Multifunctional technical fluid
for food safety
Mould release agent, Anti-adhesive and Lubricant
H1 3H, MOSH-free, POSH-free, MOAH-free
Analysis report available on request
21/080024 LC GC-FID DIN/EN 16995
PHYSICAL AND CHEMICAL PROPERTIES
PROPERTIES |
STANDARDS |
VALUES |
UNITS |
Appearance |
Visual |
Clear |
- |
Colour* |
Visual |
Yellow |
- |
Odour |
Olfactory |
Light |
- |
Density at 25°C |
NF EN ISO 12185 |
913 |
kg/m3 |
Refractive index |
ISO 5661 |
1.4720 |
- |
Freezing point |
ISO 3016 |
-18 |
°C |
Solubility in water |
- |
0 |
% |
Kinematic viscosity at 40°C |
NF EN 3104 |
36 |
cSt |
Acid value |
EN 14104 |
<0.1 |
mg(KOH)/g |
Water content |
NF ISO 6296 |
<10 |
ppm |
FIRE SAFETY PROPERTIES |
|||
PROPERTIES |
STANDARDS |
VALUES |
UNITS |
Flash point (vacuum) |
NF EN 22719 |
without |
°C |
Lower explosive limit |
- |
without |
% (by volume) |
Upper explosive limit |
- |
without |
% (by volume) |
TOXICOLOGICAL PROPERTIES |
|||
PROPERTIES |
STANDARDS |
VALUES |
UNITS |
Anisidine value |
NF ISO 6885 |
<6 |
- |
Peroxide value |
NF ISO 3960 |
<10 |
meq(O2)/kg |
TOTOX (anisidine value + 2x peroxide value) |
- |
<26 |
- |
CMR, irritating and corrosive substance content |
CLP Regulation |
Total absence |
% |
Residual methanol content from transesterification |
GC-MS |
0 |
% |
Emissions of hazardous, CMR, irritant, corrosive compounds at 160°C. |
GC-MS |
0 |
% |
ENVIRONMENTAL PROPERTIES |
|
||
PROPERTIES |
STANDARDS |
VALUES |
UNITS |
Water endangering |
WGK Germany |
0 |
class |
Primary biodegradability CEC 21 days at 25°C |
L 33 T 82 |
over 90 |
% |
Easy biodegradability OECD 301 A over 28 days |
ISO 7827 |
over 90 |
% |
Easy and ultimate biodegradability OECD 301 C over 28 days Biodegradation at 67 days |
Modified MITI |
100 |
|
Biodegradability 301 F manometric respirometry test 28 days |
OECD 301 F |
>70 GLP certification |
% |
Bioaccumulation n-octanol water partition coefficient |
OECD 107 |
less than 1 |
log Kow |
Vapour pressure at 20°C |
- |
0 |
hPa |
VOC (Volatile Organic Compounds) content |
- |
0 |
% |
Solvent content |
- |
0 |
% |
Environmentally hazardous substances content |
- |
0 |
% |
Content of compounds with a GWP |
- |
0 |
% |
Content of compounds with an ODP |
- |
0 |
% |
Carbon balance, life cycle analysis |
ISO 14040 |
0.80 |
Carbon Equivalent Kg |
DESCRIPTION
New generation formulation of modified esters of vegetable origin. Product guaranteed animal-free.
Reduced friction and wear. Anti-oxygen, anti-corrosion, non-drying, totally stable.
APPLICATIONS
VEGELUB® AL has a wide range of operating temperatures from -20°C to +150°C and can therefore be used in freezing or baking plants.
Non-stick treatment and lubrication of conveyor belts and moulds. Worm gear.
Lubrication of knives, rotary knives, dividers, blades, slicers, guillotines, boning benches, rockers and guides.
Lubrication of information transmissions, cams and pushbuttons.
Sheet metal forming by shearing and stamping, of packaging components, rings and tyre removal devices.
USE OPTIMISATION
The installation of a lubrication system has an extremely fast return on investment. The optimum hydrodynamic quantity is 2 x Ra. Ra being in microns, the mean surface roughness value of the substrates in contact (hollow peaks).
Microlubrication is a technique of supplying a precise quantity of a liquid in a process. It is also called MQL or Minimum Quantity Lubrication.
Considerable reduction in quantities used.
Is part of a 5 S method.
Part of Lean Management: muda, muri, mura.
Reduced FE response times. Reduced risk of error. Reduced risk of foreign bodies in food due to lack of dissociable equipment.
No solvent, no vapour emissions, no organo-volatile emissions.
USES
Microlubrication is used in operations such as:
ADVANTAGES
Precise and reliable, microlubrication reduces to a minimum the quantities of consumables used.
TECHNOLOGIES
There is a considerable difference between spray systems and microlubrication systems.
A spray system distributes a liquid whose flow rate is regulated by an adjustable nozzle.
Spraying is generally used to cover large areas or for high flow rates.
In a microlubrication system, the dosage is calibrated by a volumetric micropump whose displacement is usually adjustable. The flow rate is a function of the displacement and the stroke rate of the micropump. The flow rate ranges from 77 mm3 per hour to more than 1.4 litres per hour.
Once dosed, the liquid can be:
The nozzles are connected to the micropumps by hoses:
In the latter case:
MATERIALS
Here are links to:
PRESENTATIONS
Drum 200 L Can 20 L
Manufacturing, lubrification, cleansing, protection,
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