Triaryl phosphate ester composition

Organic compounds -- part of the class 532-570 series – Organic compounds – Phosphorus esters

Reexamination Certificate

Rate now

  [ 0.00 ] – not rated yet Voters 0   Comments 0

Details

Reexamination Certificate

active

06242631

ABSTRACT:

BACKGROUND OF THE INVENTION
The invention is a novel liquid mixed triaryl phosphate composition containing a reduced concentration of triphenyl phosphate.
Mixed synthetic triaryl phosphate esters have been prepared by alkylating phenol with alkenes, such as propylene or isobutylene, to obtain a mixture of phenol and substituted phenols. According to U.S. Pat. No. 4,093,680, this alkylate mixture can then reacted with phosphorus oxychloride (POCl
3
) to form a mixed triaryl phosphate ester. The product mix is a statistical mixture based on the composition of the starting alkylate and always includes some fraction of triphenyl phosphate (TPP), usually from 5 to 50 percent. The product's physical properties are determined by the degree of alkylation of the phenol. A highly alkylated phenol mixture will result in a more viscous phosphate ester product than one less substituted. For example, this process results in products that are a mixture of phosphate ester isomers including: triphenyl phosphate, diphenyl alkylphenyl phosphate, phenyl di(alkylphenyl)phosphate, and tri(alkylphenyl)phosphate (“mixed alkylated phosphate esters”). It is also possible that phenol rings with 2-5 alkyl groups may be present, however, these groups are slow to react with POCl
3
, and are present at less than 0.5% in commercial products. The final product is tailored by selecting a specific blend of phenol and alkyl phenols as starting materials.
Such phosphate esters are used as fire resistant hydraulic fluids and lubricant basestocks, lubricant anti-wear additives, and flame retardant plasticizers. A phosphate ester that is highly resistant to oxidative, thermal, and hydrolytic degradation is desirable. In addition, a phosphate ester that has low volatility will not exhibit large evaporation losses, which is advantageous for high temperature applications.
Prior phosphate esters with good oxidative stability had poor hydrolytic stability, and conversely, phosphate esters with good hydrolytic stability had reduced oxidative stability. It is desirable to produce a triaryl phosphate ester with a combination of excellent thermal, oxidative, and hydrolytic stability.
Alkylated (iso-propyl, tert-butyl, iso-octyl, isononyl) triaryl phosphate esters are useful as fire resistant hydraulic fluids, lubricants and lubricity additives. Currently used product are prepared by reaction of phosphorus oxychloride with mixture of alkylated phenols which contain significant amount of phenol. As a consequence, the resulted product contains triphenyl phosphate at concentrations well above 5%. Triphenyl phosphate is known as mild cholinesterase inhibitor and as such should be avoided in lubricants. The prior art compositions of alkylated triphenyl phosphates with low concentration of triphenyl phosphate are of high viscosity and are not useful as hydraulic fluids.
A recent example of a disclosure that is also relevant to the present invention is contained in U.S. Pat. No. 5,206,404. The products that are described in this patent that have a lower content of triphenyl phosphate were obtained by removal of triphenyl phosphate from the standard product by distillation. The resulted product is usually of high viscosity (over 85 cSt at 40° C.), and the composition contains a high concentration of multi-substituted molecules and a relatively low concentration of mono-alkylphenyl diphenyl phosphate and, as such, is not very useful in hydraulic fluid applications.
An older example of a disclosure that is also relevant to the present invention is contained in U.S. Pat. No. 2,275,041. The products that are described in this patent have a low triphenyl phosphate content and a high mono-alkylphenyl diphenyl phosphate content. However, the products described in U.S. Pat. No. 2,275,041 are too reactive to be suitable for use as hydraulic fluids where thermal stability and non-reactivity are primary performance criteria. In fact, the patentees claim their products “are useful as modifying agents for various synthetic resins, and, because of the reactivity of the allyl-type group, are particularly useful as intermediates in the preparation of a wide variety of new organic chemicals.”
SUMMARY OF THE INVENTION
The invention is a novel liquid mixed triaryl phosphate ester composition with low content of triphenyl phosphate and viscosity range from about 30 to about 85 cSt @ 40° C. and a process for its manufacture. This composition shows lower air entrainment time when compared to the standard products of this type. The standard of mixed synthetic triaryl phosphate esters are prepared by phenol alkylation with alkenes to obtain mixture of phenol and alkylated phenols which is then reacted with phosphorus oxychloride. Such product contains high level of triphenyl phosphate usually much more than 5% and typical air entrainment times are in the range of 3 to 6 minutes.
Description of the Preferred Embodiments
The present invention overcomes the problems of the prior art by providing a fluid composition of mixed alkylated triphenyl phosphate esters comprising by weight:
Monoalkylphenyl diphenyl phosphate: 65−100%
Dialkylphenyl phenyl phosphate: 0−30%
Trialkylphenyl phosphate: 0−3%
Triphenyl phosphate: 0−5%
One preferred embodiment of the present invention is a composition of mixed tertiary-butylated triphenyl phosphate esters containing no less than about 80% monotert-butylphenyl phosphate, which phosphate contains from about 40% to about 60% ortho isomer, and from about 60% to about 40% para isomer, up to about 20% di-tert-butylphenyl phenyl phosphate, up to about 2% tri-tert-butylphenyl phosphate, and up to about 5% triphenyl phosphate.
The composition of the present invention is prepared by the following process: POCl
3
is first reacted with a high purity alkylated phenol in a quantity sufficient to exhaust at least one functionality of the POCl
3
reagent and the existing product is then reacted with phenol to complete the reaction. The same product can also be synthesized by reversing this reaction sequence. First, a mixture of diphenyl monochlorophosphate and phenyl dichlorophosphate is prepared in the reaction of POCl
3
with phenol and the reaction is completed using a high purity alkylated phenol reagent. To accelerate these reactions, a number of catalysts can be used, such as MgCl
2
, TiCl
4
, and others. The alkylated phenols used in the practice of the present invention are: the iso-propylphenols, the t-butylphenols, the iso-octylphenols, and the iso-nonylphenols.
The fluids prepared according to the previously described method show unusually low air entrainment values of less than 180 seconds, and as low as 20 seconds, and have a content of triphenyl phosphate that typically varies from about 0 to about 5.0%.
The importance of low air entrainment (rapid air release) for a phosphate ester hydraulic fluid is illustrated by the three minute (180 second) limit established by Siemens AG in their specification TLV 9012 02 for “Fire Resistant Fluid for Electrohydraulic Actuators”. Currently, only trixylyl phosphate esters are approved for use in Siemens systems. Trixylyl phosphate esters typically have air entrainment times of thirty seconds or less. Mixed alkylated triaryl phosphate esters are not used in Siemens electrohydraulic control systems because of their typical air entrainment times of three to six minutes. The phosphate ester compositions described in the present invention are within the Siemens AG specification of three minutes and, in several cases, match the very low values of trixylyl phosphate esters.
Additionally, the fluids that are prepared according to the present invention are believed not to be cholinesterase inhibitors in contrast to current commercially available triaryl phosphate esters that have utility as hydraulic fluids.


REFERENCES:
patent: 2071323 (1937-02-01), Bass
patent: 2275041 (1942-03-01), Britton et al.
patent: 3780145 (1973-12-01), Malec
patent: 3859395 (1975-01-01), Terhune et al.
patent: 3945891 (1976-03-01), Aai et al.
patent: 4087386 (1978-05-01), Dounchis et a

LandOfFree

Say what you really think

Search LandOfFree.com for the USA inventors and patents. Rate them and share your experience with other people.

Rating

Triaryl phosphate ester composition does not yet have a rating. At this time, there are no reviews or comments for this patent.

If you have personal experience with Triaryl phosphate ester composition, we encourage you to share that experience with our LandOfFree.com community. Your opinion is very important and Triaryl phosphate ester composition will most certainly appreciate the feedback.

Rate now

     

Profile ID: LFUS-PAI-O-2512595

  Search
All data on this website is collected from public sources. Our data reflects the most accurate information available at the time of publication.