This shuttle valve uses a non-biased, loose ball design, making it helpful when flow is uni-directional from both inlet ports. It is ideal for applications with flow rates up to 6 GPM.
Characteristic | Specification |
---|---|
Normal Flow Rate (A to C or B to C) | 200 Lohms max. |
Shuttling Pressure | 1 psid max. |
Maximum Leakage: (A to B or B to A at 5000 psid) | 1 mL / Minute after 2 Minute wait |
Nominal System Pressure | up to 5000 psi |
Nominal Weight | 4.0 grams |
Test Fluid | MIL-PRF-83282 at 85°F |
PART | MATERIAL | SPECIFICATION |
---|---|---|
Body – Rear | 304 CRES | AMS 5639 |
Body – Front | 304 CRES | AMS 5639 |
Pin | 17-4PH CRES | AMS 5643 |
Ball | 440C CRES | AMS 5630 |
Compression Seal | Polyamide-Imide | ASTM D 5204 |
This table below contains the part numbers and technical specifications for this product. If you have specific questions, need a quote, or would like to request a handbook or drawing, click the red request button in the column on the far right.
PART NUMBER | DESCRIPTION |
---|---|
CUTX0503050B | Installation / Extraction Tool Set |
CHFA2500003A | Replacement Pin |
CPRA2500009A | Replacement Nose Seal |
From plugs to solenoid valves, there’s a vast array of products that The Lee Company can offer. If you’d like to discuss the best solution for your specific application or to learn more about our capabilities, use-cases, or quality standards, contact your local Lee sales engineer.
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The Lee Company has developed the Lohm Laws for defining and measuring resistance to fluid flow. The Lohm is defined such that 1 Lohm will flow 100 GPM of water with a pressure drop of 25 psi at a temperature of 80°F.
Always verify flow calculations by experiment.
*There are many parameters to consider when determining V-Factor. Click here for more information.