ACORP I-950 WINDOWS 8 DRIVERS DOWNLOAD (2019)

ACORP I-950 DRIVER DETAILS:

Type: Driver
File Name: acorp_i_21559.zip
File Size: 13.3 MB
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Supported systems: Windows XP (32/64-bit), Windows Vista, Windows 7, Windows 8.1, Windows 10
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ACORP I-950 DRIVER



Although chemically quite distinct from the materials of the present invention, these materials are cited as hydrocarbon plasticizers of known compatibility, volatility and plasticization efficiency for the purpose of comparison. The higher molecular weight of PTB imparts a desired lower volatility and its unique structure combining aromatic, alicyclic and aliphatic segments in a very flexible molecular arrangement is apparently the basis for its improved compatibility. Acorp I-950

ACORP I-950 DRIVER

A most striking feature of PTB for PVC plasticization is its combination of high compatibility with vinyl resins and adequate plasticization efficiency. This combination permits PTB to be used at Acorp I-950 replacement levels as a secondary plasticizers, and, as indicated, even to be used as a primary plasticizer.

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Also included Acorp I-950 the invention is an improved method for making PTB. Because PTB has a Acorp I-950 reactivity toward the highly acidic catalysts needed for this reaction than does tetralin, attempts to increase the conversion of tetralin result in converting PTB to secondary products, mainly OHA and OHP.

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As Acorp I-950 result, the methods for its preparation described by Schroeter in Ber. Therefore, a preferred method for making PTB in high yield for use in this invention involves refluxing tetralin vapors over a bed of a synthetic acidic "Y" type zeolite such as Linde SK, Linde LZ-Y82, or any of the more acid types of the Mobile ZFM series of shape selective zeolites. A particularly useful way to do this is to place the catalyst in the thimble of a Soxhlet extraction apparatus or of a simplified version of such an apparatus from which the siphoning action has been eliminated and the tetralin to be reacted is Acorp I-950 in the flask of the extraction apparatus.

Acorp I-950 techniques using a bed of catalyst through which condensed vapors of the tetralin flows may also be used. In this manner the very reactive PTB has minimal contact with the catalyst and becomes concentrated in the flask. Acorp I-950 mixture can then be distilled under vaccum to remove the small amount of unreacted tetralin and both low and high-boiling by-products to yield a water-white product. Use of the PTB or its mixtures will be in the conventional manner for plasticizing operations and such techniques are well known in the art.

The following Tables illustrate the results obtained in various runs for the plasticizing of PVC resin where all or a part of the conventional plasticizer DOP is replaced with PTB in varying amounts. These figures provide a graphic display of the way the key tensile properties ultimate tensile strength, elongation at break and tensile modulus at percent elongation are distributed over a broad range of PVC formulations incorporating the hydrocarbon plasticizer phenyltetralylbutane. As long as the plasticizer remains fully compatible with the resin at the level used, the tensile modulus at percent elongation FIG. The higher molecular weight of PTB imparts a desired lower volatility and its unique structure combining aromatic, alicyclic and aliphatic segments in a very flexible molecular arrangement is apparently the basis for its improved compatibility.

A most striking feature of PTB for PVC plasticization is its combination of high compatibility with vinyl resins and adequate plasticization efficiency. This combination permits PTB to be used at high replacement levels as a secondary plasticizers, and, as indicated, even to be used as a primary plasticizer. Also included in the invention is an Acorp I-950 method for making PTB. Because PTB has a higher reactivity toward the highly acidic catalysts needed for this reaction than does tetralin, attempts to increase the conversion of tetralin result in converting PTB to secondary products, mainly OHA and OHP.

ACORP I-950 DRIVER FOR WINDOWS 8

As a result, the methods for its preparation described by Schroeter in Ber. Therefore, a preferred method for making PTB in high yield for use in this invention involves refluxing Acorp I-950 vapors over a bed of a synthetic acidic "Y" type zeolite such as Linde SK, Linde LZ-Y82, or any of the more acid types of the Mobile ZFM series of shape selective zeolites.

US4444938A - Phenyltetralylbutane as vinyl plasticizer - Google Patents

A particularly useful way to do this is to place the catalyst in the thimble of a Soxhlet extraction apparatus or of a simplified version of such an apparatus from which the siphoning action has been eliminated and the tetralin to be reacted is placed in the flask of Acorp I-950 extraction apparatus. Alternative techniques using a bed of catalyst through which condensed vapors of the tetralin flows may also be used. In this manner the very reactive PTB has minimal contact with the catalyst and becomes concentrated in the flask. This mixture can then be distilled under vaccum to remove the small amount of unreacted tetralin and both low and high-boiling by-products to yield a water-white product. Use of the PTB or its mixtures will be in the conventional manner for plasticizing operations and such techniques are well known in the art.

The following Tables Acorp I-950 the results obtained in various runs for the plasticizing of PVC resin where all or a part of the conventional plasticizer DOP is replaced with PTB in varying amounts. These figures provide a graphic display of the way the key Acorp I-950 properties ultimate tensile strength, elongation at break and tensile modulus at percent elongation are distributed over a broad range of PVC formulations incorporating the hydrocarbon plasticizer phenyltetralylbutane. As long as the plasticizer remains fully compatible with the resin at the level used, the tensile modulus at percent elongation FIG.

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