Mill¶
Plant::ProcessEquipment::Mill
Overview¶
Concrete Class
RDL: MILL (http://data.posccaesar.org/rdl/RDS11589220)
A physical object for grinding or pulverizing materials. Also a machine for shaping metal. In general a machine that manufactures by the continuous repetition of some simple action
Supertypes
Subtypes
Members¶
Data Properties¶
Name |
Multiplicity |
Type |
Ordered |
Unique |
|
|---|---|---|---|---|---|
0..1 |
Undefined | <PhysicalQuantity with UnitType → MassFlowRateUnit> |
no |
no |
The capacity for the mass flow rate for which the Mill is designed. |
|
0..1 |
Undefined | <PhysicalQuantity with UnitType → RotationalFrequencyUnit> |
no |
no |
The rotational speed for which the Mill is designed. |
|
0..1 |
Undefined | <PhysicalQuantity with UnitType → PowerUnit> |
no |
no |
The shaft power for which the Mill is designed. |
|
0..1 |
Undefined | <PhysicalQuantity with UnitType → LengthUnit> |
no |
no |
The lower limit for the output particle size for which the Mill is designed. |
|
0..1 |
Undefined | <PhysicalQuantity with UnitType → LengthUnit> |
no |
no |
The upper limit for the input particle size for which the Mill is designed. |
|
0..1 |
Undefined | <PhysicalQuantity with UnitType → LengthUnit> |
no |
no |
The upper limit for the output particle size for which the Mill is designed. |
DesignCapacityMassFlowRate¶
Data Property
The capacity for the mass flow rate for which the Mill is designed.
Type: Undefined | <PhysicalQuantity with UnitType → MassFlowRateUnit>
Multiplicity: 0..1
Ordered: no
Unique: no
RDL: DESIGN CAPACITY MASS FLOW RATE (http://sandbox.dexpi.org/rdl/DesignCapacityMassFlowRate)
Example¶
Value = 40.0)
DesignRotationalSpeed¶
Data Property
The rotational speed for which the Mill is designed.
Type: Undefined | <PhysicalQuantity with UnitType → RotationalFrequencyUnit>
Multiplicity: 0..1
Ordered: no
Unique: no
RDL: DESIGN ROTATIONAL SPEED (http://sandbox.dexpi.org/rdl/DesignRotationalSpeed)
Example¶
Value = 180.0)
DesignShaftPower¶
Data Property
The shaft power for which the Mill is designed.
Type: Undefined | <PhysicalQuantity with UnitType → PowerUnit>
Multiplicity: 0..1
Ordered: no
Unique: no
RDL: DESIGN SHAFT POWER (http://sandbox.dexpi.org/rdl/DesignShaftPower)
Example¶
Value = 400.0)
LowerLimitDesignOutputParticleSize¶
Data Property
The lower limit for the output particle size for which the Mill is designed.
Type: Undefined | <PhysicalQuantity with UnitType → LengthUnit>
Multiplicity: 0..1
Ordered: no
Unique: no
Example¶
Unit = Micrometre,
Value = 7.0)
UpperLimitDesignInputParticleSize¶
Data Property
The upper limit for the input particle size for which the Mill is designed.
Type: Undefined | <PhysicalQuantity with UnitType → LengthUnit>
Multiplicity: 0..1
Ordered: no
Unique: no
Example¶
Unit = Micrometre,
Value = 47.0)
UpperLimitDesignOutputParticleSize¶
Data Property
The upper limit for the output particle size for which the Mill is designed.
Type: Undefined | <PhysicalQuantity with UnitType → LengthUnit>
Multiplicity: 0..1
Ordered: no
Unique: no
Example¶
Unit = Micrometre,
Value = 47.0)
Example in DEXPI XML¶
<Object type="Plant/ProcessEquipment.Mill">
<Data property="DesignCapacityMassFlowRate">
<AggregatedDataValue type="Core/PhysicalQuantities.PhysicalQuantity">
<Data property="Unit">
<DataReference data="Core/PhysicalQuantities.MassFlowRateUnit.KilogramPerMinute"/>
</Data>
<Data property="Value">
<Double>40.0</Double>
</Data>
</AggregatedDataValue>
</Data>
<Data property="DesignRotationalSpeed">
<AggregatedDataValue type="Core/PhysicalQuantities.PhysicalQuantity">
<Data property="Unit">
<DataReference data="Core/PhysicalQuantities.RotationalFrequencyUnit.ReciprocalMinute"/>
</Data>
<Data property="Value">
<Double>180.0</Double>
</Data>
</AggregatedDataValue>
</Data>
<Data property="DesignShaftPower">
<AggregatedDataValue type="Core/PhysicalQuantities.PhysicalQuantity">
<Data property="Unit">
<DataReference data="Core/PhysicalQuantities.PowerUnit.Kilowatt"/>
</Data>
<Data property="Value">
<Double>400.0</Double>
</Data>
</AggregatedDataValue>
</Data>
<Data property="LowerLimitDesignOutputParticleSize">
<AggregatedDataValue type="Core/PhysicalQuantities.PhysicalQuantity">
<Data property="Unit">
<DataReference data="Core/PhysicalQuantities.LengthUnit.Micrometre"/>
</Data>
<Data property="Value">
<Double>7.0</Double>
</Data>
</AggregatedDataValue>
</Data>
<Data property="UpperLimitDesignInputParticleSize">
<AggregatedDataValue type="Core/PhysicalQuantities.PhysicalQuantity">
<Data property="Unit">
<DataReference data="Core/PhysicalQuantities.LengthUnit.Micrometre"/>
</Data>
<Data property="Value">
<Double>47.0</Double>
</Data>
</AggregatedDataValue>
</Data>
<Data property="UpperLimitDesignOutputParticleSize">
<AggregatedDataValue type="Core/PhysicalQuantities.PhysicalQuantity">
<Data property="Unit">
<DataReference data="Core/PhysicalQuantities.LengthUnit.Micrometre"/>
</Data>
<Data property="Value">
<Double>47.0</Double>
</Data>
</AggregatedDataValue>
</Data>
</Object>