General

Cat 3304 water pump

Cat 3304 water pump

Cat 3304 water pump

The Cat 3304 water pump is a horizontal-type water-cooled, vane-type, two-stage pump originally designed and produced by Caterpillar Inc. for use on construction and mining machinery. It is manufactured in a range of sizes from to by the Cat company, and has been used on earthmoving and forestry equipment, and on stationary equipment such as forklifts, tractors, and conveyors.

Design

The Cat 3304 pump has a design intended to reduce the effect of cavitation on the pump components, and is designed to withstand significant shock loads. The pump design incorporates a horizontal impeller, and has been described as "relatively complex" and "sophisticated". It uses the Venturi effect to increase the flow area of the pump, and incorporate an r gap in the impeller. The impeller uses a set of vanes which are located in slots, and when the impeller rotates, these slots cause the vanes to reciprocate between the slots to increase the flow area and the efficiency of the pump. The vanes are contned within a cast iron casing, with slots cut in the casing so the vanes can move. The vanes are held in position by a plastic cap. The vanes are held in place by two rings, and a washer. The casing is held together by a set of fasteners and the casing itself is supported by a set of brackets.

A typical impeller design will have four vanes, with a total of 8 vanes in an impeller designed for a pump size of or. The impeller itself will typically weigh. The impeller is supported by a shaft which has a diameter of. The shaft and impeller are held together with fasteners such as screws, and the impeller is attached to the shaft by a rubber washer. The impeller itself is held by two rings, and a washer, and a ring which is attached to a plastic cap, the ring is connected to the shaft, and the plastic cap is fastened by a set of fasteners. The impeller rotates on a centre hub, and the shaft is located on a shaft bearing in the casing, which is held in place by a bearing sleeve. The impeller and shaft are attached to a drive shaft, which is located in a hole in the casing, which is held in place by a bearing cap.

The drive shaft is located on a bearing which is attached to the housing, and is held in place by a drive cap, the drive cap is held in place by a set of screws. The drive shaft is attached to the impeller through the use of a spline, the drive shaft has a diameter of. The impeller is connected to the drive shaft through a universal joint, and the universal joint connects the drive shaft to the impeller by means of a coupling ring, the impeller is attached to the coupling ring by means of a washer, and the coupling ring is held in place by a set of fasteners, the impeller is attached to the drive shaft by a bearing ring, and a washer, the bearing ring is held in place by a set of fasteners. The bearings, washers, and fasteners are all held in place by a plastic cap.

In a typical Cat 3304 impeller, the vanes are held in position by the plastic cap, the washer, and the fasteners. The washer and the plastic cap are held in place by a plastic cap, the plastic cap is attached to the impeller by a set of fasteners. The impeller itself is held in position by a set of fasteners, a plastic cap, and a washer. A typical impeller design has eight vanes, the vanes are held in place by the plastic cap, the washer, and the fasteners. The plastic cap is held in place by a set of fasteners, the plastic cap is attached to the impeller by a washer, and the impeller is held in place by a set of fasteners.

The impeller of a Cat 3304 pump is driven by a single motor, the motor is connected to the impeller by means of a drive shaft, the drive shaft has a diameter of, and is held in place by a drive cap, and a drive bearing. The drive cap is attached to the impeller through a universal joint, the drive shaft and impeller are held together by a coupling ring, and the coupling ring is held in place by a set of fasteners, the coupling ring is attached to the drive shaft by a washer, the drive cap is held in place by a set of fasteners, and the drive cap is connected to the impeller by a washer, the impeller is held in place by a set of fasteners, and a plastic cap. The impeller is held in place by a set of fasteners, a plastic cap, and a washer. The impeller is attached to the drive shaft by means of a spline, the impeller has a diameter of, and is held in place by a washer and a bearing cap.

A typical drive shaft is located in a hole in the casing, and is held in place by a bearing sleeve. The drive shaft is connected to the drive cap by a universal joint, the drive cap is held in place by a set of fasteners, and is connected to the drive shaft by a washer. The drive cap is attached to the drive shaft through a coupling ring, and the coupling ring is held in place by a set of fasteners, the drive shaft is held in place by a bearing cap, and a bearing sleeve.

The drive cap and the drive bearing are attached to the housing through a bearing sleeve, the bearing cap is attached to the housing through a bearing cap, and a set of fasteners, and the drive cap and the drive bearing are held in place by a set of fasteners.

The drive shaft is attached to the drive impeller through the use of a universal joint, and the universal joint connects the drive shaft to the drive impeller by means of a coupling ring, the drive impeller is attached to the coupling ring by


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