Training Alignment Pump & Motor
Alignment Pump & Motor is the process of aligning shaft center-lines between a motor and a pump. The motor is the prime mover, transferring power to the pump by the use of a coupling. This is probably the most common configuration of coupled machines in industry.
In this type of alignment, the motor is almost always the moveable machine, and the pump is the stationary machine. In almost all cases, the pump is already piped up with suction and discharge flanges, which means it can move only slightly, if at all.
In this type of alignment, the motor is almost always the moveable machine, and the pump is the stationary machine. In almost all cases, the pump is already piped up with suction and discharge flanges, which means it can move only slightly, if at all.
Proper shaft alignment is achieved by moving the motor. The motor is shimmed vertically to achieve the proper elevation to align it to the pump, both parallel (offset) and angular. The motor is them moved horizontally to achieve proper horizontal placement for aligning the shaft centerlines, both parallel and angular. The motor is moved horizontally by the use of jacking bolts, or by the use of pry bars, hammers, or other tools.
Motors are normally easier to move, since the motor is not piped into a process system. A short run of flexible conduit is most often used to run the electrical wiring from a local disconnect, or a rigid conduit, to the motor termination box. This allows for ease of movement of the motor.
Alignment Pump & Motor Training Outline
1. Fundamental Alignment
2. Diagnosing Misalignment
3. Measuring Misalignment
4. Preparing Task Alignment
5. Alignment Methods (praktis)
• Rough Methods
• Face and Rim
6. Alignment Tolerances
7. Complicating Factor Alignment.
8. Introduction to Laser Alignment
9. Minimizes the forces of misalignment acting upon the bearings and seals of both components.
10. Minimizes Wear of The Coupling.
11. Reduce Energy Costs.
12. Maximizes the life of the Machine Components by Minimizing Wear, ncreasing time between failures, and reducing vibration.
2. Diagnosing Misalignment
3. Measuring Misalignment
4. Preparing Task Alignment
5. Alignment Methods (praktis)
• Rough Methods
• Face and Rim
6. Alignment Tolerances
7. Complicating Factor Alignment.
8. Introduction to Laser Alignment
9. Minimizes the forces of misalignment acting upon the bearings and seals of both components.
10. Minimizes Wear of The Coupling.
11. Reduce Energy Costs.
12. Maximizes the life of the Machine Components by Minimizing Wear, ncreasing time between failures, and reducing vibration.
Who Should Attend
Instrument Engineer/Supervisor, Plant Maintenance/Operators/Supervisors
TRAINING METHOD
- Group Discussions
- Group & Individual Exercises
- Presentations
- Games
- Case Studies
- Role Plays
- Self-Assessment
- Action Plan
FACILITIES
- Certificate,
- Quality Training Kit (Pencil case: Erase, Bolpoint, Pencil, Tipe X, Stabillo, Flash Disk 8 GB),
- Bag.
- Training Material (HandOut & SoftCopy)
- Convenient training facilities in stars hotel (Public Training)
- Lunch and Coffee Breaks (Public Training)
- Souvenir
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Catatan :
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