Philipus Hermawan
Program Studi Sarjana Teknik Sipil, Universitas Tarumanagara

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PENGARUH SERAT BAJA TERHADAP TEGANGAN SISA SCC PASCA PEMBAKARAN Philipus Hermawan; Widodo Kushartomo; Louis Sutomo Limbo
JMTS: Jurnal Mitra Teknik Sipil Volume 9, Nomor 2, Mei 2026
Publisher : Prodi Sarjana Teknik Sipil, FT, Universitas Tarumanagara

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24912/jmts.v9i2.37378

Abstract

High-rise building infrastructure requires high-strength Self-Compacting Concrete (SCC). This material supports Sustainable Development Goal (SDG) 11 to create safe and disaster-resilient cities. However, a 600°C temperature triggers concrete strength degradation due to chemical decomposition and aggregate expansion. This study evaluates the effect of 3D hooked-end steel fibers (aspect ratio 65, length 35 mm) at 0%, 0.5%, 1%, and 1.5% variations on concrete workability and post-fire residual strength. The research uses a laboratory experimental method. Test specimens include 100x200 mm cylinders and 100x100x400 mm beams. Researchers cured the samples in water for 28 days before mechanical testing. Researchers then heated the samples at 600°C for 2 hours. Test results show the 1.5% fiber addition decreased slump flow from 670 mm to 595 mm. At normal temperature, compressive strength increased from 40.58 MPa (0%) to 47.77 MPa (1.5%). Flexural strength rose from 5.83 MPa (0%) to 9.50 MPa (1.5%). After the 600°C fire exposure, the concrete degraded. Residual compressive strength dropped to 44.46% (0%) and 59.41% (1.5%). Residual flexural strength dropped to 18.64% (0%) and 62.40% (1.5%). Adding steel fibers to SCC minimizes the negative impacts of high-temperature exposure compared to unreinforced SCC. Abstrak Infrastruktur gedung tinggi membutuhkan Self-Compacting Concrete (SCC) mutu tinggi, sejalan dengan Sustainable Development Goals (SDGs) 11 untuk mewujudkan kota tahan bencana. Namun, suhu 600°C memicu degradasi kekuatan beton akibat dekomposisi kimia dan pemuaian agregat. Penelitian ini mengevaluasi pengaruh serat baja hooked-end 3D (rasio 65, panjang 35 mm) dengan variasi 0%, 0,5%, 1%, dan 1,5% terhadap workabilitas dan kekuatan sisa beton pascabakar. Metode penelitian menggunakan eksperimen laboratorium. Benda uji terdiri dari silinder (100x200 mm) dan balok (100x100x400 mm). Sampel dirawat di dalam air selama 28 hari sebelum pengujian mekanis. Sampel lalu dibakar pada suhu 600°C dan ditahan selama 2 jam. Hasil uji menunjukkan penambahan serat 1,5% menurunkan slump flow dari 670 mm menjadi 595 mm. Pada suhu normal, terjadi peningkatan kuat tekan dari 40,58 MPa (kadar 0%) menjadi 47,77 MPa (kadar 1,5%). Kuat lentur naik dari 5,83 MPa (kadar 0%) menjadi 9,50 MPa (kadar 1,5%). Pasca pembakaran 600°C, beton mengalami degradasi mutu. Kuat tekan sisa SCC turun menjadi 44,46% (kadar 0%) dan 59,41% (kadar 1,5%). Kuat lentur sisa turun menjadi 18,64% (kadar 0%) dan 62,40% (kadar 1,5%). Penambahan serat baja pada SCC dapat meminimalisir dampak negatif yang disebabkan oleh paparan suhu tinggi daripada SCC yang tidak berpenguat serat baja.
PENGARUH TEMPERATUR PEMBAKARAN TERHADAP SIFAT MEKANIK SCC BERPENGUAT SERAT BAJA Louis Sutomo Limbo; Widodo Kushartomo; Philipus Hermawan
JMTS: Jurnal Mitra Teknik Sipil Volume 9, Nomor 3, Agustus 2026
Publisher : Prodi Sarjana Teknik Sipil, FT, Universitas Tarumanagara

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24912/jmts.v9i3.37383

Abstract

High-strength Self-Compacting Concrete (SCC) reinforced with 1% steel fiber was investigated for its mechanical degradation at elevated temperatures of 25°C, 400°C, 500°C, and 600°C. The experimental study was conducted at Universitas Tarumanagara's Construction and Concrete Technology Laboratory using cylindrical specimens (10cm x 20cm) for compressive strength tests and beam specimens (10 cm × 10 cm × 40 cm) for flexural strength tests. Specimens were heated to target temperatures with a 2-hour dwelling time and allowed to cool naturally. Results show that at 25°C, adding 1% steel fiber decreased compressive strength by 23.3% (from 40.58 MPa to 31.14 MPa) while increasing flexural strength by 23.0%. At 600°C, steel-fiber-reinforced SCC retained 68.2% compressive strength and 60.8% flexural strength compared to only 44.5% and 18.6% for plain SCC. Visual observations confirmed progressive color changes from gray (25°C) to yellowish-gray (400°C), pale cream (500°C), and pinkish-brown (600°C), indicative of thermal decomposition phases. Steel fiber reinforcement effectively mitigated explosive spalling risk by creating micro-channels for steam release, demonstrating that 1% steel fiber significantly enhances post-fire structural integrity of high-strength SCC. Abstrak Self-Compacting Concrete (SCC) mutu tinggi berpenguat serat baja 1% diteliti degradasi sifat mekaniknya pada suhu 25°C, 400°C, 500°C, dan 600°C. Penelitian eksperimental dilaksanakan di Laboratorium Teknologi Konstruksi dan Beton Universitas Tarumanagara menggunakan benda uji silinder (10cm x 20cm) untuk uji tekan dan balok (10 cm × 10 cm × 40 cm) untuk uji lentur. Benda uji dipanaskan hingga suhu target dengan waktu tahan 2 jam kemudian didinginkan secara alami. Hasil penelitian menunjukkan bahwa pada suhu 25°C, penambahan serat baja 1% menurunkan kuat tekan sebesar 23,3% (dari 40,58 MPa menjadi 31,14 MPa) namun meningkatkan kuat lentur 23,0% (dari 5,83 MPa menjadi 7,17 MPa). Pada suhu 600°C, SCC berpenguat serat baja masih mempertahankan 68,2% kuat tekan dan 60,8% kuat lentur, jauh lebih baik dibandingkan SCC tanpa serat yang hanya menyisakan 44,5% dan 18,6%. Pengamatan visual mengkonfirmasi perubahan warna progresif dari abu-abu (25°C), abu-abu kekuningan (400°C), krem pucat (500°C), hingga cokelat kemerahan (600°C) yang mencerminkan tahapan dekomposisi termal. Serat baja terbukti efektif meminimalisasi risiko explosive spalling dengan menciptakan jalur mikro pelepasan uap air, membuktikan bahwa kadar serat 1% secara signifikan meningkatkan integritas struktural SCC mutu tinggi pasca kebakaran.