Design of Top Traction Elevator in Building 6 Floor

Sesmaro Max Yuda, Medyawanti Pane, Frengky Elyes

Abstract


Various kinds of technology and scientific discoveries produced by mankind have led to innovations in multi-story construction, especially office buildings that are widely built in the city of Jakarta. This research is under construction, in which to find out whether the design used is appropriate and efficient. From the calculation results, the design of an elevator at a capacity of 1000 kg with a speed of 60 Mpm, a car 1600 X 1400 Hoitsway 2430 X 2240 X 2350 obtains a carrying capacity of 1000 kg (13 people) and a power of 6.19 kW which comes from the Harmoni building (6 floors building). While the tensile stress on the elevator rope is 188.8 kg with an allowable tension of 909.1 kg and the age of the rope is 59.69 months or 4.9 years. The pull on the elevator rope is 131.63 kg with an allowable tension of 909.5 kg and the age of the rope is 1115.3 months or 9.6 years. with an elevator carrying capacity of 630 kg (8 people) and a speed of 105 Mpm (1.75 m/s).


Keywords


Top Traction, Elevator

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References


W. Wijiyanto, “KENYAMANAN LIFT BAGI KAUM DIFABLESTUDI KASUS DIR.S KASIH IBU, R.S ISLAM YARSIS DAN R.S MOEWARDISURAKARTA,” J. Arsit. Sinektika, vol. 2, no. 2, pp. 90–104, 2015.

C. Limantoro, “Studi Penerapan Desain Universal Pada Restoran Boncafedi Surabaya,” Dimens. Inter., vol. 12, no. 1, pp. 38–50, 2014.

M. RIFANLI, “DESAIN MODIFIKASI STRUKTUR GEDUNG APARTEMEN ELPIS RESIDENCE JAKARTA MENGGUNAKAN SISTEM GANDA DAN BALOK BETON PRATEGANG,” Institut Teknologi Sepuluh Nopember, 2017.

C. Li, C. Hua, J. Qin, and Z. Zhu, “Research on the dynamic characteristics of high-speed elevator system,” in Proceedings of the 2019 International Conference on Electronical, Mechanical and Materials Engineering (ICE2ME 2019), 2019, pp. 105–109, doi: https://doi.org/10.2991/ice2me-19.2019.23.

J. Wang, S. Koga, Y. Pi, and M. Krstic, “Axial vibration suppression in a partial differential equation model of ascending mining cable elevator,” J. Dyn. Syst. Meas. Control. ASME, vol. 140, no. 11, 2018, doi: https://doi.org/10.1115/1.4040217.

M. ILHAM, “ANALISA PERFORMA ELEVATOR PADA MEDAN MALL BERTINGKAT 4,” UNIVERSITAS MUHAMMADIYAH SUMATERA UTARA, 2019.

PT. Daiichi Elevator Indonesia, “Office and Observation Elevator,” 2019. https://daiichielevator.indonetwork.co.id/.

A. SIMATUPANG, “Modifikasi Perencanaan Struktur Gedung Kampus UNESA Menggunakan Baja Sistem Eccentrically Braced Frames (EBF),” Institut Teknologi Sepuluh Nopember, 2015.

BSN, Tata cara perencanaan lingkungan perumahan di perkotaan. Jakarta: BSN, 2019.

A. Zayadi, “ANALISIS KEKUATAN TALI BAJA PADA LIFTSCHINDLER KAPASITAS 1600 KG,” J. Teknol. Kedirgant., vol. 5, no. 1, pp. 88–95, 2020, doi: https://doi.org/10.35894/jtk.v5i1.428.

Aoyama Elevator, “Pengenalan Lift,” 2019. http://m.id.aoyama-elevator.jp/about-us.

S. Hardja, “LIFT (ELEVATOR) Berikut yang perlu diketahui tentang lift, antara lain : A. Jenis Jenis Motor Penggerak Lift,” DOCPLAYER, 2017. https://docplayer.info/62808110-Lift-elevator-berikut-yang-perlu-diketahui-tentang-lift-antara-lain-a-jenis-jenis-motor-penggerak-lift-1-motor-gear.html (accessed Sep. 04, 2021).

A. Rusdianto, “MACHINE ROOM ATAU MACHINE ROOMLESS?,” INTI DAYA ENGINEERING, 2016. https://www.intidayaonline.com/machine-room-atau-machine-roomless/ (accessed Sep. 25, 2021).

A. Sulistyo, “OPTIMASI PERHITUNGAN ULANG KEBUTUHAN LIFT PENUMPANG TYPEIRIS1-NV PA 20 (1350) CO105 PADA GEDUNG APARTEMEN 17 LANTAI,” J. Tek. Mesin, vol. 5, no. 1, pp. 23–30, 2016.

S. Sukamta, “MEKANIKAL UNTUK BANGUNAN GEDUNG: TRANSPORTASI VERTIKAL,” UMY, 2015.




DOI: http://dx.doi.org/10.30870/vanos.v6i2.12419

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