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Journal : Urecol Journal. Part E: Engineering

Durability of Asphalt Mixture AC-WC Using Latex Based on the Test Method of SNI 6753:2015 Sri Sunarjono; Bima Hardi Anto; Nurul Hidayati; Senja Rum Harnaeni
Urecol Journal. Part E: Engineering Vol. 1 No. 2 (2021): August-Dec
Publisher : Konsorsium LPPM Perguruan Tinggi Muhammadiyah 'Aisyiyah (PTMA) Koordinator Wilayah Jawa Tengah - DIY

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (194.467 KB) | DOI: 10.53017/uje.105

Abstract

This paper reports the results of an investigation of the durability of the AC-WC mixture using latex based on the SNI 6753:2015 test method. This method uses a test object with a low density (7% air void), while another method, namely Bina Marga (BM) 2018 which is more often applied in the field, uses a normal density test object (air void 4%). The product of these two different methods needs to be evaluated. On the other hand, the performance of latex on the durability of the AC-WC mixture at low density also needs to be studied. The main objective of the research is to study the durability of the AC-WC mixture using latex based on the SNI test method, compare it with the BM method, and at the same time evaluate these two test methods. The research method used is to conduct durability tests in the laboratory on test objects with low and normal densities. Two types of specimens were prepared, namely without and with latex, both were tested in conditions without and with immersion. The properties of the test object were evaluated using Indirect Tensile Strength (ITS). The test results were studied and compared, including to evaluate the two test methods. The results of the study concluded that the AC-WC mixture at low density (7% air void) had high durability with an IKS value above 90%. The value of the durability of the mixture is higher when using latex and at normal density (4% air void). The SNI 6753:2015 test method that uses 7% air void specimens is more recommended for evaluating the durability of asphalt mixtures.
Implementation of Palm Oil Waste Nano Technology to Increase the Durability of Road Pavement Materials: Proposed Research Roadmap Sri Sunarjono; Ngafwan
Urecol Journal. Part E: Engineering Vol. 2 No. 1 (2022): January-June
Publisher : Konsorsium LPPM Perguruan Tinggi Muhammadiyah 'Aisyiyah (PTMA) Koordinator Wilayah Jawa Tengah - DIY

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (573.434 KB) | DOI: 10.53017/uje.138

Abstract

Many road pavements using asphalt mixtures in Indonesia are found to be not durable, especially heavy traffic roads. Even road damage often occurs early before the service life is reached. Many efforts have been made to improve the strength and durability of the mixture, but have not been effectively. For example, the use of fillers can increase the strength and durability of the mixture significantly, but its performance at low temperatures has an impact on the risk of hardening and cracking. The research objective is to propose the idea of implementing nanotechnology for palm oil waste materials to increase the durability of road pavement materials based on the research roadmap developed. The method used is through five approaches, namely: (i) review of research results on the durability of road pavement materials, (ii) review of research results on the implementation of nanotechnology in road pavement materials, (iii) research gaps, (iv) research ideas, and, (v) proposed research roadmap. A research roadmap for the implementation of nanotechnology to improve the durability of road pavement materials has been prepared. The substance of the research roadmap proposes three ideas, namely maximizing the function of nanomaterials as: (i) anti-aging agent, (ii) protecting water infiltration into the body of the asphalt mixture, and (iii) bonding agent between asphalt-aggregate.
Durability of Asphalt Mixture AC-WC Using Latex Based on the Test Method of SNI 6753:2015 Sri Sunarjono; Bima Hardi Anto; Nurul Hidayati; Senja Rum Harnaeni
Urecol Journal. Part E: Engineering Vol. 1 No. 2 (2021): August-Dec
Publisher : Konsorsium LPPM Perguruan Tinggi Muhammadiyah 'Aisyiyah (PTMA) Koordinator Wilayah Jawa Tengah - DIY

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.53017/uje.105

Abstract

This paper reports the results of an investigation of the durability of the AC-WC mixture using latex based on the SNI 6753:2015 test method. This method uses a test object with a low density (7% air void), while another method, namely Bina Marga (BM) 2018 which is more often applied in the field, uses a normal density test object (air void 4%). The product of these two different methods needs to be evaluated. On the other hand, the performance of latex on the durability of the AC-WC mixture at low density also needs to be studied. The main objective of the research is to study the durability of the AC-WC mixture using latex based on the SNI test method, compare it with the BM method, and at the same time evaluate these two test methods. The research method used is to conduct durability tests in the laboratory on test objects with low and normal densities. Two types of specimens were prepared, namely without and with latex, both were tested in conditions without and with immersion. The properties of the test object were evaluated using Indirect Tensile Strength (ITS). The test results were studied and compared, including to evaluate the two test methods. The results of the study concluded that the AC-WC mixture at low density (7% air void) had high durability with an IKS value above 90%. The value of the durability of the mixture is higher when using latex and at normal density (4% air void). The SNI 6753:2015 test method that uses 7% air void specimens is more recommended for evaluating the durability of asphalt mixtures.
Implementation of Palm Oil Waste Nano Technology to Increase the Durability of Road Pavement Materials: Proposed Research Roadmap Sri Sunarjono; Ngafwan Ngafwan
Urecol Journal. Part E: Engineering Vol. 2 No. 1 (2022): January-June
Publisher : Konsorsium LPPM Perguruan Tinggi Muhammadiyah 'Aisyiyah (PTMA) Koordinator Wilayah Jawa Tengah - DIY

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.53017/uje.138

Abstract

Many road pavements using asphalt mixtures in Indonesia are found to be not durable, especially heavy traffic roads. Even road damage often occurs early before the service life is reached. Many efforts have been made to improve the strength and durability of the mixture, but have not been effectively. For example, the use of fillers can increase the strength and durability of the mixture significantly, but its performance at low temperatures has an impact on the risk of hardening and cracking. The research objective is to propose the idea of implementing nanotechnology for palm oil waste materials to increase the durability of road pavement materials based on the research roadmap developed. The method used is through five approaches, namely: (i) review of research results on the durability of road pavement materials, (ii) review of research results on the implementation of nanotechnology in road pavement materials, (iii) research gaps, (iv) research ideas, and, (v) proposed research roadmap. A research roadmap for the implementation of nanotechnology to improve the durability of road pavement materials has been prepared. The substance of the research roadmap proposes three ideas, namely maximizing the function of nanomaterials as: (i) anti-aging agent, (ii) protecting water infiltration into the body of the asphalt mixture, and (iii) bonding agent between asphalt-aggregate.
Co-Authors Abdulnaser M Al-Sabaeei Adi Indra Pratama Agus Riyanto AGUS RIYANTO Agus Riyanto Agus Wahyu Sejati Ahmad Nasir Hasan Ahmad Rifan Al-Sabaeei, Abdulnaser M Alfia Magfirona Alif Firmansyah Romdhoni Alifa Nur Sayyida Andy Rosyulianta Irfan Annas, Ferry Muhammad Anto Budi Listyawan Apriyani, Rani Aris Susilo Astuti, Nurmalely Puji Aufi Shabrina Bagas Septyan Fauzy Bala, Nura Baskara, Rizki Dwi Bayu Agus Mustofa Bayu Prihandoko Bima Hardi Anto Budi Murtiyasa Budi Priyanto Budi Setiawan Dewi Fatmawati Dharma, Ahmad Akmal Martnanda Surya Dhimas Adha Aji Putra Faizatul Fitriyah Farah Dina Alifah Farhan Farosi Fazri Hidayat Firman Javiri Putra Fitrianingrum, Wahyu Ria Gotot Slamet Mulyono Gus Maelan Irfana Hanandita Putri Riandaya Handayani, Fajar Sri Hari Prasetyo Helmi Dhia Al-Ghalib I Irawan Idris, Zilhardi Ika Setiyaningsih ikhsan arif purwoko ikhsan Ipung Ayu Anggraeni Mahendra, Irfan Alid Mimma Mauritsa 'Adani Miradwiyana, Bara Moch. Solikin, Moch. Mohammad Faizal Kelan Pambudi Monica Rudyanto Mubarak, Fauzi Muh Ujianto Muhammad Vaikar Ravli Muslich Hartadi Sutanto Mustofa, Bayu Agus Nanang Sofa Maulana Natasya Rosita Laksmi Ngafwan Ngafwan Nur Khotimah Handayani Nur Lailatus Syarifah Nur Muhammad Syaifullah Rahman Nura Bala Nurul Hidayati Nurul Hidayati Nurul Hidayati Nurul Hidayati Purwanti Sri Pudyastuti Purwosri, Visaretri Pramuktia Rahmawati, Febriria Rama Rizana Ristianto, Isnaini Prasetyo Rizky Wibawa Safari, Athiah Senja Rum Harnaeni Senja Rum Hernaeni Sigit Kurniawan Sigit Wahono Soegeng Harijanto Solly Aryza Sonia Safira Syakir Maghfuri Titik Wahyuningsih Untung Subagyo Utomo, Pambudi Nur Wahid Bagus Wildan Faza Cendikia Yundari, Yundari