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The procedure to verify the result is as follows: Verify that the spring rate is not affected by one or more critical areas. · Verify that the spring rate is not affected by a single critical area. Where the spring rate is affected, a key feature of a uniform distribution of stress is lost. 4G 3.1.2 critical area Critically stressed area A region or area that is subjected to a degree of concentrated stress that has a significant effect on the spring rate. There are two types of critical area: a single critical area and multiple critical areas. · Check that the critical area(s) has a uniform stress distribution. 4G 3.1.2 critical area A highly stressed area of a primary load-carrying component as defined by the manufacturer or a qualified engineer. The procedure to verify the result is as follows: Determine the maximum and minimum values for the spring rate. Verify that the maximum spring rate is obtained at the extreme ends of the specimen and the minimum at the centre. If the minimum value is zero, continue with the following steps. If the maximum value is zero, continue with the following steps. · Determine the maximum and minimum values for the spring rate. Verify that the spring rate is not affected by a critical area. 4G 3.1.3 critical angle Critical angle Between the inner surfaces of two load-carrying components, a critical angle is obtained when the components are in contact. A critical angle is defined by the angle at which two surfaces are in contact when there is no load. In practice, a critical angle is defined as the angle between the inner surfaces of two load-carrying components when the components are in contact. This can be measured by using a goniometer. 4G 3.1.3 critical angle The critical angle between the inner surfaces of two load-carrying components is the angle at which two surfaces are in contact when there is no load. A critical angle is defined as the angle at which two surfaces are in contact when there is no load. In practice, a critical angle is defined as the angle between the inner surfaces of two load-carrying components when the components are in contact. · Determine the critical angle. Verify that the critical angle is within the specified limits. 4G 3.1.4 critical area Critically stressed area A highly stressed region of a primary load-carrying component as defined by the manufacturer or a qualified engineer. The procedure to verify the result is as follows: Determine

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