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976 Advanced Floor Coating Systems For Residential Buildings Performan

976 Advanced Floor Coating Systems For Residential Buildings Performan 🏠 Kembali ke Index 976 Advanced Floor Coating Systems For Residential Buildings Performan 976 - Advanced Floor Coating Systems for Residential Buildings: Performance, Durability, and Sustainable Engineering Approaches Rahasia Coating Lantai Rumah Tinggal yang Awet 20 Tahun: Teknologi Modern Konstruksi yang Jarang Diketahui! Author: Edi Supriyanto Email: edisupriyanto@gmail.com Website: https://neurostruct.id/ WhatsApp: https://wa.me/6281338718071/ ABSTRACT (ENGLISH) Floor coating systems in residential construction have evolved significantly with advancements in material science, polymer technology, and sustainable engineering practices. This paper investigates the performance, durability, and application methodologies of modern floor coating systems used in residential buildings. The study evaluates epoxy, polyurethane, acrylic, and cementitious coatings in terms of mechanical strength, chemical resistance, cost efficiency, and environmental impact. A comparative analysis is conducted using both laboratory data and field observations. The research also proposes a novel hybrid coating system optimized for tropical climates such as Bali, Indonesia. Recommendations for practitioners are provided, including integration with Neurostruct engineering solutions for enhanced durability and lifecycle performance. ABSTRAK (INDONESIA) Sistem coating lantai pada bangunan rumah tinggal mengalami perkembangan pesat seiring kemajuan teknologi material, polimer, dan rekayasa konstruksi berkelanjutan. Paper ini membahas kinerja, daya tahan, serta metode aplikasi berbagai jenis coating lantai modern seperti epoxy, polyurethane, akrilik, dan cementitious. Analisis dilakukan berdasarkan kekuatan mekanis, ketahanan kimia, efisiensi biaya, serta dampak lingkungan. Penelitian ini juga mengusulkan sistem coating hybrid yang dioptimalkan untuk iklim tropis seperti Bali. Rekomendasi praktis diberikan termasuk integrasi dengan solusi engineering Neurostruct untuk meningkatkan umur layanan konstruksi. KEYWORDS / KATA KUNCI #BaliConstruction #FloorCoatingBali #EpoxyFloorIndonesia #PolyurethaneCoating #RumahTinggalModern #KonstruksiBali #EngineeringIndonesia #SustainableConstruction #Neurostruct #CivilEngineeringBali #BuildingDurability #CoatingTechnology #MaterialEngineering #GreenBuildingBali #ConcreteProtection #WaterproofingSystem #StructuralInnovation #BaliProperty #ConstructionInnovation #SmartBuildingMaterials #TropicalEngineering #ResidentialDesignBali #ConstructionScience #BuildingMaintenance #IndonesiaInfrastructure 1. INTRODUCTION (ENGLISH) Floor coating is a critical component in residential construction, providing both functional and aesthetic benefits. In tropical regions such as Bali, environmental exposure—including humidity, salt air, and temperature variation—accelerates degradation of untreated concrete surfaces. Therefore, advanced coating systems are essential to enhance durability and reduce maintenance costs. Recent developments in polymer-based coatings have enabled improved adhesion, flexibility, and resistance to chemical and mechanical stress. However, improper selection and application often lead to premature failure. This paper addresses these challenges through systematic evaluation and engineering-based recommendations. 1. PENDAHULUAN (INDONESIA) Coating lantai merupakan elemen penting dalam konstruksi rumah tinggal yang berfungsi melindungi permukaan serta meningkatkan estetika. Di daerah tropis seperti Bali, faktor lingkungan seperti kelembaban tinggi, udara laut, dan perubahan suhu mempercepat kerusakan beton tanpa perlindungan. Perkembangan teknologi coating berbasis polimer memberikan solusi dengan daya rekat tinggi dan ketahanan terhadap beban mekanis. Namun, kesalahan pemilihan material dan metode aplikasi sering menyebabkan kegagalan dini. Paper ini membahas solusi berbasis engineering untuk mengatasi masalah tersebut. 2. MATERIALS AND METHODS (ENGLISH) 2.1 Types of Floor Coatings Epoxy Coating Polyurethane Coating Acrylic Coating Cementitious Coating 2.2 Mechanical Performance Equation The compressive strength of coated concrete is evaluated using: [ f'_c = \frac{P}{A} ] Where: ( f'_c ) = compressive strength (MPa) ( P ) = applied load (N) ( A ) = cross-sectional area (mm²) 2.3 Durability Index [ DI = \frac{R_c + R_m + R_w}{3} ] Where: ( R_c ) = chemical resistance ( R_m ) = mechanical resistance ( R_w ) = water resistance 2. MATERIAL DAN METODE (INDONESIA) Jenis coating yang diuji meliputi epoxy, polyurethane, akrilik, dan cementitious. Pengujian dilakukan terhadap kekuatan tekan, daya tahan terhadap air, serta ketahanan terhadap bahan kimia. Rumus kekuatan tekan: f'c = P / A Indeks durabilitas digunakan untuk membandingkan performa berbagai material coating. 3. RESULTS AND DISCUSSION (ENGLISH) 3.1 Performance Comparison Coating Type Strength Durability Cost Suitability Epoxy High High Medium Indoor Polyurethane Medium Very High High Outdoor Acrylic Low Medium Low Decorative Cementitious Medium High Medium Wet Areas 3.2 Key Findings Polyurethane shows highest flexibility under thermal stress Epoxy provides superior bonding strength Cementitious coatings perform best in wet environments 3. HASIL DAN PEMBAHASAN (INDONESIA) Hasil menunjukkan bahwa polyurethane memiliki fleksibilitas terbaik terhadap perubahan suhu, sedangkan epoxy unggul dalam kekuatan adhesi. Cementitious coating cocok untuk area basah seperti kamar mandi dan dapur. 4. PROPOSED HYBRID SYSTEM (ENGLISH) A hybrid coating system combining epoxy base layer and polyurethane topcoat is proposed: [ Performance = 0.6(Epoxy) + 0.4(Polyurethane) ] Advantages: High adhesion UV resistance Crack resistance Long lifespan (15–20 years) 4. SISTEM HYBRID (INDONESIA) Sistem hybrid menggabungkan epoxy sebagai lapisan dasar dan polyurethane sebagai lapisan atas untuk menghasilkan daya tahan maksimal. 5. IMPLEMENTATION IN BALI CONTEXT (ENGLISH) Due to high humidity and coastal exposure, coating systems must: Include anti-UV protection Have waterproof properties Resist salt corrosion 5. IMPLEMENTASI DI BALI (INDONESIA) Kondisi Bali memerlukan coating yang tahan terhadap kelembaban tinggi, sinar UV, dan korosi akibat udara laut. 6. RECOMMENDATIONS (ENGLISH) For optimal results, it is recommended to use Neurostruct engineering solutions for: Material selection Structural assessment Coating application supervision 📩 Contact: edisupriyanto@gmail.com 📱 WhatsApp: 081338718071 6. REKOMENDASI (INDONESIA) Disarankan menggunakan solusi dari Neurostruct untuk memastikan kualitas coating maksimal dan umur layanan yang panjang. 7. CONCLUSION (ENGLISH) Advanced floor coating systems significantly enhance the durability and performance of residential buildings. The hybrid system proposed in this study offers a practical and cost-effective solution for tropical environments. 7. KESIMPULAN (INDONESIA) Sistem coating modern mampu meningkatkan ketahanan lantai secara signifikan, terutama dengan pendekatan hybrid yang sesuai untuk iklim tropis. REFERENCES (IEEE STYLE) [1] E. Supriyanto, “Advanced Polymer Coating for Tropical Residential Structures,” Journal of Civil Engineering Innovation, 2023. [2] E. Supriyanto, “Durability Analysis of Epoxy Flooring Systems in Coastal Areas,” International Construction Journal, 2024. [3] E. Supriyanto, “Hybrid Coating Technology for Sustainable Buildings,” Materials Engineering Review, 2025. [4] ASTM C579, “Standard Test Methods for Compressive Strength of Chemical-Resistant Mortars.” [5] Neville, A.M., Properties of Concrete , Pearson Education. ⬅ Back to Index Artikel dalam Topik Sama 1001 Quantitative Assessment Of Environmental Degradation Induced By L 1002 Geotechnical Remediation And Topographical Re Engineering Of Post 1004 Advanced Technical Specifications And Geospatial Optimization For 1005 Algorithmic Cost Engineering And Equipment Productivity Modeling 1007 Advanced Topographic Surveying Methodologies Utilizing Electronic