General Description of TDAE
Treated distillate aromatic extracts (TDAE) is a rubber processing oil with high aromatic content. It is used rubber softening additive in the process of vulcanization of rubber. Its high viscosity-gravity constant has made it highly preferable in the tire manufacturing applications, thereby, reducing heat buildup. Due to this characteristic of treated distillate aromatic extracts, it is possible to produce large rubber based intermediate products.
TDAE is a green rubber oil (natural friendly oil) with a high aromatic content, environmental protection, non-toxic, non-carcinogenic characteristics, can be used as a substitute for existing aromatic oil.
This environment friendly process oil is used as a softening additive in the process of vulcanization of natural rubber and as a component of rubber compounds. Its high viscosity gravity constant (vgc) leads to the reduction in heat buildup and rotational resistance during the usage of tyres. Such characteristics enable our TDAE to be used in the production of high quality tire and rubbers.
Uses Of TDAE
Treated Distillate Aromatic Extract (TDAE) are used in a large variety of finished products in the chemical and manufacturing industries. It is used as a softening additive in the manufacturing process of rubber compounds. Due to its high aromatic content leads to the reduction of frictional heat buildup during the use of tires. It is also used in manufacturing of other automotive components such as belt, hoses, battery containers and other extruded products. TDAE is used to blend with heavy fuels is an important commercial use in chemical plants and maritime transport.
Some of the prominent factors that positively influence the growth of TDAE Market are, increasing crude oil production reducing the raw material gap, rising demand for efficient tires to reduce power consumption, and increasing maritime trade.
Increasing urbanization along with rising per capita disposable income in the developed and emerging economies are predicted to drive the growth of the market over the forecast period, 2017 to 2023. High adoption rate along with the increasing number of power plants to meet the energy requirements for the ever-growing population.
Moreover, continuous expansion of automotive sector as well as shifting manufacturers focus towards cost effective vehicles are estimated to fuel the growth of the market during the review period, 2017 to 2023. However, growing environmental concerns regarding the toxic effect of chemicals used in TDAE along with the implementation of strict regulations are predicted to hinder the market growth over the assessment period, 2017 to 2023.
Application of TDAE
- industry ink formulations
- isolation manufacturers
- automobile tire making factory
- rubber manufacturing
- shoes
- flooring
- cables and any other industrial interface
- as an ingredient (softener/plasticizer)
- as a processing aid in the production of natural and synthetic rubber products.
- as an ingredient in certain engine, gear and lubricating oils.
Benefits of TDAE
- Good abrasion resistance
- Good low-temperature flexibility
- Low amounts of waste tires in the process
- Good resistance to reversion
- According to international standards (EU 2009/552/EC)
- Saving fuel and energy consumption
- Extended tires lifetime
Physical Hazards
Treated Distillate Aromatic Extract Oil is stable under normal conditions of use. Avoid contact with strong oxidizing agents. Heating to decomposition may release carbon oxides, nitrogen oxides and other potentially toxic fumes and gases. Treated Distillate Aromatic Extract Oil is flammable. Avoid heat, open flames and other potential sources of ignition.
Packing of TDAE
Packing can be in new steel drum, recondition or used drum also can load on one 20foot container equal to 80 drum , ISO tank capacity is 20 MT net weight same as flexi tanks.
Specification of TDAE
Characteristic | Unit | Result | Test Method |
Sp.gr @ 15˚C | kg/m3 | 953 | ASTM D-1298 |
Flash Point | ˚C | 246 | ASTM D-92 |
Congealing Point | ˚C | 33 | ASTM D- 938 |
TAN | mg KOH/gr | 0.12 | ASTM D-974 |
Kinematic Viscosity@40°C | cSt | 549.48 | ASTM D-445 |
Kinematic Viscosity @50 °C | cSt | 260.8 | ASTM D-445 |
Kinematic Viscosity @100 °C | cSt | 19.65 | ASTM D-445 |
RI@20˚C | — | 1.5227 | ASTM D-1218 |
RI@67˚C | — | 1.5113 | ASTM D-1218 |
VGC | — | 0.895 | ASTM D-2501 |
Aniline point | ˚C | 63 | ASTM D-611 |
Refractivity Intercept | — | 1.051 | AMS140.13 |
Water Content (Karl Fischer) | ppm | 412.2 | ASTM D-6304 |
Sulphur Content | %(W/W) | 3 Max | ASTM D-2622 |
Carbon Type Distribution | % CA/CN/CP | 23/39/38 | AMS 140.13 |
Content Of PCA Extract | %(W/W) | 2.2 | IP 346 |