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Metal Bar Grating: A Versatile and Strong Choice

Author: Lily

Jul. 07, 2025

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Metal Bar Grating: A Versatile and Strong Choice

For architects and contractors, bar grating is an ideal choice for projects ranging from trenches and stair treads to decking and steel flooring. Used as metal grates, bar grating is unique as it covers open areas in flooring that require light, liquid, air, heat and sound to pass between flooring levels.

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Ideal for trenches, stair treads, decking and steel flooring

By Tom Hoover

Many companies use bar grating for flooring because it is both versatile and strong. Serrated carbon steel bar grating provides extra grip on slippery surfaces for walking. Bar grating can be used in a variety of applications such as bridge flooring, trench covers, walkways, ramps, platforms, catwalks and mezzanine floors for floor grating or surface needs. Bar grating is available in materials such as aluminum and various types of steel grating.

Aluminum Bar Grating

Aluminum bar grating is an ideal choice when a lightweight, corrosion-resistant material is desired. Aluminum grating can be used for a variety of industrial applications, due its versatile and durable properties. There are many options for aluminum bar grating, such as rectangular bar, flush top, riveted, plank and I-bar aluminum bar grating products. Aluminum grating is non-toxic, resilient and durable. In addition, it is corrosion resistant, lightweight, and can easily be recycled, fabricated or customized.

One of the most common methods of manufacturing aluminum grating is through a swaging process. Swaged aluminum bar grating is defined as “Grating in which the cross bars are mechanically locked to the bearing bars at their intersections by deforming or swaging the metal.” Modern swaging technology is available to provide attached intersections. A mechanically attached joint can give aluminum grating a long-lasting life under normal service conditions. Another common type of aluminum grating is press lock grating. This type of aluminum grating has bars that are assembled together mechanically. The bars of this aluminum grating are locked into place by a hydraulic pressing process.

Carbon Steel Bar Grating

Carbon steel bar grating is a great choice when your project requires a strong material that won’t be exposed to an expressly corrosive environment. Bar grating is ideal for industrial steel grating flooring and metal grates. Plain or serrated bar grating surfaces come in galvanized, bare steel or painted finishes.

A common bar grating application is drainage grates, which are an integral part of the interior of industrial plants, and the exterior landscape all around us. Also known as bar grating trench grating, these grates permit the passage of light, heat and liquid, and therefore are useful in screening out unwanted elements and debris in various settings.

Steel grates are also functional for industrial decks and flooring in chemical plants, food processing facilities, and oil and gas refineries. Metal grates are ideal for these applications, since they allow liquid to pass through the material, which helps to prevent slippery and hazardous work conditions. In addition, pedestrians rely on metal grates on public walkways, and near fountains and trees.

TiteWeld Bar Grating

TiteWeld Steel Bar Grating is ideal for very tight spacing requirements and maximum “roll-ability” requirements. TiteWeld steel bar grating is suitable for applications requiring bearing bars placed close together. The 7/16-inch on-center bearing bar spacing is safe for high-heel traffic.

TiteWeld bar grating satisfies both American Association of State Highway and Transportation Officials (AASHTO) loading strength, and ADA comfort requirements for wheel chairs and walking pedestrians. Steel grating and floor grating are excellent end applications for TiteWeld bar grating.

Architectural Bar Grating

Architectural bar grating can be used for many applications including sunshades, railing infill panels, water fountain features and pedestrian areas. It has tight spacing for ADA and high-heel traffic, or wide spacing for maximum open area.

Everything You Need to Know About: Metal Grating

With a variety of different materials, classifications, and purposes, it can be difficult to determine which type of metal grating you should use for your project. To help, we've got all the details on the different types of metal grating, covering their characteristics, common applications and how they’re manufactured at a metal company.

What is Metal Grating?

In the metals industry, “grating” can refer to several different types of metal products. Each type has its own set of unique properties that make it more (or less) ideal given the individual application. For example, street drains will use a form of bar grating, while walkways typically require a safer form of expanded grating or grip strut. Regardless of its individual application, metal grating as a whole allows for proper drainage, ventilation, and safety measures across a variety of industries.

3 Quick Facts to Understanding Metal Grating

  1. Metal grating is used in a variety of industrial and commercial applications, including flooring, walkways, trench covers, and security enclosures.

  2. One of the most popular materials for metal grating is steel due to its strength, durability, and resistance to corrosion. Other materials used in metal grating production include aluminum, stainless steel, and fiberglass.

  3. Metal grating can be produced through several manufacturing processes, including welding, pressure locking, and riveting. The choice of manufacturing process depends on the specific application and the desired properties of the grating, such as load-bearing capacity, slip resistance, and aesthetics.

Types of Metal Grating

Metal grating varies widely in both material and function. Depending on the application, different types of metals and modes of production are used to ensure successful and safe operating conditions. These factors depend upon parameters such as strength, size, location, and usage.

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Additional resources:
What is the Advantage and Disadvantage of Decorative Perforated Sheet

Expanded Metal Grating

Expanded metal grating is made by creating slits in a metal sheet and then stretching (expanding) the sheet, resulting in a diamond pattern. The sheet can then be cut to size and flattened. Many different types of metals can be expanded, such as stainless steel, carbon steel, aluminum, and more.

The process of expanding is very economical as it creates no waste, and because there are no holes punched out of the material, the sheet will retain its structural strength. Typical uses for expanded metal grates include steps, flooring, fences, and security applications.

Bar Grating

Bar grating is made up of parallel bars that are connected together with perpendicular bars. The bars are most commonly connected through welding. However, there are other ways of joining the bars together. Alternatives include riveting, close meshing, press-locking and more. The most economical method of joining is determined by the materials used and the bars' thickness.

Bar grating can be made out of a variety of different materials but is most commonly made from steel or aluminum. It has a very high ratio of strength-to-weight and a lot of open space, making it a widely used option for industrial flooring. However, it is also used for things such as fire escapes, street drains, and bridges.

Safety Grating

Safety grating is a common form of metal grate that is used for walking surfaces. It is designed to help increase traction and prevent the risk of slips or falls. It is typically made with small diamond-shaped protrusions that allow for greater traction. It also has a lot of open surface, providing plenty of drainage and airflow. The most common form of safety grating helps to increase grip when walking across it. This is achieved by serrating the edges of the diamonds that are created after cold stamping a metal sheet.

Many different types of metals are used to create grip strut, including industrial steel and aluminum. Once it has been stamped and serrated, the steel sheet metal is then coated with a material that minimizes slipping. Because of its high level of traction, it is used for things such as walkways, stairs, and other walking platforms.

Wire Mesh

Wire mesh, also referred to as wire fabric or cloth, is a form of metal grating made up of parallel rows and intersecting columns of wire. It's easy to install, very durable, and is used across a range of different industries. Because it can be made from various materials and metals and can be produced to meet an almost limitless number of specifications, it is extremely versatile and can be used for many different applications.

Wire mesh is commonly used for both industrial and commercial applications. Several uses for it include: 

  • Separation and filtration 
  • Ventilation
  • Material reinforcement 
  • Screening and fencing
  • Security
  • Art

The two most common types of wire mesh are welded wire mesh and woven wire mesh. As the names suggest, welded wire mesh has intersecting rows and columns of parallel wires that are welded together at the intersection, while woven wire mesh has an array of intersecting wires woven over and under the perpendicular wires to create a stable sheet. 

Perforated Metal

Perforated metal, also known as perforated sheet, perforated plate, or perforated screen, is a form of metal grating that is created from sheet metal punched or stamped in order to create a specified pattern of holes. It is commonly made from stainless steel, carbon steel, or aluminum and is formed from several different metal fabrication processes. These include rotary pin perforation, die and punch perforation, and laser perforation. 

Perforated metals are utilized across a variety of industries and have numerous applications, including:

  • Noise reduction 
  • Filtration and centrifuging 
  • Ventilation
  • Chemical purification 
  • Screening
  • Construction material development

During the perforation process, removed metals are recycled, increasing sustainability and reducing overall metal usage. This reduction in material often translates to reduced weights and lower transportation costs.

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