PEMBUATAN TANDON HIDROPONIK DENGAN SERAT HYBRID FIBER
Abstract
In the manufacture of hydroponic reservoirs with Hybrid fiber fibers can facilitate and utilization of waste that is often encountered. The purpose of this study is to provide information that the results of the waste from agriculture can be utilized, one of them is this research. For testing the results of this study are obtained, that can accommodate nutrient water with a predetermined size. The size of the reservoir must be adjusted to the volume of water, with a size of 1000 liters the thickness of the material must be 1cm. For Hydroponic plants themselves must also see the condition of the volume of the flow of plants that are used. Given that hydroponics is a farming tenology that uses water, nutrients and oxygen. Where the hydroponics use a pool of nutrients in accordance with the needs of certain plants. In general, this agricultural cultivation system uses no soil but uses water that contains a nutrient solution.Considering we have done previous research, namely on Utilization of Natural Waste (Hybrid Fiber) for Hydroponic reservoir pools with Strength Test). Hybrid fiber composite is a composite composite of straight fiber types with random fibers. By utilizing natural fibers in Indonesia, we can reduce the use of synthetic fibers that have been used. Composite materials in general have advantages such as resistance to wear, are not easily cracked, and have a binding force with a good matrix and also environmentally friendly. In the case of making these nutritional reservoirs made and tested according to the research flow. And has been created and has been tested.
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Keywords: HFC, Nutrient reservoir, Matrix, Hydroponics, Density
References
Asrikin. (2011). Karakterisasi Fatigue dan Analisa Mikroskopis pada Mekanisme Kegagalan Material Komposit Fiber Gall-Epoxy Untuk Material Sudu Turbin Angin. Jakarta: Universitas Indonesia.
ASTM. (1986). Metal Tes Methods and Analytical Procedures. Philadephia, PA: American Society for Testing Materials.
B. D., Broutman, L. J. (1990). Analysis and Performance of Fibre Composites. New York: Jhon Willey Inc.
Carli, S. A. Widyanto, Ismoyo Haryanto. (2012). Analisis Kekuatan Tarik dan Lentur Komposit Serat Gelas Jenis Woven Dengan Matriks Epoxy dan Polyester Berlapis Simetri Dengan Metode Manufaktur Hand Lay-Up. Semarang: Universitas Diponegoro.
Ismail, Fajar. (2012). Rancang Bangun Alat Uji Impak Charpy. Semarang: Universitas Diponegoro.
Istiqomah, S. (2006). Menanam Hidroponik. Jakarta: Azka Press.
Krismawati, A. (2012). Teknologi Hidroponik Dalam Pemanfaatan Lahan Pekarangan. Malang: BPTP.
Lingga, P. (2004). Bercocok Tanam Tanpa Tanah. Jakarta: Penebar Swadaya.
MODUL OPKR-60-029A. (2004). Membuat (Fabrikasi) Komponen Fiberglass/Bahan Komposit. Yogyakarta: Tim Fakultas Teknik Universitas Negeri Yogyakarta.
Musyarofah. (2010). Pembudidayaan Tanaman Secara Hidroponik Guna Pemanfaatan Lahan Sempit.
Nopriantina, Noni. (2013). Pengaruh Ketebalan Serat Pelapah Pisang Kepok (Musa Paradisiaca) Terhadap Sifat Mekanik Material Komposit Poliester-serat Alam. Padang: Universitas Andalas.
SIMANJUNTAK, Rahmat Kartolo. (2015). Energi Impak Helmet Sepeda Motor yang Dikenai Beban Jatuh Bebas. JURNALIS ILMU PENGETAHUAN DAN TEKNOLOGI TERAPAN "REINTEK" , 7.1.
WIDODO, Basuki. (2008). Analisa sifat mekanik komposit epoksi dengan penguat serat pohon aren (ijuk) model lamina berorientasi sudut acat (random). Jurnal Teknologi technoscientia .