DYNAPAC CC950 STATIC SMOOTH DRUM ROLLER

DYNAPAC CC950 DYNAPAC CC950 STATIC SMOOTH DRUM ROLLER equipment image

Equipment Overview

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OEM
DYNAPAC
Model
CC950
Year of Manufacture
-
Category
STATIC SMOOTH DRUM ROLLER

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Technical Description

The 2023 Dynapac CC950 Static Smooth Drum Roller is a compact, efficient compaction machine designed for small-scale applications such as bike paths, small roads, and parking lots. It features an operating weight of 3,000 lbs (max. operating mass 3,100 lbs) and a compaction width of 35 inches, suited for precise, narrow-area work. The roller is powered by a water-cooled Kubota D722-E4B diesel engine delivering 20.3 hp at 3,600 RPM, ensuring reliable and emission-compliant performance. It generates a centrifugal force of 3,800 lbs with a vibration frequency of 70 Hz applied on the front drum for effective compaction, while the rear drum remains static with shock mounts for reduced operator vibration. The machine measures 83 inches in length, 38 inches in width, and 91 inches in height with ROPS/cab, offering maneuverability with a turning radius of 9 feet outside and 6 feet inside. It features a 23-inch diameter drum with a thickness of 0.4 inches and a static linear load of 40 lb/in, providing smooth and consistent compaction. The hydraulic system includes hydrostatic drive with fail-safe brakes on both drums for safety and control, reaching speeds up to 5 mph. The 50-gallon water spray tank enables dust control and extended working intervals. Operator comfort is enhanced by an ergonomic, sliding seat, foldable ROPS with seatbelt, and an accessible instrument panel with hour meter, warning lights, and controls. The CC950’s durable design, low maintenance, and user-friendly features make it ideal for various compacting jobs with precision and safety.

Technical Attributes

Drum Width
35 ''
Centrifugal Force
3800 lb-ft
Vibration Frequency
70 Hz

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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