US2008103226A1PendingUtilityA1
Photo-curable resin composition
Est. expiryOct 31, 2026(~0.3 yrs left)· nominal 20-yr term from priority
Inventors:Jigeng Xu
B33Y 70/00B33Y 70/10G03F 7/027C08L 63/00Y10T428/24612C08G 59/24C08G 65/18C08G 59/22G03F 7/0037C08L 71/02G03F 7/0755B29C 64/135G03F 7/038
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Claims
Abstract
The invention relates to a radiation curable composition comprising from about 50 wt % to about 70 wt % of a cycloaliphatic diepoxide, from about 5 wt % to about 15 wt % of a polyol, from about 5 wt % to about 15 wt % of an oxetane, from about 10 wt % to about 20 wt % of an aromatic diacrylate, a radical photoinitiator and a cationic photoinitiator. The invention further relates to a process for making a three dimensional article from the resin composition of the invention, to the three-dimensional article itself and to the use of the composition of the invention.
Claims
exact text as granted — not AI-modified1 . A radiation curable composition comprising:
a. from about 50 wt % to about 70 wt % of a cycloaliphatic diepoxide; b. from about 5 wt % to about 15 wt % of a polyol; c. from about 5 wt % to about 15 wt % of an oxetane; d. from about 10 wt % to about 20 wt % of an aromatic diacrylate; e. a radical photoinitiator; and f. a cationic photoinitiator.
2 . The radiation curable composition according to claim 1 , wherein the composition comprises
a. from about 50 wt % to about 60 wt % of a cycloaliphatic diepoxide; b. from about 10 wt % to about 15 wt % of a polyol; c. from about 7 wt % to about 10 wt % of an oxetane; and d. from about 10 wt % to about 20 wt % of an aromatic diacrylate.
3 . The radiation curable composition according to claim 1 , wherein the cycloaliphatic diepoxide is chosen from the group consisting of 3,4-epoxycyclohexylmethyl-3,4-epoxycyclohexanecarboxylate, 3,4-epoxy-6-methylcyclohexylmethyl-3,4-epoxy-6-methylcyclohexanecarboxylate, di(3,4-epoxycyclohexylmethyl)hexanedioate, di(3,4-epoxy-6-methylcyclohexylmethyl)hexanedioate, ethylene bis(3,4-epoxycyclohexanecarboxylate), ethanediol di(3,4-epoxycyclohexylmethyl)ether, 2-(3,4-epoxycyclohexyl-5,5-spiro-3,4-epoxy)cyclohexane-1,3-dioxane, and combinations thereof.
4 . The radiation curable composition according to claim 1 , wherein the polyol is an aliphatic diol.
5 . The radiation curable composition according to claim 1 , wherein the polyol is selected from polyoxyethylene, polyoxypropylene or polytetramethylene glycol of number average molecular weight from about 600 to about 2000.
6 . The radiation curable composition according to claim 1 , wherein the oxetane is a monofunctional oxetane having an OH group.
7 . The radiation curable composition according to claim 1 , wherein the aromatic diacrylate is a bisphenol A-based diacrylate, a bisphenol S-based diacrylate or a bisphenol F-based diacrylate.
8 . The radiation curable composition according to claim 1 , wherein the composition further comprises one or more additives.
9 . A radiation curable composition comprising:
a. from about 50 wt % to about 60 wt % of a cycloaliphatic diepoxide; b. from about 10 wt % to about 15 wt % of a polytetramethylene glycol; c. from about 7 wt % to about 10 wt % of a monofunctional oxetane having a hydroxyl group; d. from about 10 wt % to about 20 wt % of an aromatic diacrylate; e. from about 2 wt % to about 6 wt % of a radical photoinitiator; f. from about 0.5 wt % to about 6 wt % of a cationic photoinitiator; and g. from about 0.003 wt % to about 0.5 wt % of a photosensitizer.
10 . The composition according to claim 1 , wherein the tensile strength of the cured composition of the invention, measured 1 week after UV post-cure in a post-curing apparatus, is from about 40 MPa to about 75 MPa.
11 . The composition according to claim 1 , wherein the tensile strength of the cured composition of the invention, measured at 40 hours or more after UV post-cure in a post-curing apparatus and thermal post-cure, is from about 50 MPa to about 80 MPa.
12 . The composition according to claim 1 , wherein the Young modulus of the cured composition of the invention, measured 1 week after UV post-cure in a post-curing apparatus, is from about 1500 MPa to about 4000 MPa.
13 . The composition according to claim 1 , wherein the Young modulus of the cured composition of the invention, measured at 40 hours or more after UV post-cure in a post-curing apparatus and thermal post-cure, is from about 1500 MPa to about 4000 MPa.
14 . The composition according to claim 1 , wherein said composition, when cured, has a glass transition temperature of about 60° C. to about 120° C.
15 . The composition according to claim 1 , wherein said composition has a notched Izod impact strength of about 0.1 J/cm to about 0.5 J/cm.
16 . A process for making a three-dimensional article comprising the steps of:
(1) coating a thin layer of the composition according to claim 1 onto a surface; (2) exposing said thin layer imagewise to actinic radiation to form an imaged cross-section, wherein the radiation is of sufficient intensity and time to cause substantial curing of the thin layer in the exposed areas; (3) coating a thin layer of the composition onto the previously exposed imaged cross-section; (4) exposing said thin layer from step (3) imagewise to actinic radiation to form an additional imaged cross-section, wherein the radiation is of sufficient intensity and time to cause substantial curing of the thin layer in the exposed areas and to cause adhesion to the previously exposed imaged cross-section; (5) repeating steps (3) and (4) a sufficient number of times in order to build up the three-dimensional article.
17 . A method for making a three-dimensional article comprising subjecting a radiation curable composition of claim 1 to radiation so as to cure the composition and form the three-dimensional article.
18 . A three-dimensional article formed from the composition of claim 1 .
19 . A three-dimensional article made by the process of claim 16 .Join the waitlist — get patent alerts
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