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Enhancing Machine Tool Housing Design through Ultra High-Performance Concrete

Khayriniso GanievaJizzakh State Pedagogical UniversityFiruza NarzullaevaBukhara State UniversityMukhayyo DavlatovaBukhara State UniversityDilnoza ZiyoevaBukhara State Medical InstituteAlisher SaidovBukhara Engineering Technological Institute
ABI

Annotatsiya

Machine tool housing design is pivotal in optimizing manufacturing processes, focusing on functionality, ease of assembly, and alignment precision. Current materials face challenges in static, dynamic, and thermal behaviors, impacting machining quality. The properties of ultra high-performance concrete (UHPC) such as high strength, low porosity, and corrosion resistance make it ideal for machine tool applications, promising increased precision and efficiency while reducing material costs and labor. Its recyclability adds environmental benefits. Incorporating UHPC in machine tool structures, including hybrid materials like Carbon Fiber Reinforced Plastic (CFRP), achieves superior static, dynamic, and thermal stability. Experimental results demonstrate UHPC’s compressive strengths (17,000-22,000 psi), surpassing conventional materials, and its ability to enhance machine tool performance and sustainability. This research highlights UHPC as a transformative material for resilient, precise, and eco-friendly manufacturing solutions.

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Koʻrsatkichlar — AkademScholar · Tez orada