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Artykuły w czasopismach na temat "Self-Healing Material"

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Su, Cui Cui, and Jian Sheng Chen. "Self-Healing Polymeric Materials." Key Engineering Materials 727 (January 2017): 482–89. http://dx.doi.org/10.4028/www.scientific.net/kem.727.482.

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During the last few years, synthetic self-healing materials have become a new class of emerging smart materials with the ability to repair damage and restore lost or degraded properties or performance using resources inherently available to the system. Success in the design of self-healing materials is important to material safety, product reliability and prolonged lifetime. This article covers fundamental material-independent principles and different self-healing approaches for polymeric materials. Among these approaches, some depend on specific external stimulus to achieve their goal while o
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Kodzoev, M.-B., and S. Isachenko. "Self-healing concrete." Bulletin of Science and Practice 4, no. 4 (2018): 287–90. https://doi.org/10.5281/zenodo.1218426.

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Concrete is one of the most common building materials in the world, due to its strength and not expensive production. It consists of a binder (cement), large and small fillers, water. As the concrete hardens and becomes brittle under the action of loads in it there are cracks, which are an open way to move moisture. After a series of cycles of freezing and thawing, the cracks expand and then the water reaches the reinforcement and initiates corrosion. Rust occupies a larger volume than the reinforcing material (reinforcement) and the concrete begins to crack and delaminate. Cracks of different
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SANTOSH, PRABHAKAR RAHANE. "REVIEW OF SELF- HEALING MATERIAL." IJIERT - International Journal of Innovations in Engineering Research and Technology 4, no. 2 (2017): 1–5. https://doi.org/10.5281/zenodo.1462289.

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<strong>Composites have been widely used in tremendous engineering fields because of their advantages including light weight,process transformation and chemical stability in any atmospheric conditions. Due to long durability and reliability of polymeric material it still problematic when they serve for structural application. Comparatively,micro cracking is one of the fatal deteriorations generated in service,which bring a bout catastrophic failure of the material and hence significantly shorten lifetimes of the structures. Since t he damage is deep inside material which is difficult to be per
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Yadlapati, Mahesh. "Self-Healing Materials: A Breakthrough in Material Science." European Journal of Computer Science and Information Technology 13, no. 12 (2025): 52–61. https://doi.org/10.37745/ejcsit.2013/vol13n125261.

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Self-healing materials represent a revolutionary advancement in material science, offering innovative solutions to challenges across multiple industries through their ability to autonomously repair damage. Drawing inspiration from biological systems, these materials employ various healing mechanisms including microencapsulation, vascular networks, intrinsic self-healing, and shape memory behaviors. Their applications span infrastructure, aerospace, electronics, healthcare, and consumer goods, significantly enhancing product durability and sustainability. Despite their potential, self-healing m
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., Ravindranatha. "SELF-HEALING MATERIAL BACTERIAL CONCRETE." International Journal of Research in Engineering and Technology 03, no. 15 (2014): 656–59. http://dx.doi.org/10.15623/ijret.2014.0315121.

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Mitra, Manu. "Editorial on Self-Healing Robots." Advances in Robotics and Mechanical Engineering 1, no. 5 (2019): 83–86. https://doi.org/10.5281/zenodo.2591213.

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Scientists at University of Colorado, Boulder had developed a first and fully re-healable and recyclable electronic material. This novel technology functions like properties of human skin, capable of measuring pressure, temperature and vibration. Technically, it&rsquo;s a self-healing Robot - For instance if robots are wrapped in an electronic material that mimics as human skin; theoretically it can also sense objects that is too hot or too cold or if more or less pressure needs to be exerted on an object. If this material is beyond repair, then it can be soaked in a solution that separates ou
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Niu, Pengying, Beibei Liu, and Huanjun Li. "Room-Temperature Self-Healing Elastomer based on Van der Waals Forces in Air and under Water." Journal of Physics: Conference Series 2083, no. 2 (2021): 022066. http://dx.doi.org/10.1088/1742-6596/2083/2/022066.

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Abstract With the development of flexible wearable electronic devices, researches on self-healing conductive materials have become prevalent. However, the self-healing performance of most conductive self-healing materials is commonly achieved by the external stimulus that may cause damage to the equipment. Pparticularly, these self-healing materials may lose the self-healing properties when exposed to a high-humidity environment. Here, we adopted two hydrophobic monomers (2-methoxyethyl acrylate and ethyl methacrylate) to obtain a self-healing elastomer that could display self-healing properti
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Purbaya, Mili. "KAJIAN TENTANG SELF-HEALING RUBBER SELF HEALING RUBBER REVIEW." Warta Perkaretan 34, no. 2 (2015): 103. http://dx.doi.org/10.22302/ppk.wp.v34i2.252.

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Barang jadi karet selama masa pemakaiannya dapat mengalami cracking. Untuk mengatasi masalah ini maka konsep self-healing dapat digunakan. Self-healing merupakan kemampuan dari suatu material untuk dapat memperbaiki dirinya sendiri setelah mengalami kerusakan. Konsep ini dapat digunakan untuk menambah umur pemakaian suatu produk. Strategi yang dapat digunakan dalam pembuatan material self-healing adalah : 1) Pembentukan ikatan silang pada polimer, 2) Pelepasan healing agent pada saat memproduksi polimer, dan 3) Menggunakan teknologi khusus seperti konduktiviti, electro-fluid-dynamic (EFD), mig
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Sun, Wei, Rong Xin Yan, Li Chen Sun, et al. "Research on the Repair Performance of Self-Healing Aluminum Material Based on the Low Melting Point Slicker Solder Alloy." Materials Science Forum 932 (September 2018): 57–61. http://dx.doi.org/10.4028/www.scientific.net/msf.932.57.

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It is great significance to study self-healing aluminum alloy materials for spacecraft the structure protection from high energy space weapon attack and debris impact in future. In this paper, Using aluminum alloy (6063) as matrix material with low melting point alloy (Sn60Pb40, the melting point of 183°C) as repairing materials, the self-healing Aluminum Alloy material was designed and manufactured by the smelting and casting method. The crack damage repair performance of the self-healing Al alloy was researched through the experiment. The results show that the self-healing aluminum alloy has
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Wu, Min, Björn Johannesson, and Mette Geiker. "A review: Self-healing in cementitious materials and engineered cementitious composite as a self-healing material." Construction and Building Materials 28, no. 1 (2012): 571–83. http://dx.doi.org/10.1016/j.conbuildmat.2011.08.086.

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Rozprawy doktorskie na temat "Self-Healing Material"

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Hazelwood, Tobias. "Investigation of a novel self-healing cementitious composite material system." Thesis, Cardiff University, 2015. http://orca.cf.ac.uk/76766/.

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This thesis describes a portion of the ongoing development of a novel self-healing cementitious material system named LatConX originally proposed by a group of researchers at Cardiff University. The research reported was undertaken with the aim of furthering understanding of the system’s long-term behaviour, ultimately with a view to providing predictions for the performance of the system over a structure’s working life. This aim is accomplished through a combination of experimental and numerical research. An experimental series is presented which investigates the stress relaxation behaviour o
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Owen, Christopher Cooper. "Magnetic Induction for In-situ Healing of Polymeric Material." Thesis, Virginia Tech, 2006. http://hdl.handle.net/10919/79682.

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The field of self-healing materials is growing dramatically due to the obvious in- centive of having structural materials with the ability to repair damage. Some polymers have demonstrated the ability to heal from damage autonomously[12, 26], when exposed to heat[1], or when punctured[5, 9]. The goal of this research is to develop a "proof-of-concept" polymer composite that has the ability to heal when exposed to an alternating magnetic field. Several types of magnetic particulate were inspected for use in the production of polymer composite test samples. The types of particulate used in sampl
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ANGLANI, GIOVANNI. "Development and characterization of capsule-based self-healing cementitious materials." Doctoral thesis, Politecnico di Torino, 2020. http://hdl.handle.net/11583/2847154.

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Kay, Matthew. "The development and impact performance of a self-healing carbon fibre reinforced polymer material." Thesis, University of Bristol, 2011. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.566817.

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Self-healing systems provide an opportunity to improve the damage tolerance of fibre reinforced polymers. This experimental study examines a hollow glass fibre (HGF) self- healing system embedded within a host carbon fibre/epoxy laminate. The performance of the laminate under various impact velocities ranging from quasi-static indentation to hypervelocity impact was assessed. The influence of the self-healing agent properties on the healing efficiency of the laminate has been established. Extensive fractography analysis was used to understand the mechanisms responsible for HGF rupture. The HGF
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Zhang, Wenyong. "Modification of carbon fiber / epoxy matrix interphase in a composite material : Design of a self-healing interphase by introducing thermally reversible Diels-Alder adducts." Thesis, Lyon, INSA, 2014. http://www.theses.fr/2014ISAL0127/document.

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Une interphase fibre de carbone/matrice époxy thermiquement auto-réparable a été construite sur la base de liaisons covalentes Diels-Alder (D-A) thermiquement réversibles. L’interphase modifiée par D-A a été formée en greffant des groupes maléimide sur la surface de la fibre de carbone et en introduisant des groupes furane dans le réseau polyépoxy. La capacité d’auto-réparation interfaciale a été caractérisée par le test de déchaussement de la micro-goutte. La surface de la fibre de carbone a subi un traitement en trois étapes : (i) oxydation par l’acide nitrique, (ii) amin
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Nardeli, Jéssica Verger. "Revestimentos de poliuretanos derivados de óleos vegetais com e sem adição de inibidores de corrosão : propriedades químicas, estruturais e de resistência à corrosão /." Araraquara, 2020. http://hdl.handle.net/11449/192936.

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Orientador: Assis Vicente Benedetti<br>Resumo: Os revestimentos de poliuretano (PU) foram preparados a partir de óleos vegetais (crambe e mamona) e modificados pela incorporação de inibidores de corrosão (tanino condensado). A reação foi monitorada caracterizando os produtos intermediários (poliéster e pré-polímero). O poliéster foi caracterizado pela solubilidade em metanol, índice de acidez, grupos hidroxila e espectroscopia no infravermelho por transformada de Fourier com refletância total atenuada (FTIR), e o pré-polímero foi caracterizado por teor de sólido, teor de solvente, isocianato l
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Isaacs, Ben. "Self-healing cementitious materials." Thesis, Cardiff University, 2011. http://orca.cf.ac.uk/54220/.

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A general conclusion from the work is that both systems require considerable development before being ready for industrial application. However, of the two systems investigated, it is the latter which shows the greatest potential to not only greatly enhance the durability of cementitious composites, but also to improve their strength and ductility.
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Schleder, Gabriel Ravanhani. "Intrinsic self-healing nanocomposites : computational simulations." reponame:Repositório Institucional da UFABC, 2017.

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Orientador: Prof. Dr. Jeverson Teodoro Arantes Junior<br>Dissertação (mestrado) - Universidade Federal do ABC, Programa de Pós-Graduação em Nanociências e Materiais Avançados, 2017.<br>Uma estrutura que pode autorregenerar em condições ambiente é um desafio enfrentado atualmente e é uma das áreas mais promissoras na ciência de materiais inteligentes. O presente projeto visa a utilização de métodos teóricos para o estudo das propriedades estruturais e funcionais de nanocompósitos intrinsecamente autorregenerativos, permitindo estratégias mais eficientes para o desenvolvimento de novos materiais
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Ford, Kevin J. "Characterization of self-healing composite materials." Morgantown, W. Va. : [West Virginia University Libraries], 2006. https://eidr.wvu.edu/etd/documentdata.eTD?documentid=4704.

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Thesis (Ph. D.)--West Virginia University, 2006.<br>Title from document title page. Document formatted into pages; contains xiv, 148 p. : ill. (some col.). Includes abstract. Includes bibliographical references (p. 122-129).
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Rajczakowska, Magdalena. "Self-Healing Concrete." Licentiate thesis, Luleå tekniska universitet, Byggkonstruktion och brand, 2019. http://urn.kb.se/resolve?urn=urn:nbn:se:ltu:diva-76527.

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Concrete is a brittle material prone to cracking due to its low tensile strength. Crack repairs are not only expensive and time-consuming but also increase the carbon footprint. Designing a novel concrete material possessing the ability to self-repair cracks would enhance its sustainability. Self-healing can be defined as a material’s ability to repair inner damage without any external intervention. In the case of concrete, the process can be autogenous, based on an optimized mix composition, or autonomous, when additional capsules containing some healing agent and/or bacteria spores are incor
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Książki na temat "Self-Healing Material"

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Hager, Martin D., Sybrand van der Zwaag, and Ulrich S. Schubert, eds. Self-healing Materials. Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-32778-5.

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van der Zwaag, Sybrand, ed. Self Healing Materials. Springer Netherlands, 2007. http://dx.doi.org/10.1007/978-1-4020-6250-6.

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Phogat, Peeyush, Shreya Sharma, Soumya Rai, and Jahanvi Thakur. Self-healing Materials. Springer Nature Singapore, 2025. https://doi.org/10.1007/978-981-96-6767-3.

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Kanellopoulos, Antonios, and Jose Norambuena-Contreras, eds. Self-Healing Construction Materials. Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-030-86880-2.

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K, Rohatgi P., ed. Biomimetics in materials science: Self-healing, self-lubricating, and self-cleaning materials. Springer, 2012.

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Yarin, Alexander L., Min Wook Lee, Seongpil An, and Sam S. Yoon. Self-Healing Nanotextured Vascular Engineering Materials. Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-05267-6.

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de Rooij, Mario, Kim Van Tittelboom, Nele De Belie, and Erik Schlangen, eds. Self-Healing Phenomena in Cement-Based Materials. Springer Netherlands, 2013. http://dx.doi.org/10.1007/978-94-007-6624-2.

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Rooij, Mario de. Self-Healing Phenomena in Cement-Based Materials: State-of-the-Art Report of RILEM Technical Committee 221-SHC: Self-Healing Phenomena in Cement-Based Materials. Springer Netherlands, 2013.

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Ding, Mei. Self-sealing/healing isolation and immobilization caused by chemical discontinuities in porous media. Universiteit Utrecht, 1998.

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Pahlow, Mannfried. Healing plants: Self-treatment of the most common everyday complaints and disorders with selected medicinal plants : time-tested recipes for teas, tea blends, tinctures, ointments, inhalations, compresses, and baths : expert advice and dependable remedies. Edited by Stevenson Dennis W. Barron's Educational Series, 1993.

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Części książek na temat "Self-Healing Material"

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Specht, Steffen, Joachim Bluhm, and Jörg Schröder. "Continuum Mechanical Description of an Extrinsic and Autonomous Self-Healing Material Based on the Theory of Porous Media." In Self-healing Materials. Springer International Publishing, 2015. http://dx.doi.org/10.1007/12_2015_338.

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Huston, Dryver R. "Electronics, Optics, and Functionalized Material Systems." In Self-Healing Structures, Machines, and Systems. CRC Press, 2025. https://doi.org/10.1201/9781003396048-10.

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Kunz, Willy, and Hagen Klemm. "Self-Healing EBC Material for Gas Turbine Applications." In Ceramic Transactions Series. John Wiley & Sons, Inc., 2017. http://dx.doi.org/10.1002/9781119407270.ch18.

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Lee, Michelle. "Blood Clots and Vascular Networks: Self-Healing Materials." In Remarkable Natural Material Surfaces and Their Engineering Potential. Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-03125-5_1.

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Mukherjee, Rajib, and Thomas C. Bishop. "Nucleosomal DNA: Kinked, Not Kinked, or Self-Healing Material?" In ACS Symposium Series. American Chemical Society, 2011. http://dx.doi.org/10.1021/bk-2011-1082.ch005.

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Duenas, Terrisa, Andrew Enke, Karen Chai, et al. "Smart Self-Healing Material Systems Using Inductive and Resistive Heating." In ACS Symposium Series. American Chemical Society, 2010. http://dx.doi.org/10.1021/bk-2010-1050.ch004.

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Hadhinata, Christian, Ananta Ardyansyah, Viska Rinata, and M. Mirza Abdillah Pratama. "Characterization of Self-Healing Concrete Incorporating Plastic Waste as Partial Material Substitution." In Nanotechnologies in Green Chemistry and Environmental Sustainability. CRC Press, 2022. http://dx.doi.org/10.1201/9781003320746-7.

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Likhit, M. L., and Jacob Alex. "A Potential Review on Self-healing Material – Bacterial Concrete Methods and Its Benefits." In Lecture Notes in Civil Engineering. Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-031-12011-4_92.

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Liu, Jingzhou, Ze Wang, Shuainan Zhang, et al. "Self-Healing Properties of Metallized Films with Different Material Structures Under Multiple Stresses." In Lecture Notes in Electrical Engineering. Springer Nature Singapore, 2024. https://doi.org/10.1007/978-981-97-8812-5_46.

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Sato, Takeshi, and Mitsuhiro Ebara. "Self-Healing." In Materials Nanoarchitectonics. Wiley-VCH Verlag GmbH & Co. KGaA, 2018. http://dx.doi.org/10.1002/9783527808311.ch16.

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Streszczenia konferencji na temat "Self-Healing Material"

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Doddema, JF. "The Use of Visco-Elastic Self-Healing Pipeline Coating." In CORROSION 2010. NACE International, 2010. https://doi.org/10.5006/c2010-10042.

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Abstract Modern pipeline maintenance requires advanced corrosion prevention systems in order to prolong service cycles and to ensure reliable and sustainable operation features. Corrosion is one of those occurrences that will affect the safe and efficient running of the pipeline with the costs for shut down, lost production, product loss, environment contamination and loss of customer confidence running into millions of Euros. Coating degradation problems that lead to the creation of a corrosion risk within the design life of a pipeline can mainly be attributed to one of the following causes:
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Dolmat, Norfadilah, Azmi Mohammed Nor, Mohd Shamsul Farid Samsudin, Russel Varley, and Jane Zhang. "Autonomous Healing of Smart Coating Materials for Corrosion Protection of Oil and Gas Assets." In CONFERENCE 2024. AMPP, 2024. https://doi.org/10.5006/c2024-20901.

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Abstract Most assets in the oil and gas sector that use metal substrates e.g., pipe supports, or structures are susceptible to corrosion problems primarily because of continual exposure of damaged areas to severe environmental conditions. The proliferation and merging of corrosion issues can cause catastrophic failure of materials, resulting in a reduction in the service life of the materials. To avoid these issues, it is crucial to protect the scratch or minor crack area as quickly as possible so that it does not spread too far. In this case, self-healing as a smart material can be applied to
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Kutelia, Elguja R., Sayavur I. Bakhtiyarov, Mikheil N. Okrosashvili, et al. "Development of High-Temperature Corrosion and Creep Resistant Nb, Mo and Cr Based Compositions with Protective Self-Healing Coating of Fe-45%Cr-4%Al-1%Ni-0.3%La Alloy." In CORROSION 2009. NACE International, 2009. https://doi.org/10.5006/c2009-09272.

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Abstract In this work the results of experimental studies of new composite materials based on refractory metals with protective coatings of alumina forming Fe-45%Cr-4%Al-1%Ni-0.3%La alloy are given. The compositions with optimal correlation of heat and oxidation resistance were obtained on the Nb and Mo monocrystals and polycrystalline low alloyed Cr bulk samples coated with Fe-45%Cr-4%Al-1%Ni-0.3%La alloy using the electron-beam vacuum evaporation technique followed by thermal-chemical treatment at 1200°C. The obtained compositions were investigated using the SEM, WDS, AES and LM. The results
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Le, Dy, Nathaniel Bordick, Volker Weiss, Jaret Riddick, and Bradley Miller. "Fatigue-Free Platforms: Vision for Future Army Rotorcraft." In Vertical Flight Society 70th Annual Forum & Technology Display. The Vertical Flight Society, 2014. http://dx.doi.org/10.4050/f-0070-2014-9633.

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The goal for Army aviation platform sustainment is "zero-maintenance". Scientists and engineers from the U.S. Army are exploring the underpinning science and technology (S&amp;T), which can be used to achieve this vision. Researchers from the Army Aviation and Missile Research, Development and Engineering Center (AMRDEC) and Army Research Laboratory (ARL) have recently developed a holistic system approach, "Virtual Risk-informed Aviation Maneuver Sustainment" (VRAMS), which integrates a wide range of technologies including the material "genome", damage precursors, self-healing, real-time risk
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Gontcharov, Alexandre B., and Paul Lowden. "The Development of Weldable Nickel-Based Superalloys and Technologies for Repair and Additive Manufacturing of Turbine Engine Components." In AM-EPRI 2024. ASM International, 2024. http://dx.doi.org/10.31399/asm.cp.am-epri-2024p0650.

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Abstract High gamma prime Ni-based superalloys comprising ≥3.5 % Al are difficult to weld due to high propensity of these materials to weld solidification, heat affected zone liquation, and stress-strain cracking. In this study the root cause analysis of cracking and overview on the developed weldable Ni-based superalloys for repair of turbine engine components manufactured from equiaxed (EA), directionally solidified (DS), and single crystal (SX) materials as well as for 3D AM is provided. It is shown that the problem with the solidification and HAZ liquation cracking of turbine engine compon
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van Beugen, Leo, Edwin Welles, and John Glass. "Viscous Elastic Coating and Sealants." In SSPC 2013 Greencoat. SSPC, 2013. https://doi.org/10.5006/s2013-00021.

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Abstract Viscous Elastic Coatings easily overcome many of the common issues that cause traditional coating to fail. Viscous elastic coatings offer immediate adhesion without the need for primer, require minimal surface preparation and form a homologue, continuous, self-healing protective layer. The materials bond at an intimate level and create a waterproof, impermeable coating that can operate in a wide temperature range. Viscous Elastic chemistry is unique and designed such that the viscous component gives it permanent wetting characteristics. This forces the material to flow into the pores
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Anderson, Benjamin R., Natalie Gese, and Hergen Eilers. "Subsurface Spectroscopy Inside of Heterogeneous Materials Using Self-healing Optical Beams." In CLEO: Applications and Technology. Optica Publishing Group, 2024. http://dx.doi.org/10.1364/cleo_at.2024.jth2a.151.

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We compare the performance of Gaussian and Self-healing (Airy and Bessel) optical beams for subsurface spectroscopy inside of heterogeneous materials. We find that self-healing beams do provide improved performance over Gaussian beams.
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Goldsmith, Anastasia. "Ionomer Self-Healing Material Applications." In 2nd AIAA "Unmanned Unlimited" Conf. and Workshop & Exhibit. American Institute of Aeronautics and Astronautics, 2003. http://dx.doi.org/10.2514/6.2003-6554.

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Peng, Lei, Musong Lin, and Qiang Fu. "A Self-healing Power Cable Sheathing Material." In 2022 IEEE 5th International Electrical and Energy Conference (CIEEC). IEEE, 2022. http://dx.doi.org/10.1109/cieec54735.2022.9846343.

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Roels, Ellen, Seppe Terryn, Joost Brancart, Guy Van Assche, and Bram Vanderborght. "A Multi-Material Self-Healing Soft Gripper." In 2019 2nd IEEE International Conference on Soft Robotics (RoboSoft). IEEE, 2019. http://dx.doi.org/10.1109/robosoft.2019.8722781.

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Raporty organizacyjne na temat "Self-Healing Material"

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Asvapathanagul, Pitiporn, Simone Galano, Andrea Calabrese, et al. Experimental Investigation of the Self-Healing Potential of Bacteria for Sustainable Concrete Structures. Mineta Transportation Institute, 2023. http://dx.doi.org/10.31979/mti.2023.2239.

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Although concrete is the most widely used building material in the world, its limited tensile strength makes cracking a common phenomenon in concrete elements. This study investigates the potential of autonomous self-healing as an eco-friendly and lowcost method to increase the durability of concrete. The crack-healing potential of different types of high-alkaline-tolerant bacteria or calcite-precipitation microorganisms is investigated. High-alkaline-tolerant bacteria and calcite-precipitation microorganisms were used to retrofit lab-fractured concrete samples. The samples healed with each of
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Calabrese, Andrea, Pitiporn Asvapathanagul, Nisarg N. Patel, et al. Experimental Investigation of the Self-Healing Potential of Bacteria for Sustainable Concrete Structures Phase 2. Mineta Transportation Institute, 2024. http://dx.doi.org/10.31979/mti.2024.2331.

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Concrete is a critical component of so much of the modern construction industry. This material, well known for its versatility, robustness, longevity, and strength, is well-suited for a wide range of structural applications. Nonetheless, the widespread occurrence of cracks in concrete structures, primarily attributed to its limited tensile strength, shrinkage, and overstain, imposes a considerable economic and environmental challenge when it comes to retrofitting these fissures. This study tackles this problem by harnessing bacteria tolerant to high alkaline conditions to enable Microbially In
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Luckett, DeBorah C., Andrew L. Bowman, Andrew M. Lessel, et al. High-Rate Characterization and Modeling of a Hyperelastic Block Copolymer Subjected to Ballistic Impact. U.S. Army Engineer Research and Development Center, 2024. http://dx.doi.org/10.21079/11681/49416.

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polystyrene-polyisobutylene-polystyrene star-block copolymer (PS-PIB-PS) is a thermoplastic elastomer with visco hyperelastic characteristics that displays a high level of toughness and performs well in shock attenuating applications. The research goal is to investigate experimentally and numerically the capacity of PS-PIB-PS to dissipate kinetic energy and examine its deformation and failure modes under impact by spherical steel projectiles at speed ranges of 200–1,700 m/s. First, PS-PIB-PS is characterized using a Split-Hopkinson Pressure Bar to measure high strain rate response and calibrat
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Shang, Jian-Ku. Development of Self-Healing Structural Composite Materials. Defense Technical Information Center, 2000. http://dx.doi.org/10.21236/ada424277.

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Kehr, Alan. PR-464-133609-R01 Review of Self-Healing Pipeline Coatings for the Prevention of External Corrosion. Pipeline Research Council International, Inc. (PRCI), 2017. http://dx.doi.org/10.55274/r0010839.

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The objective of this study is to investigate the potential of existing self-healing coating solutions for pipeline applications with the goal of improved pipeline reliability and a reduction in operating expenses by reducing excavations, coating repairs, pipe repairs and replacements. There has been much recent publicity regarding this technology, resulting in a need to determine usefulness and identify applicability to pipelines. This report will cover existing technologies for use in self-healing coatings, the technologies under development applicable to pipeline coatings, the companies act
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Pasupuleti, Murali Krishna. Sustainable and Affordable Global Housing via AI and Advanced Materials. National Education Services, 2025. https://doi.org/10.62311/nesx/rr425.

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Abstract: The global housing crisis demands innovative solutions that balance affordability, sustainability, and technological advancement. This research report explores the transformative role of Artificial Intelligence (AI) and advanced materials in addressing housing shortages, reducing environmental impact, and improving construction efficiency. AI-driven generative design, smart automation, and predictive analytics optimize resource allocation and enhance structural safety, while advanced materials such as 3D-printed composites, self-healing concrete, aerogels, and bio-based materials rev
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White, Scott R., Philippe H. Geubelle, and Nancy R. Sottos. Multiscale Modeling and Experiments for Design of Self-Healing Structural Composite Materials. Defense Technical Information Center, 2005. http://dx.doi.org/10.21236/ada443864.

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Hajj, Ramez, Nishant Garg, Jacob Doehring, Abhilash Vyas, Babak Asadi, and Yujia Lu. Using Microcapsules and Bacteria for Self-Healing in Rigid and Flexible Pavements. Illinois Center for Transportation, 2023. http://dx.doi.org/10.36501/0197-9191/23-001.

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Cracking is one of the most critical distresses experienced by pavement infrastructure. Both flexible and rigid pavement cracking allow for water intrusion, which can in turn cause freeze–thaw damage and structural issues, causing premature failure. In addition, rigid pavements suffer from corrosion of reinforcing steel, which impedes the ability of the steel to resist deformation of the surface layer. One proposed technology to mitigate such cracking is the engineering of self-healing materials in pavements that can autogenously heal damage at the microscale. However, these technologies are n
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Roach, Dennis Patrick, Waylon Anthony Delong, Scott White, Esteban Yepez, Kirk A. Rackow, and Earl David, Jr Reedy. Use of composite materials, health monitoring and self-healing concepts to refurbish our civil and military infrastructure. Office of Scientific and Technical Information (OSTI), 2007. http://dx.doi.org/10.2172/920441.

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Pasupuleti, Murali Krishna. Smart Nanomaterials and AI-Integrated Grids for Sustainable Renewable Energy. National Education Services, 2025. https://doi.org/10.62311/nesx/rr1025.

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Abstract: The transition to sustainable and intelligent renewable energy systems is being driven by advancements in smart nanomaterials and AI-integrated smart grids. Nanotechnology has enabled the development of high-performance energy materials, such as graphene, perovskites, quantum dots, and MXenes, which enhance the efficiency, durability, and scalability of renewable energy solutions. Simultaneously, AI-driven smart grids leverage machine learning, deep learning, and digital twins to optimize energy distribution, predictive maintenance, and real-time load balancing in renewable energy ne
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