The Checking And Calibration Of Torque Wrenches - Norbar

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The Checking and Calibration of Torque WrenchesIntroductionIn this article we will look in more detail at the ways of testing the performance ofhand held torque wrenches.Starting with a reminder about the different types of torque wrench, the article willexplain the difference between checking and calibration and the stages of calibrationincluding adjustment. The most appropriate type of test equipment for differentsituations will also be discussed.Types of Torque WrenchClick type or “setting” torquewrenches:These are set before use to therequired torque value. There will normally be some form of scale on the tool. Whenthe desired torque is reached the tool responds by means of a click or physicalchange of geometry. Due to manufacturing tolerances, even if the wrench is usedcorrectly, the actual torque applied by the tool may be different from the value set onthe scale.A torque wrench tester will display this value during checking or calibration. If there isa difference between the set value and the displayed value then the tool may needadjustment.Some setting tools do not have scales. In this case the desired torque is set byadjusting the mechanism according to manufacturer’s instructions until the “click” isreached at the desired value on the torque wrench tester.“Indicating” or “measuring” torque wrenches:These use a mechanical dial or electronic display to show the torque value beingapplied by the operator.

During checking or calibration, torque is applied until the desired value is shown onthe torque tool. The operator then stops applying torque and the desired value on thetorque tool is compared with the value displayed on the torque wrench tester. Againthe tool may then need adjustment.Torque screwdrivers:For very small torques, below 5 N.m (0.5 Kgf.m) it is common to use a torquescrewdriver rather than a torque wrench. The issues and requirements are verysimilar and the term wrench is used for this article to mean both wrench andscrewdriver. Where a difference exists it is noted.Checking of Torque WrenchesCalibration intervals set by national and international standards are either one year or5000 cycles, whichever comes first. This may be too long for safety critical operationsand more frequent calibration may be necessary. Proper calibration is timeconsuming and needs to be done in a controlled environment by qualifiedtechnicians. Some torque tool manufacturers have therefore now introduced torquechecking devices designed to be used by operators at their place of work. Thisprovides a quick and easy way to see if the torque wrench is in good workingcondition or if it needs to be quarantined for proper calibration. Torque checkingdevices do not have such a high accuracy and do not normally have a loadingmechanism as they are designed to be used by the operator in their normaltechnique.Calibration of Torque WrenchesThis will follow a set procedure. The four most common standards are ISO6789, JJG707, ANSI/ASME B107/14 and GGG 686D.

Throughout the world the ISO 6789 has the largest use. ANSI/ASME B107/14 ispopular in the USA. GGG686 is an American military standard which is beingovertaken by B107/14. The JJG 707 standard is used in China.All have similar requirements and in this article we will use ISO 6789 for illustration.There are eight key points to consider.1. The calibration must be carried out in controlled temperature and humidityconditions. Records must be kept of the temperature during the calibration.2. The torque measuring instrument is called a calibration device in thestandard. This device must have an uncertainty of measurement no greaterthan /-1% of reading. The standard explains more precisely what this meansbut the idea is that the calibration device needs to be more accurate than thewrench otherwise the calibration result would be meaningless.3. The torque wrench must be operated in either a horizontal plane, orpositioned vertically and operated in a vertical plane. Setting the wrenchhorizontal and pushing down is not acceptable for calibration. This is becausethe weight of the wrench can affect the reading. Screwdrivers can becalibrated in the vertical or horizontal plane.4. The torque wrench must be exercised (operated) before taking readings.(Once for indicating tools and five times for setting tools.) This is to allow relubrication of moving surfaces and settling of components into their workingposition.5. The load applied to the torque wrench must be at the centre of the handle, orat some other load point marked by the manufacturer. This is not relevant forscrewdrivers.6. The rate of torque increase must be controlled. This is because the rate ofapplication can affect the torque result. The standard requires control of therate of torque increase rather than the angular speed of rotation.7. The readings must be taken at certain points in the range of the torquewrench and there must be five readings at each point. For “setting” wrenchesthe target point must always be approached from lower on the scale. If thescale is wound too far (above the target point) it must be taken backwardsand wound up to the target point again. The technician must look at 90 to thescale when setting to avoid parallax errors.

8. Some torque wrenches have mechanisms that operate in two directions.Others allow the operator to push the square drive through the ratchet fortorque in the opposite direction. This means that the mechanism is onlyoperating in one direction. The single direction mechanism is easier tocalibrate.Where a torque wrench has a mechanism that can operate in two directions,it must be exercised after changing direction before taking readings.These points are a summary of the standards available. The appropriate standardshould be purchased and followed when performing a calibration.Calibration DeviceTorque wrench testers can be mechanical, hydraulic or electronic in operation.MechanicalHydraulicElectronic

The modern electronic torque measuring instruments are designed to monitor theincrease of torque applied by the tool and they can recognise when setting tools havereached the “click” or the change in geometry. Mechanical and hydraulic devices arenot able to do this and will not be as accurate in their recognition of the “click” point.Electronic devices have different modes for “setting” wrenches and “indicating”wrenches. These are often referred to as “first peak” and “peak” readingsrespectively.The range of the device is limited. Standards controlling the calibration of thesetesters limit the useable range to 2% to 100% in the best case and 10% to 100% ismore normal. It will be necessary to have several testers to check or calibrate a widerange of torque wrenches.Loaders should allow calibration in the horizontal plane, or with the wrench heldvertically.For calibration it is useful to have a loader that allows control of the rate of torqueincrease. Generally loaders where the torque wrench is held stationary and thesquare drive is rotated are slower and will comply with the standards better thantesters where the handle is pushed sideways while the square remains stationary.Computer controlled loaders are available to exactly control the rate of torqueapplication but these are much more expensive.SummaryIt is very important that manual torque wrenches are calibrated regularly. This articlehas given an introduction to the subject. Please consult the torque tool manufacturerfor more complete information. Norbar Torque Tools Ltd. 2009

the torque tool. The operator then stops applying torque and the desired value on the torque tool is compared with the value displayed on the torque wrench tester. Again the tool may then need adjustment. Torque screwdrivers: For very small torques, below 5 N.m (0.5 Kgf.m) it is common to use a torque screwdriver rather than a torque wrench.

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