Product category:
Metalforming lubricants
News Release from: John Neale | Subject: Synthetic vanishing oils
Edited by the Manufacturingtalk Editorial
Team on 30 January 2008
Synthetic vanishing oils suit high speed
pressing
Synthetic vanishing oils for presses operating at up to 2000 strokes/min make operation clean and stop the formation of gumming, varnishing or sticky deposits.
Production speed capability is increasing up to 2000 strokes/min with modern machines from the likes of Bruderer, and the requirement for ever tighter limits down to 1 or 2 microns is becoming more common, said John Neale Consequently, John Neale has invested development time to optimise vanishing oils for these difficult applications
This article was originally published on Manufacturingtalk on 3 Jul 2006 at 8.00am (UK)
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These new lubricants are based on advanced fully synthetic chemistry to make operation clean, stopping the formation of gumming, varnishing or sticky deposits.
The lubricity additives are state of the art synthetic, saturated molecules with ultimate lubrication performance and stability.
These give excellent sliding lubrication and products that are free of chlorine, sulphur, phosphorous.
The result is excellent cooling and lubrication leading to superb tool-life.
The lubricants are RoHS compliant to facilitate their use in electrical component manufacture.
There is a range of lubricants based on this new synthetic chemistry, as follows.
* Vanishing Oil SE40 - fully synthetic, zero residue, very fast drying vanishing oil.
* Vanishing Oil SE60 - fully synthetic, zero residue, fast drying vanishing oil.
* Vanishing Oil JN60 - fully synthetic, dry residue, ultra-high performance vanishing oil.
* Vanishing Oil JT60 - fully synthetic, ultra-high performance vanishing oil.
John Neale told manufacturingtalk.com that these vanishing oils are suitable for the punching, super-finish punching and threading of aluminium alloy and copper alloy contact materials.
They are also suitable for punching of aluminium, titanium, and magnesium alloys.
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