Product Description
The 35543000 Reservoir from Liftsplus.com is an OEM hydraulic fluid containment component for manual pallet jack systems, constructed in formed ASTM A36 steel and designed for direct installation into standard manual pallet jack assemblies.
Specifications
Hydraulic
| System Pressure (rated/maximum) | Compatible with manual hydraulic pallet jack systems rated up to 2500 PSI |
Material & Construction
| Body Material | Formed steel per ASTM A36 specification |
| Hardness | Brinell 180 minimum |
Part Numbers
| Manufacturer Part Number | 35543000 |
| OEM Part Number | 35543000 |
Performance Specifications
| Fluid Volume Capacity | 190 mL maximum fill |
Frequently Asked Questions
Q: What is the material specification and pressure rating for the 35543000 reservoir?
A: The 35543000 is constructed from formed ASTM A36 steel with a minimum Brinell hardness of 180. It is rated for manual hydraulic pallet jack systems with a maximum system pressure of 2500 PSI. This specification ensures durability in standard manual pump applications.
Q: What is the fluid capacity of the 35543000 reservoir?
A: The 35543000 has a maximum fill capacity of 190 mL. This volume is designed for standard manual pallet jack hydraulic systems. Verify your equipment specifications to confirm this capacity matches your system requirements.
Q: Which manual pallet jack models use the 35543000 reservoir?
A: The 35543000 is a direct replacement reservoir for standard manual pallet jack assemblies from major manufacturers including Crown, Toyota, Raymond, Yale, Hyster, and similar OEM brands. Confirm your exact equipment model and serial range before ordering to ensure compatibility.
Q: What maintenance does the 35543000 reservoir require?
A: Keep the reservoir clean and free from contamination. Inspect the formed steel body periodically for corrosion or internal rust, particularly in wet or cold storage environments. The ASTM A36 steel construction is durable but may require periodic inspection in harsh conditions to ensure seal integrity and system performance.
