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BASIC MACHINERY VIBRATION

ACARA

13 – 16 April 2020 | Rp 8.500.000/ peserta di Yogyakarta
11 – 14 Mei 2020 | Rp 8.500.000/ peserta di Yogyakarta
02 – 05 Juni 2020 | Rp 8.500.000/ peserta di Yogyakarta

Jadwal Training 2020 Selanjutnya …

 

 

PENGANTAR BASIC MACHINERY VIBRATION

Amplitudo getaran mesin yang berlebihan akan mempengaruhi kualitas serta umur mesin tersebut, oleh karena itu amplitudo getaran yang terjadi harus dibuat agar di bawah ambang batas standar yang ada. Untuk mengurangi amplitudo getaran, selain diperlukan sensor dan analyzer, juga diperlukan pengetahuan yang memadai. Tanpa pengetahuan yang memadai maka analisis tidak dapat dilakukan secara maksimal. Pengetahuan dasar yang diperlukan adalah meliputi: dinamika struktur, dinamika komponen rotasi serta metode analisis sinyal getaran. Kursus ini mengulas dasar-dasar pengetahuan yang diperlukan untuk analisis problem getaran, yang melipui: pengetahuan tentang dinamika struktur mesin rotasi maupun struktur penumpuny ( resonansi dan modus getar), tentang metode pengukuran getaran serta analisisnya, ciri-ciri kerusakan komponen rotasi, analisis sinyal, pengetahuan tentang sensor serta vibration analyzer, pengukuran getaran di atas 20 kHz (modulasi sinyal, SPM), serta pengantar untuk analisis dan problem solving.

 

TUJUAN TRAINING MACHINERY VIBRATION:

Setelah mengikuti training, peserta mengerti tentang prinsip dasar pengukuran vibrasi, pengetahuan tentang kondisi struktur penumpu mesin, setting peralatan vibrasi serta analisis atas sinyal vibrasi untuk problem solving. 

 

SIAPA SEBAIKNYA MENGIKUTI TRAINING INI?

operator maupun engineer yang berkecimpung di maintenance dan vibration monitoring dan analisis dan semua pihak yang ingin memahami topik ini.

 

MATERI TRAINING BASIC MACHINERY VIBRATION

  1. Pengantar
    1. Mengapa getaran muncul ?
    2. Sejaran pengukuran getaran
    3. Mengapa getaran dapat dijadikan sebagai tolok ukur kerusakan?
  2. Dasar-dasar
    1. Amplitudo, frekuensi dan sudut fasa
    2. Displacement, velocity dan acceleration
    3. Dinamika struktur
    4. Pengubahan pola dinamika struktur (penggeseran frekuensi resonansi)
    5. Peredaman getaran
  3. Pengukuran sinyal getaran
    1. Sensor getaran dan prinsip kerjanya
    2. Daerah kerja sensor
    3. Kalibrasi sensor
    4. Set-up sistem pengukuran getaran
    5. Signal analyzer: FFT, Windowing, Coupling, Antialias filter, averaging, measurement unit, etc.
    6. Pengukuran getaran, setting parameter pengukuran.
    7. Jenis-jenis tampilan grafik: power spectrum, linear spectrum, waterfall diagram, polar plot
    8. Pengolahan sinyal getaran
  4. Analisis sinyal getaran
    1. Membaca grafik hasil pengukuran getaran
    2. Konversi data
    3. Membuat trending overall dan komponen
    4. Mechanical signature analysis
  • Ø Unbalance
  • Ø Misalignment
  • Ø Rolling element
  • Ø Gear
  • Ø Belt, dll
  1. Pengukuran Getaran bantalan, di atas 20 kHz
    1. Fenomena kerusakan bantalan gelinding
    2. Keterbatasan sensor accelerometer
    3. Teknik Modulasi Sinyal, SPM
    4. Acoustic emission

 

INSTRUCTOR 

Dr.Ir. Paryana Puspaputra, M.Eng., and Team

Paryana Puspaputra was born in Kotabumi on January 19, 1964, is a Lecturer at the Department of Mechanical Engineering, Faculty of Industrial Technology, Indonesia Islamic University – Indonesia. Undergraduate from Department of Mechanical Engineering, Bandung Institute of Technology, Indonesia (ITB) in 1990 and master degree in Mechanical Engineering Department of Nagaoka University of Technology, Japan in 1996. He achieved his doctorate degree in Department of Mechanical Engineering, Bandung Institute of Technology, Indonesia (ITB) in 2012. He is also experienced as consultant and training instructure for several manufacturing and oil company, such as Chevron, Total, KPA, Petrokimia, Semen, Indonesia Power, etc. His background in mechanical equipment and machinery is completed with knowledge in instrumentation technology which was started from his final project in undergraduate by making software and data acquisition for predictive maintenance, and continued with his graduate thesis in control system for nano technology. There are researches and industrial implementation in data acquisition such as building the DNC system for production-shop using CNC machine, developing the balancing machine for Panasia Indosyntex – Bandung, SCADA system Development based on Fuji Electric control system (for IPAL – Pertamina – Cilacap, Toxic Gas Monitoring – Dieng – Central Java, etc). Moreover, he is also an official trainer of softwares for design and manufacturing base on CAD/CAM Technology (AutoCAD, Inventor, and Delcam PowerShape, ArtCAM) and familier with some finite element based analysys softwares such as Moldflow, ANSYS, SAP, CAESAR II, etc.

 

VENUE 

Yogyakarta (Ibis Styles Hotel/ Ibis Malioboro Hotel/ Jambuluwuk Hotel/ Cavinton Hotel/ Grand Zuri Hotel, dll)

 

TRAINING DURATION 

 4 days

 

JADWAL TRAINING

  1. 13 Apr 2020-16 Apr 2020
  2. 11 Mei 2020-14 Mei 2020
  3. 22 Jun 2020-25 Jun 2020
  4. 13 Jul 2020-16 Jul 2020
  5. 24 Agust 2020-27 Agust 2020
  6. 14 Sep 2020-17 Sep 2020
  7. 26 Okt 2020-29 Okt 2020
  8. 23 Nop 2020-26 Nop 2020
  9. 14 Des 2020-17 Des 2020

 

INVESTATION PRICE/PERSON

  1. 8.500.000/person (full fare) or
  2. 8.250.000/person (early bird, payment 1 week before training) or
  3. 7.950.000/person (if there are 3 persons or more from the same company)

 

FACILITIES FOR PARTICIPANTS

  1. Training Module
  2. Flash Disk contains training material
  3. Certificate
  4. Stationeries: NoteBook and Ballpoint
  5. T-Shirt
  6. Backpack
  7. Training Photo
  8. Training room with Full AC facilities and multimedia
  9. Lunch and twice coffeebreak every day of training
  10. Qualified Instructor
  11. Transportation for participants from hotel of participants to/from hotel of training – VV (if minimal participants is 4 persons from the same company)

 

BASIC MACHINERY VIBRATION

Formulir Pra-Pendaftaran Public Training / Permintaan Informasi Lebih Lanjut
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  11. DATA PRE REGISTRATION (Tidak Mengikat)
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