Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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Materials Map under construction

The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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1.080 Topics available

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977 Locations available

693.932 PEOPLE
693.932 People People

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Show results for 693.932 people that are selected by your search filters.

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Naji, M.
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Motta, Antonella
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Piili, Heidi

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University of Turku

in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (26/26 displayed)

  • 2023Impact of additive manufacturing on titanium supply chain: Case of titanium alloys in automotive and aerospace industries70citations
  • 2023Impact of additive manufacturing on titanium supply chain: Case of titanium alloys in automotive and aerospace industries70citations
  • 2023Electrochemical properties of graphite/nylon electrodes additively manufactured by laser powder bed fusion6citations
  • 2021Mechanical properties and microstructure of additively manufactured stainless steel with laser welded joints32citations
  • 2021Prospects for laser based powder bed fusion in the manufacturing of metal electrodes: A review16citations
  • 2020Additive Manufacturing—Past, Present, and the Future36citations
  • 2020Effects of manufacturing parameters and mechanical post-processing on stainless steel 316L processed by laser powder bed fusion102citations
  • 2020Characterization of part deformations in laser powder bed fusion of stainless steel 316L5citations
  • 2020Testing and analysis of additively manufactured stainless steel CHS in compression34citations
  • 2020Integration of Simulation Driven DfAM and LCC Analysis for Decision Making in L-PBF7citations
  • 2019Effective parameters on the fatigue life of metals processed by powder bed fusion technique: A short review16citations
  • 2019Study of phenomenon of fibre-laser-MIG/MAG-hybrid-welding2citations
  • 2018Correlation between pyrometer monitoring and active illuminaton imaging of laser assisted additive manufacturing of stainless steel6citations
  • 2018Interaction between laser beam and paper materials7citations
  • 2018Effect of process parameters to monitoring of laser assisted additive manufacturing of alumina ceramics1citations
  • 2018Laser scribing of stainless steel with and without work media6citations
  • 2017Possibilities of CT Scanning as Analysis Method in Laser Additive Manufacturing24citations
  • 2017Preliminary Investigation on Life Cycle Inventory of Powder Bed Fusion of Stainless Steel7citations
  • 2015Preliminary comparison of properties between Ni-electroplated stainless steel parts fabricated with laser additive manufacturing and conventional machining14citations
  • 2015Overview of Sustainability Studies of CNC Machining and LAM of Stainless Steel33citations
  • 2015Possibilities of CT Scanning as Analysis Method in Laser Additive Manufacturing24citations
  • 2015Preliminary Investigation of Keyhole Phenomena during Single Layer Fabrication in Laser Additive Manufacturing of Stainless Steel58citations
  • 2014Katsaus lisäävän valmistuksen (aka 3D-tulostus) mahdollisuuksiin ja kustannuksiin metallisten tuotteiden valmistuksessa: Case jauhepetitekniikka ; Overview to possibilities and costs of additive manufacturing (aka 3D printing) of metallic materials: Case powder bed fusion techniquecitations
  • 2014Monitoring of temperature profiles and surface morphologies during laser sintering of alumina ceramics15citations
  • 2013Digital design and manufacturing process comparison for new custom made product family – a case study of a bathroom faucet13citations
  • 2010The characteristics of high power fibre laser welding32citations

Places of action

Chart of shared publication
Kraslawski, Andrzej
2 / 5 shared
Nyamekye, Patricia
6 / 6 shared
Rahimpour Golroudbary, Saeed
1 / 2 shared
Luukka, Pasi
2 / 2 shared
Rahimpour, Saeed
1 / 3 shared
Kivijärvi, Lauri
1 / 2 shared
Haukka, Matti
1 / 24 shared
Pastushok, Olga
1 / 1 shared
Laakso, Ekaterina
1 / 1 shared
Repo, Eveliina
1 / 5 shared
Britton, T. Ben
1 / 6 shared
Zhang, Ruizhi
2 / 5 shared
Buchanan, Craig
2 / 2 shared
Gardner, Leroy
2 / 20 shared
Daskalaki-Mountanou, Dafni
1 / 1 shared
Matilainen, Ville-Pekka
6 / 6 shared
Salminen, Antti
20 / 44 shared
Korpela, Markus
1 / 2 shared
Riikonen, Niko
2 / 2 shared
Nyrhilä, Olli
6 / 6 shared
Björk, Timo
2 / 8 shared
Afkhami, Shahriar
2 / 5 shared
Dabiri, Mohammad
1 / 5 shared
Unt, Anna
2 / 4 shared
Harkko, Petri
1 / 1 shared
Lehtinen, Janne
1 / 1 shared
Lehti, Antti
3 / 3 shared
Taimisto, Lauri
3 / 3 shared
Kujanpää, Veli
1 / 43 shared
Qian, Bin
2 / 2 shared
Shen, Zhijian
2 / 9 shared
Manninen, Matti
1 / 1 shared
Hirvimäki, Marika
2 / 2 shared
Kallonen, Aki
2 / 2 shared
Karme, Aleksis
2 / 2 shared
Leino, Maija
2 / 2 shared
Riihimäki, Jaakko
1 / 1 shared
Jauhiainen, Eeva
1 / 1 shared
Mäkinen, Mika
1 / 1 shared
Ritvanen, Jussi
1 / 1 shared
Väistö, Tapio
1 / 1 shared
Pekkarinen, Joonas
1 / 6 shared
Happonen, Ari
1 / 1 shared
Kontio, Jesse
1 / 2 shared
Juhanko, Jari
1 / 1 shared
Kuosmanen, Petri
1 / 3 shared
Widmaier, Thomas
1 / 2 shared
Purtonen, Tuomas
1 / 3 shared
Chart of publication period
2023
2021
2020
2019
2018
2017
2015
2014
2013
2010

Co-Authors (by relevance)

  • Kraslawski, Andrzej
  • Nyamekye, Patricia
  • Rahimpour Golroudbary, Saeed
  • Luukka, Pasi
  • Rahimpour, Saeed
  • Kivijärvi, Lauri
  • Haukka, Matti
  • Pastushok, Olga
  • Laakso, Ekaterina
  • Repo, Eveliina
  • Britton, T. Ben
  • Zhang, Ruizhi
  • Buchanan, Craig
  • Gardner, Leroy
  • Daskalaki-Mountanou, Dafni
  • Matilainen, Ville-Pekka
  • Salminen, Antti
  • Korpela, Markus
  • Riikonen, Niko
  • Nyrhilä, Olli
  • Björk, Timo
  • Afkhami, Shahriar
  • Dabiri, Mohammad
  • Unt, Anna
  • Harkko, Petri
  • Lehtinen, Janne
  • Lehti, Antti
  • Taimisto, Lauri
  • Kujanpää, Veli
  • Qian, Bin
  • Shen, Zhijian
  • Manninen, Matti
  • Hirvimäki, Marika
  • Kallonen, Aki
  • Karme, Aleksis
  • Leino, Maija
  • Riihimäki, Jaakko
  • Jauhiainen, Eeva
  • Mäkinen, Mika
  • Ritvanen, Jussi
  • Väistö, Tapio
  • Pekkarinen, Joonas
  • Happonen, Ari
  • Kontio, Jesse
  • Juhanko, Jari
  • Kuosmanen, Petri
  • Widmaier, Thomas
  • Purtonen, Tuomas
OrganizationsLocationPeople

article

Integration of Simulation Driven DfAM and LCC Analysis for Decision Making in L-PBF

  • Piili, Heidi
  • Unt, Anna
  • Nyamekye, Patricia
  • Salminen, Antti
Abstract

Laser based powder bed fusion (L-PBF) is used to manufacture parts layer by layer with the energy of laser beam. The use of L-PBF for building functional parts originates from the design freedom, flexibility, customizability, and energy efficiency of products applied in dynamic application fields such as aerospace and automotive. There are challenges and drawbacks that need to be defined and overcome before its adaptation next to rivaling traditional manufacturing methods. Factors such as high cost of L-PBF machines, metal powder, post-preprocessing, and low productivity may deter its acceptance as a mainstream manufacturing technique. Understanding the key cost drivers of L-PBF that influence productivity throughout the whole lifespan of products will facilitate the decision-making process. Functional and operational decisions can yield profitability and increase competitiveness among advanced manufacturing sectors. Identifying the relationships between the phases of the life cycle of products influences cost-effectiveness. The aim of the study is to investigate the life cycle cost (LCC) and the impact of design to it in additive manufacturing (AM) with L-PBF. The article provides a review of simulation driven design for additive manufacturing (simulation driven DfAM) and LCC for metallic L-PBF processes and examines the state of the art to outline the merits, demerits, design rules, and life cycle models of L-PBF. Practical case studies of L-PBF are discussed and analysis of the interrelating factors of the different life phases are presented. This study shows that simulation driven DfAM in the design phase increases the productivity throughout the whole production and life span of L-PBF parts. The LCC model covers the whole holistic lifecycle engineering of products and offers guidelines for decision making.

Topics
  • impedance spectroscopy
  • phase
  • simulation
  • selective laser melting