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1

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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9

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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Sun, Yanlang. "Analysis of Recent Advances of Self-healing Materials Applied in Wearable Devices." Applied and Computational Engineering 137, no. 1 (2025): 8–14. https://doi.org/10.54254/2755-2721/2025.21028.

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Self-healing material has been widely used in many fields with its excellent properties and long material life. Some key parts of wearable devices such as smart sensors require the excellent properties of self-healing materials. Therefore, the application of self-healing materials in wearable devices has attracted more and more attention and brought destructive innovation in recent years. This review introduces the application of self-healing materials in wearable devices and discusses the chemical rationale in various application scenarios. So far, the most prevalent solution is to create mul
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Stryszewska, Teresa, and Marta Dudek. "Microstructure of autonomous self-healing concrete." MATEC Web of Conferences 322 (2020): 01022. http://dx.doi.org/10.1051/matecconf/202032201022.

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Over the past years, many research projects in the field of construction have been based on the concept of intelligent materials. One example of such materials is self-healing concrete. This material has the ability to repair the damage that occurs, which in concrete materials means filling/closing the cracks formed. This paper describes autonomous concrete that heals itself thanks to modifications with mineral additives. The study used the basic method of evaluating the effectiveness of the healing process, which is visual observation of the material. For this purpose, tests were performed us
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Rosewitz, Jessica A., Shuai Wang, Suzanne F. Scarlata, and Nima Rahbar. "An enzymatic self-healing cementitious material." Applied Materials Today 23 (June 2021): 101035. http://dx.doi.org/10.1016/j.apmt.2021.101035.

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Wang, Shuai, Suzanne F. Scarlata, and Nima Rahbar. "A self-healing enzymatic construction material." Matter 5, no. 3 (2022): 957–74. http://dx.doi.org/10.1016/j.matt.2021.12.020.

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Takahashi, Hiroaki. "Introduction to Self―healing Material Technology." Seikei-Kakou 36, no. 9 (2024): 346–49. http://dx.doi.org/10.4325/seikeikakou.36.346.

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Hayes, S. A., F. R. Jones, K. Marshiya, and W. Zhang. "A self-healing thermosetting composite material." Composites Part A: Applied Science and Manufacturing 38, no. 4 (2007): 1116–20. http://dx.doi.org/10.1016/j.compositesa.2006.06.008.

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My Nga, Vo Thi. "Self-healing polymer materials: Basic concepts and applications." Middle East Journal of Applied Science & Technology 07, no. 03 (2024): 98–104. http://dx.doi.org/10.46431/mejast.2024.7310.

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Since the past few decades, the trend of researching self-healing materials such as ceramic, concrete, and self-healing polymer has always been a very hot topic in materials science. Considering polymer self-healing materials (and their composites), several hundred new articles are published yearly. What is the self-healing feature? This is the ability of materials, thanks to some special mechanisms, to self-recover from damage (scratches, cuts...) returning to an almost intact state. This ability is achieved by adding external healing agents (the specialized term is "healing agent"), or based
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Zhang, Li, Ye Tian, and Yan Miao Ma. "The Analysis of Fracture Mechanics on Self-Healing Composite Materials with Microcapsules." Advanced Materials Research 591-593 (November 2012): 1143–46. http://dx.doi.org/10.4028/www.scientific.net/amr.591-593.1143.

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Fatigue failure of the mechanical parts has always been paid great attention to in mechanical engineering. In recent years the study on the self-healing composite materials with microcapsules provides a new way to solve it. In this paper, the fracture mechanics analysis on the self-healing composite material with microcapsules used for gear is carried out to determine whether it can achieve the self-healing. The results show that, only when the fracture toughness of the capsule shell and that of matrices matches in some way, can the self-healing be achieved. The composite material made of nylo
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Huyang, George, and Jirun Sun. "Clinically Applicable Self-Healing Dental Resin Composites." MRS Advances 1, no. 8 (2016): 547–52. http://dx.doi.org/10.1557/adv.2016.86.

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ABSTRACTSelf-healing is one of the most desired material properties. Herein, we present the design and development of a new self-healing dental composite (SHDC) that can heal micro-cracks autonomously. The SHDC has two functional components in addition to contemporary dental composites: healing powder (HP) and healing liquid (HL) encapsulated in silica microcapsules. The autonomous healing is triggered by micro-cracks which fracture microcapsules in their propagation path and release the HL. As a consequence, the released HL dissolves and reacts with the HP, and then fill the micro-cracks with
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SAITO, Hisashi, and Toshiharu KISHI. "PROPERTIES AND EVALUATION OF SELF-HEALING EFFECT OF MORTAR WITH SELF-HEALING MATERIAL COATED WITH ORGANIC MATERIALS." Cement Science and Concrete Technology 74, no. 1 (2021): 185–92. http://dx.doi.org/10.14250/cement.74.185.

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Sasaki, Yusuke, and Hideharu Mori. "Self-healing hybrids fabricated by metal complexation with imidazole-containing silsesquioxane nanoparticles." Materials Chemistry Frontiers 4, no. 9 (2020): 2655–64. http://dx.doi.org/10.1039/d0qm00225a.

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Simultaneous achievement of self-healing ability and material hardness in materials is challenging because these properties are contradictory. In this study, we designed self-healing hybrids with tunable flexibility and healing properties.
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Williams, Kyle A., Andrew J. Boydston, and Christopher W. Bielawski. "Towards electrically conductive, self-healing materials." Journal of The Royal Society Interface 4, no. 13 (2007): 359–62. http://dx.doi.org/10.1098/rsif.2006.0202.

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A novel class of organometallic polymers comprising N -heterocyclic carbenes and transition metals was shown to have potential as an electrically conductive, self-healing material. These polymers were found to exhibit conductivities of the order of 10 −3 S cm −1 and showed structurally dynamic characteristics in the solid-state. Thin films of these materials were cast onto silicon wafers, then scored and imaged using a scanning electron microscopy (SEM). The scored films were subsequently healed via thermal treatment, which enabled the material to flow via a unique depolymerization process, as
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Jiang, Yixue, Evelyn Ling Ling Ng, Danielle Xinyun Han, et al. "Self-Healing Polymeric Materials and Composites for Additive Manufacturing." Polymers 15, no. 21 (2023): 4206. http://dx.doi.org/10.3390/polym15214206.

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Self-healing polymers have received widespread attention due to their ability to repair damage autonomously and increase material stability, reliability, and economy. However, the processability of self-healing materials has yet to be studied, limiting the application of rich self-healing mechanisms. Additive manufacturing effectively improves the shortcomings of conventional processing while increasing production speed, accuracy, and complexity, offering great promise for self-healing polymer applications. This article summarizes the current self-healing mechanisms of self-healing polymers an
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Kim, Cheol-Gyu, Yun-Wang Choi, Sung Choi, and Sung-Rok Oh. "A Study on the Healing Performance of Mortar with Microcapsules Using Silicate-Based Inorganic Materials." Materials 15, no. 24 (2022): 8907. http://dx.doi.org/10.3390/ma15248907.

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Advancements in material science have led to the development of various self-healing concrete technologies. Among these is the use of microcapsule-based self-healing materials. This study evaluated the effects of self-healing microcapsules on the quality and healing properties of mortar. A silicate-based inorganic material mixture was used as the healing material tested with ordinary Portland cement. Accordingly, the effects of microcapsules (MCs) on the rheological, mechanical, and healing properties of mortar were determined. The mixing of MCs reduced the plastic viscosity and yield stress o
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Sundaresan, Vishnu Baba, Andrew Morgan, and Matt Castellucci. "Self-Healing of Ionomeric Polymers with Carbon Fibers from Medium-Velocity Impact and Resistive Heating." Smart Materials Research 2013 (June 20, 2013): 1–12. http://dx.doi.org/10.1155/2013/271546.

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Self-healing materials science has seen significant advances in the last decade. Recent efforts have demonstrated healing in polymeric materials through chemical reaction, thermal treatment, and ultraviolet irradiation. The existing technology for healing polymeric materials through the aforementioned mechanisms produces an irreversible change in the material and makes it unsuitable for subsequent healing cycles. To overcome these disadvantages, we demonstrate a new composite self-healing material made from an ionomer (Surlyn) and carbon fiber that can sustain damage from medium-velocity impac
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Tabrizian, Seyedreza Kashef, Seppe Terryn, Joost Brancart, Guy Van Assche, and Bram Vanderborght. "Mechanisms boosting material embodied intelligence to realize self-healing soft robots." IOP Conference Series: Materials Science and Engineering 1292, no. 1 (2023): 012006. http://dx.doi.org/10.1088/1757-899x/1292/1/012006.

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Abstract The recent introduction of self-healing soft materials in robotics is a major step towards sustainable next generation robots. By manufacturing soft robots out of these smart materials, we integrate a self-healing ability and increase the physical intelligence of these systems. However, the embodied intelligence in the material level needs to be augmented by incorporating assistive mechanisms in the system level with minimized control, enabling healing of damage in different sizes and in diverse working conditions. These assistive mechanisms can provide damage detection, damage closur
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Gupta, Nitin Kumar, Gananath Doulat Thakre, and Manoj Kumar. "Dry sliding wear performance on self-healing Al6061 composites." Journal of Engineering, Design and Technology 18, no. 5 (2020): 1357–70. http://dx.doi.org/10.1108/jedt-03-2020-0078.

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Purpose The purpose of this study is to investigate the tribological performance of the developed self-healing Al6061 composite and to optimize the operating conditions for enhanced tribo-performance of the developed material. Design/methodology/approach A unique procedure has been adopted to convert the sand casted Al6061 into self-healing material by piercing a low melting point solder material with and without MoS2. Taguchi-based L9 orthogonal array has been used to optimize the number of experiments and analyze the influence of operating parameters such as speed, sliding distance and load
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Reda, Mouna A., and Samir E. Chidiac. "Performance of Capsules in Self-Healing Cementitious Material." Materials 15, no. 20 (2022): 7302. http://dx.doi.org/10.3390/ma15207302.

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Encapsulation is a very promising technique that is being explored to enhance the autonomous self-healing of cementitious materials. However, its success requires the survival of self-healing capsules during mixing and placing conditions, while still trigger the release of a healing agent upon concrete cracking. A review of the literature revealed discontinuities and inconsistencies in the design and performance evaluation of self-healing cementitious material. A finite element model was developed to study the compatibility requirements for the capsule and the cementing material properties whi
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Araya-Hermosilla, Esteban, Alice Giannetti, Guilherme Macedo R. Lima, et al. "Thermally Switchable Electrically Conductive Thermoset rGO/PK Self-Healing Composites." Polymers 13, no. 3 (2021): 339. http://dx.doi.org/10.3390/polym13030339.

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Among smart materials, self-healing is one of the most studied properties. A self-healing polymer can repair the cracks that occurred in the structure of the material. Polyketones, which are high-performance thermoplastic polymers, are a suitable material for a self-healing mechanism: a furanic pendant moiety can be introduced into the backbone and used as a diene for a temperature reversible Diels-Alder reaction with bismaleimide. The Diels-Alder adduct is formed at around 50 °C and broken at about 120 °C, giving an intrinsic, stimuli-responsive self-healing material triggered by temperature
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Susanto, S. A., D. Hardjito, and A. Antoni. "Review of autonomous self-healing cementitious material." IOP Conference Series: Earth and Environmental Science 907, no. 1 (2021): 012006. http://dx.doi.org/10.1088/1755-1315/907/1/012006.

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Abstract Concrete is a well-known versatile material, and its application is very common in most structures. Concrete performance is high in compression but low in tensile strength, this leads to the appearance of microcracks when the structure bears the designed loading. Such microcracks when ignored, leaves the structure vulnerable to attacks such as seepage of water, chlorides, and other materials that lead to a reduction in performance, and extreme cases failure of the structure. Since cracking is inevitable in concrete, new materials with self-healing properties are introduced into the mi
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Snoeck, Didier. "Superabsorbent polymers to seal and heal cracks in cementitious materials." RILEM Technical Letters 3 (November 15, 2018): 32–38. http://dx.doi.org/10.21809/rilemtechlett.2018.64.

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Superabsorbent polymers (SAPs) are promising admixtures to improve properties in cementitious materials. Not only useful to mitigate autogenous shrinkage and to increase the freeze-thaw resistance, SAP particles may enhance self-sealing and self-healing in cementitious materials. The self-sealing leads to a regain in water tightness and promoted autogenous healing may prove to be useful to limit repair works caused by concrete cracking. By providing sufficient building blocks for healing, limiting the crack width by means of synthetic microfibers and inducing water by means of SAPs, a smart ce
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Paladugu, Sri Ram Murthy, P. S. Rama Sreekanth, Santosh Kumar Sahu, et al. "A Comprehensive Review of Self-Healing Polymer, Metal, and Ceramic Matrix Composites and Their Modeling Aspects for Aerospace Applications." Materials 15, no. 23 (2022): 8521. http://dx.doi.org/10.3390/ma15238521.

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Composites can be divided into three groups based on their matrix materials, namely polymer, metal and ceramic. Composite materials fail due to micro cracks. Repairing is complex and almost impossible if cracks appear on the surface and interior, which minimizes reliability and material life. In order to save the material from failure and prolong its lifetime without compromising mechanical properties, self-healing is one of the emerging and best techniques. The studies to address the advantages and challenges of self-healing properties of different matrix materials are very limited; however,
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Zheng, Nan, Jie Liu, and Wenge Li. "TO/TMMP-TMTGE Double-Healing Composite Containing a Transesterification Reversible Matrix and Tung Oil-Loaded Microcapsules for Active Self-Healing." Polymers 11, no. 7 (2019): 1127. http://dx.doi.org/10.3390/polym11071127.

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Thermoset epoxies are widely used due to their excellent properties, but conventional epoxies require a complicated and time-consuming curing process, and they cannot self-healed, which limits their applications in self-healing materials. Extrinsic and intrinsic self-healing materials are applied in various fields due to their respective characteristics, but there is a lack of comparison between the two types of healing systems. Based on this, a thiol-epoxide click reaction catalyzed by an organic base was introduced to achieve the efficient preparation of thiol-epoxy. Furthermore, tung oil (T
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Musurmonov, Abror Alisherovich, Jahongir Olimjon o'g'li Choriyev, and Shohista Hidoyatillo qizi Ubaydullayeva. "FUTURE BUILDING MATERIAL: BIO CONCRETE SELF-HEALTHING." JOURNAL OF UNIVERSAL SCIENCE RESEARCH 1, no. 4 (2023): 6–15. https://doi.org/10.5281/zenodo.7791773.

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Crack occurrence in reinforced concrete should be minimized for both durability and economical reasons as crack repair is costly. Autogenous repair, or self-healing, of concrete would save a substantial amount of money, as manual inspection and crack repair could be minimized. Thus, a reliable self-healing mechanism for concrete would not only result in more durable structures, but would also be beneficial for the global economy. This study exploited the potential to apply calcite-precipitating bacteria as a crack-healing agent in concrete. The potential of different species to precipitate cal
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Song, Meng-Meng, Ya-Min Wang, Xiang-Yong Liang, Xiao-Qin Zhang, Sheng Zhang, and Bang-Jing Li. "Functional materials with self-healing properties: a review." Soft Matter 15, no. 33 (2019): 6615–25. http://dx.doi.org/10.1039/c9sm00948e.

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Choong, W. H., H. H. Hamidi, and K. B. Yeo. "Self-healing efficiency study of thermoset-thermoplastic polymer material." IOP Conference Series: Materials Science and Engineering 1217, no. 1 (2022): 012004. http://dx.doi.org/10.1088/1757-899x/1217/1/012004.

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Abstract This study is focused on exploring intrinsic self-healing polymer material development, where the inclusion of thermoplastic additives into thermoset polymer material as healing agents. Intrinsic self-healing thermoset-thermoplastic development is involving the material formulation of thermoset liquid resin (Poly Bisphenol A-co-epichlorohydrin) and thermoplastic (polycaprolactone). The material formulation ratio is up to 30% polycaprolactone with respect to thermoset weight. The mixture is heated and stirred to saturate at 80°C before the hardener is added. The mixture is cured and fu
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Yang, Peng, Li-Qing Wang, Xu Gao, Sai Wang, and Jun-Feng Su. "Smart Self-Healing Capability of Asphalt Material Using Bionic Microvascular Containing Oily Rejuvenator." Materials 14, no. 21 (2021): 6431. http://dx.doi.org/10.3390/ma14216431.

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It has become one of the research directions of intelligent materials for self-healing asphalt pavements to use a bionic microvascular containing oily rejuvenator. The rejuvenator in a microvascular can carry out the healing of asphalt micro-cracks, thus reducing the damage to and prolonging the life of asphalt pavement. The aim of this work was to investigate the smart self-healing capability of an asphalt/microvascular material through its microstructure and mechanical properties. Microstructure observation indicated no interface separation between the microvasculars and bitumen matrix. Micr
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Shinya, Norio. "Self Healing of Mechanical Damage in Metallic Materials." Advances in Science and Technology 54 (September 2008): 152–57. http://dx.doi.org/10.4028/www.scientific.net/ast.54.152.

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Long term service of the materials under stresses and at attacking environments causes material damages, leading to fractures. Among a lot of the material damages, creep cavity and fatigue crack are principal targets to be self healed autonomously during actual service of materials. Since the creep cavity and the fatigue crack are generally too fine to be detected during actual service and difficult to be repaired at the service sites. Recently self healing of creep cavity and fatigue crack has been developed. In the developed methods, segregation and precipitation of solute atoms were applied
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Dallaev, Rashid. "Advances in Materials with Self-Healing Properties: A Brief Review." Materials 17, no. 10 (2024): 2464. http://dx.doi.org/10.3390/ma17102464.

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The development of materials with self-healing capabilities has garnered considerable attention due to their potential to enhance the durability and longevity of various engineering and structural applications. In this review, we provide an overview of recent advances in materials with self-healing properties, encompassing polymers, ceramics, metals, and composites. We outline future research directions and potential applications of self-healing materials (SHMs) in diverse fields. This review aims to provide insights into the current state-of-the-art in SHM research and guide future efforts to
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Šovljanski, Olja, Ana Tomić, and Siniša Markov. "Relationship between Bacterial Contribution and Self-Healing Effect of Cement-Based Materials." Microorganisms 10, no. 7 (2022): 1399. http://dx.doi.org/10.3390/microorganisms10071399.

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The civil research community has been attracted to self-healing bacterial-based concrete as a potential solution in the economy 4.0 era. This concept provides more sustainable material with a longer lifetime due to the reduction of crack appearance and the need for anthropogenic impact. Regardless of the achievements in this field, the gap in the understanding of the importance of the bacterial role in self-healing concrete remains. Therefore, understanding the bacterial life cycle in the self-healing effect of cement-based materials and selecting the most important relationship between bacter
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Arya Raj, B. Bharath, T. V. Banu Prasad, D. Aakash, and S. V. Madhusudhana. "Designing a Self-healing Composite Material for Aerospace Structural Components." ACS Journal for Science and Engineering 4, no. 1 (2024): 25–38. http://dx.doi.org/10.34293/acsjse.v4i1.103.

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The aerospace industry demands materials that exhibit incomparable durability and reliability under harsh functioning conditions. Composite materials have emerged as a promising solution due to their lightweight properties and high strength-to-weight ratio. However, these materials are susceptible to damage, which can compromise structural integrity and safety. To address this challenge, the concept of self-healing composite materials has garnered significant attention. This abstract presents a comprehensive overview of the ongoing research efforts aimed at designing self-healing composite mat
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Saito, Rikuto, and Shingo Tamesue. "Development of a Self-Healing Gel with Self-Healing Kinetics That Can Be Controlled by Heat." Gels 10, no. 6 (2024): 410. http://dx.doi.org/10.3390/gels10060410.

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A self-healing gel with self-healing kinetics that can be regulated by heat is developed. The gel is composed of a polymer having benzophenone (BP) substituents, which are cross-linked with a main alkyl chain via ester bonds, titanium chloride, and zinc. This gel material shows a self-healing property at room temperature. Also, its self-healing behavior can be accelerated by heating the gel. This gel having self-healing kinetics that can be regulated by heat is favorable for practical use. When we want to use a self-healing property as a stop-gap measure, a rapid self-healing property is deman
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Tong, Xiao Mei, Min Zhang, and Ming Zheng Yang. "Study on the Curing Kinetics of Epoxy Resin in Self-Healing Microcapsules with Different Shell Material." Advanced Materials Research 306-307 (August 2011): 658–62. http://dx.doi.org/10.4028/www.scientific.net/amr.306-307.658.

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The curing process of self-healing microcapsules containing epoxy resin was studied with different shell material such as Poly (urea-formaldehyde), poly (melamine-urea-formaldehyde), Poly (urea-formaldehyde) modified by polyvinyl alcohol, and Poly (urea-formaldehyde) modified by phenol, respectively. The activation energy (ΔE) and the reaction order (n) have been obtained based on Kissinger method, Crane theory and Arrhenius equation. The results showed that: the curing process of epoxy resin as core material in self-healing microcapsules becomes more difficult compared with non-microencapsula
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Wang, Jian, Maoan Wang, Shuwen Xu, and Fenglei Zhang. "Preparation and Performance Study of Ultraviolet-Responsive Self-Healing Epoxy Asphalt." Materials 17, no. 17 (2024): 4403. http://dx.doi.org/10.3390/ma17174403.

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In this study, a self-healing epoxy asphalt material was developed by incorporating coumarin groups. This material achieved microcrack self-repair under UV irradiation at 50 °C. Fluorescence microscopy observations and mechanical performance tests demonstrated significant advantages in crack filling and mechanical property recovery after repair, with the fracture toughness of the repaired epoxy asphalt reaching 69% of that in its original state. Furthermore, the synergistic effect of temperature and UV irradiation in the self-healing process enhanced the material’s durability and service life.
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Janszen, Gerardus, Gabriele Capezzera, Antonio Grande, and Luca Di Landro. "Mitigation of Impact Damage with Self-Healing and Anti-Sloshing Materials in Aerospace Fuel Tanks." Aerospace 6, no. 2 (2019): 14. http://dx.doi.org/10.3390/aerospace6020014.

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In this study, self-healing and anti-sloshing materials are investigated for mitigation of impact-induced damage. The integration of these systems, for the prevention of fire or explosion due to impact or bullet damage, may significantly improve the safety of aerospace fuel tanks. Leakage, after bullet penetration or debris impact, may be prevented or at least limited if the container’s walls are made by materials with self-healing capabilities. The aim of this work is to define the self-healing behavior of the EMAA ionomer (poly-Ethylene-MethAcrylic Acid copolymer), with reference to the ener
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Jaf, Dilshad Kakasor, and Payam Ismael Abdulrahman. "A Review on Self-Healing Concrete." Advanced Materials Research 1175 (February 20, 2023): 139–48. http://dx.doi.org/10.4028/p-52lej6.

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Concrete is one of the most used construction materials worldwide. It is known to be a strong and durable material at a reasonable price. The most well-known problem in concrete is the cracks, which affect the service life of the concrete structures and leads to consumes higher costs through maintenance. Cracks allow penetrating any ions into the concrete resulting in other big problems such as corrosion of steel reinforcement, sulphate attack, carbonation, alkali-aggregate reaction, etc. It is impossible to prevent the formation of cracks, therefore they can be controlled or repaired using a
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Liu, Bo, Mingli Wu, Wei Du, et al. "The Application of Self-Healing Microcapsule Technology in the Field of Cement-Based Materials: A Review and Prospect." Polymers 15, no. 12 (2023): 2718. http://dx.doi.org/10.3390/polym15122718.

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This review provides an overview of microcapsule self-healing technology and its application in the field of cement-based materials, as well as future prospects. The presence of cracks and damage in cement-based structures during service has a significant impact on their lifespan and safety performance. Microcapsule self-healing technology shows promise in achieving self-healing by encapsulating healing agents within microcapsules, which are released upon damage to the cement-based material. The review starts by explaining the fundamental principles of microcapsule self-healing technology and
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Richardson, Alan Elliott, Brabha Nagaratnam, Kathryn Ann Coventry, Dominic Brandy, and Leon Amess. "CRACK HEALING IN CEMENTITIOUS MATERIALS INCLUDING TESTS METHODS." Journal of Green Building 15, no. 1 (2020): 37–54. http://dx.doi.org/10.3992/1943-4618.15.1.37.

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ABSTRACT If concrete is crack free, deleterious substances can be avoided entering the body of the material, that may corrode the rebar or encourage freeze/thaw damage. This paper examines a self healing system of cementitious materials. Microbial induced calcite precipitation was used to heal cracks in concrete with calcite using bacillus bacteria in alkaline conditions to generate a calcite filling material. Self healing of cracked prisms was determined using a water flow and absorption test and the results were expressed to record the healing as a percentage. The findings of the tests showe
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Ma, Yan Miao, Li Zhang, and Guang Yuan Nie. "Study on Effects of the Nano Reinforcing Material on the Mechanical Properties of Self-Healing Composites." Applied Mechanics and Materials 487 (January 2014): 20–24. http://dx.doi.org/10.4028/www.scientific.net/amm.487.20.

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In order to improve the mechanical properties of the glass fiber reinforced nylon 6 composites (GFRPP6/MCES) with microcapsules, different ratios of nanoreinforcing materials are added into this self-healing composite material which is used in gears, and how the nanoreinforcing material affects the mechanical properties of the self-healing composite is studied by testing its tensile property, bending property, impact strength and hardness. The results show that the appropriate amount of nanoreinforcing material can improve the mechanical properties of the self-healing composite. Whats more, wh
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Ciarella, Simone, and Wouter Ellenbroek. "Swap-Driven Self-Adhesion and Healing of Vitrimers." Coatings 9, no. 2 (2019): 114. http://dx.doi.org/10.3390/coatings9020114.

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Vitrimers are covalent network materials, comparable in structure to classical thermosets. Unlike normal thermosets, they possess a chemical bond swap mechanism that makes their structure dynamic and suitable for activated welding and even autonomous self-healing. The central question in designing such materials is the trade-off between autonomy and material stability: the swap mechanism facilitates the healing, but it also facilitates creep, which makes the perfectly stable self-healing solid a hard goal to reach. Here, we address this question for the case of self-healing vitrimers made from
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