US3360111A - Toner feed cartridge - Google Patents

Toner feed cartridge Download PDF

Info

Publication number
US3360111A
US3360111A US514990A US51499065A US3360111A US 3360111 A US3360111 A US 3360111A US 514990 A US514990 A US 514990A US 51499065 A US51499065 A US 51499065A US 3360111 A US3360111 A US 3360111A
Authority
US
United States
Prior art keywords
developer
toner
cartridge
container
liquid
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
US514990A
Inventor
Russell R Ulary
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.)
RCA Corp
Original Assignee
RCA Corp
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
Priority claimed from US259930A external-priority patent/US3242902A/en
Application filed by RCA Corp filed Critical RCA Corp
Priority to US514990A priority Critical patent/US3360111A/en
Application granted granted Critical
Publication of US3360111A publication Critical patent/US3360111A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03GELECTROGRAPHY; ELECTROPHOTOGRAPHY; MAGNETOGRAPHY
    • G03G15/00Apparatus for electrographic processes using a charge pattern
    • G03G15/06Apparatus for electrographic processes using a charge pattern for developing
    • G03G15/10Apparatus for electrographic processes using a charge pattern for developing using a liquid developer
    • G03G15/104Preparing, mixing, transporting or dispensing developer

Definitions

  • Patent No. 3,242,902 dated Mar. 29, 1966. Divided and this application Dec. 20, 1965, Ser. No. 514,990
  • This invention relates to the development of electrostatic images and more specifically to improved means for controlling dispersion of toner material in a liquid developer composition.
  • liquid development In the art of electrostatic printing various methods are employed to develop electrostatic images.
  • electrostatic images residing on a surface are developed by applying to the surface a dispersion of finely-divided toner in an insulating carrier liquid. During development, the toner is electrostatically extracted from the carrier liquid and held on the surface in an image pattern.
  • Liquid development of electrostatic images is described in many publications and patents, one of these being US. Patent 3,053,688 issued Sept. 11, 1962, to Harold G. Greig.
  • Liquid development of electrostatic images provides many advantages over other developing methods. However, it has been found that, during development of one electrostatic image after another as occurs in equipment such as automatic office copiers, the toner component of the liquid developer rapidly becomes depleted resulting in progressively poorer print quality. Should one attempt to overcome this difficulty by initially including excess toner in the liquid developer, the resulting prints will have an unacceptable amount of toner adhering in non-image or background areas until enough prints have been made so that the excess toner has been extracted from the liquid developer.
  • a container at least partially filled with toner and so constructed that toner can be caused to bleed from the container at a controlled rate.
  • a container such as a cylinder of metal or plastic, is filled with amass made up of toner particles dispersed in a soluble host material such as, for example, silicon grease.
  • At least one aperture communicates with the interior of the container so that the liquid component of a developer composition can come in contact with the grease in the container. The liquid gradually dissolves the grease and causes toner to bleed from the container thus adding toner to the developer composition at a controlled rate.
  • Apparatus with which the toner container may be used includes a reservoir designed to contain liquid developer, an applicator head of known design for applying the liquid developer to an electrostatic image, and conduit means for supplying liquid developer to the applicator head as well as for returning liquid developer to the reservoir from the applicator head.
  • a receptacle is provided for the grease-filled container, in the grease of which the toner particles are dispersed. This receptacle is designed to hold the container in position with its aperture or apertures in 3,360,1 1 1 Patented Dec. 26, 1967 the flow path of the liquid developer.
  • FIGURE 1 is a plan view partially in section of a developer cartridge in accordance with this invention.
  • FIGURE 2 is a plan view of an alternative embodiment of the developer cartridge of FIGURE 1;
  • FIGURE 3 is a side elevational view, partially in section, of improved developer apparatus which may be used with the cartridge of this invention.
  • FIGURES 3A and 3B are fragmentary views, partially in section, of modifications of the apparatus of FIG- URE 3.
  • the container in the form of a developer cartridge 11, as depicted in FIGURE 1, comprises a hollow cylinder at least partially filled with a grease 13 consisting of electroscopic toner particles dispersed in a soluble host material. Suitable materials will be described in more detail hereinafter.
  • the cartridge 11 is closed at one end 15 and open at the other end 17. Slots 19 are: cut through the Wall of the cartridge near is open end 17.
  • a cap 21 is provided which fits to dry. The dried filter cake over the open end 17 and covers the slots 19 in the cartridge wall. The cap 21 is removed when the cartridge 11 is to be used.
  • the cartridge 11' depicted in FIGURE 2, is similar to the one shown in FIGURE 1 except that both ends are closed and a plurality of holes 23 are cut through the cartridge wall.
  • the components thereof can beselected from many materials.
  • the toner articles in the mass may :be any of those commonly used in the art of electrostatic printing.
  • the soluble host material also may be selected from a wide variety of materials but, preferably, is selected to have insulating properties. While the host material may comprise a solid, such as a wax, it is preferred that it have the consistency of a grease or a petroleum jelly when mixed with the toner.
  • the host material should be soluble in the carrier liquid and should also be chemically inert with respect to the carrier liquid.
  • the host materials in the following examples are readily soluble in the carrier liquids most commonly used in electrostatic printing. Such carrier liquids include low viscosity silicone oils, trichlorotrif fiuorethane, and many hydrocarbon solvents. At the same time, the toner particlesshould be substantially insoluble in the carrier liquid.
  • Example 1 A black toner is prepared by making two solutions:
  • Solution one comprises: -6 grams Iosol Black (C.I. S01- vent Black 13), and 400 grams methanol.
  • Solution two comprises: 9 grams Spirit Nigrosine 50415), and 400 to 600 grams methanol.
  • Solution one is poured into solution two with continuous stirring. Once the solutions have been thoroughly mixed, and a black, relatively insoluble pigment precipitated, the mixture is filtered and the filter cake allowed is broken up and ball milled. After ball milling the black pigment is classified as to Example 2
  • An alternative developer paste can be prepared with:
  • the above ingredients are ball milled for about four hours and then filtered. Filtering removes excess silicone oil and provides a developer paste to be inserted in a cartridge.
  • Example 3 A petroleum jelly (Vaseline) is substituted for the silicone grease in Example 1.
  • an electrostatic image on an insulating layer can be developed by immersing the layer in a tray containing a liquid developer composition of toner particles dispersed in an insulating liquid.
  • the developer composition is rapidly depleted of toner particles so that, after a time, development becomes entirely inadequate.
  • a continuous supply of toner can be added to a developer composition at a controlled rate with a developer cart-ridge filled with a paste or grease prepared in accordance with the above examples.
  • the cartridge may be like one of those illustrated in FIGURES 1 or 2, and immersed in a tray of insulating carrier liquid. During the process of making one print after another, the insulating carrier liquid in the tray penetrates the slots 19 and the open end 17 of the cartridge 11 (FIGURE 1) or the holes 23 of the cartridge 11' (FIGURE 2). The insulating liquid penetrating the cartridge dissolves the host material contained therein and causes toner particles to bleed out of the cartridge and replenish the toner supply in the developer composition.
  • the improved developer apparatus shown in FIGURE 3 is particularly adapted for developing electrostatic images on an insulating surface of a flexible web 31.
  • a web may be a web of electrophotographic paper as described in US. Patent 3,052,540 issued Sept. 4, 1962, to Harold G. Greig.
  • the apparatus includes two pressure rollers 35 and 38 which engage the paper 31 and which are driven to transport the paper through a portion of the developer apparatus.
  • Liquid developer composition is applied to the upper pressure roller 35 by means of an applicator 37.
  • the developer composition is supplied to the applicator 37 through -a pipe 39 connected to a centrifugal pump 41.
  • As liquid developer composition is carried ,by the upper pressure roller 35 into contact with the paper a turbulent nip 43 of the developer composition is formed where the roller 35 contacts the paper.
  • This turbulent nip 43 substantially enhances development of electrostatic images on the paper and also enhances clean up of developer material which may adhere in areas on the paper 31 where developer is unwanted.
  • the developer composition not only forms the nip 43 but also flows down the face of the paper 31 as it is carried over the pressure roller 38. The developer composition is thereby caused to be in contact with a substantial portion of the paper 31 during development.
  • Developer composition in excess of that used to develop an image on the paper, drops therefrom into a tray or sump 45 positioned below the two pressure rollers 35 and 38.
  • the collected developer composition 47 is returned through pipes 49 to a reservoir 51 which also contains the centrifugal pump 41.
  • means are provided for inserting the developer cartridge 11 of FIGURE 1 in the path of the flow of the developer composition through the return pipes 49.
  • a re ceptacle 53 for the cartridge 11 is provided.
  • the cartridge 11 is inserted through a sleeve 55 on the receptacle 53 and into a hole or well 57 drilled in the receptacle 53.
  • the sleeve 55 is closed with a cap 56.
  • the well 57 has a sufficient diameter to provide ample clearance for liquid to flow around the outside of the cartridge.
  • Two other holes 59 and 61 communicate with the well 57 in which the cartridge sits and provide means for developer composition to contact the cartridge 11 when flowing back to the reservoir 51 through the pipes 49.
  • toner cartridge 11' (FIGURE 2) may be positioned, as shown in FIGURE 3A, in the sump 45 and held therein by a spring clip 69.
  • the toner cartridge 11' can be mounted in the reservoir 51. Such mounting is shown in FIGURE 3B, by way of example, with the cartridge 11' positioned on the pump 41 and held thereon by a spring retainer 71.
  • developer composition collected by the sump 45 and flowing back tothe reservoir 51 causes toner to bleed from the developer cartridge 11' in the sump 45 (FIGURE 3A) or the developer cartridge 11 in the receptacle 53 (FIGURE 3) only once during each cycle of operation. It has been found that, with a toner cartridge 11 (FIGURE 1) having a diameter of about inch, a length of about 2% inches and filled with about 11 grams of developer paste, developer apparatus can operate as described to produce at least 200 8 /2" x 11" prints.
  • Such means may comprise a container 63, a solenoid pump 65 and a conduit 67 connecting the pump 65 with the reservoir 51.
  • a toner cartridge for feeding controllable amounts of toner particles into the developer applicator system of an electrostatic printing apparatus of the liquid developer type comprising a container at least partially filled with a mass comprising a dispersion of a relatively high proportion of electroscopic toner particles in a soluble host material, said container having at least one aperture communicating with the interior thereof through which said toner particles can be extracted from said container at a controlled rate by dissolving said host material.
  • a toner feed cartridge for feeding controllable amounts of toner particles into the developer applicator system of an electrostatic printing apparatus of the liquid developer type, comprising a container at least partially filled with a mass comprising a dispersion of a relatively high proportion of toner particles in a soluble grease, said container having a plurality of holes communicating with the interior thereof through which said toner particles can be extracted at a controlled rate by dissolving said grease.
  • a toner feed cartridge for feeding controllable amounts of toner particles into the developer applicator system of an electrostatic printing apparatus of the liquid developer type, comprising a developer paste comprising a dispersion of toner particles in a soluble host material and a cylindrical container for said developer paste, said container having a plurality of apertures through the cylindrical wall thereof and adjacent one end thereof 6 through which toner particles can be extracted at a controlled rate by dissolving said host material.

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Wet Developing In Electrophotography (AREA)

Description

Dec. 26, 1967 'RRULMY 3,360,111
TONER FEED CARTRIDGE OriginalFiled Feb 20, 1963 haw United States Patent Ofifice 3,360,111 TONER FEED CARTRIDGE Russell R. Ulary, Willingboro, N.J., assignor to Radio Corporation of America, a corporation of Delaware Original application Feb. 20, 1963, Ser. No. 259,930, now
Patent No. 3,242,902, dated Mar. 29, 1966. Divided and this application Dec. 20, 1965, Ser. No. 514,990
4 Claims. (Cl. 206-.5)
This invention relates to the development of electrostatic images and more specifically to improved means for controlling dispersion of toner material in a liquid developer composition. This is a division of application Ser. No. 259,930 filed Feb. 20, 1963, now Patent No. 3,242,902 issued Mar. 29, 1966.
In the art of electrostatic printing various methods are employed to develop electrostatic images. One such method is known as liquid development. In this method, electrostatic images residing on a surface are developed by applying to the surface a dispersion of finely-divided toner in an insulating carrier liquid. During development, the toner is electrostatically extracted from the carrier liquid and held on the surface in an image pattern. Liquid development of electrostatic images is described in many publications and patents, one of these being US. Patent 3,053,688 issued Sept. 11, 1962, to Harold G. Greig.
Liquid development of electrostatic images provides many advantages over other developing methods. However, it has been found that, during development of one electrostatic image after another as occurs in equipment such as automatic office copiers, the toner component of the liquid developer rapidly becomes depleted resulting in progressively poorer print quality. Should one attempt to overcome this difficulty by initially including excess toner in the liquid developer, the resulting prints will have an unacceptable amount of toner adhering in non-image or background areas until enough prints have been made so that the excess toner has been extracted from the liquid developer.
Accordingly, it is a general object of this invention to provide improved means for maintaining an appropriate quantity of toner in a continuously used liquid developer.
It is another object of this invention to provide improved means for adding controlled amounts of toner to a liquid developer.
These and other objects and advantages are achieved in accordance with this invention by providing a container at least partially filled with toner and so constructed that toner can be caused to bleed from the container at a controlled rate. In a specific apparatus embodying the invention, a container, such as a cylinder of metal or plastic, is filled with amass made up of toner particles dispersed in a soluble host material such as, for example, silicon grease. At least one aperture communicates with the interior of the container so that the liquid component of a developer composition can come in contact with the grease in the container. The liquid gradually dissolves the grease and causes toner to bleed from the container thus adding toner to the developer composition at a controlled rate.
Apparatus with which the toner container may be used includes a reservoir designed to contain liquid developer, an applicator head of known design for applying the liquid developer to an electrostatic image, and conduit means for supplying liquid developer to the applicator head as well as for returning liquid developer to the reservoir from the applicator head. In the flow path of the liquid developer a receptacle is provided for the grease-filled container, in the grease of which the toner particles are dispersed. This receptacle is designed to hold the container in position with its aperture or apertures in 3,360,1 1 1 Patented Dec. 26, 1967 the flow path of the liquid developer. Each time a metered amount of liquid developer fiows from the reservoir to the applicator head and back to the reservoir, a metered amount of toner bleeds from the container into the developer liquid.
Additional objects and advantages are included in the following detailed description which refers to the accompanying drawings, wherein:
FIGURE 1 is a plan view partially in section of a developer cartridge in accordance with this invention;
FIGURE 2 is a plan view of an alternative embodiment of the developer cartridge of FIGURE 1;
FIGURE 3 is a side elevational view, partially in section, of improved developer apparatus which may be used with the cartridge of this invention, and
FIGURES 3A and 3B are fragmentary views, partially in section, of modifications of the apparatus of FIG- URE 3.
Similar reference characters are applied to similar elements throughout the drawings.
DEVELOPER CARTRIDGE The container in the form of a developer cartridge 11, as depicted in FIGURE 1, comprises a hollow cylinder at least partially filled with a grease 13 consisting of electroscopic toner particles dispersed in a soluble host material. Suitable materials will be described in more detail hereinafter. The cartridge 11 is closed at one end 15 and open at the other end 17. Slots 19 are: cut through the Wall of the cartridge near is open end 17. For
. convenience in handling, a cap 21 is provided which fits to dry. The dried filter cake over the open end 17 and covers the slots 19 in the cartridge wall. The cap 21 is removed when the cartridge 11 is to be used. The cartridge 11', depicted in FIGURE 2, is similar to the one shown in FIGURE 1 except that both ends are closed and a plurality of holes 23 are cut through the cartridge wall.-
DEVELOPER PASTE In making up the grease or paste 13, contained in the cartridges 11 and 11' of FIGURES 1 and 2, the components thereof can beselected from many materials. The toner articles in the mass may :be any of those commonly used in the art of electrostatic printing. The soluble host material also may be selected from a wide variety of materials but, preferably, is selected to have insulating properties. While the host material may comprise a solid, such as a wax, it is preferred that it have the consistency of a grease or a petroleum jelly when mixed with the toner. The host material should be soluble in the carrier liquid and should also be chemically inert with respect to the carrier liquid. The host materials in the following examples are readily soluble in the carrier liquids most commonly used in electrostatic printing. Such carrier liquids include low viscosity silicone oils, trichlorotrif fiuorethane, and many hydrocarbon solvents. At the same time, the toner particlesshould be substantially insoluble in the carrier liquid.
1 Example 1 A black toner is prepared by making two solutions:
Solution one comprises: -6 grams Iosol Black (C.I. S01- vent Black 13), and 400 grams methanol.
Solution two comprises: 9 grams Spirit Nigrosine 50415), and 400 to 600 grams methanol. Solution one is poured into solution two with continuous stirring. Once the solutions have been thoroughly mixed, and a black, relatively insoluble pigment precipitated, the mixture is filtered and the filter cake allowed is broken up and ball milled. After ball milling the black pigment is classified as to Example 2 An alternative developer paste can be prepared with:
60 grams toner 160 grams silicone oil, viscosity about 2 centistokes 5 grams silica aerogel such as CAB-O-Sil marketed by Godfrey L. Cabot Industries 2.4 grams powdered iron.
The above ingredients are ball milled for about four hours and then filtered. Filtering removes excess silicone oil and provides a developer paste to be inserted in a cartridge.
Example 3 A petroleum jelly (Vaseline) is substituted for the silicone grease in Example 1.
Other suitable developer pastes are described in US. Patent 3,038,799 issued June 12, 1962, to K. A. Metcalfe et al.
It is Well known that an electrostatic image on an insulating layer can be developed by immersing the layer in a tray containing a liquid developer composition of toner particles dispersed in an insulating liquid. When developing many prints in this manner, the developer composition is rapidly depleted of toner particles so that, after a time, development becomes entirely inadequate.
A continuous supply of toner can be added to a developer composition at a controlled rate with a developer cart-ridge filled with a paste or grease prepared in accordance with the above examples. The cartridge may be like one of those illustrated in FIGURES 1 or 2, and immersed in a tray of insulating carrier liquid. During the process of making one print after another, the insulating carrier liquid in the tray penetrates the slots 19 and the open end 17 of the cartridge 11 (FIGURE 1) or the holes 23 of the cartridge 11' (FIGURE 2). The insulating liquid penetrating the cartridge dissolves the host material contained therein and causes toner particles to bleed out of the cartridge and replenish the toner supply in the developer composition.
The improved developer apparatus shown in FIGURE 3 is particularly adapted for developing electrostatic images on an insulating surface of a flexible web 31. Such a web may be a web of electrophotographic paper as described in US. Patent 3,052,540 issued Sept. 4, 1962, to Harold G. Greig. The apparatus includes two pressure rollers 35 and 38 which engage the paper 31 and which are driven to transport the paper through a portion of the developer apparatus. Liquid developer composition is applied to the upper pressure roller 35 by means of an applicator 37. The developer composition is supplied to the applicator 37 through -a pipe 39 connected to a centrifugal pump 41. As liquid developer composition is carried ,by the upper pressure roller 35 into contact with the paper a turbulent nip 43 of the developer composition is formed where the roller 35 contacts the paper. This turbulent nip 43 substantially enhances development of electrostatic images on the paper and also enhances clean up of developer material which may adhere in areas on the paper 31 where developer is unwanted. The developer composition not only forms the nip 43 but also flows down the face of the paper 31 as it is carried over the pressure roller 38. The developer composition is thereby caused to be in contact with a substantial portion of the paper 31 during development.
Developer composition, in excess of that used to develop an image on the paper, drops therefrom into a tray or sump 45 positioned below the two pressure rollers 35 and 38. The collected developer composition 47 is returned through pipes 49 to a reservoir 51 which also contains the centrifugal pump 41. In a preferred embodiment, means are provided for inserting the developer cartridge 11 of FIGURE 1 in the path of the flow of the developer composition through the return pipes 49. A re ceptacle 53 for the cartridge 11 is provided. The cartridge 11 is inserted through a sleeve 55 on the receptacle 53 and into a hole or well 57 drilled in the receptacle 53. The sleeve 55 is closed with a cap 56. The well 57 has a sufficient diameter to provide ample clearance for liquid to flow around the outside of the cartridge. Two other holes 59 and 61 communicate with the well 57 in which the cartridge sits and provide means for developer composition to contact the cartridge 11 when flowing back to the reservoir 51 through the pipes 49.
Alternative arrangements for using the developer cartridge to replenish toner in the apparatus of FIGURE 3 are also contemplated as shown in FIGURES 3A and 3B. For example, toner cartridge 11' (FIGURE 2) may be positioned, as shown in FIGURE 3A, in the sump 45 and held therein by a spring clip 69. As a second alternative, the toner cartridge 11' can be mounted in the reservoir 51. Such mounting is shown in FIGURE 3B, by way of example, with the cartridge 11' positioned on the pump 41 and held thereon by a spring retainer 71.
By inserting the developer cartridge 11 in the sump 45 (FIGURE 3A) or the cartridge 11 in the receptacle 53 (FIGURE 3) advantages are realized which cannot be readily attained when the cartridge 11 is mounted in the reservoir 51 (FIGURE 33). Such advantages become apparent when the paper is moved one frame at a time by intermittently driving the rollers 35 and 38. In such a case, it is desirable that the pump 41 also operate intermittently so that developer composition is applied to the paper 31 only while it is being advanced by the pressure rollers 35 and 38. During such operation, developer composition collected by the sump 45 and flowing back tothe reservoir 51 causes toner to bleed from the developer cartridge 11' in the sump 45 (FIGURE 3A) or the developer cartridge 11 in the receptacle 53 (FIGURE 3) only once during each cycle of operation. It has been found that, with a toner cartridge 11 (FIGURE 1) having a diameter of about inch, a length of about 2% inches and filled with about 11 grams of developer paste, developer apparatus can operate as described to produce at least 200 8 /2" x 11" prints.
Mounting of the developer cartridge 11' in the reservoir 51 (FIGURE 33) may result in a continuous bleeding of toner from the cartridge 11'. Hence, it is desirable that the developer apparatus of FIGURE 3B be employed in a substantially continuous printing operation rather than an intermittent operation.
Since the liquid component of the developer composi-- tion in the reservoir 51 may also become depleted as by being carried v01f on the paper 31, means are provided. for added increments of insulating carrier liquid from time to time as shown in FIGURE 3. Such means may comprise a container 63, a solenoid pump 65 and a conduit 67 connecting the pump 65 with the reservoir 51.
What is claimed is:
1. A toner cartridge for feeding controllable amounts of toner particles into the developer applicator system of an electrostatic printing apparatus of the liquid developer type, comprising a container at least partially filled with a mass comprising a dispersion of a relatively high proportion of electroscopic toner particles in a soluble host material, said container having at least one aperture communicating with the interior thereof through which said toner particles can be extracted from said container at a controlled rate by dissolving said host material.
2. A toner feed cartridge for feeding controllable amounts of toner particles into the developer applicator system of an electrostatic printing apparatus of the liquid developer type, comprising a container at least partially filled with a mass comprising a dispersion of a relatively high proportion of toner particles in a soluble grease, said container having a plurality of holes communicating with the interior thereof through which said toner particles can be extracted at a controlled rate by dissolving said grease.
3. A toner feed cartridge for feeding controllable amounts of toner particles into the developer applicator system of an electrostatic printing apparatus of the liquid developer type, comprising a developer paste comprising a dispersion of toner particles in a soluble host material and a cylindrical container for said developer paste, said container having a plurality of apertures through the cylindrical wall thereof and adjacent one end thereof 6 through which toner particles can be extracted at a controlled rate by dissolving said host material.
4. A toner feed cartridge according to claim 3 and including a removable cap adapted to fit over said one end and cover said apertures.
References Cited UNITED STATES PATENTS JOSEPH R. LECLAIR, Primary Examiner. THERON E. CONDON, Examiner.
20 I. M. CASKIE, Assistant Examiner.

Claims (1)

1. A TONER CARTRIDGE FOR FEEDING CONTROLLABLE AMOUNTS OF TONER PARTICLES INTO THE DEVELOPER APPLICATOR SYSTEM OF AN ELECTROSTATIC PRINTING APPARATUS OF THE LIQUID DEVELOPER TYPE, COMPRISING A CONTAINER AT LEAST PARTIALLY FILLED WITH A MASS COMPRISING A DISPERSION OF A RELATIVELY HIGH PROPORTION OF ELECTROSCOPIC TONER PARTTICLES IN A SOLUBLE HOST MATERIAL, SAID CONTAINER HAVING AT LEAST ONE APERTURE COMMUNICATING WITH THE INTERIOR THEREOF THROUGH WHICH SAID TONER PARTICLES CAN BE EXTRACTED FROM SAID CONTAINER AT A CONTROLLED RATE BY DISSOLVING SAID HOST MATERIAL.
US514990A 1963-02-20 1965-12-20 Toner feed cartridge Expired - Lifetime US3360111A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US514990A US3360111A (en) 1963-02-20 1965-12-20 Toner feed cartridge

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US259930A US3242902A (en) 1963-02-20 1963-02-20 Toner feed
US514990A US3360111A (en) 1963-02-20 1965-12-20 Toner feed cartridge

Publications (1)

Publication Number Publication Date
US3360111A true US3360111A (en) 1967-12-26

Family

ID=26947626

Family Applications (1)

Application Number Title Priority Date Filing Date
US514990A Expired - Lifetime US3360111A (en) 1963-02-20 1965-12-20 Toner feed cartridge

Country Status (1)

Country Link
US (1) US3360111A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2851635A1 (en) * 1978-11-28 1980-05-29 Coulter Systems Corp DEVICE AND METHOD FOR PRODUCING COPIES BY ELECTROPHOTOGRAPHIC WAY

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US78313A (en) * 1868-05-26 Improved article of bluing
US2251080A (en) * 1940-02-15 1941-07-29 Taber Arthur Pratt Sewer cartridge
US2554393A (en) * 1947-11-28 1951-05-22 Hunnewell Soap Company Soap dispenser
US3053688A (en) * 1959-04-13 1962-09-11 Rca Corp Electrostatic printing

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US78313A (en) * 1868-05-26 Improved article of bluing
US2251080A (en) * 1940-02-15 1941-07-29 Taber Arthur Pratt Sewer cartridge
US2554393A (en) * 1947-11-28 1951-05-22 Hunnewell Soap Company Soap dispenser
US3053688A (en) * 1959-04-13 1962-09-11 Rca Corp Electrostatic printing

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2851635A1 (en) * 1978-11-28 1980-05-29 Coulter Systems Corp DEVICE AND METHOD FOR PRODUCING COPIES BY ELECTROPHOTOGRAPHIC WAY

Similar Documents

Publication Publication Date Title
US3242902A (en) Toner feed
US3776631A (en) Liquid developer cleaning system
EP0277225B1 (en) Image permanence method and device
US3894512A (en) Electrostatic developing apparatus
US3343956A (en) Electrostatic printing process wherein development is achieved by sequenctial application of carrier liquid and developer particles
US3360111A (en) Toner feed cartridge
US3372027A (en) Xerographic liquid development
DE2200423C3 (en) Electrostatographic imaging process with reversed image
DE3116870C1 (en) Device for filling toner from a container into a storage container
US3281241A (en) Method of forming a visual record of a latent image on an image receiving web
JPS54134632A (en) Preparation method of original form and form for printing
US4058637A (en) Electrostatic developing method
US3498917A (en) Liquid developer for electrostatic images
DE3025103A1 (en) DEVICE FOR REPLACING A DEVELOPER IN A DEVELOPING STATION
KR100636137B1 (en) Charge adjuvant delivery composition and methods
US3296140A (en) Liquid developer for electrographic printing
DE4216733C2 (en) Process for producing two-tone images
DE2400338A1 (en) METHOD AND DEVICE FOR DEVELOPMENT OF ELECTROSTATIC CHARGE PATTERNS
US5983058A (en) Method and apparatus for depositing ink on an image carrying member utilized to transfer images to a recording medium
DE3115294C2 (en) Process for regenerating the carrier particles of a two-component developer consisting of carrier particles and toner
DE2641026A1 (en) METHOD AND ARRANGEMENT FOR ELECTROSTATIC LIQUID DEVELOPMENT OF A SMOOTH, TAPE-SHAPED RECORDING MEDIA
DE1497061A1 (en) Xerographic copying process
US3340057A (en) Recording element having polyethylene wax binder and electrostatic printing therewith
US5398104A (en) Passive toner concentration control system
DE2256566A1 (en) ELECTROSTATOGRAPHIC RECORDING PROCESS AND TONER SUBSTANCE FOR SUCH PROCESS