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    May see from the above discussion, the choice material people should to the material nature, the characteristic and the processing method have comprehensive and the basic understanding.
     Finally, a design based upon function, and a prototype may be built. If its tests are satisfactory, the initial design will undergo certain modifications that enable it to be manufactured in quantity at a lower cost. During subsequent years of manufacture and service, the design is likely to undergo changes as new ideas are conceived or as further analyses based upon tests and experience indicate alterations. Sales appeal.

    Some Rules for Design
    In this section it is suggested that, applied with a creative attitude, analyses can lead to important improvements and to the conception and perfection of alternate, perhaps more functional, economical,
    and durable products.
    To stimulate creative thought, the following rules are suggested for the designer and analyst. The first six rules are particularly applicable for the analyst.
    1. A creative use of need of physical properties and control process.
    2. Recognize functional loads and their significance.
    3. Anticipate unintentional loads.
    4. Devise more favorable loading conditions.
    5. Provide for favorable stress distribution and stiffness with minimum weight.
    6. Use basic equations to proportion and optimize dimensions.
    7. Choose materials for a combination of properties.
    8. Select carefully, stock and integral components.
    9. Modify a functional design to fit the manufacturing process and reduce cost.
    10. Provide for accurate location and noninterference of parts in assembly.
       Machinery design covers the following contents.
    1. Provides an introduction to the design process , problem formulation ,safety factors.
    2. Reviews the material properties and static and dynamic loading analysis ,
    Including beam , vibration and impact loading.
       3. Reviews the fundamentals of stress and defection analysis.
       4. Introduces fatigue-failure theory with the emphasis on stress-life approaches to high-cycle fatigue design, which is commonly used in the design of rotation machinery.
       5. Discusses thoroughly the phenomena of wear mechanisms, surface contact stresses ,and surface fatigue.
       6. Investigates shaft design using the fatigue-analysis techniques.
       7. Discusses fluid-film and rolling-element bearing theory and application
       8. Gives a thorough introduction to the kinematics, design and stress analysis of spur gears , and a simple introduction to helical ,bevel ,and worm gearing.
       9. Discusses spring design including compression ,extension and torsion springs.
       10. Deals with screws and fasteners including power screw and preload fasteners.
       11. Introduces the design and specification of disk and drum clutches and brakes.
    Machine Design
    The complete design of a machine is a complex process. The machine design is a creative work. Project engineer not only must have the creativity in the work, but also must in aspect and so on mechanical drawing, kinematics, engineerig material, materials mechanics and machine manufacture technology has the deep elementary knowledge.
     One of the first steps in the design of any product is to select the material from which each part is to be made. Numerous materials are available to today's designers. The function of the product, its appearance, the cost of the material, and the cost of fabrication are important in making a selection. A careful evaluation of the properties of a. material must be made prior to any calculations.
     Careful calculations are necessary to ensure the validity of a design. In case of any part failures, it is desirable to know what was done in originally designing the defective components. The checking of calculations (and drawing dimensions) is of utmost importance. The misplacement of one decimal point can ruin an otherwise acceptable project. All aspects of design work should be checked and rechecked.
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