Fundamentals Of Modern Manufacturing Solution Manual 4th

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Fundamentals of modern manufacturing pdf. [PDF]Fundamentals of Modern Manufacturing: Materials, Processes, and Systems 4th Ed.( Solutions Manual.

  1. Fundamentals Of Modern Manufacturing
  2. Fundamentals Of Modern Manufacturing : Materials Processes And Systems 4th Pdf

Solutions for Fundamentals of Modern Manufacturing, 4/e (published by Wiley)  MPGroover 2010 03-02-09, 03-02-09 Excerpts from this work may be reproduced by instructors for distribution on a not-for-profit basis for testing or instructional purposes only to students enrolled in courses for which the textbook has been adopted. Any other reproduction or translation of this work beyond that permitted by Sections 107 or 108 of the 1976 United States Copyright Act without the permission of the copyright owner is unlawful. 3 3.2 Which one of the following is the correct definition of ultimate tensile strength, as derived from the results of a tensile test on a metal specimen: (a) the stress encountered when the stress-strain curve transforms from elastic to plastic behavior, (b) the maximum load divided by the final area of the specimen, (c) the maximum load divided by the original area of the specimen, or (d) the stress observed when the specimen finally fails? 3.3 If stress values were measured during a tensile test, which of the following would have the higher value: (a) engineering stress or (b) true stress?

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3.4 If strain measurements were made during a tensile test, which of the following would have the higher value: (a) engineering strain, or (b) true strain? 3.5 The plastic region of the stress-strain curve for a metal is characterized by a proportional relationship between stress and strain: (a) true or (b) false? It is the elastic region that is characterized by a proportional relationship between stress and strain.

The plastic region is characterized by a power function - the flow curve. 3.6 Which one of the following types of stress strain relationship best describes the behavior of brittle materials such as ceramics and thermosetting plastics: (a) elastic and perfectly plastic, (b) elastic and strain hardening, (c) perfectly elastic, or (d) none of the above? 3.7 Which one of the following types of stress strain relationship best describes the behavior of most metals at room temperature: (a) elastic and perfectly plastic, (b) elastic and strain hardening, (c) perfectly elastic, or (d) none of the above? 3.8 Which one of the following types of stress strain relationship best describes the behavior of metals at temperatures above their respective recrystallization points: (a) elastic and perfectly plastic, (b) elastic and strain hardening, (c) perfectly elastic, or (d) none of the above? 3.9 Which one of the following materials has the highest modulus of elasticity: (a) aluminum, (b) diamond, (c) steel, (d) titanium, or (e) tungsten?

3.10 The shear strength of a metal is usually (a) greater than or (b) less than its tensile strength? 3.11 Most hardness tests involve pressing a hard object into the surface of a test specimen and measuring the indentation (or its effect) that results: (a) true or (b) false? 3.12 Which one of the following materials has the highest hardness: (a) alumina ceramic, (b) gray cast iron, (c) hardened tool steel, (d) high carbon steel, or (e) polystyrene? 3.13 Viscosity can be defined as the ease with which a fluid flows: (a) true or (b) false?

Solutions for Fundamentals of Modern Manufacturing, 4/e (published by Wiley)  MPGroover 2010 03-02-09, 03-02-09 Excerpts from this work may be reproduced by instructors for distribution on a not-for-profit basis for testing or instructional purposes only to students enrolled in courses for which the textbook has been adopted. Any other reproduction or translation of this work beyond that permitted by Sections 107 or 108 of the 1976 United States Copyright Act without the permission of the copyright owner is unlawful. Viscosity is the resistance to flow. Problems Strength and Ductility in Tension 3.1 A tensile test uses a test specimen that has a gage length of 50 mm and an area = 200 mm2. During the test the specimen yields under a load of 98,000 N. The corresponding gage length = 50.23 mm. This is the 0.2 percent yield point.

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The maximum load of 168,000 N is reached at a gage length = 64.2 mm. Determine (a) yield strength, (b) modulus of elasticity, and (c) tensile strength. (d) If fracture occurs at a gage length of 67.3 mm, determine the percent elongation. (e) If the specimen necked to an area = 92 mm2, determine the percent reduction in area.

Solution: (a) Y = 98,000/200 = 490 MPa. (b) s = E e Subtracting the 0.2% offset, e = (50.23 - 50.0)/50.0 - 0.002 = 0.0026 E = s/e = 490/0.0026 = 188.5 x 103 MPa. (c) TS = 168,000/200 = 840 MPa. (d) EL = (67.3 - 50)/50 = 17.3/50 = 0.346 = 34.6% (e) AR = (200 - 92)/200 = 0.54 = 54% 3.2 A test specimen in a tensile test has a gage length of 2.0 in and an area = 0.5 in2. During the test the specimen yields under a load of 32,000 lb.

The corresponding gage length = 2.0083 in. This is the 0.2 percent yield point. The maximum load of 60,000 lb is reached at a gage length = 2.60 in. Determine (a) yield strength, (b) modulus of elasticity, and (c) tensile strength. (d) If fracture occurs at a gage length of 2.92 in, determine the percent elongation.

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(e) If the specimen necked to an area = 0.25 in2, determine the percent reduction in area.

Fundamentals Of Modern Manufacturing

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Fundamentals Of Modern Manufacturing Solution Manual 4th

Fundamentals Of Modern Manufacturing : Materials Processes And Systems 4th Pdf

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