The Challenge:
Improve price and performance of high-pressure valve handle.
Solution:
Design a lightweight, ergonomic, and chemically-resistant handle manufactured with an engineering grade resin.
Steps:
The Challenge:
Upgrade product so it can withstand harsher and more demanding operating conditions.
Solution:
Evaluate and select a high-temperature resin whose electrical properties exceed those of the engineering grade resin currently being used and can withstand the harsher environment.
Steps:
Evaluate operating environment
Evaluate Resin Properties
For this application High-Temperature Plastics were evaluated due to their superior properties. Some of those properties are as follows:
For this application electrical resistance was the key criteria. Consequently a polyetherimide was chosen that had a dielectric strength of 710 volts/mil. This compared well against the engineering resin (polycarbonate) previously being used that had a dielectric strength of 380 volts/mil.
The Challenge:
Build a complex, ergonomically designed handle while minimizing part costs.
Solution:
Through the application of gas-assist injection molding developed an ergonomic, lighter weight and lower cost handle.
Advantages:
Some of the advantages over conventional molding are as follow:
The Challenge:
Find a material that has the attributes of lead without the associated toxicity issues.
Solution:
Work with material suppliers to evaluate emerging high-density composite resins that are ideal substitutes for lead.
Advantages:
Some of the advantages/properties of these composite resins are as follows:
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