Kit of Part for Producing Glass Ionomer Cement with High Compressive Strength

US2025352437A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2025352437-A1
Application numberUS-202318874400-A
CountryUS
Kind codeA1
Filing dateMay 31, 2023
Priority dateJun 28, 2022
Publication dateNov 20, 2025
Grant date

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  1. Title

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  5. First independent claim

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Abstract

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The invention relates to a kit of parts for obtaining a glass ionomer composition, the kit of parts comprising Part P and Part L, Part P being a powder comprising acid-reactive glass, Part L being a liquid comprising water, the kit of parts containing in addition a polycarboxylic acid, the polycarboxylic acid being present in Part P or Part L or Part P and Part L, the polycarboxylic acid comprising a copolymer of acrylic acid and maleic acid, the acid-reactive glass being characterized by comprising P: 0-4 wt. %, F: 10-18 wt. %, O: 25-35 wt. %, Si: 10-16 wt. %, Al: 11-19 wt. %, Sr: 20-40 wt. %, La: 0-4 wt. % the combined amount of Al, Sr and F being >48 wt. %, wt. % with respect to the weight of the acid-reactive glass, and the ratio of Al and Si in the acid-reactive glass being greater than 1/1 with respect to weight. The invention also relates to the use of a particular acid reactive glass in combination with a particular polycarboxylic acid for improving the mechanical strength of a glass ionomer composition.

First claim

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1 . A kit of parts for obtaining a glass ionomer composition, the kit of parts comprising Part P and Part L, Part P being a powder comprising acid-reactive glass, Part L being a liquid comprising water, the kit of parts comprising in addition a polycarboxylic acid, the polycarboxylic acid being present in Part P or Part L or Part P and Part L, the polycarboxylic acid comprising a copolymer of acrylic acid and maleic acid, the acid-reactive glass being characterized by comprising P: 0-4 wt. %, F: 10-18 wt. %, O: 25-35 wt. %, Si: 10-16 wt. %, Al: 11-19 wt. %, Sr: 20-40 wt. %, La: 0-4 wt. %, the combined amounts of Al, Sr and F being >48 wt. %, wt. % with respect to the weight of the acid-reactive glass, and the ratio of Al and Si in the acid-reactive glass being greater than 1/1 with respect to weight. 2 . The kit of parts in particular according to the preceding claim , the kit of parts comprising Part P and Part L, Part P being a powder comprising acid-reactive glass, Part L being a liquid comprising water and polycarboxylic acid, the polycarboxylic acid comprising a copolymer of acrylic acid and maleic acid, the acid-reactive glass being characterized by comprising P: 0-4 wt. %, or 0-3 wt. %, F: 10-18 wt. %, or 11-16 wt. %, O: 25-35 wt. %, or 28-34 wt. %, Si: 10-16 wt. %, or 11-14 wt. %, Al: 11-19 wt. %, or 12-18 wt. %, Sr: 20-40 wt. %, or 20-35 wt. %, La: 0-4 wt. %, or 0-3 wt. %, the combined amount of Al, Sr and F being >48 wt. %, wt. % with respect to the weight of the acid-reactive glass, and the ratio of Al and Si in the acid-reactive glass being greater than 1/1 with respect to weight. 3 . The kit of parts according to claim 1 , the acid-reactive glass having a particle size distribution (d90) of 10-15 μm and 1-2 μm (d50). 4 . The kit of parts according to claim 1 , the acid-reactive glass having been deactivated by treating it with acid, followed by washing with water and drying. 5 . The kit of parts according to claim 1 , the acid-reactive glass not comprising the following elements alone or in combination: Li, K, Rb, Cs, Be, Mg, each in an amount of more than 0.2 wt. % or 0.1 wt. % with respect to the weight of the acid-reactive glass. 6 . The kit of parts according to claim 1 , the polycarboxylic acid having a molecular weight Mw in the range of 5,000 to 250,000 g/mol or 10,000 to 100,000 g/mol. 7 . The kit of parts according to claim 1 , the acrylic acid and maleic acid being present in the polycarboxylic acid in a molar ratio of 35-65% maleic acid to 65-35% acrylic acid, or 40-60% maleic acid to 60-40% acrylic acid. 8 . The kit of parts according to claim 1 , the kit comprising in addition a complexing agent, the complexing agent being present in the Part L or Part P or Part L and Part P, the complexing agent being preferably selected from tartaric acid, hydroxy butanedionic acid, aldaric acid, phosphono succinic acid and mixtures thereof. 9 . The kit of parts according to claim 1 , Part P and Part L being provided in a mixing ratio in the range of 6:1 to 1:1 with respect to weight. 10 . The kit of parts according to claim 1 comprising in addition a non acid-reactive filler, the non acid-reactive filler being preferably selected from quartz, nitrides, glasses derived from Zr, Sr, C, Sb, Sn, Ba, Zn and Al, borosilicate glasses, kaolin, particles of silica, alumina, titania or zirconia and mixtures thereof, the non acid-reactive filler being present in Part P. 11 . The kit of parts according to claim 1 , the components being present in the following amounts: acid-reactive glass: 25 to 86 wt. %, non acid-reactive filler: 0 to 35 wt. %, polycarboxylic acid: 3 to 35 wt. %, water: 2 to 35 wt. %, complexing agent: 0 to 15 wt. %, additives: 0 to 10 wt. %, wt. % with respect to the weight of the composition obtained when combining Part P and Part L. 12 . The kit of parts according to claim 1 wherein the components are characterized as follows: the acid-reactive glass having a particle size distribution (d90) of 10 μm and 2 μm (d50), the acid-reactive glass having been deactivated by treating it with acid, followed by washing with water and drying, the polycarboxylic acid having a molecular weight Mw in the range of 10,000 to 100,000 g/mol, the acrylic acid and maleic acid being present in the polycarboxylic acid in a molar ratio of 35-65% maleic acid and 65-35% acrylic acid or 40-60 maleic acid and 60-40 acrylic acid, Part P comprising in addition a non acid-reactive glass selected from aluminosilicates. 13 . A glass ionomer composition obtainable or obtained by mixing Part P and Part L of the kit of parts of claim 1 , the glass ionomer composition being characterized by the following properties alone or in combination after hardening: flexural strength: 20 MPa to 80 MPa determined according to EN-ISO 9917-2:2010; compressive strength: 300 to 400 MPa determined according to EN-ISO 9917-1/2007, wherein for covering the composition a glass slab is used instead of a foil; surface hardness: 150 to 250 MPa determined according to ISO 2039-1. 14 . (canceled) 15 . (canceled)

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What does patent US2025352437A1 cover?
The invention relates to a kit of parts for obtaining a glass ionomer composition, the kit of parts comprising Part P and Part L, Part P being a powder comprising acid-reactive glass, Part L being a liquid comprising water, the kit of parts containing in addition a polycarboxylic acid, the polycarboxylic acid being present in Part P or Part L or Part P and Part L, the polycarboxylic acid compri…
Who is the assignee on this patent?
Solventum Intellectual Properties Company
What technology area does this patent fall under?
Primary CPC classification A61K6/849. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Thu Nov 20 2025 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).