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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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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in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (87/87 displayed)

  • 2025High strain rate persistence of the strength anomaly in the L12 intermetallic compound Ni3Si evidenced by nanoindentation testing1citations
  • 2024Observing High‐Cycle Fatigue Damage in Freestanding Gold Thin Films with Bulge Testing and Intermittent Transmission Electron Microscopy Imaging2citations
  • 2024Fabrication and Characterization of a Magnetic 3D‐printed Microactuator8citations
  • 2024Additive manufacturing of 3D yttria-stabilized zirconia microarchitectures5citations
  • 2024Cyclic Failure of a Cr–Au Bilayer on Polyimide: In Situ Transmission Electron Microscopy Observations of Interfacial Dislocation Mechanismscitations
  • 2023Influence of Cu Addition and Microstructural Configuration on the Creep Resistance and Mechanical Properties of an Fe‐Based $α/α′/α^{″}$ Superalloy2citations
  • 2023Exploring the mechanical properties of additively manufactured carbon-rich zirconia 3D microarchitectures12citations
  • 2023Wear Mechanism of Superhard Tetrahedral Amorphous Carbon (ta‐C) Coatings for Biomedical Applications17citations
  • 2023Indentation Size Effect in Electrodeposited Nickel with Different Grain Size and Crystal Orientationcitations
  • 2023Combining multi-scale surface texturing and DLC coatings for improved tribological performance of 3D printed polymers25citations
  • 2023Revealing bulk metallic glass crystallization kinetics during laser powder bed fusion by a combination of experimental and numerical methods5citations
  • 2023Novel nanoindentation strain rate sweep method for continuously investigating the strain rate sensitivity of materials at the nanoscale8citations
  • 2023Creep-dominated fatigue of freestanding gold thin films studied by bulge testing7citations
  • 2023Describing mechanical damage evolution through in situ electrical resistance measurements3citations
  • 2023Influence of Cu Addition and Microstructural Configuration on the Creep Resistance and Mechanical Properties of an Fe‐Based α/α′/α″ Superalloy2citations
  • 2022Evolution of an industrial-grade Zr-based bulk metallic glass during multiple laser beam melting13citations
  • 2022A new method for microscale cyclic crack growth characterization from notched microcantilevers and application to single crystalline tungsten and a metallic glass7citations
  • 2022Linking through-thickness cracks in metallic thin films to in-situ electrical resistance peak broadening12citations
  • 202230 Years of Oliver–Pharr: Then, Now and the Future of Nanoindentation1citations
  • 2022Correction: Progressive changes in crystallographic textures of biominerals generate functionally graded ceramicscitations
  • 2022Synthesis, crystal structure, and properties of stoichiometric hard tungsten tetraboride, WB410citations
  • 2022Novel Class of Rhenium Borides Based on Hexagonal Boron Networks Interconnected by Short B<sub>2</sub>Dumbbells7citations
  • 2022Resistance-curve envelopes for dental lithium disilicate glass-ceramics7citations
  • 2022Progressive changes in crystallographic textures of biominerals generate functionally graded ceramics7citations
  • 2022Gaseous nitriding of Co-10 at% and -15 at% Cr alloys at 400 °C and 450 °C2citations
  • 2022Additive Manufacturing of 3D Luminescent ZrO2:Eu3+ Architectures30citations
  • 2022Structural reorientation and compaction of porous MoS2 coatings during wear testing26citations
  • 2022Microstructural evolution and mechanical properties in Zr–Cu–Al–Nb bulk metallic glass composites prepared by laser metal deposition7citations
  • 2021Applicability of focused Ion beam (FIB) milling with gallium, neon, and xenon to the fracture toughness characterization of gold thin films19citations
  • 2021Microstructure, Mechanical Properties and Tribological Behavior of Magnetron-Sputtered MoS2 Solid Lubricant Coatings Deposited under Industrial Conditions30citations
  • 2021Evaluation of the surface fatigue behavior of amorphous carbon coatings through cyclic nanoindentation53citations
  • 2021Ti<sub>3</sub>C<sub>2</sub>T<sub>x</sub> solid lubricant coatings in rolling bearings with remarkable performance beyond state-of-the-art materials85citations
  • 2021Microcantilever Fracture Tests on Eutectic NiAl–Cr(Mo) In Situ Composites12citations
  • 2021Amorphous Carbon Coatings for Total Knee Replacements—Part II: Tribological Behavior41citations
  • 2021Current trends in nanomechanical testing research6citations
  • 2021Mechanics of colloidal supraparticles under compression39citations
  • 2021Influence of Surfactant-Mediated Interparticle Contacts on the Mechanical Stability of Supraparticles16citations
  • 2021Grain boundary mediated plasticity: A blessing for the ductility of metallic thin films?27citations
  • 2021Breakdown of the superplastic deformation behavior of heterogeneous nanomaterials at small length scales5citations
  • 2021Amorphous carbon coatings for total knee replacements—part i: Deposition, cytocompatibility, chemical and mechanical properties38citations
  • 2020Fracture Toughness Evaluation of a Cracked Au Thin Film by Applying a Finite Element Analysis and Bulge Test3citations
  • 2020Effect of Cold Sintering Process (CSP) on the Electro-Chemo-Mechanical Properties of Gd-doped Ceria (GDC)31citations
  • 2020Small-scale high-cycle fatigue testing by dynamic microcantilever bending11citations
  • 2020The role of oxygen defects on the electro-chemo-mechanical properties of highly defective gadolinium doped ceria16citations
  • 2020Effective usage of 2D MXene nanosheets as solid lubricant – Influence of contact pressure and relative humidity114citations
  • 2020Microstructural dependence of the fracture toughness of metallic thin films: A bulge test and atomistic simulation study on single-crystalline and polycrystalline silver filmscitations
  • 2020Revealing the local fatigue behavior of bimodal copper laminates by micropillar fatigue tests8citations
  • 2020Extending the range of constant strain rate nanoindentation testing36citations
  • 2019Critical issues in conducting constant strain rate nanoindentation tests at higher strain rates56citations
  • 2019Additional grain boundary strengthening in length-scale architectured copper with ultrafine and coarse domains8citations
  • 2019Achieving homogeneous properties for thin-walled components through dynamic temperature controlscitations
  • 2019Conical Nanoindentation Allows Azimuthally Independent Hardness Determination in Geological and Biogenic Minerals7citations
  • 2019Creep behavior of gold thin films investigated by bulge testing at room and elevated temperature13citations
  • 2019High-pressure synthesis of ultraincompressible hard rhenium nitride pernitride Re2(N2)(N)2 stable at ambient conditions83citations
  • 2019Microstructural dependence of the fracture toughness of metallic thin films: A bulge test and atomistic simulation study on single-crystalline and polycrystalline silver films7citations
  • 2018Room temperature deposition of functional ceramic films on low-cost metal substrate49citations
  • 2018Dynamic mechanical characterization of poly(glycerol sebacate)/poly(butylene succinate-butylene dilinoleate) blends for cardiac tissue engineering by flat punch nanoindentation12citations
  • 2018Microscale High-Cycle Fatigue Testing by Dynamic Micropillar Compression Using Continuous Stiffness Measurement16citations
  • 2018Influence of stacking fault energy and dislocation character on slip transfer at coherent twin boundaries studied by micropillar compression55citations
  • 2018Superplastic deformation behavior of Zn-22% Al alloy investigated by nanoindentation at elevated temperatures19citations
  • 2018Scaling of the fracture toughness of freestanding metallic thin films with the yield strength21citations
  • 2017Determination of the strain-rate sensitivity of ultrafine-grained materials by spherical nanoindentation24citations
  • 2017Plane-strain bulge testing of thin films under compressive residual stresses8citations
  • 2017Micromechanical characterization of laser consolidated nanoparticle ITO layers2citations
  • 2017Influence of modulus-to-hardness ratio and harmonic parameters on continuous stiffness measurement during nanoindentation99citations
  • 2017Understanding the extremely low fracture toughness of freestanding gold thin films by in-situ bulge testing in an AFM48citations
  • 2017High-performance direct conversion X-ray detectors based on sintered hybrid lead triiodide perovskite wafers549citations
  • 2017Isolating the effect of residual stresses on coating wear by a mechanical stress relaxation technique25citations
  • 2017Influencing hardness and wear during the dynamic tempered microinjection molding process by considering isothermal holding timecitations
  • 2016A flexible method for the preparation of thin film samples for in situ TEM characterization combining shadow-FIB milling and electron-beam-assisted etching15citations
  • 2016Mechanical characterization of metallic thin films by bulge and scratch testing27citations
  • 2016Fracture toughness evaluation of NiAl single crystals by microcantilevers - A new continuous J-integral method58citations
  • 2016An improved method for point deflection measurements on rectangular membranes11citations
  • 2015Time-dependent deformation behavior of freestanding and SiN<inf>x</inf>-supported gold thin films investigated by bulge tests14citations
  • 2014An improved long-term nanoindentation creep testing approach for studying the local deformation processes in nanocrystalline metals at room and elevated temperatures147citations
  • 2014Experimental and theoretical confirmation of the scaling exponent 2 in pyramidal load displacement data for depth sensing indentation14citations
  • 2014Bulge fatigue testing of freestanding and supported gold films30citations
  • 2013Mechanical Properties of Thin Films Studied by Bulge Testing ; Charakterisierung der mechanischen Eigenschaften dünner Membranen mittels Bulge-Experimentencitations
  • 2013An improved long-term nanoindentation creep testing approach for studying the local deformation processes in nanocrystalline metals at room and elevated temperatures147citations
  • 2013Poly(glycerol sebacate)poly(butylene succinate-dilinoleate) blends as candidate materials for cardiac tissue engineering17citations
  • 2013Mechanical Properties of Thin Films Studied by Bulge Testingcitations
  • 2012Effect of thermal annealing on the mechanical properties of low-emissivity physical vapor deposited multilayer-coatings for architectural applications21citations
  • 2012Comment to paper "penetration depth and tip radius dependence on the correction factor in nanoindentation measurements" by J.M. Meza et al. [J. Mater. Res. 23(3), 725 (2008)]1citations
  • 2012Thickness and grain size dependence of the strength of copper thin films as investigated with bulge tests and nanoindentations17citations
  • 2012Experimental determination of the effective indenter shape and ε-factor for nanoindentation by continuously measuring the unloading stiffness28citations
  • 2011Fracture toughness of silicon nitride thin films of different thicknesses as measured by bulge tests90citations
  • 2011Flexural strength of PVD coated float glass for architectural applicationscitations

Places of action

Chart of shared publication
Zenk, Christopher H.
2 / 14 shared
Pharr, George M.
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Walker, Christopher C.
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Lassnig, Alice
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Göken, Mathias
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Reiter, Marco
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Gebhart, David
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Krapf, Anna
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Cordill, Megan J.
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Gammer, Christoph
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Rothermel, Florian
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Giessen, Harald
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Ilse, Sven Erik
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Jung, Chris
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Herkommer, Alois M.
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Thiele, Simon
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Gardeniers, J. G. E.
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Arce, A. Susarrey
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Zeiler, S.
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Gabel, S.
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Schretter, Lukas
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Zenk, Christopher
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Bezold, Andreas
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Förner, Andreas
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Holz, Hendrik
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Neumeier, Steffen
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Co-Authors (by relevance)

  • Zenk, Christopher H.
  • Pharr, George M.
  • Walker, Christopher C.
  • Lassnig, Alice
  • Göken, Mathias
  • Reiter, Marco
  • Gebhart, David
  • Krapf, Anna
  • Cordill, Megan J.
  • Gammer, Christoph
  • Rothermel, Florian
  • Giessen, Harald
  • Ilse, Sven Erik
  • Jung, Chris
  • Herkommer, Alois M.
  • Thiele, Simon
  • Maestre, D.
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article

Influence of Cu Addition and Microstructural Configuration on the Creep Resistance and Mechanical Properties of an Fe‐Based α/α′/α″ Superalloy

  • Zenk, Christopher H.
  • Bezold, Andreas
  • Merle, Benoit
  • Förner, Andreas
  • Holz, Hendrik
  • Neumeier, Steffen
  • Morales, Luis Ángel
  • Körner, Carolin
Abstract

<jats:sec><jats:label /><jats:p>Introducing Cu nanoparticles is an effective mechanism for strengthening and toughening Fe‐based materials such as ultra‐high‐strength steels. Herein, the effect of Cu on the mechanical properties of a novel Fe‐based α/α′/α″ superalloy is studied. Compared to a Cu‐free reference alloy, nanoindentation reveals an increase in hardness, which was associated with the formation of Cu nanoparticles. Both alloys show room temperature (RT) compressive plastic strain at maximum stress greater than 8%, irrespective of the heat‐treatment. At RT and at 750 °C, the Cu‐containing alloy exhibits a slightly higher strength, but the heat treatment has a more significant impact: A configuration of α‐matrix and intermetallic α′/α″‐phases forming an interpenetrating network is superior to a state with isolated precipitates. This difference vanishes in monotonic creep experiments, and under the same conditions, the Cu‐containing alloy exhibits a twice as high creep rate despite a slightly higher precipitate fraction. This is linked to a higher lattice misfit and faster‐coarsening kinetics. Post‐mortem transmission electron microscopy analysis of the creep‐deformed specimens identifies dislocation bypass as the dominant deformation mechanism. However, the presence of &lt;010&gt;{110} dislocations in the interfacial networks and evidence of dislocation activity within α′/α″ precipitates suggest the occurrence of shearing events.</jats:p></jats:sec>

Topics
  • nanoparticle
  • impedance spectroscopy
  • polymer
  • phase
  • experiment
  • strength
  • steel
  • hardness
  • nanoindentation
  • transmission electron microscopy
  • dislocation
  • precipitate
  • forming
  • deformation mechanism
  • intermetallic
  • interfacial
  • size-exclusion chromatography
  • creep
  • superalloy