A tank can hold air or water. 
A pressure vessel is a strong tank. 

A pressure vessel is a strong container. 

These tanks can be many shapes. A sphere, which is shaped like a ball, is the strongest shape. It can hold much more pressure than other shapes. However, spheres are hard to make. Most tanks are shaped like cylinders. They often have rounded ends called heads.
Because these tanks hold so much power, they must be safe. Engineers use strict rules to design them. They also use special tests to check the metal. One way is called hydrostatic testing. This uses water to test the tank. Water is safer than gas during a test. If the tank breaks, water does not expand quickly. This helps prevent accidents. 
A pressure vessel is a special kind of container. 

How these vessels work depends on their shape and strength. The walls must resist the force of the contents inside. Engineers often use a cylinder shape with rounded ends called heads.
Safety is the most important part of making these vessels. Because they hold so much energy, accidents can be very dangerous. Engineers follow strict rules called codes to keep people safe. In the United States, they use the ASME Boiler and Pressure Vessel Code. In Europe, they follow the Pressure Equipment Directive. Every new vessel must be checked by an authorized inspector. A nameplate is attached to the vessel to show its history. 
Before a vessel is used, it must pass many tests. One common way to check them is through hydrostatic testing. 
You can find pressure vessels in many places in your life. They are used in diving cylinders for scuba divers. They are also used in the cabins of airplanes to keep air inside.
A pressure vessel is a specialized container designed to hold gases or liquids. These substances are kept at a pressure that is significantly different from the ambient pressure of the surrounding environment. 

The primary characteristic for designing a vessel is the working pressure. This is the difference between the internal pressure and the external surroundings during use. Engineers must also account for the maximum safe temperature and a safety factor. They must also consider a corrosion allowance and the minimum design temperature to prevent brittle fracture. The physical shape of the vessel is critical to its strength. While almost any shape is theoretically possible, engineers usually choose spheres, cylinders, ellipsoids, or cones. These specific shapes are chosen because they are inherently stable under pressure.
Different shapes handle internal forces in different ways. A spherical vessel is the ideal shape for holding internal pressure. In fact, a sphere has approximately twice the strength of a cylindrical vessel with the same wall thickness. However, spheres are difficult and expensive to manufacture. Most common vessels are cylindrical with end caps called heads. These heads can be hemispherical, ellipsoidal, or dished, which is also known as torispherical. 
To hold the contents safely, the walls must resist tensile forces. Tensile stress occurs within the walls as the gas pressure pushes outward. The normal stress in these walls is proportional to the pressure and the radius of the vessel. It is also inversely proportional to the thickness of the walls. This means that as a tank gets larger, the walls must get thicker to handle the stress. The minimum mass of a vessel depends on its pressure, its volume, and the strength-to-weight ratio of its material. For a sphere, the mass is determined by the pressure difference, the volume, the material density, and the maximum allowable working stress. 
Safety is managed through strict international codes and rigorous testing. In the United States, engineers follow the ASME Boiler and Pressure Vessel Code (BPVC). In Europe, they follow the Pressure Equipment Directive. Every new vessel must be checked by an authorized inspector. Each vessel also carries a nameplate containing vital information. This plate includes the maximum allowable working pressure, the maximum temperature, and the manufacturer's name. It also lists the registration number and the official ASME U-stamp. This makes every vessel traceable and officially verified.
Before a vessel is put into service, it must undergo nondestructive testing. This includes methods like ultrasonic testing and radiography, which uses X-rays to inspect the material. One common method is the hydrostatic pressure test. 
Pressure vessels are essential to many different industries and technologies. They are used in industrial compressed air receivers, boilers, and hot water tanks. They are also found in diving cylinders, autoclaves, and nuclear reactor vessels. In the transportation sector, they serve as air brake reservoirs for rail and road vehicles. Even the passenger cabin of an airliner acts as a pressure vessel to carry structural and maneuvering loads.
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