CASE SV216 STATIC SMOOTH DRUM ROLLER

CASE SV216 CASE SV216 STATIC SMOOTH DRUM ROLLER equipment image

Equipment Overview

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OEM
CASE
Model
SV216
Year of Manufacture
-
Category
STATIC SMOOTH DRUM ROLLER

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Technical Description

The CASE SV216 static smooth drum roller is a heavy-duty compaction machine designed for optimal performance in soil and asphalt compaction tasks. It features a front smooth drum with a diameter of 59 inches and a width of 86.7 inches, delivering a static linear load of 257 pounds per inch. The vibratory system operates at dual frequencies of 29 and 35 vibrations per minute (vpm), providing centrifugal forces ranging from 53,261 to 73,037 pounds, with a nominal amplitude of 0.1 inch at both high and low settings for efficient compaction. Powered by a Cummins QSB 4.5 Tier III-certified engine, the roller produces 148 horsepower (110 kW), ensuring strong and consistent performance. The engine supports an operating voltage of 24 volts and has a maximum speed of 6.3 mph (10 kph). Fluid capacities include 6.6 gallons for the cooling system, 4.3 gallons for engine oil, 23.8 gallons for hydraulic fluid, and a fuel tank capacity of 108 gallons, supporting extended operation periods. The machine measures 18.7 feet in length, 8.2 feet in width, and 10 feet tall (top of cab), with a ground clearance of 16.5 inches and a wheelbase of 9.3 feet. Its operating weight is approximately 31,479 pounds. The roller is equipped with 23.1x26 inch UK5 10 PR tires, enhancing maneuverability on various job sites. This model balances powerful compaction capability with efficient engine performance and robust design, suitable for heavy construction and infrastructure projects.

Technical Attributes

Centrifugal Force
53261 lb-ft
Drum Width
87 ''

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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