US3183115A - Process for preparing bonded reconstituted mica - Google Patents
Process for preparing bonded reconstituted mica Download PDFInfo
- Publication number
- US3183115A US3183115A US120989A US12098961A US3183115A US 3183115 A US3183115 A US 3183115A US 120989 A US120989 A US 120989A US 12098961 A US12098961 A US 12098961A US 3183115 A US3183115 A US 3183115A
- Authority
- US
- United States
- Prior art keywords
- mica
- mat
- solution
- board
- ammonium silicate
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Lifetime
Links
Images
Classifications
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01B—CABLES; CONDUCTORS; INSULATORS; SELECTION OF MATERIALS FOR THEIR CONDUCTIVE, INSULATING OR DIELECTRIC PROPERTIES
- H01B3/00—Insulators or insulating bodies characterised by the insulating materials; Selection of materials for their insulating or dielectric properties
- H01B3/02—Insulators or insulating bodies characterised by the insulating materials; Selection of materials for their insulating or dielectric properties mainly consisting of inorganic substances
- H01B3/04—Insulators or insulating bodies characterised by the insulating materials; Selection of materials for their insulating or dielectric properties mainly consisting of inorganic substances mica
-
- C—CHEMISTRY; METALLURGY
- C04—CEMENTS; CONCRETE; ARTIFICIAL STONE; CERAMICS; REFRACTORIES
- C04B—LIME, MAGNESIA; SLAG; CEMENTS; COMPOSITIONS THEREOF, e.g. MORTARS, CONCRETE OR LIKE BUILDING MATERIALS; ARTIFICIAL STONE; CERAMICS; REFRACTORIES; TREATMENT OF NATURAL STONE
- C04B28/00—Compositions of mortars, concrete or artificial stone, containing inorganic binders or the reaction product of an inorganic and an organic binder, e.g. polycarboxylate cements
- C04B28/24—Compositions of mortars, concrete or artificial stone, containing inorganic binders or the reaction product of an inorganic and an organic binder, e.g. polycarboxylate cements containing alkyl, ammonium or metal silicates; containing silica sols
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01J—ELECTRIC DISCHARGE TUBES OR DISCHARGE LAMPS
- H01J19/00—Details of vacuum tubes of the types covered by group H01J21/00
- H01J19/42—Mounting, supporting, spacing, or insulating of electrodes or of electrode assemblies
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01J—ELECTRIC DISCHARGE TUBES OR DISCHARGE LAMPS
- H01J2893/00—Discharge tubes and lamps
- H01J2893/0001—Electrodes and electrode systems suitable for discharge tubes or lamps
- H01J2893/0002—Construction arrangements of electrode systems
- H01J2893/0005—Fixing of electrodes
Definitions
- This invention relates to silica bonded materials. More particularly, it relates to reconstituted micaceous materials bonded with silica which are characterized by increased handleability, chemical inertness and absence of volatiles.
- Reconstituted micaceous materials, mica paper or mica mat, as it is variously known, is described in various patents such as Bardet 2,549,880, April 24, 1951 and elsewhere.
- such reconstitu'ted mica mat is made by heating mica to a temperature sufficient to produce cleavage and then comminuting .by various methods to a finely divided state which is then reconstituted in the form of a mat or sheet by well known paper making methods.
- the mica mat so prepared consists essentially of mica in its pure state. Other methods of making such mica are Well known to those skilled in the art. However, it is so fragile and lacks tensile strength to such a degree that from a practical point of view it is difficult to fabricate structures from the material as is.
- the mica board is useful in many electrical insulating applications but there are some uses, notably as spacers in vacuum tubes and the like, where absence of metallic ions and of organic or other gas producing'materials should as would be in ordinary impregnants is indicated.
- the invention relates to reconstituted micaceous material which is impregnated with a solution of ammonium silicate, the material then being heated to drive off the ammonia, leaving a mica mat which is bonded together with pure silica.
- the mica paper depending upon the mode of application, picks up from 0.25 to 3.5 times its own weight of impregnant.
- the paper When the paper has become saturated with the ammonium silicate solution, it is dried at a low temperature varying from about C. and 100 C. to a leathery condition having approximately 1.1 to 2.0 times the origiabout 25,000 p.s.i.
- the wet strength of the mica paper which is treated with the above ammonium silicate solution is markedly increased over that which is not so treated. Since ordinary mica mat is very fragile and hard to handle, this increase in wet strength greatly simplifies the handling to form a mica board and brush-impregnated with a 15 y percent ammonium silicate solution to the point where it had absorbed 1.7 times its own weight of the solution.
- the board so treated was partially dried at a temperature of 55 C. for fifteen minutes to a leathery condition at which point it weighted 1.35 times the original weight of the mica paper.
- the laid-up board was pressed at 500 p.s.i. for two hours at 93 C. and for two hours at 200 C. and then cooled under pressure.
- Another board 30 mils thick was laid up from mica mat as above and painted with a l5'percent by weight solution of ammonium silicate.
- the board which absorbed its own weight of the solution was dried to a leatherystate at 55 C. for ten minutes. It was then pressed at 500 p.s.i. for one hour at 200 C: and cooled while under pressure.
- the resultant board had very desirable characteristics.
- the bonded micaceous material described herein is also useful in electrodynamic machine applications, in insulating applications such as slot liners, slot wedges, commutator retaining rings, phase spacers, segment plates and the like.
- the materials are useful in any application where high electrical insulating characteristics are desired, part cularly where such characteristics are mandatory at elevated, as well as, ordinary temperatures.
- the process of bonding reconstituted mica mat which comprises impregnating said mat with a solution of S to 30 percent by weight ammonium silicate in water, heating said mat to drive off ai-nmortia and pressing at a pressure of from 25 to 2,000 p.s'.i. at a temperature of from about 75 C. to 200 C. to form a unitary structure.
- the process of bonding reconstituted mica mat which comprises impregnating said mica with a solution of 5 to 30 percent by weight ammonium silicate in water, heating said mica to drive off ammonia and pressing under a pressure of from 25 to 2,000 psi. at a temperature of from C. to 200 C. and cooling under pressure.
Landscapes
- Chemical & Material Sciences (AREA)
- Inorganic Chemistry (AREA)
- Engineering & Computer Science (AREA)
- Ceramic Engineering (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Materials Engineering (AREA)
- Structural Engineering (AREA)
- Organic Chemistry (AREA)
- Inorganic Insulating Materials (AREA)
- Paper (AREA)
- Insulating Bodies (AREA)
Description
ED HICA May 11, 1965 a. .1. KETTERER PROCESS; FOR PREPARING BOHDED RECONS'I'ITUT um Juna ao. 1961 I Inventor: Richard J Ketterer,
His Attorney- United States Patent This invention relates to silica bonded materials. More particularly, it relates to reconstituted micaceous materials bonded with silica which are characterized by increased handleability, chemical inertness and absence of volatiles. I
Reconstituted micaceous materials, mica paper or mica mat, as it is variously known, is described in various patents such as Bardet 2,549,880, April 24, 1951 and elsewhere. Generally speaking, such reconstitu'ted mica mat is made by heating mica to a temperature sufficient to produce cleavage and then comminuting .by various methods to a finely divided state which is then reconstituted in the form of a mat or sheet by well known paper making methods. The mica mat so prepared consists essentially of mica in its pure state. Other methods of making such mica are Well known to those skilled in the art. However, it is so fragile and lacks tensile strength to such a degree that from a practical point of view it is difficult to fabricate structures from the material as is. Consequently, it is usual practice to impregnate the mica mat with resinous or other binder material and to lay up thin laminae of such impregnated material to form a mica board which has desired physical strength. In this form the mica board is useful in many electrical insulating applications but there are some uses, notably as spacers in vacuum tubes and the like, where absence of metallic ions and of organic or other gas producing'materials should as would be in ordinary impregnants is indicated.
It is an object, therefore, of this invention to provide reconstituted mica and similar materials which are bonded together with an inorganic bonding agent which is characterized by good insulating qualities and at the same time is free from metallic ions or gaseous material even at elevated temperatures.
Briefly, the invention relates to reconstituted micaceous material which is impregnated with a solution of ammonium silicate, the material then being heated to drive off the ammonia, leaving a mica mat which is bonded together with pure silica.
Those features of the invention which are believed to be novel are set forth with particularly in the claims I appended hereto. The invention will, however, be better i understood and further advantages and objects thereof appreciated from a consideration of the following description and the drawing in which the single-figure shows a typical application of the present materials.
' own weight of a solution containing about percent ammonium silicate. It will be realized, of course, that in lieu of roll-coating the mica paper can be immersed in the solution, the solution may be sprayed, brushed or otherwise applied to the mica paper in manners well known to those skilled in the art. In general, the mica paper, depending upon the mode of application, picks up from 0.25 to 3.5 times its own weight of impregnant.
When the paper has become saturated with the ammonium silicate solution, it is dried at a low temperature varying from about C. and 100 C. to a leathery condition having approximately 1.1 to 2.0 times the origiabout 25,000 p.s.i.
3,183,115 Patented May 11, 1965 l nal weight of the mica mat. Depending upon the thickness of final mica mat or board desired, the appropriate number of sheets are placed together and pressed at from about 25 to 2000 p.s.i., for from one-half hour upward at: C. to 200 C. and cooled under pressure. The assembly can, if desired, be postpressed for one-half hour upward at C. to 200 C. and cooled while under pressure. This procedure produces a mica board of desirable integrity which has a flexural strength of over 30,000 p.s.i., and even post baking for several hours at 500 C. lowers the flexural strength only to the order of It has also been found convenient to impregnate the board with the ammonium silicate solution after it has been laid up from the layers of mica mat.
The wet strength of the mica paper which is treated with the above ammonium silicate solution is markedly increased over that which is not so treated. Since ordinary mica mat is very fragile and hard to handle, this increase in wet strength greatly simplifies the handling to form a mica board and brush-impregnated with a 15 y percent ammonium silicate solution to the point where it had absorbed 1.7 times its own weight of the solution. The board so treated was partially dried at a temperature of 55 C. for fifteen minutes to a leathery condition at which point it weighted 1.35 times the original weight of the mica paper. The laid-up board was pressed at 500 p.s.i. for two hours at 93 C. and for two hours at 200 C. and then cooled under pressure. The very uniform board having a thickness of .011" mil which was so produced was found to have a flexural strength of about 31,000 p.s.i. This compares favorably with a fiexural strength of like material having organic binders. Furthermore, the fiexural strength of the material was essentially retained even after treatment at elevated temperatures. For example, when the material was heated to a temperature of 500 C. over a period of two hours and held at that temperature for one hour, the fiexural strength had decreased to only 25,000 p.s.i.
Another board 30 mils thick was laid up from mica mat as above and painted with a l5'percent by weight solution of ammonium silicate. The board which absorbed its own weight of the solution was dried to a leatherystate at 55 C. for ten minutes. It was then pressed at 500 p.s.i. for one hour at 200 C: and cooled while under pressure. The resultant board had very desirable characteristics.
As pointed out above, while the present materials are useful in any electrical insulating or heat insulating application requiring such a material, they were particularly 'useful for applications which demand ine'rtness to elevated ers 8 and 9, respectively, at the top and bottom of the interior elements are punched and provided with projections or points to hold the elements in relative position one to the other and also firmly in place with respect to the tube elements.
Among the other specific uses for the present invention are electrical applications where exposure to arcs is specificd such as in arc chutes. The bonded micaceous material described herein is also useful in electrodynamic machine applications, in insulating applications such as slot liners, slot wedges, commutator retaining rings, phase spacers, segment plates and the like. In general, the materials are useful in any application where high electrical insulating characteristics are desired, part cularly where such characteristics are mandatory at elevated, as well as, ordinary temperatures.
What I claim as new and desire to secure by Letters Patent of the United States is:
1. The process of bonding reconstituted mica mat which comprises impregnating said mat with a solution of S to 30 percent by weight ammonium silicate in water, heating said mat to drive off ai-nmortia and pressing at a pressure of from 25 to 2,000 p.s'.i. at a temperature of from about 75 C. to 200 C. to form a unitary structure.
2. The process of bonding reconstituted mica mat which comprises impregnating said mica with a solution of 5 to percent by weight ammonium silicate in water,
3. The process of bonding reconstituted mica mat which comprises impregnating said mica with a solution of ammonium silicate, heating to drive off ammonia and pressin with heat to form a unitary structure.
4. The process of bonding reconstituted mica mat which comprises impregnating said mat with a solution of 15 percent ammonium silicate in water, heating said mat at a temperature of about C. to a leathery condition to' drive off ammonia, pressing at a pressure of about 500 p.s.i."for two hours at 93 C. and for two hours at 200 C. and cooling under pressure.
5. The process of bonding reconstituted mica mat which comprises impregnating said mica with a solution of 5 to 30 percent by weight ammonium silicate in water, heating said mica to drive off ammonia and pressing under a pressure of from 25 to 2,000 psi. at a temperature of from C. to 200 C. and cooling under pressure.
References Cited by the Examiner STATES PATENTS 2,791,262. 5/57; Budnik. 2,917,426 12/59 Bugosh 162l45 2,953,466 9/60 Brown l54---2.6
EARL M. BERGERT, Primary Examiner.
Claims (1)
1. THE PROCESS OF BONDING RECONSTITUTED MICA MAT WHICH COMPRISES IMPREGNATING SAID MAT WITH A SOLUTION OF 5 TO 30 PERCENT BY WEIGHT AMMONIUM SILICATE IN WATER, HEATING SAID MAT TO DRIVE OFF AMMONIA AND PRESSING AT A PRESSURE OF FROM 25 TO 2,000 P.S.I. AT A TEMPERATURE OF FROM ABOUT 75*C. TO 200*C TO FORM A UNITARY STRUCTURE.
Priority Applications (6)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US120989A US3183115A (en) | 1961-06-30 | 1961-06-30 | Process for preparing bonded reconstituted mica |
GB24919/62A GB992815A (en) | 1961-06-30 | 1962-06-28 | Production of reconstituted mica articles |
JP2701262A JPS4022434B1 (en) | 1961-06-30 | 1962-06-28 | |
DEG35339A DE1185975B (en) | 1961-06-30 | 1962-06-29 | Process for the production of a mica sheet bonded with silicon dioxide |
CH788262A CH405446A (en) | 1961-06-30 | 1962-06-29 | Process for the production of solidified, silicate-bonded mica sheets or foils |
CH1422165A CH434492A (en) | 1961-06-30 | 1962-06-29 | Electron tube |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US120989A US3183115A (en) | 1961-06-30 | 1961-06-30 | Process for preparing bonded reconstituted mica |
Publications (1)
Publication Number | Publication Date |
---|---|
US3183115A true US3183115A (en) | 1965-05-11 |
Family
ID=22393744
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US120989A Expired - Lifetime US3183115A (en) | 1961-06-30 | 1961-06-30 | Process for preparing bonded reconstituted mica |
Country Status (5)
Country | Link |
---|---|
US (1) | US3183115A (en) |
JP (1) | JPS4022434B1 (en) |
CH (2) | CH405446A (en) |
DE (1) | DE1185975B (en) |
GB (1) | GB992815A (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3804704A (en) * | 1971-12-27 | 1974-04-16 | Gen Electric | Mica paper laminates |
EP1464633A1 (en) * | 2003-04-02 | 2004-10-06 | H.C. Starck GmbH | Process for the production of silicate shaped bodies |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2791262A (en) * | 1952-08-29 | 1957-05-07 | Mica Insulator Company | Sized mica paper and process of preparing the same |
US2917426A (en) * | 1958-09-26 | 1959-12-15 | Du Pont | Felted products and processes containing fibrous boehmite |
US2953466A (en) * | 1956-08-09 | 1960-09-20 | North American Aviation Inc | Silicon-mica composition |
Family Cites Families (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CH277575A (en) * | 1947-05-12 | 1951-09-15 | Samica Societe Des Applic Du M | Process for the manufacture of articles, from mica. |
-
1961
- 1961-06-30 US US120989A patent/US3183115A/en not_active Expired - Lifetime
-
1962
- 1962-06-28 JP JP2701262A patent/JPS4022434B1/ja active Pending
- 1962-06-28 GB GB24919/62A patent/GB992815A/en not_active Expired
- 1962-06-29 CH CH788262A patent/CH405446A/en unknown
- 1962-06-29 DE DEG35339A patent/DE1185975B/en active Pending
- 1962-06-29 CH CH1422165A patent/CH434492A/en unknown
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2791262A (en) * | 1952-08-29 | 1957-05-07 | Mica Insulator Company | Sized mica paper and process of preparing the same |
US2953466A (en) * | 1956-08-09 | 1960-09-20 | North American Aviation Inc | Silicon-mica composition |
US2917426A (en) * | 1958-09-26 | 1959-12-15 | Du Pont | Felted products and processes containing fibrous boehmite |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3804704A (en) * | 1971-12-27 | 1974-04-16 | Gen Electric | Mica paper laminates |
EP1464633A1 (en) * | 2003-04-02 | 2004-10-06 | H.C. Starck GmbH | Process for the production of silicate shaped bodies |
JP2004307336A (en) * | 2003-04-02 | 2004-11-04 | Hc Starck Gmbh | Method for manufacturing molding, molding, its use, insulating material, and supporting panel |
Also Published As
Publication number | Publication date |
---|---|
JPS4022434B1 (en) | 1965-10-05 |
CH405446A (en) | 1966-01-15 |
GB992815A (en) | 1965-05-19 |
DE1185975B (en) | 1965-01-21 |
CH434492A (en) | 1967-04-30 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
US2656290A (en) | Processes for producing electrical coils insulated with mica and synthetic resins and the products thereof | |
US2970936A (en) | Insulated electrical coils | |
US4126598A (en) | Concrete electrical insulator | |
US3183115A (en) | Process for preparing bonded reconstituted mica | |
US1816680A (en) | Electrical coil and method of manufacturing same | |
JPS57141902A (en) | Insulating coil | |
US2859139A (en) | Method of making a silica containing carbon brush and resulting article | |
US2590493A (en) | Flexible siliceous sheet material, process of making, and composition therefor | |
US3295559A (en) | Induction heating susceptor and method for producing same | |
US2804908A (en) | Method of making asbestos insulating material with improved electrical properties | |
US5346568A (en) | Expanding electrical insulating laminate, method for its manufacture and application | |
US5492661A (en) | Process for producing a casting ceramic | |
US873780A (en) | Insulated coil. | |
US2718475A (en) | Electrical insulating material comprising sheet asbestos and method of making | |
US1284432A (en) | Process of making composite material. | |
US3425121A (en) | Method of making high-temperature encapsulated apparatus | |
KR840001377A (en) | Electrical equipment with insulation coating and its insulation treatment method | |
US2701776A (en) | Electrical insulating material and method of making | |
Mitsui et al. | Improvement of rotating machinery insulation characteristics by using mica paper containing aramid fibrid | |
US3071846A (en) | Process for making coils | |
US973557A (en) | Insulating material. | |
JPS5644039A (en) | Production of adsorptive structure | |
JPH052625B2 (en) | ||
US1882212A (en) | Fibrous material and method of making same | |
US1770663A (en) | Thermal and electrical insulator and process of manufacture thereof |