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Published byJuliet Sabins Modified over 10 years ago
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Selecting Materials Product function interdependence Mechanical properties Physical properties Families of materials Materials first screening
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When do we select specific materials? ? Formulation Customer Needs Customer requirements Importance weights Eng. characteristics House of Quality Eng. Design Spec’s Concept Design Abstract embodiment Physical principles Material Geometry Configuration Design arrangement of parts/features (i.e. shaping materials)
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Therefore, let’s examine… Formulation Detail Design Parametric Design Configuration Design Concept Design materials manufacturing processes
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Interdependence - compatibility Material Properties Manufacturing Processes compatible materials & processes
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Interdependence - capability Manufacturing Processes Product Geometry capable processes for the geometry
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Product function is interdependent Material Properties Manufacturing Processes Product Geometry Product Function
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Tekniker-ILL neutron monochromator Example Design a support for the electric motor
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Example Tekniker-ILL neutron monochromator
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Example Tekniker-ILL neutron monochromator
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Example Tekniker-ILL neutron monochromator
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Material properties Mechanical properties quantities that characterize the behavior of a material in response to external, or applied forces quantities that characterize the behavior of a material in response to physical phenomena other than mechanical forces …(e.g. such as heat, electricity, radiation) Physical properties
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Mechanical properties stiffness ? brittle Strength = stress at failure = (failure) elastic plastic ductile ?
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Mechanical properties
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Fundamental properties
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Material families / sub-families CeramicsMetalsPlasticsComposites Materials Elastomers Thermosets Thermoplastics Non-ferrous Ferrous Sub-family Family (Ashby)
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Material sub-families / classes Metals Materials Ferrous Sub-family Family Classes Cast iron Carbon steel Alloy steel Stainless steel
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Metals Non-ferrousFerrous Metals aluminum brass bronze copper lead magnesium nickel tin titanium tungsten zinc cast iron carbon steel alloy steel stainless steel
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Elastomers Thermosets Thermoplastics Polymers butyl fluorocarbon neoprene nitrile polysulfide rubber silicone alkyd epoxy melamine phenolic polyester urethane ABS acetal acrylic nylon polycarbonate polyethylene polypropylene polystyrene vinyl Natural and synthetic rubbers Polymers
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Cross-linking No chemical reaction
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Ceramics alumina beryllia diamond magnesia silicon carbide silicon nitride zirconia
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Composites carbon fiber ceramic matrix glass fiber Kevlar metal matrix Composites
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Carbon fiber Style 282 bidirectional. Araldite epoxy resin with HY956 additive. Manufacturing process
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Composites Ossur Flexwalk College Park Foot Otto Bock Advantage Pie protésico dinámico 2004 Pie protésico dinámico 2005
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Composites Marlon Shirley Ossur Cheeta Flex-Foot Cameron Clapp Otto Bock C-Leg Date of birth: April 21, 1978 Hometown: Thatcher, Utah Current Home:San Diego, CA Date of birth: Sep 15, 1986
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Property profiles by family
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Materials selection prospective materials and processes screening rating rejected materials and processes best material(s) and processes functional? manufacturable? relative performance? feasible materials and processes
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Screening: How do we choose a material? Product function depends upon… material, manufacturing process, geometry We have to consider all three Do we select a few feasible materials first… then select the specific mfg process? or Do we select a few feasible mfg processes… then select the specific material?
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Screening: Materials first approach Application Information 1. Applied loads magnitude cyclic nature (steady, fatigue) rate (slow, impact) duration (creep) 2. Ambient conditions temperature moisture sunlight chemical liquids/vapors 3. Safety 4. Cost
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Screening: Manufact process first approach Part Information 1. Production volume 2. Part size (overall) 3. Shape capability (features) boss/depression 1D boss/depression >1D holes undercuts (internal/external) uniform walls cross sections (uniform /regular) rotational symmetry captured cavities
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Materials selection prospective materials and processes screening rating rejected materials and processes best material(s) and processes functional? manufacturable? relative performance? feasible materials and processes
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Rating: Material indices Given the same cost/volume… which is stronger? index = Strength/cost Given the same cost/volume… which is stiffer? index = Young’s modulus/cost
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Ashby Chart How can we use it?
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Summary Product function interdependence Mechanical properties Physical properties Families, sub, classes of materials Ashby charts Materials first approach Process first approach
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