Falex-High Temperature Bearing-环球(香港)科技有限公司
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Falex-High Temperature Bearing
Category:Industrial Lubrication
Method Standard:ASTM D3366
Application:Evaluate greases for extended periods of ball bearing operation under light loads, high speed and elevated temperatures.
Brand:FALEX
Description Standard Test Methods Technical Data

The Falex High Speed - High Temperature Bearing Test Rig offers versatility and operational simplicity. This test apparatus is designed to evaluate greases for extended periods of ball bearing operation under light loads, high speed and elevated temperatures.

The standard apparatus includes two independent “CRC” axially loaded test spindles. These spindles rotate two SAE No. 204 ball bearings; at 10,000 revolutions per minute under light loads. Alternate spindle systems are available upon request.

The instrumentation console allows operator control of the instrument test parameters and provides test data display. Standard configuration provides Chamber Temperature from ambient to 371° C (700° F), Torque, Specimen Temperature, Chamber Temperature, and Test Time displays.

The Falex High Speed-High Temperature Test Machine provides the accuracy and precision to obtain reliable test data as outlined in the ASTM Standard Test Method D 3336.


ASTM D3336   Standard Test Method for Performance Characteristics of Lubricating Grease in Ball Bearings at Elevated Temperature


Speed

10,000 revolutions per minute under light loads.

Load

15 lbs. maximum axial load, mechanically applied.

Temperature Control

Digital Temperature Control for Test Chamber System (370° C max) High/Low Test Temperature Cutoff.

Timing System

Digital Test Time Duration on and off timers and system total elapsed time indicator.

Test Drive System

Variable Speed Motor

Test Torque System

Digital Test Torque display with high and low torque cutoffs.

Cabinetry

Heavy construction steel with electro/mechanical compartment, test ovens, and instrumentation panel.

Standard Spindle Assembly

Type “CRC” (full floating spindle) as described in ASTM D 3336.