1 Inlet 2 Outlet Cast Iron Gear Flow Divider
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1 Inlet 2 Outlet Cast Iron Gear Flow Divider

1 inlet 2 outlet cast iron gear flow divider is combined with a series of shafts, flanges and oil outlets in line with SAE, DIN and European standards.
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Product Introduction

The 1 inlet 2 outlet cast iron gear flow divider motor serves as a synchronizing actuator within hydraulic systems.

It consists of multiple cast iron gear chambers arranged in series on a single rigid shaft; a single inlet receives high-pressure fluid, while dual outlets distribute the flow according to a fixed geometric displacement ratio, thereby enabling the synchronized or proportional movement of two independent actuators.

Its core advantages lie in high flow-splitting precision, robust contamination resistance, and controllable costs, making it widely applicable across various sectors such as construction machinery, aerial work platforms, metallurgy, and agricultural machinery.

 

1. Can open and close or adjust flow individually to achieve precise flow diversion

2. Typical interfaces are flange or threaded connections

3. Supports equal-proportional or customized-proportional flow splitting, and the synchronous flow divider can achieve high synchronization of multi-channel output flow

4. Cast iron has simple structure and convenient maintenance

 

1 Inlet 2 Outlet Cast Iron Gear Flow Divider

Typical Application
1. Construction Machinery: Crane telescopic booms, synchronized excavator bucket movements, drilling rig propulsion systems;
2. Lifting Equipment: Dual-cylinder lifting platforms, scaffolding platforms, vehicle lifts (ensuring synchronized lifting);
3. Metallurgy / Port Operations: Ladle tilting, port cranes, waste balers (high-pressure synchronization);
4. Agricultural Machinery: Combine harvesters, seeders (multi-actuator synchronization);
5. Industrial Automation: Multi-station stamping, painting lines, machine tool fixtures (proportional feeding).

 

Precautions for Use
1. Strictly Prohibit Dry Running: Prolonged operation under no-load conditions will cause wear to the gears and side plates, resulting in a decline in flow division accuracy.
2. Ensure Fluid Cleanliness: Install an oil filter (with a filtration rating of 10–20 μm) at the inlet to prevent particulate matter from scratching the seals.
3. Balance Outlet Resistance: Ensure that the length and diameter of the two outlet pipelines are as consistent as possible to minimize flow deviations caused by pressure differentials.
4. Cast Iron Protection: Avoid exposure to strong acids, saline solutions, or highly corrosive media to prevent corrosion-induced failure of the housing.

 

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