This tool helps tighten bolts. 
A torque wrench is a special tool. 

A torque wrench is a special tool. 
There are many ways these tools work. One type is called a beam wrench. It has two metal bars. One bar is the handle. The other bar is an indicator. When you pull the handle, the first bar bends. The second bar stays straight. This shows you the torque on a scale. 
Other tools use a click. A click torque wrench has a part inside called a clutch. It uses a small ball and a spring. When you reach the right tightness, the ball clicks out of its place. This makes a sound. You can also feel it in your hand.
People have made these tools for a long time. John H. Sharp filed a patent in 1931. Later, Conrad Bahr and George Pfefferle made a tool that clicks. This helped people fix things more easily.
A torque wrench is a very helpful tool. It helps people tighten fasteners like nuts, bolts, or screws. These fasteners must be tightened to a specific amount of force. This force is called torque. Using the right torque is a crucial part of building things. If a bolt is too loose, it might fall out. If it is too tight, it might break. A torque wrench ensures that all parts have the right tension. 
There are many ways these tools work. One simple type is the beam torque wrench. It has two metal beams that run side by side. The first beam is the handle used to apply force. The second beam is an indicator that stays straight. When you pull the handle, it bends a little bit. The straight indicator beam then points to a number on a scale. This number tells you how much torque you are using. 
Other tools use different ways to signal the right tightness. A click torque wrench uses a part called a clutch. This clutch often uses a small ball and a spring. When you reach the right torque, the spring lets the ball move. This makes a loud clicking sound. You can also feel the tool move in your hand. Some tools even use batteries to work. These electronic tools can show the torque on a digital screen.
People have been working to improve these tools for a long time. John H. Sharp filed a patent for a torque measuring wrench in 1931. He lived in Chicago. In 1935, Conrad Bahr and George Pfefferle patented an adjustable wrench. Bahr worked for the New York City Water Department. He wanted to fix the problem of bolts being unevenly tight. Pfefferle was an engineer for the S.R. Dresser Manufacturing Company. 
Today, there are very strict rules for how these tools are made. The International Organization for Standardization has a rule called ISO 6789. This rule covers how tools are built and checked. There is also a standard called ASME B107.300 in America. These rules help make sure tools are accurate and safe. It is important to check the tools often. Most tools should be re-calibrated every 12 months. This keeps the tool working exactly as it should.
A torque wrench is a specialized tool used to apply a specific amount of torque to a fastener. Fasteners include items like nuts, bolts, or lag screws. Torque is the rotational force applied to these objects during assembly or adjustment. Using a torque wrench is essential when the tightness of a fastener is a crucial parameter. It ensures that parts have the proper tension and loading. Without precise control, a bolt might be too loose or too tight. 
One common design is the beam torque wrench. This tool consists of two parallel beams. The first beam is a lever that acts as the handle. When an operator applies force, this lever deflects according to Hooke's law. This law describes how much a material bends based on the force used. The second beam is an indicator beam that is only attached at one end. While the lever bends, the indicator beam stays straight. This relative movement allows the indicator to point to a specific value on a calibrated scale. 
A more complex version is the deflecting beam torque wrench. This type was patented by the Australian company Warren and Brown in 1948. It uses a load-carrying beam that deflects when torque is applied. An indicating beam runs above this load beam but eventually bends away at an angle. This beam stays straight during operation to show the relative displacement between the two parts. A wedge can be slid along a scale on the load beam to set the desired torque. When the angled indicator beam hits this wedge, a pin is triggered. This action produces a loud click and a physical sensation for the user.
Other mechanisms provide different ways to signal the correct torque. A slipper type torque wrench uses a roller and a cam mechanism. A spring provides a specific force that holds the roller against the cam. If the applied torque is strong enough to overcome this spring force, the wrench will slip. This prevents the user from overtightening the fastener. Another method uses a calibrated clutch mechanism, often called a click torque wrench. This design uses a ball detent and a spring. When the preset torque is reached, the spring's force is overcome, and the ball clicks out of its socket. 
The history of these tools involves several important inventors. John H. Sharp of Chicago filed the first patent for a torque measuring wrench in 1931. In 1935, Conrad Bahr and George Pfefferle patented an adjustable ratcheting torque wrench. Bahr worked for the New York City Water Department. He was frustrated by the inconsistent tightness of flange bolts in his work. He claimed to have invented a torque limiting tool as early as 1918. His partner, Pfefferle, was an engineer for the S.R. Dresser Manufacturing Company. 
To ensure accuracy, international standards govern how these tools are built. The International Organization for Standardization maintains ISO 6789. This standard defines twelve classes of torque tools. These include indicating tools and setting tools. For example, a Type 1 Class A wrench has an allowable deviation of ±6% for torque under 10 Nm. The standard also requires that tools remain usable even if overloaded by 25%. Most tools should be re-calibrated every 12 months or after 5,000 cycles.
In the United States, the American Society of Mechanical Engineers maintains the ASME B107.300 standard. This standard includes a third type called the limiting torque tool. These tools are designed to release the drive once the target torque is met. While the ISO and ASME standards both categorize tools, they are not compatible with each other. Both systems require tools to be clearly marked. A tool must show its torque range, the unit of torque, and the manufacturer's mark. For unidirectional tools, the word "TORQUE" must also be visible. 
🖼️ Images & Media (7)
More to explore
✨ What else?
Related topics you might enjoy
What is Nepedia?
A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.