IP Library Patent Application 10973723
Patent Application
App. No. 10/973,723

RTV silicone composition offering rapid bond strength

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Patent No.
US None
App. No.
10/973,723
Abstract

The present invention provides for a room temperature vulcanizable silicone sealant composition that rapidly achieves a usable green strength shortly after application. Such a composition that develops a usable green strength is useful in the manufacture of architectural elements employing glazing such as windows and doors and when such a composition is used in a manufacturing process, the manufacturing process can be accelerated relative to a process that uses a silicone sealant that does not rapidly achieve a usable green strength.

Claims (58)

1 . A curable sealant composition comprising:

(a) a diorganopolysiloxane in an amount ranging from about 5 weight percent to about 80 weight percent wherein the silicon atom at each polymer chain end is silanol terminated;

(b) diorganopolysiloxane in an amount ranging from slightly above 0 weight percent to about 35 weight percent wherein the silicon atom at each polymer chain end is alkyl terminated;

(c) an alkylsilicate in an amount ranging from about 0.1 weight percent to about 10 weight percent;

(d) a condensation catalyst comprising an organotin compound in an amount ranging from about 0.001 weight percent to about 1 weight percent; and

(e) an alkoxysilane adhesion promoter in an amount ranging from about 0.1 weight percent to about 20 weight percent

wherein said sealant composition has a green strength of from about 1 psi to about 75 psi as measured by WPSTM test C-1221 after curing for a time period of from about 1 minute to about 60 minutes.

2 . The sealant composition of claim 1 further comprising a reinforcing filler selected from the group consisting of ground calcium carbonate, precipitated calcium carbonate, colloidal calcium carbonate, calcium carbonate treated with compounds stearate or stearic acid; fumed silica, precipitated silica, silica gels, d hydrophobized silicas, hydrophilic silica gels; crushed quartz, ground quartz, alumina, aluminum hydroxide, titanium hydroxide, clay, kaolin, bentonite montmorillonite, diatomaceous earth, iron oxide, carbon black and graphite and mixtures thereof in an amount ranging from about 1 weight percent to about 80 weight percent.

3 . The sealant composition of claim 1 further comprising a non-ionic surfactant selected from the group of surfactants consisting of polyethylene glycol, polypropylene glycol, ethoxylated castor oil, oleic acid ethoxylate, alkylphenol ethoxylates, copolymers of ethylene oxide and propylene oxide and copolymers of silicones and polyethers, copolymers of silicones and copolymers of ethylene oxide and propylene oxide and mixtures thereof in an amount ranging from slightly above 0 weight percent to about 10 weight percent.

4 . The sealant composition of claim 2 further comprising a non-ionic surfactant selected from the group of surfactants consisting of polyethylene glycol, polypropylene glycol, ethoxylated castor oil, oleic acid ethoxylate, alkylphenol ethoxylates, copolymers of ethylene oxide and propylene oxide and copolymers of silicones and polyethers, copolymers of silicones and copolymers of ethylene oxide and propylene oxide and mixtures thereof in an amount ranging from slightly above 0 weight percent to about 10 weight percent.

5 . The sealant composition of claim 4 further wherein the non-ionic surfactant selected from the group of surfactants consisting of copolymers of ethylene oxide and propylene oxide, copolymers of silicones and polyethers, copolymers of silicones and copolymers of ethylene oxide and propylene oxide and mixtures thereof.

6 . The sealant composition of claim 5 wherein the amount of the silanol terminated diorganopolysiloxane, component (a), ranges from in amount from about 35 weight % to about 45 weight % of the total composition.

7 . The sealant composition of claim 6 wherein the amount of the alkyl terminated diorganopolysiloxane, component (b), ranges in amount from about 8 weight % to about 20 weight % of the total composition.

8 . The sealant composition of claim 7 wherein the amount of the alkyl silicate, component (c), ranges in amount from about 0.5 weight % to about 1.5 weight % of the total composition.

9 . The sealant composition of claim 8 wherein the amount of condensation catalyst, component (d), ranges in amount from about 0.005 weight % to about 0.1 weight % of the total composition.

10 . The sealant composition of claim 9 wherein the amount of reinforcing filler, component (f), ranges in amount from about 37 weight % to about 49 weight % of the total composition.

11 . The sealant composition of claim 10 wherein the amount of alkoxysilane adhesion promoter, component (e), ranges in amount from about 0.5 weight percent to about 2 weight percent of the total composition.

12 . A manufacturing process for manufacturing architectural elements having a rate of manufacture of said architectural elements said architectural elements comprising a curable sealant composition comprising:

(a) a diorganopolysiloxane in an amount ranging from about 5 weight percent to about 80 weight percent wherein the silicon atom at each polymer chain end is silanol terminated;

(b) diorganopolysiloxane in an amount ranging from slightly above 0 weight percent to about 35 weight percent wherein the silicon atom at each polymer chain end is alkyl terminated;

(c) an alkylsilicate in an amount ranging from about 0.1 weight percent to about 10 weight percent;

(d) a condensation catalyst comprising an organotin compound in an amount ranging from about 0.001 weight percent to about 1 weight percent; and

(e) an alkoxysilane adhesion promoter in an amount ranging from about 0.1 weight percent to about 10 weight percent

said sealant having a green strength between about 1 psi and about 75 psi after curing for a period of time ranging from about 1 minute to about 60 minutes, wherein said manufacturing process produces said architectural elements at a rate of manufacture faster than a similar manufacturing process using a sealant having a green strength of 0 psi after 60 minutes.

13 . The manufacturing process of claim 12 wherein said sealant has a green strength between about 1 psi and about 45 psi after curing for a period of time ranging from about 1 minute to about 60 minutes.

14 . The manufacturing process of claim 13 wherein the sealant composition further comprises a reinforcing filler selected from the group consisting of ground calcium carbonate, precipitated calcium carbonate, colloidal calcium carbonate, calcium carbonate treated with compounds stearate or stearic acid; fumed silica, precipitated silica, silica gels, hydrophobized silicas, hydrophilic silica gels; crushed quartz, ground quartz, alumina, aluminum hydroxide, titanium hydroxide, clay, kaolin, bentonite montmorillonite, diatomaceous earth, iron oxide, carbon black and graphite and mixtures thereof in an amount ranging from about 1 weight percent to about 80 weight percent.

15 . The manufacturing process of claim 13 wherein the sealant composition further comprises a non-ionic surfactant selected from the group of surfactants consisting of polyethylene glycol, polypropylene glycol, ethoxylated castor oil, oleic acid ethoxylate, alkylphenol ethoxylates, copolymers of ethylene oxide and propylene oxide and copolymers of silicones and polyethers, copolymers of silicones and copolymers of ethylene oxide and propylene oxide and mixtures thereof in an amount ranging from slightly above 0 weight percent to about 10 weight percent.

16 . The manufacturing process of claim 15 wherein the non-ionic surfactant selected from the group of surfactants consisting of copolymers of ethylene oxide and propylene oxide, copolymers of silicones and polyethers, copolymers of silicones and copolymers of ethylene oxide and propylene oxide and mixtures thereof.

17 . The manufacturing process of claim 15 wherein the amount of the silanol terminated diorganopolysiloxane, component (a), ranges from in amount from about 35 weight % to about 45 weight % of the total composition.

18 . The manufacturing process of claim 17 wherein the amount of the alkyl terminated diorganopolysiloxane, component (b), ranges in amount from about 8 weight % to about 20 weight % of the total composition.

19 . The manufacturing process of claim 18 wherein the amount of the alkyl silicate, component (c), ranges in amount from about 0.5 weight % to about 1.5 weight % of the total composition.

20 . The manufacturing process of claim 19 wherein the amount of condensation catalyst, component (d), ranges in amount from about 0.005 weight % to about 0.1 weight % of the total composition.

21 . The manufacturing process of claim 20 wherein the amount of reinforcing filler, component (f), ranges in amount from about 37 weight % to about 49 weight % of the total composition.

22 . An architectural element comprising the cured composition of claim 1 .

23 . An architectural element comprising the cured composition of claim 2 .

24 . An architectural element comprising the cured composition of claim 3 .

25 . An architectural element comprising the cured composition of claim 4 .

26 . An architectural element comprising the cured composition of claim 5 .

27 . An architectural element comprising the cured composition of claim 6 .

28 . An architectural element comprising the cured composition of claim 7 .

29 . An architectural element comprising the cured composition of claim 8 .

30 . An architectural element comprising the cured composition of claim 9 .

31 . An architectural element comprising the cured composition of claim 10 .

32 . An architectural element manufactured by the process of claim 11 .

33 . An architectural element manufactured by the process of claim 12 .

34 . An architectural element manufactured by the process of claim 13 .

35 . An architectural element manufactured by the process of claim 14 .

36 . An architectural element manufactured by the process of claim 15 .

37 . An architectural element manufactured by the process of claim 16 .

38 . An architectural element manufactured by the process of claim 17 .

39 . An architectural element manufactured by the process of claim 18 .

40 . An architectural element manufactured by the process of claim 19 .

41 . An architectural element manufactured by the process of claim 20 .

42 . An architectural element manufactured by the process of claim 21 .

43 . The architectural element of claim 22 wherein said architectural element is a window.

44 . The architectural element of claim 22 wherein said architectural element is a door.

45 . The architectural element of claim 22 wherein said architectural element is structural glazing.

46 . The architectural element of claim 22 wherein said architectural element is curtainwall.

Assignments (5)
RELEASE OF SECURITY INTEREST Recorded Dec 24, 2020
From: THE BANK OF NEW YORK MELLON TRUST COMPANY, N.A., AS COLLATERAL AGENT
To: MOMENTIVE PERFORMANCE MATERIALS INC.
Reel/Frame 054883/0855 →
RELEASE OF SECURITY INTEREST Recorded Nov 11, 2020
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: MOMENTIVE PERFORMANCE MATERIALS INC.; MOMENTIVE PERFORMANCE MATERIALS GMBH & CO KG; MOMENTIVE PERFORMANCE MATERIALS JAPAN HOLDINGS GK
Reel/Frame 054387/0001 →
SECURITY AGREEMENT Recorded Jul 1, 2009
From: MOMENTIVE PERFORMANCE MATERIALS, INC.; JUNIPER BOND HOLDINGS I LLC; JUNIPER BOND HOLDINGS II LLC; JUNIPER BOND HOLDINGS III LLC; JUNIPER BOND HOLDINGS IV LLC; MOMENTIVE PERFORMANCE MATERIALS CHINA SPV INC.; MOMENTIVE PERFORMANCE MATERIALS QUARTZ, INC.; MOMENTIVE PERFORMANCE MATERIALS SOUTH AMERICA INC.; MOMENTIVE PERFORMANCE MATERIALS USA INC.; MOMENTIVE PERFORMANCE MATERIALS WORLDWIDE INC.; MPM SILICONES, LLC
To: THE BANK OF NEW YORK MELLON TRUST COMPANY, N.A., AS COLLATERAL TRUSTEE
Reel/Frame 022902/0461 →
SECURITY AGREEMENT Recorded Jul 3, 2007
From: MOMENTIVE PERFORMANCE MATERIALS HOLDINGS INC.; MOMENTIVE PERFORMANCE MATERIALS GMBH & CO. KG; MOMENTIVE PERFORMANCE MATERIALS JAPAN HOLDINGS GK
To: JPMORGAN CHASE BANK, N.A. AS ADMINISTRATIVE AGENT
Reel/Frame 019511/0166 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 26, 2004
From: WILLIAMS, DAVID A.; CORREIA, REUBEN; LEWIS, GARY MORGAN
To: GENERAL ELECTRIC COMPANY
Reel/Frame 015933/0622 →