SAKAI SV210 STATIC SMOOTH DRUM ROLLER

SAKAI SV210 SAKAI SV210 STATIC SMOOTH DRUM ROLLER equipment image

Equipment Overview

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OEM
SAKAI
Model
SV210
Year of Manufacture
-
Category
STATIC SMOOTH DRUM ROLLER

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Technical Description

The Sakai SV210 Static Smooth Drum Roller is a robust compaction machine designed for efficient soil and asphalt compaction. It features a 66-inch wide smooth drum that delivers consistent compaction across a 67.7-inch operating width. The drum’s vibration frequency ranges from 30 to 41 vibrations per minute (vpm), enabling effective consolidation of various soils and granular materials. Powered by a reliable Cummins QSB 3.3 C99 diesel engine, the SV210 offers approximately 99 gross horsepower, with an advertised horsepower range of 80 to 110 hp and peak torque between 274 to 304 lb-ft. The engine's oil system capacity ranges from 8.5 to 12.7 U.S. quarts, and the coolant capacity is 4.9 U.S. quarts, ensuring optimal thermal management during extended operation. The roller has an inside turning radius of 122 inches, providing maneuverability for confined site conditions. Its hydrostatic drive system efficiently transmits power to the drum and tires, enhancing traction and control. The SV210’s static smooth drum design makes it ideal for applications requiring uniform surface compaction, such as road construction and foundation preparation. The machine's durable frame and advanced vibration system combine to deliver high compaction force and operational reliability, supporting productivity in a wide range of civil engineering tasks. Overall, the Sakai SV210 balances power, versatility, and ease of operation for contractors requiring dependable smooth drum rolling performance.

Technical Attributes

Drum Width
66 ''

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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