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Titlebook: Laser-Induced Materials and Processes for Rapid Prototyping; L. Lü,J. Y. H. Fuh,Y. S. Wong Book 2001 Springer Science+Business Media New Y

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Book 2001ted parts, such as in rapid tooling applications and replacements of damaged components. Many processes and materials have been commercialized but are yet to be able to fulfill the aforementioned functional requirements because of limited mechanical strengths of the fabricated parts.
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he fabricated parts, such as in rapid tooling applications and replacements of damaged components. Many processes and materials have been commercialized but are yet to be able to fulfill the aforementioned functional requirements because of limited mechanical strengths of the fabricated parts.978-1-4613-5569-4978-1-4615-1469-5
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Laser-Induced Materials and Processes for Rapid Prototyping
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Laser-Induced Materials and Processes for Rapid Prototyping978-1-4615-1469-5
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Book 2001ily targeted for prototyping applications. With RP, very complex three­ dimensional parts or prototypes can be fabricated without the need of costly tooling and machining. This inevitably leads to much shorter design cycle time and lower cost of building a prototype. Its manifold benefits include si
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Material Characterization of Laser-Lithography Built Parts,nces in UV-curing chemistry [.–.] focus on developing a low shrinkage resin that shows high efficiency in accelerating the polymerization process so as to improve the mechanical properties of the final product.
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Metal-Based System via Laser Melting,pt for the much higher laser energy density used. The powder bed is fully or partially melted directly to form metallic bonding [.]. The selective laser cladding (SLC) process is based on the surface cladding treatment.
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