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Image of Pengaruh Sudut Chamfer Terhadap Timing Melt Point Pada Penyambungan Material Mild Steel Menggunakan Las Gesek Rotari
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CD Skripsi

Pengaruh Sudut Chamfer Terhadap Timing Melt Point Pada Penyambungan Material Mild Steel Menggunakan Las Gesek Rotari

Muhammad Ryan Detra / 1607115907 - Nama Orang;

ABSTRACT
Rotary friction welding is a type of friction welding which is a type of solid state
welding where the welding process is carried out in a solid phase. The friction
welding process occurs as a result of the direct conversion of mechanical energy
in the form of friction into thermal energy. The process of friction between two
surfaces of objects occurs in axial direction pressure. The joining process is
carried out when the friction surface reaches the melting temperature, so that it
can be ascertained that the joint obtained between the two surfaces of the material
being welded is a joint of the same nature. This research discusses how the effect
of the chamfer angle on the timing melt point and the maximum tensile strength in
joining mild steel material with the rotary friction welding method, namely by
varying the chamfer angle at 0°, 15°, 30°, 45°, 60°. This research uses analytical
and experimental methods to analyze the effect of the chamfer angle on the timing
melt point. The results of the analysis show that the greater the chamfer angle,
then, longer the timing melt point of joining the mild steel material with the rotary
friction welding method. The lowest average maximum tensile strength value of
the joint results was obtained at the variation of the chamfer angle of 0° is 421.17
Mpa and the highest average maximum tensile strength value of the joint results
was obtained at the variation of the chamfer angle 45° is 505.53 Mpa.
Keywords: Rotary Friction Welding, Chamfer, Timing Melt Point


Ketersediaan
#
Perpustakaan Universitas Riau 07 03. 121 (0001)
07 03. 121 (0001)
Tersedia
Informasi Detail
Judul Seri
-
No. Panggil
07 03. 121 (0001)
Penerbit
Pekanbaru : Universitas Riau – Fakultas Teknik – Teknik Mesin., 2021
Deskripsi Fisik
ix, 79 hlm.; ill.: 29 cm
Bahasa
Indonesia
ISBN/ISSN
-
Klasifikasi
07 03. 121 (0001)
Tipe Isi
-
Tipe Media
-
Tipe Pembawa
-
Edisi
-
Subjek
TEKNIK MESIN
Info Detail Spesifik
-
Pernyataan Tanggungjawab
Daus
Versi lain/terkait

Tidak tersedia versi lain

Lampiran Berkas
  • COVER
  • DAFTAR ISI
  • ABSTRAK
  • BAB I PENDAHULUAN
  • BAB II TINJAUAN PUSTAKA
  • BAB III METODE PENELITIAN
  • BAB IV HASIL DAN PEMBAHASAN
  • BAB V KESIMPULAN DAN SARAN
  • DAFTAR PUSTAKA
  • LAMPIRAN
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