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Keywords: Titanium
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Journal Articles
Journal:
Rapid Prototyping Journal
Rapid Prototyping Journal (2026) 32 (5): 1259–1264.
Published: 22 December 2025
... to already published work, the ratios of hydrofluoric acid, nitric acid and deionized water have been used to remove the support structure without significantly affecting the part dimension. Replicas of internal channels in the form of titanium cylinders with 2 mm, 1.5 mm, 1.0 mm and 1.1 mm wall thickness...
Journal Articles
Serhatcan Berk Akçay, Temel Varol, Hüseyin Can Aksa, Murat Beder, Onur Güler, Fatih Erdemir, Mücahit Kocaman
Journal:
Rapid Prototyping Journal
Rapid Prototyping Journal (2026) 32 (3): 665–687.
Published: 28 November 2025
... of this study. 02 04 2025 30 07 2025 19 08 2025 30 09 2025 © 2025 Emerald Publishing Limited 2025 Emerald Publishing Limited Licensed re-use rights only Titanium Grade-4 powder (spherical, 15–45 µm) was supplied from Jiangsu Vilory Advanced Materials Technology Co., Ltd...
Journal Articles
Journal:
Rapid Prototyping Journal
Rapid Prototyping Journal (2025) 31 (11): 320–332.
Published: 29 September 2025
...Matthew Burton; Mudassar Khalil; Paul P. Conway; Carmen Torres-Sanchez Purpose The purpose of this study is to identify optimum laser settings and scanning strategies for titanium powder in a Trumpf Truprint 1000 to maximise density and minimise secondary roughness of printed parts. Design...
Journal Articles
Journal:
Rapid Prototyping Journal
Rapid Prototyping Journal (2025) 31 (6): 1156–1174.
Published: 25 February 2025
... Emerald Publishing Limited Licensed re-use rights only Additive manufacturing Titanium Lasers Process planning Laser hot wire additive manufacturing (LHWAM) falls within the class of additive manufacturing processes known as directed energy deposition (DED). What distinguishes DED...
Journal Articles
Xue Cao, Luke Nelson Carter, Victor Manuel Villapún, Francesco Cantaboni, Giulia De Sio, Morgan Lowther, Sophie Elizabeth Thompson Louth, Liam Grover, Paola Ginestra, Sophie Constance Cox
Journal:
Rapid Prototyping Journal
Rapid Prototyping Journal (2022) 28 (5): 907–915.
Published: 24 February 2022
...Xue Cao; Luke Nelson Carter; Victor Manuel Villapún; Francesco Cantaboni; Giulia De Sio; Morgan Lowther; Sophie Elizabeth Thompson Louth; Liam Grover; Paola Ginestra; Sophie Constance Cox Purpose Selective laser melting (SLM) is increasingly used to manufacture bone implants from titanium alloys...
Journal Articles
Journal:
Rapid Prototyping Journal
Rapid Prototyping Journal (2022) 28 (3): 546–558.
Published: 23 September 2021
...Yabao Hu; Hanning Chen; Xiaodan Liang; Jianbo Lei Purpose Studies on titanium implants have shown that the mechanical properties of the parts are affected by the microstructure characteristic derived from the manufacturing process. The properties of different orientations of specimens under...
Journal Articles
Won-Hyuk Lee, Tae-Wook Na, Kyung-Woo Yi, Seung-Min Yang, Jang-Won Kang, Hyung Giun Kim, Hyung-Ki Park
Journal:
Rapid Prototyping Journal
Rapid Prototyping Journal (2020) 26 (8): 1401–1404.
Published: 06 July 2020
...Won-Hyuk Lee; Tae-Wook Na; Kyung-Woo Yi; Seung-Min Yang; Jang-Won Kang; Hyung Giun Kim; Hyung-Ki Park Purpose When a pure titanium component is fabricated in a selective laser melting (SLM) process using titanium powder, the oxygen concentration of the SLM sample increases compared to the initial...
Journal Articles
Journal:
Rapid Prototyping Journal
Rapid Prototyping Journal (2019) 25 (4): 665–671.
Published: 31 December 2018
... Licensed re-use rights only Research Rapid prototyping CAD Titanium Metals Selective electron beam melting Ti-6Al-4V is a versatile engineering material which is most commonly used in aeronautic, automotive and medical applications as a result of its good mechanical properties and low...
Journal Articles
Journal:
Rapid Prototyping Journal
Rapid Prototyping Journal (2018) 24 (9): 1409–1420.
Published: 25 October 2018
... Emerald Publishing Limited 2018 Emerald Publishing Limited Licensed re-use rights only Advanced manufacturing technologies Mechanical properties Mechanical properties of materials Titanium Modelling Tests Metal additive layer manufacturing offers several benefits to engineering...
Journal Articles
Journal:
Rapid Prototyping Journal
Rapid Prototyping Journal (2018) 24 (6): 1034–1039.
Published: 04 October 2018
... in the literature so far for metal powders. Zuoren Nie can be contacted at: zrnie@bjut.edu.cn 26 07 2017 23 03 2018 22 04 2018 © Emerald Publishing Limited 2018 Emerald Publishing Limited Licensed re-use rights only Titanium Powders Material properties Titanium...
Journal Articles
Journal:
Rapid Prototyping Journal
Rapid Prototyping Journal (2016) 22 (5): 817–825.
Published: 15 August 2016
... stress location. This motivates the use of a fatigue model that accounts for not only stress effects, but also microstructure and porosity (i.e. inhomogeneous, anisotropic fatigue strength). Titanium is of interest to many industries, such as military, aerospace and medical, because it has high...
Journal Articles
Journal:
Rapid Prototyping Journal
Rapid Prototyping Journal (2015) 21 (1): 98–104.
Published: 19 January 2015
... be contacted at: Nicolae.Balc@tcm.utcluj.ro © Emerald Group Publishing Limited 2015 CAD Selective laser sintering Mechanical properties of materials Titanium Medical products Finite element analysis Application of Additive Manufacturing (AM) and Rapid Manufacturing (RM) technologies...
Journal Articles
Journal:
Rapid Prototyping Journal
Rapid Prototyping Journal (2013) 19 (2): 111–117.
Published: 01 March 2013
... the binding mechanism between two particles of titanium powder. Design/methodology/approach A dedicated experimental setup is used to isolate the particles. They are then irradiated by the laser. SEM micrographs are taken at each step and image analysis is performed. The obtained results are compared...
Journal Articles
Journal:
Rapid Prototyping Journal
Rapid Prototyping Journal (2012) 18 (5): 401–408.
Published: 27 July 2012
... value was considered to be the representative value for each sample. A. Safdar can be contacted at: adnan.safdar@mah.se © Emerald Group Publishing Limited 2012 Alloys Surface roughness measurement Manufacturing systems Titanium Ti‐6Al‐4V Electron beam melting Ra Response...
Journal Articles
Journal:
Rapid Prototyping Journal
Rapid Prototyping Journal (2012) 18 (3): 230–240.
Published: 20 April 2012
... the experiment. The experiments consisted of four factors (three factors+one factor to represent interaction factor in orthogonal array) and four levels. Subsequently, L16 of orthogonal array was used. Number of replications for each experiment run was three replications. Development of titanium (Ti...
Journal Articles
Journal:
Rapid Prototyping Journal
Rapid Prototyping Journal (2010) 16 (1): 44–49.
Published: 19 January 2010
... compared with ceramics or polymeric materials due to their combination of high‐mechanical strength and fracture toughness. Among various metallic biomaterials, titanium and its alloys are the most interesting metallic biomaterials for orthopedic and dental implants due to their excellent mechanical...
Journal Articles
Journal:
Rapid Prototyping Journal
Rapid Prototyping Journal (2007) 13 (4): 196–203.
Published: 07 August 2007
... by benchmark studies. By developing a procedure to fabricate frameworks for complex dental prostheses, the potential of SLM as a medical manufacturing technique has been proved. Findings Optimized SLM parameters lead to part densities up to 99.98 percent for titanium. Strength and stiffness, corrosion...
Journal Articles
Journal:
Rapid Prototyping Journal
Rapid Prototyping Journal (2000) 6 (2): 97–106.
Published: 01 June 2000
... finish, mechanical properties and density. The purpose of this study was to identify for titanium alloy powder the mechanisms responsible for the improvements obtained after powder thermal pre‐treatment and to optimize the thermal excursion. © MCB UP Limited 2000 Titanium Lasers Sintering...
