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SPECIFICATIONS FOR Aluminum die casting diesel engine wind turbine housing | ||||||
Aluminum die casting diesel engine wind turbine housing | Weight of the casting, kg | 0.01-50 | 135.5/2150 | |||
Annual volume | 100-50000 | 637/1800 | ||||
Pattern / tooling cost | Moderate | 6.494 | ||||
Aluminum die casting diesel engine wind turbine housing | precision casting | 3 ... 4 | 5.9/4.0 | |||
Travel speed (max. & min.) | ° | <=35 | ||||
Max. Gradeability | rpm | 11.3 | ||||
Aluminum die casting diesel engine wind turbine housing | Strength | KPa | 50.1 | |||
Load pressure | KN | 161 | ||||
Rate flow | KN | 125 | ||||

Can form complex shapes and fine details
Many material options
High strength parts
Very good surface finish and accuracy
Little need for secondary machining

Time-consuming process
High labor cost
High tooling cost
Long lead time possible

Can form complex shapes and fine details
Many material options
High strength parts
Very good surface finish and accuracy
Little need for secondary machining

Can form complex shapes and fine details
Many material options
High strength parts
Very good surface finish and accuracy
Little need for secondary machining
Good dimensional accuracy
Smoother cast surface finish than sand casting
Improved mechanical properties compared to sand casting
Thinner walls can be cast compared to sand casting
Reverse draft internal pockets and forms can be cast in using preformed sand core inserts
Steel pins and inserts can be cast in to the part
Faster production times compared to other processes.
Once the tolling is proven, the product quality is very repeatable.
Outsourced Tooling setup costs can be lower than UK sand casting.






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