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Die Cast Copper Motor RotorWorkshop
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IntroductionProgram initiation - Ba
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IntroductionObjectives? Development
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IntroductionAdvantages to motor per
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Cracking -Thermal Expansion & Contr
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Die Materials TestingH-13 tool stee
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Predicted Temperature Profiles
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The Die Casting ProcessSystem desig
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The Die Casting ProcessInductotherm
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The Die Casting ProcessApplying dry
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The Die Casting ProcessTransferring
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The Die Casting ProcessEjecting cop
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Testing Die MaterialsDr. John G. Co
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Testing of Die Materials - H-13 Ste
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Testing of Die Materials - H-13 Ste
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Testing of Die Materials - H-13 Ste
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Testing of Die Materials - H-13 Ste
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Testing of Die Materials - CVD-W on
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Testing of Die Materials - InconelV
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Testing of Die Materials - InconelP
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Testing of Die Materials - TZM & An
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Testing of Die Materials - TZM & An
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Testing of Die Materials - Nickel A
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AlloyDie Materials TestingNickel-ba
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AlloyDie Materials TestingSuperallo
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Die Materials TestingConclusions -
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Die Casting Copper RotorsMaster die
- Page 64 and 65: Die Casting Copper RotorsLarger Ind
- Page 66 and 67: Die Casting Copper RotorsArbor (Man
- Page 68 and 69: Die Casting Copper RotorsAssembled
- Page 70 and 71: Die Casting Copper RotorsInserting
- Page 72 and 73: Die Casting Copper RotorsCopper pel
- Page 74 and 75: Die Casting Copper RotorsPouring co
- Page 76 and 77: Die Casting Copper RotorsEjecting r
- Page 78 and 79: Die Casting Copper RotorsWater-quen
- Page 80 and 81: Die Casting Copper RotorsCross-sect
- Page 82 and 83: Rotor Steel Specification for Coppe
- Page 84 and 85: Capabilities for Future Die Casting
- Page 86 and 87: Motor Test ResultsMr. Darryl Van So
- Page 88 and 89: Diminishing ReturnsLossesWe arehere
- Page 90 and 91: Motor TestsRotor I 2 R Losses (Watt
- Page 92 and 93: Motor TestsCopper rotor consistency
- Page 94 and 95: Motor TestsRotor Cost Implications?
- Page 96 and 97: 15 kW Motor - Past, Present and Fut
- Page 98 and 99: Principles of die casting technolog
- Page 100 and 101: Abbreviations for die castingA = ar
- Page 102 and 103: Gate velocity v MAV MA=____________
- Page 104 and 105: Metal flow rate Q mm AQ M=? ?t Fm p
- Page 106 and 107: Runner cross section A kA KA K= 1.6
- Page 108 and 109: Sankey diagram
- Page 110 and 111: Heat Conduction Q IQ l= ? w* A w* (
- Page 112 and 113: The three cooling areas
- Page 116 and 117: Insulation material
- Page 118 and 119: Electrical heaters
- Page 120 and 121: Electrical heaters
- Page 122 and 123: The shot sleeve design
- Page 124 and 125: The die design
- Page 126: The die design