KAWASAKI 85Z7 T4F WHEEL LOADER

KAWASAKI 85Z7 T4F KAWASAKI 85Z7 T4F WHEEL LOADER equipment image

Equipment Overview

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OEM
KAWASAKI
Model
85Z7 T4F
Year of Manufacture
-
Category
WHEEL LOADERS

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Technical Description

The Kawasaki 85Z7 T4F is a high-performance wheel loader engineered for demanding construction and industrial applications. Compliant with Tier 4 Final emission standards, this model features a Cummins QSB6.7 engine delivering 243 hp (181 kW) of net power, ensuring robust performance while minimizing environmental impact. The loader is equipped with an advanced Open Center Load Sensing hydraulic system, utilizing a variable displacement pump to reduce hydraulic energy loss and optimize fuel efficiency, resulting in up to 20% lower fuel consumption compared to previous models. The engine's control mechanism and a high-efficiency hybrid cooling fan further enhance energy management by adjusting fan speed according to operational needs. The 85Z7 T4F offers a rated bucket capacity of 4.8 to 5.2 cubic yards (3 to 4 cubic meters), making it suitable for a wide range of material handling tasks. With a maximum dump clearance of 14.0 feet (4 meters) at full lift, the loader provides excellent reach and dumping capability. The operational weight is 46,050 lbs (20,888 kg), contributing to stability and lifting performance. The machine features a spacious, airtight cab with improved visibility, operator comfort, and safety, including a high-resolution color display and rearview monitor. Designed for durability and ease of maintenance, the 85Z7 T4F combines advanced technology, fuel efficiency, and operator-centric features for reliable performance in heavy-duty environments.

Technical Attributes

Engine Power
243 HP
Static Tipping Weight
19,380.90
Max Dump Height
14.00 ft
Max Bucket Capacity
5.2 yd³

Data Accuracy and Verification

Specifications and technical details are compiled from manufacturer documentation, historical records, and third-party industry sources. While care is taken to ensure accuracy, this information is provided for reference purposes only and may contain errors or omissions. Users should independently verify all details before relying on them.

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