Polyester polymer and copolymer compositions containing metallic titanium particles
Abstract
Polyester compositions are disclosed that include polyester polymers or copolymers having incorporated therein metallic titanium particles that improve the reheat properties of the compositions. Processes for making such compositions are also disclosed. The titanium particles may be incorporated in the polyester by melt compounding, or may be added at any stage of the polymerization, such as during the melt-phase of the polymerization. A range of particle sizes may be used, as well as a range of particle size distributions. The polyester compositions are suitable for use in packaging made from processes in which a reheat step is desirable.
Claims
exact text as granted — not AI-modified1 . A polyester composition having improved reheat, comprising:
a polyester polymer; and metallic titanium particles, having a median particle size from about 0.005 μm to about 100 μm, dispersed in the polyester polymer.
2 . The polyester composition of claim 1 , wherein the metallic titanium particles have a median particle size from about 0.01 μm to about 10 μm.
3 . The polyester composition of claim 1 , wherein the metallic titanium particles have a median particle size from about 0.01 μm to about 5 μm.
4 . The polyester composition of claim 1 , wherein the metallic titanium particles are present in an amount from about 0.5 ppm to about 1000 ppm, with respect to the total weight of the polyester composition.
5 . The polyester composition of claim 1 , wherein the metallic titanium particles are present in an amount of from 1 ppm to 500 ppm, with respect to the total weight of the polyester composition.
6 . The polyester composition of claim 1 , wherein the metallic titanium particles are present in an amount of from 5 ppm to 50 ppm, with respect to the total weight of the polyester composition.
7 . The polyester composition of claim 1 , wherein the polyester polymer comprises polyethylene terephthalate.
8 . The polyester composition of claim 1 , wherein the polyester composition is in the form of a beverage bottle preform.
9 . The polyester composition of claim 1 , wherein the polyester composition is in the form of a beverage bottle.
10 . The polyester composition of claim 1 , wherein the polyester composition is in the form of a molded article.
11 . The polyester composition of claim 1 , wherein the polyester polymer comprises a continuous phase, and wherein the metallic titanium particles are dispersed within the continuous phase.
12 . The polyester composition of claim 1 , wherein the metallic titanium particles have a median particle size from 0.02 μm to 10 μm, and provide the polyester composition with a reheat improvement temperature (RIT) of at least 5° C. while maintaining preform L* value of 60 or more.
13 . The polyester composition of claim 1 , wherein the metallic titanium particles comprise titanium-coated particles.
14 . The polyester composition of claim 1 , wherein the metallic titanium particles comprise hollow spheres comprised of titanium.
15 . The polyester composition of claim 1 , wherein the metallic titanium particles comprise a titanium alloy, wherein titanium is present in an amount of at least 30 wt. %, with respect to the total weight of the titanium alloy.
16 . The polyester composition of claim 1 , wherein the metallic titanium particles comprise a titanium alloy, wherein titanium is present in an amount of at least 50 wt. %, with respect to the total weight of the titanium alloy.
17 . The polyester composition of claim 16 , wherein the titanium alloy further comprises one or more of: aluminum, tin, or zirconium.
18 . The polyester composition of claim 1 , wherein the metallic titanium particles comprise a titanium alloy that includes aluminum present in an amount from about 0.5 wt. % to about 7.5 wt. %.
19 . The polyester composition of claim 1 , wherein the metallic titanium particles have a particle size distribution in which the span (S) is from 0 to about 10.
20 . The polyester composition of claim 1 , wherein the metallic titanium particles have a particle size distribution in which the span (S) is from 0.01 to 2.
21 . A polyester composition having improved reheat, comprising: a polyester polymer in which poly(ethylene terephthalate) residues comprise at least 90 wt. % of the polyester polymer; and metallic titanium particles, having a median particle size from about 0.02 μm to about 10 μm, randomly dispersed in the polyester polymer in an amount from about 1 to about 50 ppm, wherein the polyester composition has a reheat improvement temperature of 10° C. or more and an L* brightness level of 60 or more.
22 . A process for producing a polyester composition, comprising:
an esterification step comprising transesterifying a dicarboxylic acid diester with a diol, or directly esterifying a dicarboxylic acid with a diol, to obtain one or more of a polyester monomer or a polyester oligomer; a polycondensation step comprising reacting the one or more of a polyester monomer or a polyester oligomer in a polycondensation reaction in the presence of a polycondensation catalyst to produce a polyester polymer having an It.V. from about 0.50 dL/g to about 1.1 dL/g; a particulation step in which the molten polyester polymer is solidified into particles; an optional solid-stating step in which the solid polymer is polymerized to an It.V. from about 0.70 dL/g to about 1.2 dL/g; and a particle addition step comprising adding and dispersing metallic titanium particles to provide an amount from about 1 ppm to about 100 ppm by weight of the polymer, wherein the particle addition step occurs before, during, or after any of the preceding steps.
23 . The process according to claim 22 , wherein the process further comprises a forming step, following the solid-stating step, the forming step comprising melting and extruding the resulting solid polymer to obtain a formed item having the metallic titanium particles dispersed therein.
24 . The process according to claim 23 , wherein the particle addition step occurs during or after the solid-stating step and prior to the forming step.
25 . The process according to claim 22 , wherein the particle addition step comprises adding the metallic titanium particles as a thermoplastic concentrate prior to or during the forming step, the thermoplastic concentrate comprising the metallic titanium particles in an amount from about 100 ppm to about 5,000 ppm, with respect to the weight of the thermoplastic concentrate.
26 . The process according to claim 22 , wherein the metallic titanium particles have a median particle size from about 0.005 μm to about 100 μm.
27 . The process according to claim 22 , wherein the particle addition step is carried out prior to or during the polycondensation step.
28 . The process according to claim 22 , wherein the particle addition step is carried out prior to or during the particulation step.
29 . The process according to claim 22 , wherein the particle addition step is carried out prior to or during the solid-stating step.
30 . The process according to claim 23 , wherein the particle addition step is carried out prior to or during the forming step.
31 . The process according to claim 22 , wherein the dicarboxylic acid comprises terephthalic acid.
32 . The process according to claim 22 , wherein the dicarboxylic acid diester comprises dimethyl terephthalate.
33 . The process according to claim 22 , wherein the diol comprises ethylene glycol.
34 . The process according to claim 22 , wherein the dicarboxylic acid comprises naphthalene dicarboxylic acid.
35 . The process according to claim 22 , wherein the dicarboxylic acid comprises an aromatic dicarboxylic acid.
36 . The process according to claim 25 , wherein the thermoplastic concentrate comprises:
metallic titanium particles, in an amount ranging from about 0.15 wt. % up to about 35 wt. % based on the weight of the thermoplastic concentrate; and a thermoplastic polymer, in an amount of at least 65 wt. % based on the weight of the thermoplastic concentrate.
37 . The process according to claim 36 , wherein the thermoplastic polymer comprises one or more of: a polyester, a polyolefin, or a polycarbonate.
38 . A process for making a polyester preform, comprising feeding a molten or solid bulk polyester and a liquid, molten or solid polyester concentrate composition to a machine for manufacturing the preform, the concentrate composition comprising metallic titanium particles having a median particle size from about 0.005 μm to about 100 μm, to obtain a preform having from about 1 ppm to about 100 ppm metallic titanium particles, based on the weight of the polyester preform.
39 . The process of claim 38 , wherein the metallic titanium particles are present in the concentrate composition in an amount of at least 0.15 wt. %.
40 . The process of claim 39 , wherein the concentrate polyester polymer comprises the same residues as the bulk polyester polymer.
41 . The process of claim 38 , wherein the bulk polyester and the polyester concentrate are fed to the machine in separate streams.
42 . The process of claim 38 , wherein the concentrate polyester comprises post-consumer-recycle polyester.
43 . A process for producing a polyester composition, comprising adding a concentrate polyester composition to a melt phase process for the manufacture of virgin polyester polymers, said concentrate comprising metallic titanium particles having a median particle size from about 0.005 μm to about 100 μm, to obtain a polyester composition having from about 1 ppm to about 100 ppm metallic titanium particles, based on the weight of the polyester composition.
44 . The process of claim 43 , wherein the polyester concentrate is added to the melt phase when the melt phase has an It.V. which is within ±0.2 It.V. units of the It.V. of the polyester concentrate.Join the waitlist — get patent alerts
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