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Radial Piston Hydraulic Motor INR   0 INR  0
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Radial Piston Hydraulic Motor

Characteristics of Radial Piston motors: 1. HIGH STARTING TORQUE High starting torque efficiencies at high pressures Less energy wastage and heat generation, fuel consumption reduction especially with frequent stop???start work cycles Enables large obstacles and steep slopes to be overcome easily 2. WIDE SPEED RANGE Wide specific speed ranges Good low and high speed characteristics 3. HIGH VOLUMETRIC EFFICIENCY Volumetric efficiencies in all operating conditions Seal design ensures volumetric efficiencies not affected even if components become worn with use 4. CAVITATION RESISTANCE Retaining force of piston retaining rings prevents separation of piston from the shaft SAI design enables the motor to run without oil in the pistons 5. HIGH POWER DENSITY High mechanical efficiencies combined with high pressure and high speed capabilities of motor results in high power output Compact dimensions, higher precision and an extremely wide operating range for the machines

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Danfoss OMS Series Motor INR   0 INR  0
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Danfoss OMS Series Motor

Danfoss OMS Series Motor Power element : Rolller Displacement :from 160 to 500 cm3/giro [from 9.8 to 30.5 in3/rev] Maximum Pressure: cont.: 200 bar [2900 psi] int. : 240 bar [3480 psi] Maximum oil flow :150 lpm [ 40 U.S. gpm] Maximum speed :780 rpm Maximum torque : cont. : 1220 Nm [900 lbf. ft] int.: 1370 Nm [1010 lbf. ft] Maximum power : 40 kW [53.6 hp]

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Gear and Vane Motors INR   0 INR  0
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Gear and Vane Motors

Gear and Vane Motors are used in simple rotating systems. Their benefits include low initial cost and high rpm. A gear motor (external gear) consists of two gears, the driven gear (attached to the output shaft by way of a key, etc.) and the idler gear. High-pressure oil is ported into one side of the gears, where it flows around the periphery of the gears, between the gear tips and the wall housings in which it resides, to the outlet port. The gears then mesh, not allowing the oil from the outlet side to flow back to the inlet side. A vane motor consists of a housing with an eccentric bore, in which runs a rotor with vanes in it that slide in and out. The force differential created by the unbalanced force of the pressurized fluid on the vanes causes the rotor to spin in one direction.

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Directional Control Valves INR   0 INR  0
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Directional Control Valves

Directional Control Valves We bring forth an exclusive range of this Directional Control Valves which is used in many industries to direct fluid flow in the required direction and location in the circuit. 1) Monoblock Directional Valves a) 40 lpm flow b) 80 lpm flow c) 120 lpm flow 2) Sectional Directional Valves a) 80 lpm flow b) 160 lpm flow Directional control valves feature compact, cast monoblock bodies and have high operating pressure ratings. Available in 9 different sizes, the large range of spools, spool operators, levers and auxiliary shock/anti-cavitation valves make this valves especially suitable for use in medium-complexity circuits. They are also very suitable for straight-forward applications in which a particularly small overall size is required. This valves is available in the following versions: open centre, parallel/series, closed centre and carry-over. A further notable feature is the very low level of internal spool leakage. Advantages Low weight, small dimensions Operating pressure up to 350 bar Excellent price/performance ratio Elimination of potential leakage between sections Easy maintenance

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Gear and Vane Motors INR   0 INR  0
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Gear and Vane Motors

Gear and Vane Motors are used in simple rotating systems. Their benefits include low initial cost and high rpm. A gear motor (external gear) consists of two gears, the driven gear (attached to the output shaft by way of a key, etc.) and the idler gear. High pressure oil is ported into one side of the gears, where it flows around the periphery of the gears, between the gear tips and the wall housings in which it resides, to the outlet port. The gears then mesh, not allowing the oil from the outlet side to flow back to the inlet side. A vane motor consists of a housing with an eccentric bore, in which runs a rotor with vanes in it that slide in and out. The force differential created by the unbalanced force of the pressurized fluid on the vanes causes the rotor to spin in one direction.

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Hydraulic Valve INR   0 INR  0
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Hydraulic Valve

Features:- Product Type : Directional Control Valve Model No. : 4WE 6 U 6X/E G24 N9K4 Weight (In Kg) : 1.45 Flow (L/min) : 80 Opr. Pressure Bar (Kgf/cm. sq) : 350

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Radial Piston Hydraulic Motor INR   0 INR  0
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Radial Piston Hydraulic Motor

Characteristics of Radial Piston motors: 1. HIGH STARTING TORQUE High starting torque efficiencies at high pressures Less energy wastage and heat generation, fuel consumption reduction especially with frequent stop???start work cycles Enables large obstacles and steep slopes to be overcome easily 2. WIDE SPEED RANGE Wide specific speed ranges Good low and high speed characteristics 3. HIGH VOLUMETRIC EFFICIENCY Volumetric efficiencies in all operating conditions Seal design ensures volumetric efficiencies not affected even if components become worn with use 4. CAVITATION RESISTANCE Retaining force of piston retaining rings prevents separation of piston from the shaft SAI design enables the motor to run without oil in the pistons 5. HIGH POWER DENSITY High mechanical efficiencies combined with high pressure and high speed capabilities of motor results in high power output Compact dimensions, higher precision and an extremely wide operating range for the machines

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Flow Divider Valve INR   0 INR  0
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Flow Divider Valve

Flow dividing valves divide a flow in two usually equal parts. When flow passes through a valve in the opposite direction, the two part-flows are combined into one single flow (added). The dividing and combining functions are largely independent of the pressures of the two divided flows and of the fluid viscosity. Advantages These valves do not require maintenance. This lowers costs and reduces the risk of a system failure. Flows can be split or merged with accuracy (divide/combine functions). The flow division ratio can be altered to suit customer requirements. Options: - end-of-stroke equalisation - make-up valves - check valves - pressure-relief valves Specifications: Flow Rate: 150 L/min Pressure Rate: 350 bar Max. Pressure on T: 20 bar Operating Temperature: -25 C/ 80 C Working Spool: 1 to 12 Port: Intel: G3/4, Tank: G1, A & B: G 3/4

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