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Hasil Pencarian

Ditemukan 6 dokumen yang sesuai dengan query
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Mohammad Shafwan Muldya
"Micro Resistance Spot Welding (MRSW) merupakan metode pengelasan yang banyak digunakan di industri manufaktur dikarenakan prosesnya yang cepat, efisien secara ekonomi, dapat diotomatisasi, dan dapat digunakan untuk pelat dengan ketebalan rendah. Pelat paduan aluminium dan brass, yaitu AA 1100 dan CuZn30 dengan ketebalan rendah merupakan bahan yang dewasa ini banyak digunakan dalam industri manufaktur dikarenakan sifatnya yang ringan dengan kekuatan mekanis yang baik. Belum terdapat penelitian yang membahas mengenai parameter optimum dari mRSW untuk pengelasan AA 1100 dan CuZn30. Dalam penelitian ini, dilakukan pengelasan terhadap pelat AA 1100 dan CuZn30 dengan dimensi 19 mm x 76 mm x 0,4 mm menggunakan instrumen pengelasan micro resistance spot welding (MRSW) otomatis dengan variabel cycle time pengelasan secara berturut-turut sebesar 3, 4, 5, 6, 7, 8, 9, 10 siklus. Karakterisasi hasil las dilakukan lewat analisis pengujian tarik. Pengujian tarik menunjukkan bahwa terjadi peningkatan nilai shear stress pada siklus/cycle time yang lebih besar.

Micro Resistance Spot Welding (MRSW) is a welding method that is widely used in the manufacturing industry due to its fast, economically efficient, automable process and can be used for low thickness plates. Aluminum and brass alloy plates, namely AA 1100 and CuZn30 with low thickness are materials that are currently widely used in the manufacturing industry due to their lightweight nature with good mechanical strength. There are no studies that discuss the optimum parameters of micro resistance spot welding (MRSW) for welding AA 1100 and CuZn30. In this study, welding was carried out on the AA 1100 and CuZn30 plates with dimensions of 19 mm x 76 mm x 0.4 mm using an automatic mRSW welding instrument with a variable welding cycle time respectively 3, 4, 5, 6, 7, 8, , 9, 10 cycles. The characterization of welds was carried out through tensile testing. The tensile test shows that there is an increase in the value of shear stress at a greater cycle / cycle time."
Depok: Fakultas Teknik Universitas Indonesia, 2021
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UI - Skripsi Membership  Universitas Indonesia Library
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Heru Purnomo
"Physical behavior of models can be measured in the laboratory, which, in turn are often used to assess the behavior of more complicated structures. Mechanical responses present physical behavior of a structure. By using three different transducer, one can measure acceleration, velocity and displacements directly. Determination of velocity and displacements from acceleration data is preferable from point of view economics; but on the other hand this procedure, at present, is still causing problem. This study shows that displacements and velocity can be calculated from its acceleration which is obtained by using one transducer.
The acceleration data are obtained from a cantilever steel plate which is subjected to a transient force at a discrete location on its surface or an initial deflection on its tip. An acquisition program was first designed before starting the experimental program. By means of a piezoelectric accelerometer, a conditioning amplifier and a digital oscilloscope, acceleration data are captured and then transferred to a personal computer.
The transformation of these two responses, displacements and velocity from the acceleration data are performed in two domains, time domain and frequency domain. Two integration techniques, Newton-Cotes formula and Simpson's rule were used for the calculation in the time domain. For both techniques, adjustment of basis line is performed by End Zero Time Technique Modified. Programmation has been done for both types of domain analysis.
The Simpson's rule gives sufficient results and Newton-Cotes formulation gives good results only for moderate values of Cotes coefficient. High values of the coefficient give unrealistic calculated velocity and displacements. Drifting character are present on the displacements calculated by both methods.
In the frequency domain, the velocity and displacements are obtained from acceleration data by means of Fast Fourier Transform and its Inverse Fourier Transform. This method give satisfactory results only for the calculation of velocity. The displacements obtained show also drifting character. Nevertheless, realistic forms of this displacements are moderately accepted.
Results comparison of the two methods, both in time domain and frequency domain, show that none of the method is better than another. Analysis in frequency domain give more accurate results, but this method is not definitely a principal method for the solution of this type of problems. The two methods shall be used for the calculation of velocity and displacements. This procedure can verify one result to another to avoid wrong interpretation of transformed responses."
Depok: Fakultas Teknik Universitas Indonesia, 1996
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UI - Laporan Penelitian  Universitas Indonesia Library
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Faundra Ihsan Pratama
"Proses Micro Friction Stir Spot Welding (MFSSW) merupakan sebuah teknik pengelasan pelat logam dengan ketebalan pelat yang relatif tipis. Keunggulan dari pengelasan ini adalah kualitas hasil pengelasan yang lebih tinggi dan deformasi yang relatif rendah. Tujuan dari penelitian ini adalah untuk mengetahui pengaruh bentuk pahat dan kedalaman tusuk pahat kepada kecenderungan aliran material pada struktur makro hasil lasan yang dihasilkan pada teknik Micro Stir Spot Welding (MFSSW) dengan menggunakan pelat tipis Alumunium AA1100. Pada penelitian ini parameter yang diubah adalah geometri pahat dan kedalaman pahat. Dalam penelitian ini parameter geometri pahat dibagi menjadi 7 jenis geometri pahat dan parameter kedalaman tusuk dibagi menjadi 3 kedalaman (200 mikron, 400 mikron dan 600 mikron). Uji makro dilakukan untuk mengetahui kedalaman lasan, profil kontur, dan makrostruktur bentangan dari hasil lasan. Hasil uji makro akan digunakan untuk menganalisis hubungan hook pada setiap zona lasan pada hasil pengelasan dari setiap tools yang ada.

The Micro Friction Stir Spot Welding (MFSSW) process is a metal plate welding technique with a relatively thin plate thickness. The advantages of this welding are the higher quality of the welds and the relatively low deformation. The purpose of this study was to determine the effect of the chisel shape and the depth of the chisel on the material flow tendency in the macrostructure of the welds produced in the Micro Stir Spot Welding (MFSSW) technique using a thin plate of aluminum AA1100. In this research, the parameters that are changed are the tool geometry and plunge depth. In this study, the tool geometry parameters were divided into 7 types of tool geometries and the plunge depth parameters were divided into 3 depths (200 microns, 400 microns, and 600 microns). A macro test is performed to determine the depth of the weld, the contour profile, and the macrostructure of the expanse of the weld. The macro test results will be used to analyze the hook relationship at each weld zone on the welding results of each existing tool"
Depok: Fakultas Teknik Universitas Indonesia, 2020
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UI - Skripsi Membership  Universitas Indonesia Library
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Muhammad Andre Widianto
"ABSTRAK
Teknologi pengelasan friction stir spot welding FSSW merupakan pengelasan pada solid state welding sehingga dapat mengatasi kerusakan, karena tidak memerlukan temperatur yang tinggi. Two-stage refilled friction stir spot welding TFSSW merupakan pengelasan tahap kedua untuk pengisian lubang yang terbentuk pada pengelasan FSSW. Penelitian ini mencari pengaruh besar diameter pin dan dwell time tahap kedua terhadap kekuatan geser pengelasan. Material yang digunakan yaitu Alumunium Al 1100 dengan ketebalan 0,4 mm dan kecepatan spindle 33.000 rpm. Parameter yang digunakan pada penelitian ini yaitu variasi diameter pin 2 mm, 2.5 mm, dan 3 mm dan variasi dwell time tahap kedua 4 detik, 6 detik, dan 8 detik . Analisis makro dilakukan terhadap hasil pengelasan di setiap variabel.

ABSTRACT
Friction stir spot welding technology is a solid state welding that can overcome damages caused by high temperatures. Two stage refilled friction stir spot welding TFSSW is a second step to refill keyhole that formed after conventional FSSW process. This study is to analyze the effect of tool diameter and second stage dwell time on TFSSW to the shear strength of welds. Alumunium material Al 1100 with thickness 0,4 mm was used and spindle speed was at 33.000 rpm. Parameters used in this study were the variable of tool diameter 2 mm, 2.5 mm, and 3 mm and variable of second stage dwell time 4 seconds, 6 seconds, and 8 seconds . Analysis of macro structure was studied on variation of welds."
2017
S67798
UI - Skripsi Membership  Universitas Indonesia Library
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Adrian Rajendra
"Micro Resistance Spot Welding mRSW merupakan metode pengelasan yang banyak digunakan di industri manufaktur dikarenakan prosesnya yang cepat, efisien secara ekonomi, dapat diotomasi, dan dapat digunakan untuk pelat dengan ketebalan rendah. Pelat paduan aluminium, khususnya AA 1100 dengan ketebalan rendah merupakan salah satu bahan yang dewasa ini banyak digunakan dalam industri manufaktur dikarenakan sifatnya yang ringan dengan kekuatan mekanis yang baik. Belum terdapat penelitian yang membahas mengenai parameter optimum dari mRSW untuk pengelasan AA 1100.
Dalam penelitian ini, dilakukan pengelasan terhadap pelat AA 1100 dengan dimensi 19 mm x 76 mm x 0,4 mm menggunakan instrumen pengelasan mRSW otomatis dengan variabel yaitu diameter tip elektroda dan cycle time pengelasan secara berturut-turut sebesar 2, 4, 6 mm dan 5, 7,5, 10 siklus. Karakterisasi hasil las dilakukan lewat analisis makrostruktur dan pengujian tarik.
Hasil observasi makrostruktur menunjukkan adanya peningkatan diameter weld nugget seiring dengan penggunaan tip dengan diameter lebih besar. Pengujian tarik menunjukkan bahwa diameter tip berbanding lurus dengan tensile load yang terjadi pada hasil las, sementara terjadi penurunan nilai tensile load pada siklus/cycle time yang lebih besar.

Micro Resistance Spot Welding mRSW is commonly used in the manufacturing industry due to its time and economic efficiency, easily automated, and its ability to be used in welding of thin plates. Al alloy plates, such as AA 1100 alloy plates with low thickness are currently utilized in manufacture industries considering its lightweight and good mechanical properties. However, there are no sufficient studies that investigate the optimum mRSW parameters in AA1100 welding.
In this reserach, AA1100 alloys specimens in 19 mm x 76 mm x 0.4 mm dimension were welded using automatic mRSW method with variations on the electrode tip diameter and welding cycle time. Diameters of the electrode tip were 2, 4, and 6 mm, respectively, while welding cycle time were varied for 5, 7.5, and 10 cycles. Characterizations of welded plates were done through macrography observation and tensile testing.
Results of macrography shows that diameter of weld nuggest increase along with bigger electrode tip diameter. Tensile testing results, indicates that larger tip diameter resulted in higher tensile load. On the other hand, more cycle time applied during welding procedure resulted in lower tensile load of produced weld.
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Depok: Fakultas Teknik Universitas Indonesia, 2018
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UI - Skripsi Membership  Universitas Indonesia Library
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Ikhsanul Fikri Fakhrurrozi
"Proses Micro Friction Stir Spot Welding (mFSSW) merupakan turunan dari proses Friction Spot Welding (FSSW) ysng digunakan pada pengelasan material berupa pelat dengan ketebalan relatif tipis. Pengelasan ini memiliki beberapa keunggulan dibandingkan dengan metode pengelasan konvensional lainnya. Salah satu keunggulannya adalah hasil lasan memiliki kualitas yang lebih baik serta distorsi yang terjadi yang relatif rendah. Tujuan dari penelitian ini sendiri adalah untuk mengetahui data pengukuran evolusi temperatur dan kecepatan putar pahat saat proses pengelasan, kekuatan tarik dan kekerasan. Pada penelitian ini parameter yang divariasikan adalah geometri pahat yang terdiri dari 3 tool dengan setiap dimensi pin yang berbeda yaitu small taper pin (tool 1), medium taper pin (tool 2) dan Two stage shoulder (tool 3). Pengambilan data in situ bertujuan untuk mengetahui karakteristik perubahan temperatur dan kecepatan putar pahat pada saat proses pengelasan berlangsung. Kekuatan tarik diketahui dari hasil pengujian tarik hasil pengelasan. Kemudian kekerasan hasil pengelasan diketahui dari hasil pengujian microhardness.. Hasil penelitian menunjukkan bahwa pada pengambilan data in situ, peak temperatur tertinggi terjadi pada tool 3 dengan temperatur 330.7 ℃. Pada pengujian cross-section dari ketiga tool yang ada, terdapat daerah stir zone (SZ), thermo-mechanically affected zone dan heat affected zone serta terjadi pembentukan hook. Kemudian hasil pengujian tarik menghasilkan nilai kekuatan tarik maksimum pada tool 3 dengan kekuatan tarik sebesar 379.89 N. Sedangkan pada pengujian kekerasan, nilai kekerasan rata-rata tertinggi dari daerah stir zone yang diindentasi terdapat pada tool 3. Pada semua pengujian tersebut dapat disimpulkan bahwa semakin lebar diameter shoulder maka akan menyebabkan distribusi temperatur semakin tinggi akibat gaya friksi panas yang hal ini menimbulkan meningkatnya nilai kekuatan tarik dan kekerasan hasil lasan.

The Micro Friction Stir Spot Welding (mFSSW) process is a derivative of the Friction Spot Welding (FSSW) process which is used for welding materials in the form of plates with relatively thin thickness. This welding has several advantages over other conventional welding methods. One of the advantages is that the welds have better quality and relatively low distortion. In this study, the parameters varied were tool geometry which consisted of 3 tools with different pin dimensions. They are small taper pin (tool 1), medium taper pin (tool 2) and Two stage shoulder (tool 3). In situ data measurement was used to determine the evolution of temperature changes and tool rotational speed during the welding process. Tensile strength is known from the results of tensile testing of welds. Then the hardness of the welds is known from microhardness testing. The results showed that in in situ data measurement, the peak temperature occurred at tool 3 with 330.7 ℃ . In macrostructural testing, there are stir zone (SZ), thermo-mechanically affected zone and heat affected zone and hook formation occurs. Then the results of the tensile test produce the maximum tensile strength value on tool 3 with a tensile strength of 379.89 N. Meanwhile, in the hardness test, the highest average hardness value of the indented stir zone area was found in tool 3. In all these tests it can be concluded that the wider the diameter of the shoulder will cause the temperature distribution to be higher due to heat friction, which causes an increase in the value of tensile strength and hardness of the welds."
Depok: Fakultas Teknik Universitas Indonesia, 2021
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UI - Skripsi Membership  Universitas Indonesia Library