Multifunctional Properties of Metal Fibers Reinforced Polymer Composites – A Review

Publish Year: 1403
نوع سند: مقاله ژورنالی
زبان: English
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JR_MACS-11-1_015

تاریخ نمایه سازی: 28 بهمن 1402

Abstract:

The advent of metal fibers has led to the development of different fiber-reinforced composite systems via different manufacturing methodologies. Utilizing metal fibers as a single reinforcement can create completely new materials with unique physical structures and a synergistic effect on many properties. Steel, aluminum, titanium, and copper are examples of metal fibers used in industries such as aerospace, marine, automotive, and structural applications. Moreover, the possibility of combining various material systems (metal fibers - traditional fibers) to create hybrid composites allows for unlimited variation in cost and performance. In general, metals are available in the form of sheets as metal fiber metal laminate (FML), or as metal fibers in the form of fine wires, and mesh fibers. Investigation of fine wires and mesh fibers is still limited in the literature compared to the sheet metal form. Therefore, this work focuses on reviewing the processing techniques, properties, and applications of fine wires and mesh metals. In this paper, the application, methods of production, and several types and forms of metal fiber were described in detail. Moreover, the properties and applications of metal fibers reinforced polymer composite materials have been reviewed. The application of metalized fibers and the hybridization of metal fibers with synthetic and natural fibers reinforced polymer composites are also reviewed. To conclude, the potential of fine wires and mesh fiber forms, which are partially explored, seems to have excellent mechanical, thermal, and other material properties. Steel fiber is the most common metal fiber used due to its cost-effectiveness, availability in different forms, and high performance despite its heavy weight.

Authors

Bayan Fayzulla

Department of Mechanical and Metallurgy, Erbil Technology College, Erbil Polytechnic University, Erbil, Iraq

Mehmet Eroglu

Departments of Metallurgical and Materials Engineering, Faculty of Engineering, Firat University, Elazig, Turkey

Ibrahim Qader

Department of Physics, College of Science, University of Raparin, Sulaymaniyah, Iraq

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  • Kaw A. K., Mechanics of composite materials, CRC Press: Boca ...
  • Rajak D. K., Pagar D. D., Menezes P. L., Linul ...
  • Guy D., Lestriez B., Guyomard D., ۲۰۰۴. New composite electrode ...
  • Verma D., Gope P., Maheshwari M., Sharma R., ۲۰۱۲. Bagasse ...
  • Mosleh Y., Clemens D., Gorbatikh L., Verpoest I., van Vuure ...
  • Rehra J., Hannemann B., Schmeer S., Hausmann J., Breuer U. ...
  • Swolfs Y., De Cuyper P., Callens M. G., Verpoest I., ...
  • Durai Prabhakaran R., Andersen T. L., Bech J. I., Lilholt ...
  • Srivatsan T., Lam P., Krause J., ۱۹۹۹. The impact toughness ...
  • Swolfs Y., Verpoest I., Gorbatikh L., ۲۰۱۹. Recent advances in ...
  • Choudary M. V., Nagaraja A., Sai K. O. C., Balasubramanian ...
  • Gagné M., Therriault D., ۲۰۱۴. Lightning strike protection of composites. ...
  • Sakthivel M., Vijayakumar S., ۲۰۱۷. Influence of stainless-steel wire mesh ...
  • Faes J. C., Rezaei A., Van Paepegem W., Degrieck J., ...
  • Wan Y., Diao C., Yang B., Zhang L., Chen S., ...
  • Ashby M., Blunt F., Bannister M., ۱۹۸۹. Flow characteristics of ...
  • Wetherhold R. C., Bös J., ۲۰۰۰. Ductile reinforcements for enhancing ...
  • Ibrahim A. I., Wu G., Sun Z.-Y., ۲۰۱۷. Experimental study ...
  • Tran T. T., Pham T. M., Hao H., ۲۰۲۰. Effect ...
  • Khan M., Cao M., Ali M., ۲۰۱۸. Effect of basalt ...
  • Bastani A., Adesina A., Das S., Lawn D., Structures Congress ...
  • Vleurinck J., Baerdemaeker J. D., ۲۰۱۷. An introduction to Metal ...
  • Baerdemaeker J. D., Jos Vleurinck, ۲۰۱۸. An Overview of Metal ...
  • Boccaccini A. R., Ovenstone J., Trusty P. A., ۱۹۹۷. Fabrication ...
  • Bigg D. M., ۱۹۷۹. Mechanical, thermal, and electrical properties of ...
  • Weeton, John W., ۱۹۶۶. Fiber-metal composite materials. Vol. ۳۵۳۰. NASA ...
  • Ahmed, T., ۲۰۰۹. Hybrid composite structures: Multifunctionality through metal fibres, ...
  • Liu Y., Luo Y., Chu G.-W., Luo J.-Z., Arowo M., ...
  • Breuer U., Schmeer S., Eberth U., ۲۰۱۳. Carbon and metal ...
  • Karakuzu R., Aslan Z., Okutan B., ۲۰۰۴. The effect of ...
  • Ferrante L., Sarasini F., Tirillò J., Lampani L., Valente T., ...
  • Eskind, L.G., ۲۰۰۱. Multilayered flexible fire-retardant isolative sheets comprising laminates ...
  • Bieniaś J., Jakubczak P., Surowska B., Dragan K., ۲۰۱۵. Low-energy ...
  • Song S., Byun Y., Ku T., Song W., Kim J., ...
  • Jalali Aghchai A., Khatami S., ۲۰۱۸. Experimental and numerical formability ...
  • Hariharan E., Santhanakrishnan R., ۲۰۱۶. Experimental analysis of fiber metal ...
  • Mottaghian F., Yaghoobi H., Taheri F., ۲۰۲۰. Numerical and experimental ...
  • Bernhardt S., Ramulu M., Kobayashi A., ۲۰۰۷. Low-Velocity Impact Response ...
  • Nakatani H., Kosaka T., Osaka K., Sawada Y., ۲۰۱۱. Damage ...
  • Ali A., Pan L., Duan L., Zheng Z., Sapkota B., ...
  • Cortes P., Cantwell W., ۲۰۰۵. The fracture properties of a ...
  • Park S. Y., Choi W. J., ۲۰۱۹. The guidelines of ...
  • Botelho E., Campos A., De Barros E., Pardini L., Rezende ...
  • Botelho E. C., Silva R. A., Pardini L. C., Rezende ...
  • Camanho P., Hallett S., Composite joints and connections: principles, modelling ...
  • Arpatappeh F. A., Azghan M. A., Eslami-Farsani R., ۲۰۲۰. The ...
  • Uzay C., Bayramoglu M., Boztepe M., Necdet G., Proceedings of ...
  • Boztepe M. H., Bayramoğlu M., Çağrı U., Geren N., ۲۰۱۷. ...
  • Ahmed T. J., Bersee H. E., Beukers A., ۲۰۰۷. Low ...
  • Prakash V. A., Jaisingh S. J., ۲۰۱۸. Mechanical strength behaviour ...
  • Sabuncuoglu B., Lomov S. V., ۲۰۲۰. Micro-scale numerical study of ...
  • Sakthivel M., Vijayakumar S., Ramnath B. V., ۲۰۱۸. Investigation on ...
  • Tan S. T., Zhang M. Q., Rong M. Z., Zeng ...
  • Karunagaran N., Rajadurai A., ۲۰۱۶. Effect of surface treatment on ...
  • Callens M. G., Gorbatikh L., Bertels E., Goderis B., Smet ...
  • Karunagaran N., Bharathiraja G., Muniappan A., Yoganandam K., ۲۰۲۰. Energy ...
  • Moncunill de Ferran E., Harris B., ۱۹۷۰. Compression strength of ...
  • Callens M., Gorbatikh L., Verpoest I., ۲۰۱۴. Ductile steel fibre ...
  • Satish K., Siddeswarappa B., Kaleemulla K. M., ۲۰۱۰. Characterization of ...
  • Samanci A., ۲۰۱۲. Fracture behavior of woven steel fiber reinforced ...
  • Karakuzu R., Ataş C., Akbulut H., ۲۰۰۱, Elastic–plastic behavior of ...
  • Vinayagamoorthy R., Karthikeyan S., Prem Bhargav R., Rajivalochan T., ۲۰۱۵. ...
  • Schmeer S., Steeg M., Maier M., Mitschang P., ۲۰۰۹. Metal ...
  • Callens M. G., Gorbatikh L., Verpoest I., Thomsen O., Berggreen ...
  • Pazhanivel K., Bhaskar G., Elayaperumal A., ۲۰۱۴. Significance of stainless ...
  • Shyr T.-W., Shie J.-W., ۲۰۱۲. Electromagnetic shielding mechanisms using soft ...
  • Kim S., Sioutas C., Chang M., ۲۰۰۰. Electrostatic enhancement of ...
  • Giltrow J., Lancaster J., ۱۹۷۰. The role of the counterface ...
  • Lancaster J., ۱۹۷۲. Lubrication of carbon fibre-reinforced polymers: Part II—Organic ...
  • Giltrow J., ۱۹۷۳. The influence of temperature on the wear ...
  • Yanar H., Purcek G., Ayar H., ۲۰۲۰. Effect of steel ...
  • Manoharan S., Vijay R., Kchaou M., ۲۰۱۹. Investigation on tribological ...
  • Lee S.-C., Cunnington G. R., ۲۰۰۰. Conduction and radiation heat ...
  • Zhao C., Wu Z., ۲۰۱۱. Heat transfer enhancement of high ...
  • Krishnasamy P., Rajamurugan G., Thirumurugan M., ۲۰۲۰, Performance of fiber ...
  • Li W., Qu Z., ۲۰۱۵. Experimental study of effective thermal ...
  • Li W., Qu Z., Zhang B., Zhao K., Tao W., ...
  • Ucsular I., Zor M., Sayman O., ۲۰۱۲. The influence of ...
  • Borazan İ., Üzümcü M. B., Kaplan M., ۲۰۱۹. Utilization of ...
  • Truong G. T., Van Tran H., Choi K.-K., ۲۰۱۹. Tensile ...
  • Hannemann B., Backe S., Schmeer S., Balle F., Breuer U., ...
  • Hasselbruch H., Von Hehl A., Zoch H.-W., ۲۰۱۵. Properties and ...
  • Kühn F., Rehra J., May D., Schmeer S., Mitschang P., ...
  • Hannemann B., Backe S., Schmeer S., Balle F., Breuer U., ...
  • Quan D., Flynn S., Artuso M., Murphy N., Rouge C., ...
  • Hannemann B., Backe S., Schmeer S., Balle F., Breuer U. ...
  • Backe S., Balle F., Hannemann B., Schmeer S., Breuer U., ...
  • Jang H., Ko K., Kim S., Basch R., Fash J., ...
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