US966283A - Incandescent gas-mantle and art of making same. - Google Patents

Incandescent gas-mantle and art of making same. Download PDF

Info

Publication number
US966283A
US966283A US1907372917A US966283A US 966283 A US966283 A US 966283A US 1907372917 A US1907372917 A US 1907372917A US 966283 A US966283 A US 966283A
Authority
US
United States
Prior art keywords
thorium
mantle
solution
nitrate
web
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
Application number
Inventor
Alexander P White
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to US1907372917 priority Critical patent/US966283A/en
Application granted granted Critical
Publication of US966283A publication Critical patent/US966283A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21HINCANDESCENT MANTLES; OTHER INCANDESCENT BODIES HEATED BY COMBUSTION
    • F21H1/00Incandescent mantles; Selection of imbibition liquids therefor
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T428/00Stock material or miscellaneous articles
    • Y10T428/29Coated or structually defined flake, particle, cell, strand, strand portion, rod, filament, macroscopic fiber or mass thereof
    • Y10T428/2913Rod, strand, filament or fiber
    • Y10T428/2933Coated or with bond, impregnation or core
    • Y10T428/294Coated or with bond, impregnation or core including metal or compound thereof [excluding glass, ceramic and asbestos]
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T442/00Fabric [woven, knitted, or nonwoven textile or cloth, etc.]
    • Y10T442/20Coated or impregnated woven, knit, or nonwoven fabric which is not [a] associated with another preformed layer or fiber layer or, [b] with respect to woven and knit, characterized, respectively, by a particular or differential weave or knit, wherein the coating or impregnation is neither a foamed material nor a free metal or alloy layer
    • Y10T442/2762Coated or impregnated natural fiber fabric [e.g., cotton, wool, silk, linen, etc.]
    • Y10T442/277Coated or impregnated cellulosic fiber fabric

Definitions

  • ALEXANDER 1 WHITE, OF CALDWELL, NEW JERSEY.
  • these devices composed of the salts of refractory earths, are suspended over the flame of a Bunsen gas burner, the heat of which causes them to incandesce and emit light.
  • My invention relates to a new method for the production of such mantles whereby I combine certain of the rare earth salts in such a manner that the resultant mantle is more durable than those made in the ordinary way. They are also of a high illuminating power and the tendency to shrink is practically eliminated.
  • the ordinary method of making gas mantles consists in impregnating a cotton web with a solution of thorium and cerium generally in the form of nitrates. After the webs are dried, the cotton thread is burned out, and the skeleton of oxids thus formed is shaped over a Bunsen flame and then prepared for the market, by being dipped into a collodion solution which forms a protecting coating.
  • the solution Upon being taken from the solution it is passed, after the manner of the cotton webs, through squeezing rolls of hard rubber or other suitable material, to press out the excess of solution, according to the desired weight of the mantle. I prefer when using lustra-cellulose to make the weight of the fifty per cent. solution held in each web, double the weight of the web so that upon drying out, the web will c011- tain about equal quantity in weight of the salts and lustra-cellulose In the case of cotton it is not important to so determine the quantity, and in either case the strength of the solution may be varied considerably. After the web is impregnated it is allowed to dry, the drying being accelerated if desired by placing the wet webs in a chamber in which the temperature is raised to not more than 160 Fahrenheit.
  • the mantle would give practically no light, as pure thorium oXid which would result upon burning has alone little light emitting power and if the excitant be introduced before the treatment with the peroXid, the peroXid apparently carries away the excitant by solution, or destroys it as an excitant, and apparently leaving the thorium alone in a hy drated state.
  • the eXcitant may be provided by dipping the web saturated with thorium nitrate in a solution of cerium nitrate or uranium nitrate and a good light may be so produced, but it will be found that the cerium or uranium nitrates when introduced in this manner, will pass away by volatilization after the mantle is burned in service for a few hours. The light giving power will steadily diminish until the mantle is practically valueless for light.
  • the essential excitant is introduced by passing the web after the peroxid of hydrogen treatment, into a solution containing about one per cent. of uranium nitrate, or one and one half per cent. of cerium nitrate and five per cent.
  • nitrate of thorium lVhen the web is subsequently burned after drying, the resultant oXid will retain and hold the eXcitant in the mantle, thus providing the essential light-giving combination.
  • other nitrates may be used in this step to provide an excitant without departing from the spirit of my invention. It will be seen that when the web reaches the burning off stage, it contains so small an amount of nitrate that the deflagration consequent upon burning out the threads is not violent enough to cause serious damage.
  • the percentage of the excitants may be varied as in the ordinary method of making incandescent mantle fluids.
  • the proportion of the thorium nitrate may be varied also and, to a material degree, but if the ordinary commercial nitrate, Th(No be used, I prefer to avoid a material increase in the proportion on account of the effect of the acid in the stronger solution, especially as some of the nitrate of thorium sold in the open market contains free nitric acid. Care should always be taken that there is no free nitric acid present. This can readily be done and very satisfactory results can be obtained by using a compound prepared by adding, when the nitrate is made, more hydrate of thorium than is suflicient to satisfy the nitric acid.
  • this special compound In the preparation of this special compound, I note the quantity ofthe thorium hydrate required to satisfy a given quantity of nitric acid. I then dilute to 30 or lO degrees (Baum), and add to the nitrate fluid made by mixing the said hydrate with nitric acid, 10% more of the thorium hydrate, that is, 10 of the original quantity required to satisfy the acid. ⁇ Vhen the fluid is diluted as above, the second instalment of hydrate is quickly dissolved. Next the solution is diluted to the required density. ⁇ Vhen this special compound is used the webs burn out slowly and assume readily the desired form over the shaping flame and I prefer its use when the webs are to be retained for many hours after sat uration.
  • the second time to introduce the excitant serves another important purpose.
  • the thorium salt is denitrated by the peroXid of hydrogen, it will be found, after the cellulose threads are burned out, that the identity and original form of the many minute fibers that made up the threads are preserved in form to the extent that the individual minute fibers are reproduced in the skeleton of resultant oXid. This fact is Very apparent if the structure from the silk as is the case when cotton is.
  • the mantle if put on the'market in this condition, has a serious drawback because when the mantle is dipped in a collodion or other suitable solution for the purpose of coating it for handling and transport, the coating solution engages the various minute fibers, causing them to fracture and break from the distorting and contracting action of the coating solution when drying, with the result that it is almost impossible to coat satisfactorily mantles so made.
  • the application of the thorium solution in the second step corrects this fault by causing a welding effect to take place.
  • a web for maklng incandescent gas mantles, cons1st1ng of threads containing denitratcd salts of compound containing another salt to act as thorium, and coated With a thorium compound containing another salt to act as an excitant.

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Chemical Or Physical Treatment Of Fibers (AREA)

Description

ill
ALEXANDER 1. WHITE, OF CALDWELL, NEW JERSEY.
INGANDESOENT GAS-MANTLE AND ART OF MAKING SAME.
No Drawing.
Specification of Letters Patent.
Application filed May 10, 1907. Serial No. 372,917.
Patented Aug. 2, 1910.
To all whom it may concern:-
Be it known that I, ALEXANDER P. WHITE, a citizen of the United States, residence and post-oflice address Caldwell, New Jersey, have invented certain new and useful Improvements in Incandescent Gas-Mantles and Art of Making Same, of which the following is a specification.
As is well known, these devices, composed of the salts of refractory earths, are suspended over the flame of a Bunsen gas burner, the heat of which causes them to incandesce and emit light.
My invention relates to a new method for the production of such mantles whereby I combine certain of the rare earth salts in such a manner that the resultant mantle is more durable than those made in the ordinary way. They are also of a high illuminating power and the tendency to shrink is practically eliminated.
The ordinary method of making gas mantles consists in impregnating a cotton web with a solution of thorium and cerium generally in the form of nitrates. After the webs are dried, the cotton thread is burned out, and the skeleton of oxids thus formed is shaped over a Bunsen flame and then prepared for the market, by being dipped into a collodion solution which forms a protecting coating.
A full and clear description of the manner of carrying out my invention is as follows: I take equal parts by weight of thorium nitrate and distilled water, and into the solution thus made (which is a fifty per cent. solution of thorium nitrate), I immerse a web of the well known form used in this art, but preferably one made by knitting threads of lustra-cellulose, commonly known as artificial silk. Cotton and ramie webs are also available but I prefer the lustra-cellulose, because this material leaves practically no residue upon being burned, in the process of forming the skeleton of the refractory earths. If lustra-cellulose be used, the web should remain in the solution at say 70 Fahrenheit, not less than fifteen minutes and preferably not more than thirty minutes. Upon being taken from the solution it is passed, after the manner of the cotton webs, through squeezing rolls of hard rubber or other suitable material, to press out the excess of solution, according to the desired weight of the mantle. I prefer when using lustra-cellulose to make the weight of the fifty per cent. solution held in each web, double the weight of the web so that upon drying out, the web will c011- tain about equal quantity in weight of the salts and lustra-cellulose In the case of cotton it is not important to so determine the quantity, and in either case the strength of the solution may be varied considerably. After the web is impregnated it is allowed to dry, the drying being accelerated if desired by placing the wet webs in a chamber in which the temperature is raised to not more than 160 Fahrenheit.
When dried I treat the web with hydrogen peroXid for the purpose of denitrating the thorium salts; for if the web be burned out while containing the nitrates, the re sultant deflagration caused by the presence of the nitric acid injures the delicate skeleton fabric. If burned in this form while containing only thorium nitrate, the mantle would give practically no light, as pure thorium oXid which would result upon burning has alone little light emitting power and if the excitant be introduced before the treatment with the peroXid, the peroXid apparently carries away the excitant by solution, or destroys it as an excitant, and apparently leaving the thorium alone in a hy drated state. The eXcitant may be provided by dipping the web saturated with thorium nitrate in a solution of cerium nitrate or uranium nitrate and a good light may be so produced, but it will be found that the cerium or uranium nitrates when introduced in this manner, will pass away by volatilization after the mantle is burned in service for a few hours. The light giving power will steadily diminish until the mantle is practically valueless for light. According to my invention, however, the essential excitant is introduced by passing the web after the peroxid of hydrogen treatment, into a solution containing about one per cent. of uranium nitrate, or one and one half per cent. of cerium nitrate and five per cent. of nitrate of thorium. lVhen the web is subsequently burned after drying, the resultant oXid will retain and hold the eXcitant in the mantle, thus providing the essential light-giving combination. Of course other nitrates may be used in this step to provide an excitant without departing from the spirit of my invention. It will be seen that when the web reaches the burning off stage, it contains so small an amount of nitrate that the deflagration consequent upon burning out the threads is not violent enough to cause serious damage.
The percentage of the excitants may be varied as in the ordinary method of making incandescent mantle fluids. The proportion of the thorium nitrate may be varied also and, to a material degree, but if the ordinary commercial nitrate, Th(No be used, I prefer to avoid a material increase in the proportion on account of the effect of the acid in the stronger solution, especially as some of the nitrate of thorium sold in the open market contains free nitric acid. Care should always be taken that there is no free nitric acid present. This can readily be done and very satisfactory results can be obtained by using a compound prepared by adding, when the nitrate is made, more hydrate of thorium than is suflicient to satisfy the nitric acid. In the preparation of this special compound, I note the quantity ofthe thorium hydrate required to satisfy a given quantity of nitric acid. I then dilute to 30 or lO degrees (Baum), and add to the nitrate fluid made by mixing the said hydrate with nitric acid, 10% more of the thorium hydrate, that is, 10 of the original quantity required to satisfy the acid. \Vhen the fluid is diluted as above, the second instalment of hydrate is quickly dissolved. Next the solution is diluted to the required density. \Vhen this special compound is used the webs burn out slowly and assume readily the desired form over the shaping flame and I prefer its use when the webs are to be retained for many hours after sat uration.
It is very obvious that by the use of the above compound all danger of the presence of free nitric acid is removed, and that a solution of greater density can be used without evil effects from acid.
Especially in the case of mantles made with lustra cellulose the presence of the thorium nitrate in the solution employed for dipping the webs the second time to introduce the excitant serves another important purpose. When the thorium salt is denitrated by the peroXid of hydrogen, it will be found, after the cellulose threads are burned out, that the identity and original form of the many minute fibers that made up the threads are preserved in form to the extent that the individual minute fibers are reproduced in the skeleton of resultant oXid. This fact is Very apparent if the structure from the silk as is the case when cotton is.
used, but are free to move in flexing. As desirable, however, as this state may be, the mantle if put on the'market in this condition, has a serious drawback because when the mantle is dipped in a collodion or other suitable solution for the purpose of coating it for handling and transport, the coating solution engages the various minute fibers, causing them to fracture and break from the distorting and contracting action of the coating solution when drying, with the result that it is almost impossible to coat satisfactorily mantles so made. The application of the thorium solution in the second step corrects this fault by causing a welding effect to take place. It also provides a superficial coating which contributes to the protection from the injury fromthe collodion coating; and, although the mantle so treated may be less flexible, it is nevertheless more threads of either cotton or lustra-cellulose way described, and it is practically shrinkless and can be coated in a commercial way with almost any of the known coating solutions.
I have referred to the impregnating of knitted webs, but it is obvious that the threads of either cotton or lustra-cellulose may be treated in the new manner described before being knitted, and then knitted into the form necessary to produce the mantle, without departing from my invention.
What I claim is:
1. The improvement in the art of making gas mantles, which consists in impregnating a suitable fabric with a solution of thorium nitrate, treating the said impregnated fabric with hydrogen peroxid, then immersing the fabric so treated in a solution of thorium nitrate containing an excitant before burning out, for substantially the purposes described.
2. The improvement in the art of making gas mantles, which consists in impregnating the fabric with a thorium compound and subsequently acting on the compound with a hydrating agent, and before burning out further impregnating the fabric with a solution of a thorium salt containing another rare earth salt to act as an eXcita-nt.
3. As an artlcle of manufacture, a web for maklng incandescent gas mantles, cons1st1ng of threads containing denitratcd salts of compound containing another salt to act as thorium, and coated With a thorium compound containing another salt to act as an excitant.
4. As an article of manufacture, a thread for making Webs for the production of incandescent mantles contaming denitrated salts of thorium, and coated with a thorium an excitant. 10
Signed this 8th day of May, 1907 ALEXANDER P. WHITE.
Witnesses:
E. VAN ZANDT, A. L. OBRmN.
US1907372917 1907-05-10 1907-05-10 Incandescent gas-mantle and art of making same. Expired - Lifetime US966283A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US1907372917 US966283A (en) 1907-05-10 1907-05-10 Incandescent gas-mantle and art of making same.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US1907372917 US966283A (en) 1907-05-10 1907-05-10 Incandescent gas-mantle and art of making same.

Publications (1)

Publication Number Publication Date
US966283A true US966283A (en) 1910-08-02

Family

ID=3034677

Family Applications (1)

Application Number Title Priority Date Filing Date
US1907372917 Expired - Lifetime US966283A (en) 1907-05-10 1907-05-10 Incandescent gas-mantle and art of making same.

Country Status (1)

Country Link
US (1) US966283A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5686368A (en) * 1995-12-13 1997-11-11 Quantum Group, Inc. Fibrous metal oxide textiles for spectral emitters

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5686368A (en) * 1995-12-13 1997-11-11 Quantum Group, Inc. Fibrous metal oxide textiles for spectral emitters

Similar Documents

Publication Publication Date Title
US966283A (en) Incandescent gas-mantle and art of making same.
US2400709A (en) Process of preparing a gel product for absorption of poisonous gases
US2147533A (en) Solution of titanic hydroxide in hydrogen peroxide
US2782089A (en) Process of improving the heat stability of polythiourea threads by applying an epoxy compound
US1947024A (en) Chemical treatment of fabrics
US943488A (en) Incandescent mantle.
US1020255A (en) Manufacture of incandescence bodies for gas-lighting.
US1222883A (en) Fumigating-candle and process of making the same.
US936177A (en) Manufacture of incandescent gas-mantles.
US393391A (en) Gilbert scott eam
US987333A (en) Manufacture of incandescent mantles.
US623723A (en) Georg kohl
US949010A (en) Manufacture of incandescent bodies for gas-lights.
US1699779A (en) Process for improving tensile strength of fabric materials
US2302107A (en) Nitrated fabric for lace making and method for making same
US2984586A (en) Treatment of glass fibers with 4, 4'-bis(p-hydroxyphenyl)-pentanoic acid
US304880A (en) Edward weston
US346345A (en) Clinton m
US2432056A (en) Process for carroting fur for felting
US378258A (en) Theodore mace
US1085391A (en) Art of preparing fur for felting.
US256108A (en) Daniel m
GB190211042A (en) Improvements in the Manufacture of Incandescent Mantles
US574358A (en) Light-emitting body and method of producing same
US508124A (en) Henri desire turgard