Academic literature on the topic 'Tensile and compressive composite'

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Journal articles on the topic "Tensile and compressive composite"

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Wang, Hao, Xiang-Yu Zhong, He Jia, et al. "Study on the Transverse Properties of T800-Grade Unidirectional Carbon Fiber-Reinforced Polymers." Materials 18, no. 4 (2025): 816. https://doi.org/10.3390/ma18040816.

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This paper focuses on the transverse tensile and compressive mechanical properties of T800-grade unidirectional (UD) carbon fiber-reinforced polymers (CFRPs). Firstly, transverse tensile and compressive tests were conducted on UD composite laminates, yielding corresponding stress–strain curves. The results indicated that, for tension, the transverse tensile modulus, strength, and failure strain were 8.7 GPa, 64 MPa, and 0.74%, respectively, whereas for compression, these values were 8.4 GPa, 197.1 MPa, and 3.43%, respectively. The experimental curves indicated brittle failure under tensile loa
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Wang, Min, C. L. Au, P. K. Lai, and William Bonfield. "Tensile and Compressive Behaviours and Properties of a Bone Analogue Biomaterial." Key Engineering Materials 284-286 (April 2005): 693–96. http://dx.doi.org/10.4028/www.scientific.net/kem.284-286.693.

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For the purpose of mimicking the structure and matching mechanical properties of human cortical bone, a natural composite material, hydroxyapatite (HA) reinforced high density polyethylene (HDPE) has been developed as a bioactive, analogue material for bone replacement. This synthetic composite material is now in clinical use. To understand the deformation behaviour and determine mechanical properties of HA/HDPE composite under different loading modes and loading conditions, tensile and compression tests were performed in the current investigation. It was observed that under tension, HA/HDPE c
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Hu, Qiaole, Hafeezullah Memon, Yiping Qiu, Wanshuang Liu, and Yi Wei. "A Comprehensive Study on the Mechanical Properties of Different 3D Woven Carbon Fiber-Epoxy Composites." Materials 13, no. 12 (2020): 2765. http://dx.doi.org/10.3390/ma13122765.

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In this work, the tensile, compressive, and flexural properties of three types of 3D woven composites were studied in three directions. To make an accurate comparison, three 3D woven composites are made to have the same fiber volume content by controlling the weaving parameters of 3D fabric. The results show that the 3D orthogonal woven composite (3DOWC) has better overall mechanical properties than those of the 3D shallow straight-joint woven composite (3DSSWC) and 3D shallow bend-joint woven composite (3DSBWC) in the warp direction, including tension, compression, and flexural strength. Inte
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Ramadhan, Ayad Abed. "An Experimental Study of Circular Cutout Hole Effect of Kevlar/epoxy-Al2O3 Composite under Subjected to Quasi-Static Compressive and Tensile Loading." Tikrit Journal of Engineering Sciences 23, no. 3 (2016): 63–70. http://dx.doi.org/10.25130/tjes.23.3.07.

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This paper has presented an experimental study of quasi-static compressive and tensile loading of cutout hole on multi-layer of Kevlar-29/epoxy-Al2O3laminated composite. The experimental procedure has been developed to study the performance of (50%, 55% and 60%) volume fraction (vf) and (0o/90o and +45o/-45o) fiber orientation angle effects of these composites under quasi-static compressive and tensile load using a servo-hydraulic testing machine. It was concluded that the maximum load bearing capacity increases as volume fraction increases in tensile test. While, the maximum load bearing capa
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Chen, Jieng-Chiang, and Yi-Ting Lin. "Tension and compression of jute fabric/corrugated paper/reinforced polylactic acid resin sandwich composites." Modern Physics Letters B 33, no. 14n15 (2019): 1940003. http://dx.doi.org/10.1142/s0217984919400037.

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The tensile and compressive properties of jute fabric and corrugated paper (CP)-reinforced polylactic acid (PLA) resin sandwich composites are discussed. A core layer was fabricated with CP-reinforced PLA resin. The core later was then stacked with jute fabric and PLA films on the top and bottom surfaces to fabricate the sandwich composites. Two composites, a CP-reinforced PLA composite (CP/PLA composite) and a jute fabric/PLA sandwich composite with CP as a core layer (J/PLA/CP composite) were developed in this study. A dipping bath was developed for impregnating the paper with a molten PLA s
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Zaman, Haydar. "Investigation on the Effect of Process Parameters on Mechanical Properties of Vetiver Fiber Reinforced LDPE Composites." Malaysian Journal on Composites Science and Manufacturing 14, no. 1 (2024): 58–72. http://dx.doi.org/10.37934/mjcsm.14.1.5872.

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Natural fibers (NFs) are extensively used for the ecological concern of synthetic fibers. The benefits of NFs over man-made fibers are their easy accessibility, renewability, lightweight, biodegradability, high specific features, and low price. The key reasons for affecting the features of the composite are the length and content of the fiber and the time of treatment of the fiber. Consequently, the prediction about the optimal fiber length, fiber content and treatment time becomes important, so that composites with optimal mechanical properties can be prepared. The current study narrates an e
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Bai, Jie, Jin Shan Li, Hong Chao Kou, et al. "Deformation Micromechanisms of a Ti-Based Metallic Glass Composite with Excellent Mechanical Properties." Materials Science Forum 745-746 (February 2013): 809–14. http://dx.doi.org/10.4028/www.scientific.net/msf.745-746.809.

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A Ti-based metallic glass composite with composition of Ti48Zr20Nb12Cu5Be15 exhibits good ambient plasticity in tensile and compressive loading. The macro and micro mechanisms during deformation have been investigated systematically. Obvious asymmetry between the tensile and compressive properties of the composite has been observed, indicating amorphous matrix effect on the metallic glass composite. The micro fracture mechanism of dendrites in compression can also be attributed to two mechanisms: shear induced fracture in major and tension induced fracture in local, revealing a constraint of m
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Lu, Jia Hai, Ping Zhu, Qing Hui Ji, and Zhang Cheng. "Experimental Investigation of In-Plane Mechanical Performance of Carbon/Glass Hybrid Woven Composite." Applied Mechanics and Materials 697 (November 2014): 132–35. http://dx.doi.org/10.4028/www.scientific.net/amm.697.132.

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Woven composites have been increasingly employed in engineering applications. For effective use of woven composites in engineering applications, it is essential to fully understand the mechanical behavior. In the present study, both tensile and compressive behavior of a carbon/glass hybrid woven composite manufactured by vacuum infusion process was experimentally investigated under in-plane quasi-static loading. The experiments were performed at both the axial and off-axial directions. The results indicated that the in-plane mechanical performance of the studied composite was highly directiona
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Niu, Yihan, Dan Zhao, Bo Zhu, Shunbo Wang, Zhaoxin Wang, and Hongwei Zhao. "Molecular dynamics investigations of the size effects on mechanical properties and deformation mechanism of amorphous and monocrystalline composite AlFeNiCrCu high-entropy alloy nanowires." Nanotechnology 33, no. 10 (2021): 105705. http://dx.doi.org/10.1088/1361-6528/ac2e79.

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Abstract The atomic models of amorphous and monocrystalline composite AlFeNiCrCu high-entropy alloy nanowires were established via the molecular dynamics method. The effects of amorphous structure thickness on mechanical properties and deformation mechanism were investigated by applying tensile and compressive loads to the nanowires. As the thickness of amorphous structures increases, the tensile yield strength decreases, and the asymmetry between tension and compression decreases. The tensile deformation mechanism transforms from the coupling interactions between stacking faults in crystal st
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Lu, Jiahai, Ping Zhu, Qinghui Ji, and Zhang Cheng. "Experimental Study of In-plane Mechanical Properties of Carbon Fibre Woven Composite at Different Strain Rates." Polymers and Polymer Composites 25, no. 4 (2017): 289–98. http://dx.doi.org/10.1177/096739111702500406.

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Carbon fibre woven composite has been increasingly employed in engineering applications undergoing complex loading conditions. For effective use of composite material in dynamic applications, it is essential to fully understand the mechanical behaviour of composite at different strain rates. In the present study, both in-plane tensile and compressive experiments loaded at 0 degree axial direction and 45 degree off-axial direction of a TC33 carbon fibre woven composite were investigated over the strain rate range from 0.001 to 1000 s−1. High strain rate tests were carried out using Split Hopkin
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Dissertations / Theses on the topic "Tensile and compressive composite"

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Whitley, Karen Suzanne. "Tensile and Compressive Mechanical Behavior of IM7/PETI-5 at Cryogenic Temperatures." Thesis, Virginia Tech, 2002. http://hdl.handle.net/10919/35944.

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<p>In order for future space transportation vehicles to be considered economically viable, the extensive use of lightweight materials is critical. For spacecraft with liquid fueled rocket engines, one area identified as a potential source for significant weight reduction is the replacement of traditional metallic cryogenic fuel tanks with newer designs based on polymer matrix composites. For long-term applications such as those dictated by manned, reusable launch vehicles, an efficient cryo-tank design must ensure a safe and reliable operating environment. To execute this design, extensive
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Plöckl, Marina [Verfasser]. "Effect of Strain Rate on the Tensile, Compressive, and Shear Response of Carbon-Fiber-Reinforced Thermoplastic Composites / Marina Plöckl." München : Verlag Dr. Hut, 2019. http://d-nb.info/1184090637/34.

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Węcławski, Bartosz Tomasz. "The potential of bast natural fibres as reinforcement for polymeric composite materials in building applications." Thesis, Brunel University, 2015. http://bura.brunel.ac.uk/handle/2438/11670.

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Natural fibre composites (NFCs), which are polymers reinforced with cellulosic bast fibres, have the potential to be applied into a range of building products. They are seen as an alternative to glass fibre reinforced plastics (GFRP) in some applications, because of natural fibres (NF) relatively high strength and low density. Moreover, natural fibres have a set of beneficial traits, such as thermal insulation, thermal stability, biodegradability, and are inherently renewable. Those characteristics are of importance when NF are used as reinforcements in polymer composites, but developments in
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Konieczny, Mark J. "Full-Field Strain and Temperature Measurement of Epoxy Resin PR-520 Subjected to Tensile, Compressive, and Torsional Loading at Various Strain Rates." The Ohio State University, 2019. http://rave.ohiolink.edu/etdc/view?acc_num=osu1556880386878411.

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Podgorski, Michael. "Rôle des interfaces dans les propriétés macroscopiques de composites C/C." Thesis, Bordeaux 1, 2009. http://www.theses.fr/2010BOR13852.

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Les composites Carbone/Carbone (C/C), largement utilisés à hautes températures dans des environnements oxydants, sont sensibles à l'oxydation dès 400°C. Deux voies sont envisagées pour accroître la tenue à l'oxydation de ces matériaux. La première est de renforcer la force de la liaison fibre/matrice en modifiant les propriétés de surface des fibres de carbone. La seconde voie d 'étude consiste à remplacer une partie de la matrice carbone par un oxyde. L'introduction d'une nouvelle phase conduit à la création de nouvelles interfaces dans les matériaux. L'ensemble des résultats obtenus à partir
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Lantz, Josephine. "Mechanical Properties of Calcium Phosphate and Additively Manufactured Titanium Alloy for Composite Spinal Implants." Thesis, KTH, Skolan för kemi, bioteknologi och hälsa (CBH), 2021. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-296636.

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One of the major health problems in western societies is back pain, with a prevalence rate of 49%–80%. In many cases, the back pain is due to degenerated discs. The gold standard to treat a severely degenerated disc is spinal fusion, where the vertebral disc is replaced with a cage structure. However, fusion cages have a failure rate of 30%, hence the need for further development. The focus of this thesis is to evaluate the combination of calcium phosphate cement with titanium, for a spinal application. Mechanical tests in the form of tensile, compression and 4-point-bending were performed to
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Plöckl, Marina [Verfasser], Klaus [Akademischer Betreuer] Drechsler, Klaus [Gutachter] Drechsler, and Travesa Albert [Gutachter] Turon. "Effect of Strain Rate on the Tensile, Compressive, and Shear Response of Carbon-Fiber-Reinforced Thermoplastic Composites / Marina Plöckl ; Gutachter: Klaus Drechsler, Albert Turon Travesa ; Betreuer: Klaus Drechsler." München : Universitätsbibliothek der TU München, 2019. http://d-nb.info/1181946778/34.

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Nedbalová, Radka. "Příprava a vlastnosti pěnových materiálů na bázi Bioskla." Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2014. http://www.nusl.cz/ntk/nusl-231661.

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The work deals with the preparation and mechanical properties of coated Bioglass® 45S5 based foam materials with open porosity. The samples have been fabricated applying the replication method with use of polyurethane foam. Furthermore, these samples were coated in order to increase the strength characteristics and crack resistance. Polyvinylalcohol and PVA with cellulose microfibrils have been used as coating. Besides microstructural parameters of investigated materials using the SEM images strength characteristics in compression and in tension were also quantified.
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Sigley, R. H. "Failure mechanisms under complex loading of glass-reinforced polyester composites and their matrices : The effect of superposed hydrostatic pressures up to 300 MPa on axial tensile and compressive strengths, and in-plane shear properties of unidirectional." Thesis, University of Bradford, 1988. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.234245.

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Tijana, Lainović. "Ispitivanje mehaničkih i površinskih svojstava stomatoloških nanostrukturisanih kompozitnih materijala na bazi smola." Phd thesis, Univerzitet u Novom Sadu, Medicinski fakultet u Novom Sadu, 2015. http://www.cris.uns.ac.rs/record.jsf?recordId=95386&source=NDLTD&language=en.

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Uvođenje nanočestica u stomatolo&scaron;ke kompozitne materijale predstavlja poku&scaron;aj da se odgovori univerzalnim zahtevima za kvalitetom direktnog zubnog ispuna, i da se stvori materijal koji kombinuje visoku mehaničku otpornost sa dobrim estetskim karakteristikama i zadovoljavajućim kvalitetom poliranja. Cilj sprovedene studije je bio da se ispita uticaj nanočestica, i soft-start metode svetlosne indukcije polimerizacije na mehanička i povr&scaron;inska svojstva savremenih stomatolo&scaron;kih nanokompozita, dostupnih na trži&scaron;tu. Ispitana su četiri stomatolo&scaron;ka nanostrukt
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Books on the topic "Tensile and compressive composite"

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T, Herakovich Carl, Sykes George F, and Langley Research Center. Applied Materials Branch., eds. Space environmental effects on graphite-epoxy compressive properties and epoxy tensile properties. Applied Materials Branch, National Aeronautics and Space Administration, Langley Research Center, 1987.

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C, Pauly Christopher, Pindera M. J. 1951-, and United States. National Aeronautics and Space Administration., eds. Experimental characterization and micromechanical modeling of woven carbon/copper composites. National Aeronautics and Space Administration, 1997.

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R, Veazie David, Brinson L. Catherine, and Langley Research Center, eds. A comparison of tension and compression creep in a polymeric composite and the effects of physical aging on creep. National Aeronautics and Space Administration, Langley Research Center, 1996.

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Hyer, M. W. Innovative design of composite structures: The use of curvilinear fiber format in composite structure design. College of Engineering, Virginia Polytechnic Institute and State University, 1990.

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Center, Langley Research, ed. Test methods for textile composites. National Aeronautics and Space Administration, Langley Research Center, 1994.

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L, Bradley Walter, Texas A & M University. Mechanics and Materials Center., and United States. National Aeronautics and Space Administration., eds. Micromechanics of compression failures in open hole composite laminates: A report. Mechanics and Materials Center, Texas A&M University, 1987.

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Hyer, M. W. Innovative design of composite structures: The use of curvilinear fiber format to improve buckling resistance of composite plates with central circular holes. College of Engineering, Virginia Polytechnic Institute and State University, 1990.

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Hyer, M. W. Innovative design of composite structures: The use of curvilinear fiber format to improve buckling resistance of composite plates with central circular holes. College of Engineering, Virginia Polytechnic Institute and State University, 1990.

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Hyer, M. W. Innovative design of composite structures: Axisymmetric deformations of unsymmetrically laminated cylinders loaded in axial compression : semiannual status report. College of Engineering, Virginia Polytechnic Institute and State University, 1990.

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Hyer, M. W. Innovative design of composite structures: Further studies in the use of a curvilinear fiber format to improve structural efficiency. College of Engineering, Virginia Polytechnic Institute and State University, 1988.

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Book chapters on the topic "Tensile and compressive composite"

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Gara, Navya, R. Jayaganthan, and R. Velmurugan. "Strain Rate Studies on Metallic and Non-Metallic Materials for Tensile and Compressive Behaviour Under Impact Loading." In Composite Materials. CRC Press, 2023. http://dx.doi.org/10.1201/9781003352358-1.

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Amith Kumar, S. J. "Tensile, Flexural and Compressive Properties of the Bionanocomposites." In Composites Science and Technology. Springer Singapore, 2022. http://dx.doi.org/10.1007/978-981-16-8578-1_7.

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Deshpande, Yogesh, Peiyu Yang, Jeremy Seidt, and Amos Gilat. "Dynamic Mechanical Response of T800/F3900 Composite Under Tensile and Compressive Loading." In Dynamic Behavior of Materials, Volume 1. Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-95089-1_31.

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Zobeiry, N., A. Forghani, C. McGregor, R. Vaziri, and A. Poursartip. "Progressive Damage Modeling of Composite Materials Under Both Tensile and Compressive Loading Regimes." In Computational Methods in Applied Sciences. Springer Netherlands, 2008. http://dx.doi.org/10.1007/978-1-4020-8584-0_9.

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Momoh, Emmanuel Owoichoechi, Mohammad Hajsadeghi, Amila Jayasinghe, et al. "Compressive Characteristics of Perforated Re-entrant Auxetic Steel Honeycomb–Mortar Composite." In Lecture Notes in Civil Engineering. Springer Nature Switzerland, 2025. https://doi.org/10.1007/978-3-031-69626-8_21.

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AbstractThe possibility of achieving auxetic behaviour in conventional materials is currently attracting significant research interests in the form of auxetically enhanced cementitious composites and, especially, in re-entrant honeycomb structures. Most studies on the behaviour of re-entrant steel honeycomb auxetic reinforcement for concrete focus on achieving uniplanar auxetic behaviour perpendicular to the direction of loading. This study focuses on investigating multi-planar auxetic behaviour throughout the composite. The auxetic behaviour was achieved by perforating the steel sheets before
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Wang, Yaojun, Bingbing Liu, and Qianqian Hao. "Mechanical Behaviors of Encased Concrete of Composite Bridges with Corrugated Steel Web." In Lecture Notes in Civil Engineering. Springer Nature Singapore, 2024. http://dx.doi.org/10.1007/978-981-97-4090-1_2.

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AbstractThe encased concrete in a composite bridge with corrugated steel web (CSW) is a critical structure to improve the stability of the web and relieve the stiffness difference between the composite girder and intermediate crossbeam. This study aims to investigate the effects of the encased concrete on the mechanical behaviors of composite girder bridges with CSWs. The finite element model of a rigid frame bridge is established, the calculation method of the shear force sharing ratio of the encased concrete is proposed, and the effect of the length and thickness of the encased concrete is a
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Tserpes, Konstantinos, Elli Moutsompegka, Mareike Schlag, et al. "Characterization of Pre-bond Contamination and Aging Effects for CFRP Bonded Joints Using Reference Laboratory Methods, Mechanical Tests, and Numerical Simulation." In Adhesive Bonding of Aircraft Composite Structures. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-319-92810-4_2.

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AbstractIn this chapter, the pre-bond contamination and ageing effects on carbon fiber reinforced plastic (CFRP) adherends and CFRP bonded joints are characterized by means of reference laboratory non-destructive testing (NDT) methods, mechanical tests, and numerical simulation. Contaminations from two fields of application are considered, namely in aircraft manufacturing (i.e. production) and for in-service bonded repair. The production-related scenarios comprise release agent, moisture, and fingerprint, while the repair-related scenarios comprise fingerprint, thermal degradation, de-icing fl
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Yu, Jing, Bo-Tao Huang, Jia-Qi Wu, Jian-Guo Dai, and Christopher K. Y. Leung. "Tensile and Compressive Performance of High-Strength Engineered Cementitious Composites (ECC) with Seawater and Sea-Sand." In RILEM Bookseries. Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-58482-5_91.

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Balokhonov, Ruslan R., and Varvara A. Romanova. "Microstructure-Based Computational Analysis of Deformation and Fracture in Composite and Coated Materials Across Multiple Spatial Scales." In Springer Tracts in Mechanical Engineering. Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-60124-9_17.

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AbstractA multiscale analysis is performed to investigate deformation and fracture in the aluminum-alumina composite and steel with a boride coating as an example. Model microstructure of the composite materials with irregular geometry of the matrix-particle and substrate-coating interfaces correspondent to the experimentally observed microstructure is taken into account explicitly as initial conditions of the boundary value problem that allows introducing multiple spatial scales. The problem in a plane strain formulation is solved numerically by the finite-difference method. Physically-based
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Salvador Filho, J. A. A., D. Lavorato, A. V. Bergami, J. R. Azeredo, C. Nuti, and S. Santini. "Influence of Polyethylene and Stainless Steel Fibres on Compressive and Tensile Behaviour of High-Performance Fibre-Reinforced Cementitious Composites." In GCEC 2017. Springer Singapore, 2018. http://dx.doi.org/10.1007/978-981-10-8016-6_1.

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Conference papers on the topic "Tensile and compressive composite"

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Lua, Jim, Anisur Rahman, Neethi Simon, Eugene Fang, and Nam Phan. "A Discrete Crack Network Based Damage Assessment for Bolted Composite Structures." In Vertical Flight Society 71st Annual Forum & Technology Display. The Vertical Flight Society, 2015. http://dx.doi.org/10.4050/f-0071-2015-10259.

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The failure prediction of a bolted joint is complex due to the presence of contact, plastic deformation in the fastener, hole wearing, hole edge crushing, and micro-buckling near the compressive loading zone. In order to capture the mechanism-based failure modes associated with matrix cracking, delamination, fiber breakage, and crushing under a bearing and clamping load, a continuum damage and discrete crack (CDDC) solution module for the Abaqus toolkit is developed where the continuum damage is used to control the damage evolution and energy dissipation and the discrete crack model is used to
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ZHAO, ZHENQIANG, CHAO ZHANG, and YULONG LI. "Tensile and Compressive Failure Behaviors of Triaxially Braided Composite." In American Society for Composites 2018. DEStech Publications, Inc., 2018. http://dx.doi.org/10.12783/asc33/26151.

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Vinson, Jack R., and Shengkuan Xiao. "On Predicting the Dynamic Failure in Composite Materials Under Compressive and Tensile Loads." In ASME 2001 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2001. http://dx.doi.org/10.1115/imece2001/amd-25403.

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Abstract Simple polynomial equations are presented for the ultimate strength and the modulus of elasticity as a function of strain rate for various unidirectional and quasi-isotropic composite materials used by government and industrial organizations. Included are several glass, graphite and aramid fiber composites. These are in various thermoset and thermoplastic polymeric matrices. Also included are stitched composites as well as one silicon carbide aluminum metal matrix composite. In addition, tensile properties are modeled for two woven composite materials. Through these equations, dynamic
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Ruggles-Wrenn, M. B., and T. P. Jones. "Tension–Compression Fatigue of a SiC/SiC Ceramic Matrix Composite at Elevated Temperature." In ASME Turbo Expo 2012: Turbine Technical Conference and Exposition. American Society of Mechanical Engineers, 2012. http://dx.doi.org/10.1115/gt2012-68902.

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Tension-compression fatigue behavior of a non-oxide ceramic composite with a multilayered matrix was investigated at 1200°C in laboratory air. The composite was produced via chemical vapor infiltration (CVI). The composite had an oxidation inhibited matrix, which consisted of alternating layers of silicon carbide and boron carbide and was reinforced with laminated Hi-Nicalon™ fibers woven in an eight-harness-satin weave (8HSW). Fiber preforms had pyrolytic carbon fiber coating with boron carbon overlay applied. Tension-compression fatigue behavior was studied for fatigue stresses ranging from
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Li, Longbiao. "Micromechanical Modeling Tension-Compression Fatigue Hysteresis Loops Model of Fiber-Reinforced Ceramic-Matrix Composites Considering Fibers Failure." In ASME Turbo Expo 2021: Turbomachinery Technical Conference and Exposition. American Society of Mechanical Engineers, 2021. http://dx.doi.org/10.1115/gt2021-58485.

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Abstract In this paper, a micromechanical tension-compression fatigue hysteresis loops model of fiber-reinforced ceramic-matrix composite (CMC) was developed considering fibers failure. Multiple fatigue damage mechanisms of fibers failure, interface debonding, slip and wear, and matrix fragmentation were considered and incorporated in the micromechanical fatigue hysteresis loops model. Upon unloading, the unloading stress-strain relationship was divided into three stages, including, (1) Unloading Stage I: the unloading interface counter slip stage and the unloading stress is between the tensil
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Johnson, David P., Joseph H. Felts, and Michael T. Ho. "Scaling Effects in Composite Laminates Under Tensile, Flexural, and Compressive Loading." In ASME 1997 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 1997. http://dx.doi.org/10.1115/imece1997-0709.

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Abstract It has been demonstrated by several researchers that composite materials exhibit scaling effects both in unidirectional and multidirectional specimens. This has an important impact on the design and manufacture of full scale structures. In the current work, the authors present a wide range of experimental data for scaled composite laminates under tensile, flexural and compressive loading. Data for both blocked ply (so-called ply-level) and distributed ply (so-called sublaminate-level) thickness scaling are presented. Laminates studied include the following stacking sequences: [45/-45/
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Pelegri, Assimina A., and Charles Valentine. "Experimental Investigation of Compressive Overloads on Delamination Growth Behavior in Fatigued Composites." In ASME 1999 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 1999. http://dx.doi.org/10.1115/imece1999-0504.

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Abstract The behavior of laminated graphite/epoxy composites under variable amplitude compressive loading is studied. Laminate composites in aerospace applications undergo both compressive and tensile fatigue stresses as well as spectrum loading. These materials are particularly susceptible to compressive loads and overloads, which cause the growth of any small pre-existing delaminations. Such delamination growth, and the resulting sublaminate buckling, are major causes of fatigue failure. This experimental program investigates the effects of overloads on laminate composite specimens in which
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Poullain, Philippe, Mircea Barnaure, and Stéphanie Bonnet. "Variability Assessment of the Compressive and Tensile Strength of Fibred Earthen Composites." In 4th International Conference on Bio-Based Building Materials. Trans Tech Publications Ltd, 2022. http://dx.doi.org/10.4028/www.scientific.net/cta.1.612.

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Earthen composites (rammed earth, cob, adobe, daub, CEB...) are experiencing renewed interest from builders due to the many advantages of these building materials, and in particular their eco-friendliness. Nevertheless, the widespreading of these materials, as certified materials and conforming to construction standards, comes against the lack of data concerning their mechanical properties. Indeed, the literature generally gives the average values of the properties without indicating the number of specimens tested neither the distribution of the data. Yet, the mean value of the compressive str
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Miller, David A., John F. Mandell, and Daniel D. Samborsky. "Evaluating Performance of Composite Materials for MHK Applications." In ASME 2011 International Mechanical Engineering Congress and Exposition. ASMEDC, 2011. http://dx.doi.org/10.1115/imece2011-62768.

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Montana State University (MSU) has a compilation of material systems, environmental chambers, and mechanical testing equipment to determine composite materials performance and failure characteristics. Mechanical characterization of composite systems will provide direct quantification of the materials under consideration for Marine Hydro Kinetic (MHK) designs that were initially developed for the wind turbine industry. The work presented herein represents the testing protocol development and initial results to support investigations on the effect of sea water absorption on material strength. A
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Abdi, Frank, and Dan Thompson. "2D/3D Oxide/Oxide Ceramic Matrix Composites Life Prediction Methods: Virtual Characterization of Mechanical Properties, and Virtual Testing of Structural Component." In ASME Turbo Expo 2007: Power for Land, Sea, and Air. ASMEDC, 2007. http://dx.doi.org/10.1115/gt2007-28332.

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Progressive failure analysis (PFA) method was employed to investigate the material and sub-element performances made of Alumina/Alumina (N720/A) ceramic matrix composites (CMC). A numerical material characterization was performed to derive the composite constituent properties based on the tested in-plane tensile and compressive properties of the 2D CMC. The derived constituent properties were then applied to the simulations of the 2D composite other properties including in-plane shear, inter-laminar shear and tension, in-plane bending and biaxial tension. The 3D composite in-plane and inter-la
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Reports on the topic "Tensile and compressive composite"

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Ruggles, M. B. Tensile and compressive behavior of a swirl mat composite. Office of Scientific and Technical Information (OSTI), 1998. http://dx.doi.org/10.2172/296739.

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Whisler, Daniel, Rafael Gomez Consarnau, and Ryan Coy. Novel Eco-Friendly, Recycled Composites for Improved CA Road Surfaces. Mineta Transportation Institute, 2021. http://dx.doi.org/10.31979/mti.2021.2046.

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The continued use of structural plastics in consumer products, industry, and transportation represents a potential source for durable, long lasting, and recyclable roadways. Costs to dispose of reinforced plastics can be similar to procuring new asphalt with mechanical performance exceeding that of the traditional road surface. This project examines improved material development times by leveraging advanced computational material models based on validated experimental data. By testing traditional asphalt and select carbon and glass reinforced composites, both new and recycled, it is possible t
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Chou, Y. S., Kerry D. Meinhardt, Jeffry W. Stevenson, and Prabhakar Singh. Mica-based Composite Compressive Seals for SOFC. Office of Scientific and Technical Information (OSTI), 2004. http://dx.doi.org/10.2172/15020932.

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Trammell, Michael, Timothy Burchell, and Joe Strizak. PCEA Baseline Characterization: Billet XCP01S8 11 Compressive, Tensile, and Flexure Strengths. Office of Scientific and Technical Information (OSTI), 2015. http://dx.doi.org/10.2172/2320363.

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Duthinh, Dat. Tensile strength of an interlocking composite connection. National Institute of Standards and Technology, 2000. http://dx.doi.org/10.6028/nist.ir.6565.

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Weiss, Charles, William McGinley, Bradford Songer, Madeline Kuchinski, and Frank Kuchinski. Performance of active porcelain enamel coated fibers for fiber-reinforced concrete : the performance of active porcelain enamel coatings for fiber-reinforced concrete and fiber tests at the University of Louisville. Engineer Research and Development Center (U.S.), 2021. http://dx.doi.org/10.21079/11681/40683.

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A patented active porcelain enamel coating improves both the bond between the concrete and steel reinforcement as well as its corrosion resistance. A Small Business Innovation Research (SBIR) program to develop a commercial method for production of porcelain-coated fibers was developed in 2015. Market potential of this technology with its steel/concrete bond improvements and corrosion protection suggests that it can compete with other fiber reinforcing systems, with improvements in performance, durability, and cost, especially as compared to smooth fibers incorporated into concrete slabs and b
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Starbuck, J. M. Compressive Creep Response of T1000G/RS-14 Graphite/Polycyanate Composite Materials. Office of Scientific and Technical Information (OSTI), 1998. http://dx.doi.org/10.2172/657696.

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Lavender, C. A., and M. T. Smith. Evaluation of waterjet-machined metal matrix composite tensile specimens. Office of Scientific and Technical Information (OSTI), 1986. http://dx.doi.org/10.2172/5754921.

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Lauritzen, T., W. L. Bell, G. M. Konze, J. M. Rosa, S. Vaidyanathan, and F. A. Garner. Effects of tensile and compressive stresses on irradiation-induced swelling in AISI 316. [LMFBR]. Office of Scientific and Technical Information (OSTI), 1985. http://dx.doi.org/10.2172/5534996.

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Wolf, Lawrence J. Tensile Tests for Quality Control of Injection Molded Composite Posts. Office of Scientific and Technical Information (OSTI), 1990. http://dx.doi.org/10.2172/1119332.

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