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Articles 301 - 330 of 550
Full-Text Articles in Materials Science and Engineering
Influence Of Temperature On The Deformation Behavior Of Single-And Bi-Crystal Microbending Beams, Jorge Velayarce, Mohammad Zamanzade, Oscar Torrents, Christian Motz
Influence Of Temperature On The Deformation Behavior Of Single-And Bi-Crystal Microbending Beams, Jorge Velayarce, Mohammad Zamanzade, Oscar Torrents, Christian Motz
Nanomechanical Testing in Materials Research and Development V
The mechanical behavior of micron-scale structures varies drastically from their macro-scale counterparts. This phenomenon is known as size effect and has been extensively investigated for several decades. The understanding of the influence of temperature on the mechanical properties of components of electronic devices with micron or even sub-micrometer dimensions is essential for a reliable design. Hence micro-compression and micro-tension experiments on pure single-crystalline and polycrystalline face-centered cubic (fcc) metals have been carried out at different temperatures. However, in real microstructures complex stress and strain gradients arise from incompatibilities in elastic and plastic deformation, which are not addressed in tension or …
Chemomechanical Effects In Thin Film And Bulk Oxides, Steve Bull, Noushin Moharrani
Chemomechanical Effects In Thin Film And Bulk Oxides, Steve Bull, Noushin Moharrani
Nanomechanical Testing in Materials Research and Development V
The environmental sensitivity of the surface mechanical properties of ceramics has long been known and properties such as plasticity, creep, fracture and fatigue have been shown to be susceptible to changes in the environment. These effects are often called Rehbinder effects after his pioneering work in the 1930s. Most relevant to indentation testing is “anomalous indentation creep” which has been observed by many workers in ceramics using both conventional microhardness and nanoindentation testing. Whereas a constant, time-independent hardness was found in microhardness measurements by testing in dry toluene the hardness was found to drop as the indentation time increased when …
Deformation Behavior Of Bulk Metallic Glasses Produced Via Severe Plastic Deformation And The Influence Of A Second Phase, Lisa Kraemer, Verena Maier, Karoline Kormout, Marlene Kapp, Yannick Champion, Reinhard Pippan
Deformation Behavior Of Bulk Metallic Glasses Produced Via Severe Plastic Deformation And The Influence Of A Second Phase, Lisa Kraemer, Verena Maier, Karoline Kormout, Marlene Kapp, Yannick Champion, Reinhard Pippan
Nanomechanical Testing in Materials Research and Development V
Over the last years bulk metallic glasses (BMG) have been strongly investigated as their mechanical properties are very promising especially in terms of their high yield strength and high elastic strain. However, a major drawback is their complicated production depending strongly on dimensions and chemistry. A promising technique to overcome these drawbacks is using a severe plastic deformation process, e.g. high pressure torsion (HPT), where the production can be started with metallic glass powders, which are generally much easier to fabricate.
For this route, the powder is consolidated and then the powder particles are welded together by applying a high …
Mechanical Response Of Face-Centered Cubic Metallic Nanospheres Under Uniaxial Compression, Selim Haj Salah, Celine Gerard, Laurent Pizzagalli
Mechanical Response Of Face-Centered Cubic Metallic Nanospheres Under Uniaxial Compression, Selim Haj Salah, Celine Gerard, Laurent Pizzagalli
Nanomechanical Testing in Materials Research and Development V
The mechanical response of metallic nanoparticles has recently attracted a lot of interest due to their specific properties compared to their bulk counterpart, which allow for novel applications in various fields, e.g., composite materials, nanomanufacturing/nano-electromechanical systems. We have employed Molecular Dynamic simulations to study the mechanical behavior of face-centered cubic metallic nanoparticles. Uniaxial compression of monocrystalline nanosphere is investigated using the EAM potentials developed by Mishin et al. [1] [2]. The resulting behaviors vary with nanoparticle size, crystallographic orientation, and temperature. This work shows that the elastic modulus of metallic nanoparticles is higher than that of the bulk material. Three …
Measuring Surface Dislocation Nucleation In Defect-Scarce Nanostructures, Daniel Gianola, Lisa Chen, Jungho Shin, Mo-Rigen He, Gunther Richter
Measuring Surface Dislocation Nucleation In Defect-Scarce Nanostructures, Daniel Gianola, Lisa Chen, Jungho Shin, Mo-Rigen He, Gunther Richter
Nanomechanical Testing in Materials Research and Development V
Linear defects in crystalline materials, known as dislocations, are central to the understanding of plastic deformation and mechanical strength, as well as control of performance in a variety of electronic and photonic materials. Despite a thorough understanding of dislocation structure and their interactions, measurements of the energetics and kinetics of dislocation nucleation have not been possible, as synthesizing and testing pristine crystals absent of defects has been prohibitively challenging. In this talk, experiments that directly measure the surface dislocation nucleation strengths in high qualityPd nanowhiskers subjected to uniaxial tension will be presented. We find that, whereas nucleation strengths are weakly …
Fracture Behavior Of High Strength Pearlitic Steel Wires, Bernhard Voelker, Anton Hohenwarter, Reinhard Pippan
Fracture Behavior Of High Strength Pearlitic Steel Wires, Bernhard Voelker, Anton Hohenwarter, Reinhard Pippan
Nanomechanical Testing in Materials Research and Development V
Steel wires are widely used in various industrial applications. Hence, the drawing process and the resulting mechanical properties are of significant scientific and industrial importance. In this investigation the focus is on pearlitic steel wires with relatively high drawing strains and resulting high ultimate tensile strengths up to several GPa.
The fracture behavior was investigated for two different wires with a drawing strain of 3.10 and 6.52 with a diameter of about 100 µm and 20 µm, respectively. The resulting ultimate tensile strength varies between 4 and 7 GPa [1]. The fracture toughness was measured with crack propagation direction in …
Quantification Of Mechanical Properties Gradient By Nano-Indentation And Microcompression Testing On Mechanically-Induced Transformed Surfaces, David Tumbajoy, Guillaume Kermouche, Sylvie Descartes, Jean Michel Bergheau, Gaylord Guillonneau, Johann Michler
Quantification Of Mechanical Properties Gradient By Nano-Indentation And Microcompression Testing On Mechanically-Induced Transformed Surfaces, David Tumbajoy, Guillaume Kermouche, Sylvie Descartes, Jean Michel Bergheau, Gaylord Guillonneau, Johann Michler
Nanomechanical Testing in Materials Research and Development V
In the industry, there are several techniques which improve the service lifetime of materials by increasing the local mechanical properties in the near-surface. In the case of mechanical surface treatments (such as impact-based), the material is exposed to repeated mechanical loadings, producing a severe plastic deformation in the surface, and then leading to a local refinement of the microstructure into the affected zone (Tribologically Transformed Surfaces - TTS). The microstructure’s transformation is characterized by a progressive increment of the grain size from the surface until the bulk material. Consequently, very interesting physical properties such as high hardness and better tribological …
Ultra Small Scale High Cycle Fatigue Testing By Micro-Cantilevers, Jicheng Gong, Angus Wilkinson
Ultra Small Scale High Cycle Fatigue Testing By Micro-Cantilevers, Jicheng Gong, Angus Wilkinson
Nanomechanical Testing in Materials Research and Development V
A new method has been developed for testing high cycle and very high cycle fatigue properties of materials at the micro-scale based on micro-cantilevers. Focused ion beam was employed to cut micro-cantilevers on the surface of a selected grain in a bulk polycrystalline commercial pure Titanium. The bulk specimen was pre-examined by EBSD, so the crystal orientation of all micro-cantilevers were known. The bulk sample with prepared micro-cantilevers was then attached to a high power ultrasonic generator, which can generate mechanical vibration at the frequency 20KHz. The bulk specimen moves with the ultrasonic generator, but the micro-cantilever lags somewhat behind. …
Comparison Of In Situ Micromechanical Time Dependent Plasticity Techniques: Micropillar Compression, Nanoindentation And Micro-Tensile Tests, Juri Wehrs, Gaurav Mohanty, Gaylord Guilloneau, Aidan Taylor, Brad Boyce, Jeffrey Wheeler
Comparison Of In Situ Micromechanical Time Dependent Plasticity Techniques: Micropillar Compression, Nanoindentation And Micro-Tensile Tests, Juri Wehrs, Gaurav Mohanty, Gaylord Guilloneau, Aidan Taylor, Brad Boyce, Jeffrey Wheeler
Nanomechanical Testing in Materials Research and Development V
Nanocrystalline metals exhibit strongly time-dependent plastic deformation. This results in a high degree of strain-rate sensitivity and susceptibility to creep and relaxation, even at room temperature. With the advent of thin film processing techniques like sputtering and electrodeposition for fabrication of controlled microstructures of nanocrystalline materials, nanoindentation and microcompression techniques are increasingly used to extract time dependent plasticity parameters from stress relaxation, creep and strain rate sensitivity measurements [1, 2]. However, no systematic comparison of the micromechanical experimental techniques (nanoindentation and microcompression) has been performed on the same material to establish the relative merits and consistency of …
The Measurement Of Viscosity Of Ultrathin Polymer Films, Dariusz Jarzabek, Wojciech Dera, Zygmunt Rymuza
The Measurement Of Viscosity Of Ultrathin Polymer Films, Dariusz Jarzabek, Wojciech Dera, Zygmunt Rymuza
Nanomechanical Testing in Materials Research and Development V
Viscosity is a very important property of thin polymer films used in modern microelectronic technology i.e. in nanoimprint lithography.Hence, in this work we present a method for viscosity of ultrathin polymer films determination. The viscosity is evaluated from the response of the oscillating piezoelectric cantilever at the end of which an indentation probe is mounted (Fig. 1a). When a polymer film is indented, the resonant frequency of the oscillations is changed and the parameters of used model (i.e. Maxwell model) can be identified. The frequency of the oscillations is equal to tens of kilohertz therefore the influence of extremely high …
Investigating The Plastic Deformation Of Molybdenum From -196°C To 950°C Using Nanoand Micro-Indentation, Katherine Plummer
Investigating The Plastic Deformation Of Molybdenum From -196°C To 950°C Using Nanoand Micro-Indentation, Katherine Plummer
Nanomechanical Testing in Materials Research and Development V
Understanding the plastic deformation at non-ambient conditions is critical to understanding materials’ behaviour in many applications including nuclear power. Molybdenum is seen as a potential candidate for nuclear fusion reactors due to its combination of high melting point and ease of processing. However it will be utilized under some of the most extreme engineering conditions anywhere – temperatures up to 1000K alongside high fluxes of both neutrons and alpha particles. For safe engineering design information on the behaviour of molybdenum under these conditions is needed.
In this work the temperature dependence of plasticity in single crystal Mo (bcc) has been …
Annealing Effect On Coherent-Incoherent Interface Tri-Component Nanoscale Metallic Multilayer Thin Films, Aidan Taylor, Rachel Schoeppner, Megan Cordill, Johann Michler, Hussein Zbib, David Bahr
Annealing Effect On Coherent-Incoherent Interface Tri-Component Nanoscale Metallic Multilayer Thin Films, Aidan Taylor, Rachel Schoeppner, Megan Cordill, Johann Michler, Hussein Zbib, David Bahr
Nanomechanical Testing in Materials Research and Development V
Multilayer coatings provide an excellent medium for the study of nanoscale materials’ properties. It has previously been shown that Cu/Ni/Nb tri-component multilayers with coherent and incoherent interfaces have a greater capacity for strain hardening than a Cu-Ni/Nb system, in which only incoherent interfaces are present [1]. This experimental evidence supports the predictions of the confined layer slip model in that the modulus-mismatched coherent interfaces in the tri-layer system increase the capacity of the multilayer to store dislocations, leading to greater hardenability.
In this work the same Cu/Ni/Nb tri-layers and Cu-Ni/Nb bilayers are investigated with regard to their thermal stability. In …
Ebsd Investigation Of Microstructure Refinement From Impact-Based Surface Treatments, Xavier Maeder, David Tumbajoy, Sylvie Descartes, Jean Bergheau, Cecile Langlade, Johann Michler, Guillaume Kermouche
Ebsd Investigation Of Microstructure Refinement From Impact-Based Surface Treatments, Xavier Maeder, David Tumbajoy, Sylvie Descartes, Jean Bergheau, Cecile Langlade, Johann Michler, Guillaume Kermouche
Nanomechanical Testing in Materials Research and Development V
The mechanical surface treatments confer better local mechanical properties against wear or fatigue service conditions. In the case of impact-based treatments, a local microstructure’s refinement in the near surface is produced by a severe plastic deformation of the material, leading to a progressive reduction of the grain size over a few tens of microns, and consequently an increase of the hardness and tribological properties. These zones are commonly known as Tribologically Transformed Surfaces (TTS). In this project two different procedures are implemented to obtain TTS surfaces on pure iron samples: Shot-peening treatment and Micro-percussion tests. For the first technique the …
Nanomechanical Testing Of Ods Steels Irradiated With 1 Mev/Amu Heavy Ions, Kateryna Kornieieva, Vladimir Skuratov, Alexander Sohatsky, Jacques O'Connell, Yuri Golovin, Victor Korenkov, Jan Neethling
Nanomechanical Testing Of Ods Steels Irradiated With 1 Mev/Amu Heavy Ions, Kateryna Kornieieva, Vladimir Skuratov, Alexander Sohatsky, Jacques O'Connell, Yuri Golovin, Victor Korenkov, Jan Neethling
Nanomechanical Testing in Materials Research and Development V
Heavy ion beams with high damage production rate are widely used to evaluate radiation tolerance of promising nuclear reactor materials, such as oxide dispersion strengthened (ODS) alloys, including their mechanical properties. Since typical ion projected ranges do not exceed 1 micron, nanoindentation technique is the most convenient method for examination of irradiated materials.
In present work we report data on radiation hardening of several ODS steels irradiated with 107 MeV Kr and 167 MeV Xe ions. Some samples were irradiated trough the special Al-foil filter in order to obtain the unfolding damage profile on the surface. The post-irradiation testing steels …
Effects Of Lithiation On The Fracture Toughness And Mechanical Properties Of Limn2o4 Cathode Battery Materials, Marco Sebastiani, K.E. Johanns, Hugues Amanieu, G.M. Pharr
Effects Of Lithiation On The Fracture Toughness And Mechanical Properties Of Limn2o4 Cathode Battery Materials, Marco Sebastiani, K.E. Johanns, Hugues Amanieu, G.M. Pharr
Nanomechanical Testing in Materials Research and Development V
The micro-pillar splitting method has been used to assess the influence of lithiation on the fracture toughness of LixMn2O4 micro-particles used as cathode materials in lithium ion battery composites. The materials under investigation consisted of hard LiMn2O4 particles embedded in a soft and compliant epoxy matrix to form the composite electrode. Five different samples were extracted from commercial battery cells at different states of charge (SoC% = 0-20-50-75-100%). These correspond to different lithium concentrations in the particles, as measured by inductively coupled plasma optical emission spectrometry (ICP-OES). Experimental results from the pillar splitting experiments show …
Nanoindentation, Micropillar Compression And Nanoscratch Testing Of Zrb2 Grains, Jan Dusza, Tamas Csanadi, Dusan Nemeth, Salvatore Grasso, Mike Reece
Nanoindentation, Micropillar Compression And Nanoscratch Testing Of Zrb2 Grains, Jan Dusza, Tamas Csanadi, Dusan Nemeth, Salvatore Grasso, Mike Reece
Nanomechanical Testing in Materials Research and Development V
The mechanical response under nanoindentation, micropillar compression and nanoscratch tests of ultra-high temperature ZrB2 ceramic grains were investigated. The tests were carried on selected surface areas where the grain orientations were mapped by electron backscatter diffraction (EBSD) prior to the measurements (Fig.1a). Instrumented indentation were applied for compression using flat punch tip for nanoindentation and nanoscratch tests Berkovich tips were used. Scanning electron microscopy (SEM), atomic force microscopy (AFM) and additional EBSD were performed to study the surface morphology and to characterize the deformations. Strong influence of crystal orientation was observed during micropillar compression while nanoindentation and nanoscratch tests …
Irradiation-Induced Ductilization In The Zr-Based Metallic Glasses, Jaewon Heo, Sunghwan Kim, Seunghwa Ryu, Donchan Jang
Irradiation-Induced Ductilization In The Zr-Based Metallic Glasses, Jaewon Heo, Sunghwan Kim, Seunghwa Ryu, Donchan Jang
Nanomechanical Testing in Materials Research and Development V
Crystalline metals in the nuclear energy system often suffer from the radiation-induced embrittlement which is resulted from the interaction between dislocation motions and the irradiation-induced changes in microstructures. This transition to the brittle failure may lower the mechanical stability of the irradiated components, posing significant threats to the operation and security of the entire mechanical system. In contrast to the crystalline metals, amorphous alloys, often called metallic glasses, have a different plasticity mechanism that does not involve the dislocation motion and hence are expected to exhibit the different irradiation effects on the mechanical from their crystalline counterparts. In this study, …
An Improved Method For Point Deflection Measurements On Rectangular Membranes, Benoit Merle, Kyle Nicholson, Erik Herbert, Mathias Goken
An Improved Method For Point Deflection Measurements On Rectangular Membranes, Benoit Merle, Kyle Nicholson, Erik Herbert, Mathias Goken
Nanomechanical Testing in Materials Research and Development V
The point deflection method has recently emerged as a possible alternative to current micromechanical techniques for measuring the mechanical properties of thin films. A point deflection experiment consists into deflecting a clamped membrane in its center with a nanoindenter tip. The widespread availability of the required equipment makes the method very promising for future applications. These outlooks were further enhanced by the recent extension of the evaluation theory to rectangular membranes, which – unlike circular ones – are easily fabricated by standard lithographic techniques.
In this work, the recent theoretical advances were critically reviewed and an improved experimental method based …
Orientation Dependence Of Dislocation Transmission Through Twin-Boundaries Studied By In Situ Μlaue Diffraction, Nataliya Malyar, Nagami Jaya, Gerhard Dehm, Christoph Kirchlechner, Jean Sebastuen Micha
Orientation Dependence Of Dislocation Transmission Through Twin-Boundaries Studied By In Situ Μlaue Diffraction, Nataliya Malyar, Nagami Jaya, Gerhard Dehm, Christoph Kirchlechner, Jean Sebastuen Micha
Nanomechanical Testing in Materials Research and Development V
It is well known that the grain boundaries (GBs) act as a barrier for dislocation motion (Clark 1992), leading to the well-known strength increase with reduced grain size, as explained by the Hall-Petch relation. Unfortunately the strength increase often leads to a reduction of ductility, except one example: Nano-twinned microstructures. The twin-boundary (TB) dislocation interaction is still not thoroughly understood (Imrich 2014, Gumbsch 2006).
Recent developments in deforming micron sized samples on synchrotron beamlines allow to study the interplay of the single dislocation with a specific grain boundary. In present work we conduct in situ compression on micron-sized copper specimens …
Study Of Sub-Surface Ion-Implanted Hardened Layers With Depth-Sensing Indentation, Alexey Useinov, Boris Chalikh, Pavel Lyamkin, Stanislav Andrianov, Alexander Niktin, Konstantin Kraychuk
Study Of Sub-Surface Ion-Implanted Hardened Layers With Depth-Sensing Indentation, Alexey Useinov, Boris Chalikh, Pavel Lyamkin, Stanislav Andrianov, Alexander Niktin, Konstantin Kraychuk
Nanomechanical Testing in Materials Research and Development V
Ion implantation is an effective technique for designing structural materials for different industry applications. It may be used to improve various properties of steels such as corrosion resistance, heat resistance, wear resistance, hardness, etc. Based on their origin injected ions may serve as a coating or they may form a new phases such as carbides or nitrides that drastically change the material properties. In this work ferritic martenstic steel was irradiated with Ti and N ions followed with the heat treatment process. It is expected that it would cause the formation of the titanium nitride or titanium carbide precipitates in …
Short Course: Fracture And Adhesion - An Introduction (With Comments On Size Effects), Etienee Barthel
Short Course: Fracture And Adhesion - An Introduction (With Comments On Size Effects), Etienee Barthel
Nanomechanical Testing in Materials Research and Development V
This presentation is meant as a short, handwaving introduction to fracture mechanics and adhesion, a closely related problem. The similarity between the two notions will be underlined throughout the talk.
Trying to avoid technical details, we will first focus on the more general picture, ie how energy flows from the stressed body to the crack tick as the crack propagates (and also how it may flow from the crack tip to the body if allowed to – in the rare cases where the crack closes). We will also examine how these considerations lead to the important notion of crack stability …
Combining In Situ Tensile Testing And Orientation Microscopy In The Sem: A Mems Based Setup For Studying Time Dependent Deformation Of Thin Films By Tkd And Stem, Jan Philipp Liebig, Benoit Merle, Mathias Goken
Combining In Situ Tensile Testing And Orientation Microscopy In The Sem: A Mems Based Setup For Studying Time Dependent Deformation Of Thin Films By Tkd And Stem, Jan Philipp Liebig, Benoit Merle, Mathias Goken
Nanomechanical Testing in Materials Research and Development V
Structures in integrated devices are constantly subjected to residual or thermal stresses during operation. Understanding the relaxation behavior of thin films is therefore critical for improving their reliability.
Recently it was shown that Transmission Kikuchi Diffraction (TKD) in the Scanning Electron Microscope (SEM) enables the determination of local crystal orientations with high spatial resolution using standard Electron Backscatter Diffraction (EBSD) instrumentation [1, 2]. Giving access to quantitative information on mechanisms like grain growth, grain rotation and strain gradient evolution, time resolved TKD stands out as a promising technique for the characterization of microstructural changes upon relaxation of thin films.
We …
Using In-Situ Microlaue Diffraction To Understand Plasticity In Mgo, Ayan Bhowmik, T. Ben Britton, Finn Giuliani
Using In-Situ Microlaue Diffraction To Understand Plasticity In Mgo, Ayan Bhowmik, T. Ben Britton, Finn Giuliani
Nanomechanical Testing in Materials Research and Development V
The present study investigates the micromechanical modes of deformation in MgO prior to cracking at room temperature. A combination of time resolved white beam Laue diffraction technique and in-situ nano-indentation of large single crystal micropillars provides a unique method to study the operating mechanisms of deformation in this otherwise brittle oxide ceramic. Upon indenting an [100]-oriented MgO micropillar, rotation and streaking of Laue spots were observed. From the streaking of the Laue spots, differential slip on orthogonal {110} slip planes was inferred to take place in adjacent areas under the indent - this was consistent with the results from the …
A Comparison Of Nanotribology And Nanoindentation, Steffen Brinckmann, Caroline Fink, Gerhard Dehm
A Comparison Of Nanotribology And Nanoindentation, Steffen Brinckmann, Caroline Fink, Gerhard Dehm
Nanomechanical Testing in Materials Research and Development V
Metal friction and wear is the collective contact and interaction of asperities of micrometer dimension. We use a nanoindenter with tangential force measurement to simulate the behavior in engineering contacts and to fundamentally understand friction and wear.
This presentation investigates the deformation due to a single stroke scratch of a diamond nanoindenter in austenite base. We find that the elastic and plastic equations for static indentation also apply for the dynamic scratching. Additionally, the friction coefficient is found to be normal force dependent and we observe three domains: microstructure dominated friction, plastic plowing dominated wear and wear particle dominated tribology. …
Obtaining Mechanical Properties Of Superelastic Materials From Microindentation Data, Dmitry Zhuk, Margarita Isaenkova, Olga Krymskaya, Yuriy Perlovich
Obtaining Mechanical Properties Of Superelastic Materials From Microindentation Data, Dmitry Zhuk, Margarita Isaenkova, Olga Krymskaya, Yuriy Perlovich
Nanomechanical Testing in Materials Research and Development V
Indentation is one of the most widely used techniques for determination of mechanical properties of materials. Many various methods for extraction of mechanical properties had been introduced for elasto-plastic materials. Later, the use of microindentation were extended to composite, porous, anisotropic and multi-phase materials. Use of microindentation for determination of such materials properties is impeded due to its complex behavior and larger number of material properties’ constants.
This work is focused on indentation of superelastic materials with austenite - martensite phase transformation and extraction of material properties. Finite element (FE) modeling was used to model indentation of superelastic alloys with …
High Temperature Nanoindentation Testing Of Amorphous Silicon Carbonitride Thin Films, Radim Ctvrtlik, Marwan Al-Haik, Valeriy Kilikovsky
High Temperature Nanoindentation Testing Of Amorphous Silicon Carbonitride Thin Films, Radim Ctvrtlik, Marwan Al-Haik, Valeriy Kilikovsky
Nanomechanical Testing in Materials Research and Development V
The mechanical properties of amorphous silicon carbonitride (SiCxNy) films with various nitrogen content (y = 0-40 at.%) were investigated in-situ at elevated temperatures up to 650 °C in inert atmosphere. The hardness and elastic modulus were evaluated using depth sensing nanoindentation with cubic boron nitride Berkovich indenter. Both the sample and indenter were separately heated during the experiments to temperatures 300, 500 and 650 °C. Short duration high temperature creep (1200 s) of the films was also investigated. The results revealed that the room temperature hardness and elastic modulus decline with the increase of the nitrogen …
The Measurement Of The Adhesion Force Between Ceramic Particles And Metal Matrix In Ceramic Reinforced-Metal Matrix Composites, Dariusz Jarzabek, Marcin Chmielewski, Tomasz Wojciechowski
The Measurement Of The Adhesion Force Between Ceramic Particles And Metal Matrix In Ceramic Reinforced-Metal Matrix Composites, Dariusz Jarzabek, Marcin Chmielewski, Tomasz Wojciechowski
Nanomechanical Testing in Materials Research and Development V
This paper presents the method for measurement of the adhesion force and fracture strength of the interface between ceramic particles and metal matrix in ceramic reinforced-metal matrix composites. Three samples with the following Cu to Al2O3 ratio (in vol.%) were prepared: 98.0Cu/2.0Al2O3, 95.0Cu/5.0Al2O3 and 90Cu/10Al2O3. Furthermore, microwires which contain a few ceramic particles were produced by means of electro etching. The microwires with clearly exposed interface were tested with use of the microtensile tester (Fig. 1). The microtensile tester consists of two stages, to which two …
Three-Dimensional Printing Of Graphene-Based Composite Aerogels, Chen Zhu
Three-Dimensional Printing Of Graphene-Based Composite Aerogels, Chen Zhu
Composites at Lake Louise (CALL 2015)
Graphene-based composite materials have found wide applications in nanoelectronics, sensors, catalysis, energy storage, and biomedicine areas for their unique combination of low density, exceptional mechanical properties, large surface area, and excellent electrical conductivity. Recent progress has produced bulk 3D assemblies of graphene, such as graphene aerogels, by the self-assembly or gelation of the graphene oxide (GO) suspension via hydrothermal reduction, chemical reduction, or direct crosslinking of the GO sheets. Other templating methods like chemical vapor deposition (CVD) coatings and freeze-casting have already been employed to control over the pore morphology of 3D graphene monoliths. However, the architecture of these graphene …
Joining Of Uhtc Boride Composites Using Metallic Interlayer, Noritaka Saito, Kei Nishimura, Kunihiko Nakashima, Cesare Melandri, Laura Esposito
Joining Of Uhtc Boride Composites Using Metallic Interlayer, Noritaka Saito, Kei Nishimura, Kunihiko Nakashima, Cesare Melandri, Laura Esposito
Ultra-High Temperature Ceramics: Materials for Extreme Environment Applications III
No abstract provided.
Effect Of Ni-Nb Interlayer Thickness On Mechanical Property Of Hfb2 Composite Joints, Kou Honda, Noritaka Saito, Kunihiko Nakashima, Cesare Melandri, Laura Esposito
Effect Of Ni-Nb Interlayer Thickness On Mechanical Property Of Hfb2 Composite Joints, Kou Honda, Noritaka Saito, Kunihiko Nakashima, Cesare Melandri, Laura Esposito
Ultra-High Temperature Ceramics: Materials for Extreme Environment Applications III
No abstract provided.