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TRUEGARD #927 Universal Cutting Oil 55 GALLON DRUM

SKU 550089336
Original Price $1,143.45 - Original Price $1,143.45
Original Price
$1,143.45
$1,143.45 - $1,143.45
Current Price $1,143.45

TRUEGARD #927 Universal Cutting Oil - No Sulfur/Chlorine

TRUEGARD #927 is a revolutionary cutting oil for applications of the greatest severity or requiring the finest finishes. This powerful product can be used on all ferrous and nonferrous alloys. Applications include drilling, milling, tapping, threading, and broaching.

TRUEGARD #927 utilizes leading edge additive chemistry to provide lubricity far superior to conventional sulfur and chlorine based fluids. To meet the requirements of different applications, this product is available in several viscosity grades as shown below.

TRUEGARD #927 offers the following advantages:

Eliminates Staining & Corrosion Problems Simplifies Cleaning Of Finished Parts

Essentially Odorless Even At Elevated Temperatures

TRUEGARD #927 is a very clean product to use. It is completely non-staining to all metals, even after sustained usage at elevated temperatures. In addition, it will provide better in-process rust protection than other cutting oils.

TRUEGARD #927 is readily removed from machined parts with mild alkaline cleaners. This lubricant will readily float on water, thereby allowing for easy removal by way of skimmers. This is in contrast to many heavy duty cutting oils which are very difficult to remove and which sink to the bottom of the wash tank.

TRUEGARD #927 exhibits very little odor, even at elevated temperatures. This contrasts markedly from zinc/chlorine/sulfur based cutting oils which present severe odor challenges at the high operating temperatures typically encountered in severe metalworking applications.

Typical Properties:

 

#927

#927-20

#927-35

Viscosity, SUS @ 100 F

140

200

350

Color

Amber

Amber

Amber

Odor

Mild Oil

Mild Oil

Mild Oil

Flash Point, F

380

380

380

Frequently asked questions

Find answers to common questions about our products and services
  • Sulfur and chlorine-based cutting oils can cause staining and corrosion on metals, generate severe odors at high operating temperatures, and are difficult to remove from finished parts. TRUEGARD #927 replaces those chemistries with advanced additive technology that delivers superior lubricity without any of those drawbacks, making it especially beneficial for shops machining sensitive alloys or working in enclosed environments.

  • The #927 (140 SUS) is the lightest grade and is generally suited to higher-speed, lower-pressure operations, while the #927-20 (200 SUS) and #927-35 (350 SUS) offer progressively heavier film strength for more severe, slower-speed operations such as heavy tapping, threading, or broaching on tough alloys. Choosing a heavier grade provides greater lubricity where heat and pressure are highest.

  • Yes - the product is formulated for use on all ferrous and nonferrous alloys. Its non-staining, sulfur/chlorine-free chemistry is particularly important for nonferrous metals, which are more prone to discoloration and chemical attack from conventional cutting oils.

  • It is designed for the full range of severe metalworking operations, including drilling, milling, tapping, threading, and broaching, as well as any application requiring fine surface finishes. Its additive chemistry is intended to outperform conventional cutting oils even under the highest severity conditions.

  • Machined parts can be cleaned with mild alkaline cleaners, which is simpler than the heavy-duty cleaners often required by conventional cutting oils. Because #927 floats on water rather than sinking, it can also be efficiently removed from wash tanks using standard skimmers, reducing tank maintenance and coolant disposal complexity.

  • Yes - the product is described as providing better in-process rust protection than other cutting oils, and it is completely non-staining to all metals even after sustained use at elevated temperatures, helping protect parts between machining steps and prior to final cleaning.