ASME Factor for Pressure Vessels

ASME pressure vessel

The ASME factor of a pressure vessel In the ASME Boiler and Pressure Vessel Code (BPVC), the term “ASME factor” usually refers to the design safety factor or allowable stress factor. This factor defines the relationship between a material’s ultimate tensile strength (or yield strength) and the allowable stress value used in design calculations. For […]

What ASME Defines as a Pressure Vessel | ASME BPVC Section VIII Guide

ASME-certified thick pressure vessel steel shell during industrial fabrication

A pressure vessel is a specially engineered container that safely holds gases or liquids at pressures far from ambient conditions. This guide explains what pressure vessels are, how they work, and why precise descriptions matter for safety and compliance. It covers major types (storage vessels, heat exchangers, reactors, boilers), key standards like ASME BPVC Section […]

Essential Criteria for Designing a Pressure Vessel

Criteria for Pressure Vessels

Introduction to the criteria for a pressure vessel Pressure vessels are containers designed to hold gases or liquids at a pressure substantially different from ambient pressure. The design, manufacturing, and operation of pressure vessels are governed by design codes and standards to ensure safety. The criteria for a pressure vessel can vary based on the […]

Preferred Failure Theory in Pressure Vessel Design Explained

Pressure Vessels

Understanding Failure Theory in Pressure Vessel Design When designing pressure vessels, safety and reliability are the top priorities due to the high-pressure environments in which these containers operate. The failure of a pressure vessel can have catastrophic consequences, which is why engineers rely on specific failure theories to ensure the vessel’s structural integrity. The Maximum […]

Understanding External Pressure Failure in Pressure Vessels

Pressure vessel under fabrication at Red River's workshop

Introduction to External Pressure Failure When a pressure vessel faces conditions where external pressure surpasses the internal pressure, the risk of collapse increases significantly. Known as external pressure failure, this phenomenon can lead to dangerous implosions in industrial systems. While most vessels are engineered for internal force, they must also be prepared for vacuum conditions […]

6 Types of Failure in Strength of Materials: A Complete Guide

Types of material failures in engineering: tensile, shear, fatigue

Understanding the types of failure in the strength of materials is essential for engineers, designers, and manufacturers working with structures under stress. This blog covers various failure modes, how to prevent them, and why they matter for structural integrity. By the end, you’ll have a deeper understanding of material failure and the best practices for […]

Significant Case Histories of Pressure Vessel Failures

Pressure Vessel

Introduction to the 6 case histories of pressure vessel failures Over the years, several notable pressure vessel failures have served as case histories, highlighting the importance of safety protocols, design considerations, and operational practices. These incidents have often led to modifications in industry standards and have informed best practices. Below are six significant case histories […]

Major Hazards Associated with Pressure Vessels

Welding metal

Overview of the 3 Major Hazards Related to Pressure Vessels Pressure vessels, used to store gases and liquids under high pressure, are essential components across industries such as chemical processing, energy generation, and manufacturing. However, their operation involves significant risks, as these vessels often contain volatile substances, operate under extreme pressure, and may reach scorching […]

Types of Pressure Vessel Stress

welding pressure vessels

Introduction to the different types of pressure vessel stress Pressure pots are like the tough guys of the industrial world, dealing with all sorts of pressures, both inside and out. Getting the lowdown on the different pressures they face is key to keeping them strong and in the game. Here’s the scoop on the main […]

Pressure Vessel Factors: Impact on Design & Operation

infographic showing factors like material selection, pressure levels, corrosion, temperature, and environmental conditions affecting the performance and longevity of pressure vessels.

Pressure vessels are vital in many industries, and their performance is impacted by factors like material selection, pressure levels, corrosion, and fatigue. Proper installation, regular maintenance, and safety measures are essential to avoid failures and ensure longevity. Additionally, environmental conditions and operational factors like wind, earthquakes, and temperature changes must be considered during design and […]