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| Balancing vocabulary | |
Balancing
:Procedure by which the mass distribution of the rotor is checked and
if necessary adjusted to ensure that the residual unbalance or the vibration
of the journal and / or forces on bearings at a frequency corresponding
to service speed are within specified limits. |
|
Rotor
:Body capable of rotation, generally with journals, which are
supported by bearings. Rotors are classified in three groups - Rigid, Quasi rigid and flexible |
|
Rigid
Rotor : A rotor is considered to be rigid when its unbalance
can be corrected in any two planes. After correction residual unbalance
does not change significantly at any speed up to service speed and when
running under conditions which approximate closely to those of the final
supporting system. |
|
Flexible
Rotor: Rotor not satisfying the above condition because of
elastic deflection due to its running at and above critical speeds.
Such rotor is to be balanced at high speed or at actual speed. Turbine
and two pole generator rotors are generally flexible rotors |
|
| Static (Single plane) balancing:Procedure by which mass distribution is corrected in one plane to ensure that residual static unbalance is within the limit. (Only forces are balanced). | |
Dynamic
(Two Plane) balancing: Procedure of balancing by which unbalance
are corrected in two planes such that residual forces and couple are
within the specified limit. |
|
Multi
Plane balancing: - Corrections are carried out in more than two planes
e.g. Crankshaft |
|
Field
(on site) balancing: - Process of balancing of a rotor in it’s
own bearing and supporting structure at site rather than in a balancing
machine. |
|
Low
speed (Rigid rotor) balancing: - Procedure of balancing at
low speed where the rotor to be balanced can be considered to be rigid. |
|
High
paced (Flexible rotor) balancing: - Procedure of balancing
at a speed where the rotor to be balanced cannot be considered rigid.
This is done near the critical speed of the rotor. |
|
| Rotor
Critical Speed:A speed of the rotor at which thee is maximum
bending of the rotor and where this bending is significantly greater
than the motion of journals. |
|
At
speed balancing:Balancing of rotor on balancing machine or
at test bed at actual (Full) speed. |
|
Trim
Balancing:Balancing of rotor at site at actual speed to reduce
unbalance and vibrations arising due to mounting errors in assembling
at site. |
|
Mandrel:
Machined shaft on which rotor is mounted for shop balancing. |
|
List
of various ISO, IS, BS & VDI Standards of vibrations: |
|
| ISO
1940-1:1986 (IS 11723:1992): |
|
Mechanical
vibration: Balance quality requirements of rigid rotor. |
|
| ISO
5343:1983 (IS 13279: 1992): |
|
| Criteria
for evaluating flexible rotor balance. |
|
| ISO
5406: 1980 (IS 13280: 1992): |
|
The
mechanical balancing of flexible rotor. |
|
ISO
11342 4994(E): |
|
Mechanical
vibration:- Methods and criteria for the mechanical balancing
of flexible rotor. |
|
IS0
2372-I974 (E) (IS 11724: 1985) VDI 2056- BS4675: |
|
Mechanical
vibrations of machines with operating speed from 10 to 200 rev/s (600
to 12000 R.P.M.) – Basis for specifying evaluation standards |
|
IS0
3945 - 1985 (IS 11727 - I985) |
|
Measurement and evaluation of vibration severity in situ of large rotating
machines with speed range from 10 to 200rev/sec. |
|
| ISO
2953 : 1985 (IS 13277:1992) |
|
| Balancing
Machines- Description and Evaluation. |
|
ISO1925
: 1990 (IS 13274:1992) |
|
Mechanical
Vibration – Balancing – Vocabulary |
|
ISO
2017 : 1982 (IS 14259 :1995) |
|
| Vibration
and Shock – Isolators – Procedure for specifying characteristics |
|
IS
4758 - 1989 : Methods of measurement of Noise emitted by Machines. |
|
| IS
4894 – 1999 : Specification for Centrifugal fans |
|