TR13     Poly (Vinyl Chloride) (PVC) Plastic Piping Design and Installation (1973)
PPI TR14     Water Flow Characteristics of Thermoplastic Pipe (1992)
PPI TR18     Weatherability of Thermoplastic Piping (1973)
PPI TR19     Thermoplastics Piping for the Transport of Chemicals; Errata (1991)
PPI TR20     Joining Polyolefin Pipe (1973)
PPI TR21     Thermal Expansion and Contraction of Plastic Pipe; Errata (1974)
PPI TR-22     Polyethylene Plastic Piping Distribution Systems for Components of Liquid Petroleum Gases; Revision—1991 (1988)
PPI TR-30     Thermoplastic Fuel Gas Piping Investigation ofMaximum Temperatures At tained by Plastics Pipe Inside Service Risers (1988)
PPI TR-31     Underground Installation of Polyolefin Piping (1988)
PPI TR-32     Recommended Minimum In-Plant Quality Control Program for Production of Polyethylene Gas Distribution Piping Systems (1989)
PPI TR8     Installation Procedures for Polyethylene (PE) Plastic Pipe (1984)

Technical Notices (TN)
PPI TN-15     Resistance of Polyethylene Pipe to a Sanitary Sewage Environment (1992)
PPI TN-16     Rate Process Method for Evaluating Performance of Polyethylene Pipe (1992)
PPI TN2     Sealants for Polyvinyl Chloride (PVC) Plastic Piping (1970)
PPI TN8/8     Making Threaded Joints with Thermoplastic Pipe and Fittings (1973)
PPI TN12/3     Coefficients of Thermal Expansion Thermoplastic Piping Materials (1977)
PPI REC.A     Limiting Water Velocities in Thermoplastic Piping Systems (1971)
PPI REC.B     Thermoplastic Piping for the Transport of Compressed Air or Other Compressed Gases (1989)
PPI REC.C     Pressure Rating of PVC Plastic Piping for Water at Elevated Temperatures (1973)
PPI STA.L     Thermoplastic Piping in Fire Sprinkler Systems
PPI STA.H     Noise in Piping Systems (1988)
PPI.STA.N     Pipe Permeation (R 1990) (1984)
PPI STA.R     Technical Considerations When Using Polyethylene (PE) (1992)
PPI STA.S     Caution Statement on Heat Fusion Methods of Polyethylene Pipe and/or Fittings of Similar Colors (1991)
PPI MS-2     Model Specification for Polyethylene Plastic Pipe Tubing and Fittings for Natural Gas Distribution (1990)

Tuesday, July 26, 2011

PIPE FABRICATION INSTITUTE

Whenever I plan something for myself, especially for the pleasure of me, there is must be something will make it fail, and that's happen to me. I have to go to Head Office at the Karawang, to follow the ISO training and that really not a good time for training, but as the order from the Bos, so I have to obey it. While I hate that situation, I think I better to post this Piping & fabrication blog, at least that will make me a little bit cooling down, I think.

PIPE FABRICATION INSTITUTE

The Pipe Fabrication Institute (PFI) publishes advisory Engineering Standards (ES) and Technical Bulletins (TB) intended to serve the needs of the pipe-fabricating industry at the design level and in actual shop operations. The PFI standards contain minimum requirements; however, the designer or fabricator may consider specifying additional requirements beyond the scope of PFI publications. The use of PFI standards or bulletins is voluntary. A complete listing of PFI publications follows:

Engineering Standards (ES)
ES-1-92     Internal Machining and Solid Machined Backing Rings for Circumferential Butt Welds
ES-2-92     Method of Dimensioning Piping Assemblies
ES-3-81     Fabricating Tolerances (R 1990)
ES-4-85     Hydrostatic Testing of Fabricated Piping (R 1988)
ES-5-93     Cleaning of Fabricated Piping
ES-7-94     Minimum Length and Spacing for Welded Nozzles
ES-11-75     Permanent Marking on Piping Materials (R 1990)
ES-16-85     Access Holes, Bosses, and Plugs for Radiographic Inspection of Pipe Welds (R 1988)
ES-20-97     Wall Thickness Measurement by Ultrasonic Examination
ES-21-92     Internal Machining and Fit-Up of GTAW Root Pass Circumferential Butt Welds (R 1989)
ES-22-95     Recommended Practice for Color Coding of Piping Materials
ES-24-92     Pipe Bending Methods, Tolerances, Process, and Material Requirements
ES-25-93     Random Radiography of Pressure Retaining Girth Butt Welds
ES-26-93     Welded Load Bearing Attachments to Pressure Retaining Piping Materials
ES-27-94     ‘‘Visual Examination’’-The Purpose, Meaning, and Limitation of the Term
ES-29-93     Abrasive Blast Cleaning of Ferritic Piping Materials
ES-30-86     Random Ultrasonic Examination of Butt Welds (R 1989)
ES-31-92     Standard for Protection of Ends of Fabricated Piping Assemblies
ES-32-93     Tool Calibration
ES-34-92     Painting of Fabricated Piping (R 1989)
ES-35-93     Nonsymmetrical Bevels and Joint Configurations for Butt Welds
ES-36-95     Branch Reinforcement Work Sheets
PFI ES-37     Loading and Shipping of Piping Assemblies (March 1, 1997)
PFI ES-39     Fabricated Tolerances for Grooved Piping Systems (Feb. 1, 1994)
PFI ES-40     Method of Dimensioning Grooved Piping Assemblies (Feb. 1, 1994)
PFI ES-41     Material Control and Traceability of Piping Components (Jan. 1, 1995)
PFI ES-42     PositiveMaterial Identification of Piping Components Using Portable X-Ray Emission Type Test Equipment (Jan. 1, 1996)
PFI ES-44     Drafting Practices Standard (March 1, 1997)

Technical Bulletins (TB)
TB1-94     Pressure-Temperature Ratings of Seamless Pipe Used in Power Plant Piping Systems
TB3-93     Guidelines Clarifying Relationships and Design Engineering Responsibilities Between Purchasers’ Engineers and Pipe Fabricator or Pipe Fabricator Erector (R 1988)
TB7-97     Guideline for Fabrication and Installation of Stainless Steel High Priority Distribution Systems

Monday, July 25, 2011

NATIONAL FIRE PROTECTION ASSOCIATION

Continue again with another post and still with the Codes and I hope this post will end soon because Piping & Fabrication will explain about the other piping systems.

NATIONAL FIRE PROTECTION ASSOCIATION
The National Fire Protection Association (NFPA) is a voluntary association of members representing all aspects of fire protection, such as professional societies, educational institutions, public officials, insurance companies, equipment manufacturers, builders and contractors, and transportation groups. The NFPA publishes codes, standards, guides, and recommended practices in a 12-volume set of books called the National Fire Codes. Conformance to the National Fire Codes may be required by federal, state, and local laws and regulations. Sometimes insurance companies may leave no choice for the owner/user of the facility but to comply with the fire protection and prevention requirements of the applicable National Fire Codes.

Volumes 1 through 8 contain actual text of the National Fire Codes and Standards. The requirements contained in these volumes have been judged suitable for legal adoption and enforcement. Volumes 9 through 11 contain recommended practices and guides considered to be good engineering practices. Volume 12 contains formal interpretations, tentative interim amendments, and errata that relate to the documents in Volumes 1 through 11.

Here is a list of NFPA publications. For specific NFPA Codes and Standards related to fire protection systems piping, refer to Chapter C2, Part C of this handbook.

National Fire Protection Association Publications
  • Technical Committee Documentation and Reports
  • Automatic Sprinkler Systems Handbook, Sixth Edition
  • Automatic Sprinkler and Standpipe Systems, Second Edition
  • Flammable and Combustible Liquids Code Handbook, Fifth Edition
  • Fire Litigation Handbook
  • SFPE Handbook of Fire Protection Engineering, First Edition
  • Fire Protection Guide to Hazardous Materials, Eleventh Edition
  • Fire Protection Handbook, Seventeenth Edition
  • Liquefied Petroleum Gases Handbook, Third Edition
  • Life Safety Code Handbook, Sixth Edition
  • National Electrical Code Handbook, Seventh Edition
  • National Fuel Gas Code Handbook, Second Edition
  • National Fire Codes and Standards, Volumes 1 through 12
  • Formal Interpretations, Volume 13

Sunday, July 24, 2011

MANUFACTURERS STANDARDIZATION SOCIETY OF THE VALVE AND FITTINGS INDUSTRY

Here we go again with Piping & Fabrication, and I know I've been very busy this week and in couple days I almost can't to post this blog, but today I will try to post this blog because I just want to keep share the knowledge about Piping System, and here we are with:

MANUFACTURERS STANDARDIZATION SOCIETY OF THE VALVE AND FITTINGS INDUSTRY
The Manufacturers Standardization Society (MSS) publishes Standard Practices (SP) which provide a basis for common practice by the manufacturers, the user, and the general public. Compliance to the Standard Practices of MSS is required by reference in a code, specification, sales contract, law, or regulation. The MSS is also represented on the committees of other standardization groups, such as ANSI and ASME. Many of the ASME B16 series standards were originally developed as MSS Standard Practices. Once a Standard Practice is adopted as ANSI standard, it is discontinued as an MSS Standard Practice.

The following is a complete list of MSS Standard Practices published and in current use:

Standard Practices (SP)
SP-6-96     Standard Finishes for Contact Faces of Pipe Flanges and Connecting-End Flanges of Valves and Fittings
SP-9-97     Spot Facing for Bronze, Iron, and Steel Flanges
SP-25-93     Standard Marking System for Valves, Fittings, Flanges, and Unions
SP-42-90     Class 150 Corrosion Resistant Gate, Globe, Angle, and Check Valves with Flanged and Butt-Weld Ends
SP-43-91     Wrought Stainless Steel Butt-Welding Fittings, Including Reference to Other Corrosion Resistant Materials
SP-44-96     Steel Pipe Line Flanges (superseded by ASME B16.47)
SP-45-92     Bypass and Drain Connection Standard
SP-51-91     Class 15OLW Corrosion Resistant Cast Flanges and Flanged Fittings
SP-53-95     Quality Standard for Steel Castings and Forgings for Valves, Flanges, and Fittings and Other Piping Components
SP-81-95     Stainless Steel, Bonnetless Flanged Knife Gate Valves
SP-82-92     Valve Pressure Testing Methods
SP-83-95     Class 3000 Steel Pipe Unions Socket-Welding and Threaded
SP-85-94     Cast Iron Globe and Angle Valves Flanged and Threaded Ends
SP-86-97     Guidelines forMetric Data in Standards for Valves, Flanges, Fittings, and Actuators
SP-87-91     Factory-Made Butt-Welding Fittings for Class 1 Nuclear Piping Applications (R 1986)
SP-88-93     Diaphragm Type Valves (R 1988)
SP-89-98     Pipe Hangers and Supports—Fabrication and Installation Practices
SP-90-86     Guidelines on Terminology for Pipe Hangers and Supports
SP-91-92     Guidelines for Manual Operation of Valves
SP-92-87     Valve User Guide
SP-93-87     Quality Standard for Steel Castings and Forgings for Valves, Flanges, and Fittings and Other Piping Components Liquid Penetrant Examination Method
SP-94-92     Quality Standard for Ferritic and Martensitic Steel Castings for Valves, Flanges, and Fittings, and Other Piping Components Ultrasonic Examination Method (R 1987)
SP-95-86     Swage(d) Nipples and Bull Plugs SP-96-96 Guidelines on Terminology for Valves and Fittings
SP-97-95     Forged Carbon Steel Branch Outlet Fittings-Socket Welding, Threaded, and Butt-Welding Ends
SP-98-96     Protective Epoxy Coatings for the Interior of Valves and Hydrants
SP-99-94     Instrument Valves
SP-100-97     Qualification Requirements for Elastomer Diaphragms for Nuclear Service Diaphragm Type Valves
SP-101-89     Part-Turn Valve Actuator Attachment Flange and Driving Component Dimensions and Performance Characteristics
SP-102-89     Multi-Turn Valve Actuator Attachment Flange and Driving Component Dimensions and Performance Characteristics
SP-103-95     Wrought Copper and Copper Alloy Insert Fittings for Polybutylene Systems
SP-104-95     Wrought Copper Solder Joint Pressure Fittings
MS SP-105     Instrument Valves for Code Applications (Jan. 1, 1996)
MSS SP-106     Cast Copper Alloy Flanges and Flanged Fittings Class 125, 150 and 300 (Jan. 1, 1990)
MSS SP-107     Transition Union Fittings for Joining Metal and Plastic Products (Jan. 1, 1991)
MSS SP-108     Resilient-Seated Cast Iron-Eccentric Plug Valves (Jan. 1, 1996)
MSS SP-109     Welded Fabricated Copper Solder Joint Pressure Fittings (Jan. 1, 1997)
MSS SP-110     Ball Valves Threaded, Socket-Welding, Solder Joint, Grooved and Flared Ends (Jan. 1, 1996)
MSS SP-111     Gray-Iron and Ductile-Iron Tapping Sleeves (Jan. 1, 1996)
MSS SP-112     Quality Standard for Evaluation of Cast Surface Finishes Visual and Tactile Method (Jan. 1, 1993)
MSS SP-113     Standard Practice for Connecting Joint Between Tapping Machines and Tapping Valves (Jan. 1, 1994)
MSS SP-114     Corrosion Resistant Pipe Fittings Threaded and Socket Welding Class 150 and 1000 (Jan. 1, 1995)
MSS SP-115     Excess Flow Valves for Natural Gas Service (Jan. 1, 1995)
MSS SP-116     Service Line Valves and Fittings for Drinking Water Systems (Jan. 1, 1996)
MSS SP-117     Bellows Seals for Globe and Gate Valves (Jan. 1, 1996)
MSS SP-118     Compact Steel Globe and Check Valves Flanges, Flangeless, Threaded and Welding Ends (Chemical and Petroleum Refinery Service) (Jan. 1, 1996)
MSS SP-119     Belled End Socket Welding Fittings, Stainless Steel and Copper Nickel (Nov. 1, 1996)
MSS SP-120     Flexible Graphite Packing System or Rising Stern Steel Valves (Design Requirements) (March 1, 1997)
MSS SP-121     Qualification Testing Methods for Stem Packing for Rising Stem Steel Valves (March 1, 1997)
MSS SP-122     Plastic Industrial Ball Valves (Jan. 1, 1997)

Friday, July 22, 2011

INSTITUTE OF ELECTRICAL AND ELECTRONICS ENGINEERS

Another week has passed by again, and now is weekend again and yesterday Piping & Fabrication can't do post because there is some problem with the connection, but now we will continue with :
INSTITUTE OF ELECTRICAL AND ELECTRONICS ENGINEERS
The following standards published by the Institute of Electrical and Electronics Engineers (IEEE) are of interest to those involved in the design and construction of nuclear power plant piping systems:

IEEE 323-83     Standard forQualifying Class 1E Equipment for Nuclear Power Generating Stations
IEEE 336-85     Standard Installation, Inspection, and Testing Requirements for Power, Instrumentation, and Control Equipment at Nuclear Facilities
IEEE 344-87     Recommended Practice for Seismic Qualification of Class IE Equipment for Nuclear Power Generating Stations
IEEE 352-87     Guide for General Principles of Reliability Analysis of Nuclear Power Generating Station Safety Systems
IEEE 379-94     Standard Application of the Single Failure Criterion to Nuclear Power Generating Station Safety Systems
IEEE 382-96     Standard for Qualification of Actuators for Power Operated Valve Assemblies with Safety-Related Functions for Nuclear Power Plants

INSTRUMENT SOCIETY OF AMERICA
The Instrument Society of America (ISA) develops and publishes periodicals, books, standards, recommended practices, monographs, references, and training aids pertaining to instruments and automated controls. The following publications of the ISA contain information related to piping:

Recommended Practices (RP)
RP 16.5-61     Recommended Practice for Installation, Operation, Maintenance Instructions for Glass Tube Variable Area Meters (Rotometers)
RP 31.1-77     Recommended Practice for Specification, Installation, and Calibration of Turbine Flowmeters
RP 42.1-92     Recommended Practice for Nomenclature for Instrument Tube Fittings
RP 60.9-81     Recommended Practice for Piping Guide for Control Centers
RP 75.18-89     Recommended Practice for Control Valve Position Stability
RP 75.21-89     Recommended Practice for Process Data Presentation for Control Valves
RP 75.23-95     Considerations for Evaluating Control Valve Cavitation

Standards
S 5.1-84     Instrumentation Symbols and Identification
S 5.2-76     Binary Logic Diagrams for Process Operations
S 5.3-83     Graphic Symbols for Distributed Control/Shared Display Instrumentation, Logic, and Computer
S 5.4-91     Standard Instrument Loop Diagrams
S 5.5-85     Graphic Symbols for Process Displays
S 7.0.01     Quality Standard for Instrument Air
S 12.4-70     Instrument Purging for Reduction of Hazardous Area Classification
S 18.1-79     Annunciator Sequences and Specifications (R 1985)
S 20-81     Specification Forms for Process Measurement and Control Instruments, Primary Elements, and Control Valves
S 26-68     Dynamic Response Testing of Process Control Instrumentation
S 37.3-75     Strain Gauge Pressure Transducers, Specifications, and Tests (R 1982)
S 37.5-75     Strain Gauge Linear Acceleration Transducers, Specifications, and Tests (R 1982)
S 37.6-76     Specifications and Tests of Potentiometric Pressure Transducers (R 1982)
S 37.8-77     Specifications and Tests for Strain Gauge Force Transducers (R 1982)
S 51.1-79     Process Instrumentation Terminology
S 67.01-94     Transducer and Transmitter Installation for Nuclear Safety Applications
S 67.02.01-96     Nuclear - Safety - Related Instrument Sensing Line Piping and Tubing Standards for Use in Nuclear Power Plants
S 67.03-82     Light Water Reactor Coolant Pressure Boundary Leak Detection
S 67.04-94     Setpoints for Nuclear Safety-Related Instrumentation
S 67.10-94     Sample-Line Piping and Tubing Standard for Use in Nuclear Power Plants
S 75.01-85     Flow Equations for Sizing Control Valves
S 75.02-96     Control Valve Capacity Test Procedure
S 75.03-92     Face-to-Face Dimensions for Integral Flanged Globe-Style Control Valve Bodies (ANSI Classes 125, 150, 250, 300, and 600)
S 75.04-95     Face-to-Face Dimensions for Flangeless Control Valves (ANSI Classes 150, 300, and 600)
S 75.05-83     Control Valve Terminology
S 75.07-87     Laboratory Measurement of Aerodynamic Noise Generated by Control Valves
S 75.08-85     Installed Face-to-Face Dimensions for Flanged Clamp or Pinch Valves
S 75.11-85     Inherent Flow Characteristic and Rangeability of Control Valves
S 75.12-93     Face-to-Face Dimensions for Socket Weld-End and Screwed-End Globe-Style Control Valves (ANSI Classes 150, 300, 600, 900, 1500, and 2500)
S 75.14-93     Face-to-Face Dimensions for Butt-Weld-End Globe Style Control Valves (ANSI Classes 4500)
S 75.15-94     Face-to-Face Dimensions for Butt-Weld-End Globe-Style Control Valves (ANSI Classes 150, 300, 600, 900, 1500, and 2500)
S 75.17-89     Control Valve Aerodynamic Noise Prediction Standard
S 75.19-95     Hydrostatic Testing of Control Valves (Formerly ASME/ANSI B16.37-80)
ISA MC96.1     Temperature Measurement Thermocouples (1982)
ISA RP2.1     Manometer Tables (1985)
ISA RP12.4     Pressurized Enclosures (1996)
ISA RP75.23     Considerations for Evaluating Control Valve Cavitation
ISA S75.16     Face-to-Face Dimensions for Flanged Globe-Style Control Valve Bodies (ANSI Classes 900, 1500, and 2500) (1994)
ISA S75.20     Face-to-Face Dimensions for Separable Flanged Globe-Style Control Valves (ANSI Classes 150, 300, and 600) (1991)
ISA S75.22     Face-to-Centerline Dimensions for Flanged Globe-Style Angle Control Valve Bodies (ANSI Classes 150, 300, and 600) (1992)
ISA S77.70     Fossil Fuel Power Plant Instrument Piping Installation (1995)
ISA S84.01     Application of Safety Instrumented Systems for the Process Industries (1996)
ISA DIRECT     Directory of Instrumentation, 1992

Handbook
ISA Handbook of Control Valves

Please wish me luck guys, because I really need it, thanks!