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Titlebook: Mechanics of Additive and Advanced Manufacturing, Volume 9; Proceedings of the 2 Junlan Wang,Bonnie Antoun,Piyush R. Thakre Conference proc

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楼主: 恶梦
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Mechanical Properties of 3-D LENS and PBF Printed Stainless Steel 316L Prototypes,s with complex geometries and dimensions effectively. Studies have shown that AM processes create metals with distinctive microstructure features and material properties, which are highly dependent on the processing parameters. The mechanical properties of an AM material may appear to be similar to
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Effect of Porosity on Thermal Performance of Plastic Injection Molds Based on Experimental and Numevent of advanced manufacturing technology and expanding global competition in business, it is necessary to provide innovative solutions to the injection molding industry to sustain their business. Typically, the cooling time comprises more than half of the overall injection molding cycle time. The a
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Processing and Characterization of Ti64/AZ31 Multilayered Structure by Roll Bonding,ered materials. The microstructure of these roll-bonded samples was observed using optical microscope, and the Vickers hardness data were also obtained. The thickness of the AZ31 layers was severely reduced, while the thickness of Ti64 layers was only slightly changed. Compared with the as-received
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Vibration Characteristics of Unit Cell Structures Fabricated by Multi-Material Additive Manufacturis consisting of square unit cells are fabricated by material extrusion type AM, which is usually called Fused Deposition Modeling (FDM). The target object is oscillated by a magnetic motor and the amplitude of vibration is measured with a laser vibrometer. The effects of deposition direction and mat
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Defects, Process Parameters and Signatures for Online Monitoring and Control in Powder-Based Additieating the desired design. In the early stages of AM development, the goal was just creating some prototypes to decrease the time of manufacturing assessment. But with metal-based AM, it is now possible to produce end-use parts. In powder-based AM, a designed part can be produced directly from the S
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Tool Wear Mechanisms of Physical Vapor Deposition (PVD) TiAlN Coated Tools Under Vegetable Oil Baseity to operate at higher operating temperatures and resistance against corrosion. Alpha-beta titanium alloy (Ti6Al4V) is the most frequently used titanium alloy, mainly preferred for the applications such as blades, discs, jet engine airframes and biomedical implants. TiAlN coating is highly favored
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