DEVICES AND METHODS FOR REMANUFACTURING TONER PRINTER CARTRIDGES
20180088493 ยท 2018-03-29
Assignee
Inventors
- Craig RUMMLER (Torrance, CA, US)
- Shinichi IIJIMA (San Marino, CA, US)
- Mark DRAKE (Simi Valley, CA, US)
- Valeriy KISELEV (Pasadena, CA, US)
- Manuel NUNEZ (Sylmar, CA, US)
- Carlos GORDON (Inglewood, CA, US)
- Gerardo MARTINEZ (Glendale, CA, US)
Cpc classification
G03G15/0863
PHYSICS
G03G21/181
PHYSICS
G03G15/0894
PHYSICS
International classification
Abstract
The invention provides devices and methods for remanufacturing toner printer cartridges and their components by reusing a seal for the toner opening port. The invention also provides devices and methods for remanufacturing a printer cartridge by resealing the toner opening port of the toner hopper. The invention also relates to devices and methods to install and replace seals on a toner hopper, refill toner in a toner hopper, replace a bag of toner in a toner hopper, and replace a chip for a toner cartridge. Also included are devices and methods of sealing a toner cartridge and reattaching a toner cartridge end cap to a waste hopper. A soft shell bottle suitable for use in a toner cartridge composed of a soft polymeric material is also provided.
Claims
1. A method for sealing a toner hopper of a printer cartridge, the method comprising: accessing an internal area of the printer cartridge; disposing a seal over a toner opening port of the toner hopper; and affixing the seal on the toner hopper.
2. The method of claim 1 wherein the seal is a film.
3. The method of claim 1, wherein the seal comprises a tab.
4. The method of claim 3, further comprising attaching the tab to an agitator in the toner hopper.
5. The method of claim 1, further comprising affixing a gasket to the perimeter of the toner opening port of the toner hopper.
6. The method of claim 1, further comprising affixing the seal to the gasket.
7. The method of claim 6, wherein the gasket includes at least one adhesive layer.
8. The method of claim 1, further comprising affixing a gasket to the perimeter of the top of a bottom vessel of a toner hopper.
9. The method of claim 1, wherein the internal area of the toner cartridge is accessed by cutting a hole in a wall of the printer cartridge.
10. The method of claim 1, wherein the seal is affixed with an adhesive.
11. The method of claim 1, wherein the seal is affixed with heat.
12. The method of claim 9, comprising removing debris created by cutting the hole.
13. The method of claim 9, wherein the hole is made in an optimal position.
14. The method of claim 13, wherein the optimal position is a wall of the printer cartridge adjacent to the toner opening port of the toner hopper.
15. The method of claim 1, wherein the seal is made of anti-static material.
16. The method of claim 1, further comprising disposing the seal over the toner opening of the toner hopper, and on top of a doctor blade and a retaining blade.
17. The method of claim 16, wherein the seal comprises a pull tab.
18. A method for replacing a chip for an image forming device, the method comprising: accessing a chip by removing the fin; replacing the chip; and securing the chip.
19. A method of replacing a bag of toner in a toner hopper, the method comprising: accessing an internal area of the printer hopper; removing the bag of toner; and inserting a replacement bag of toner.
20. The method of claim 19, further comprising filling the replacement bag of toner with toner.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0147] The invention can be better understood with reference to the following detailed description taken in conjunction with the accompanying drawings which illustrate preferred and exemplary embodiments, but which are not necessarily drawn to scale, wherein:
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DETAILED DESCRIPTION OF THE INVENTION
Embodiment (1)
[0203] The present invention provides a method to replace or reinstall seals on a toner hopper and/or the toner opening port of a toner hopper.
[0204] A toner cartridge may be opened through any method known in the art. A toner cartridge may be opened using a tool. In one embodiment, the toner cartridge is opened using a screwdriver as shown in
[0205] Once the toner cartridge is opened, the seal that was installed by the original equipment manufacturer can be collected. The seal may be collected from wherever it is located in the toner cartridge. The seal may be collected from the toner hopper. The seal may be collected from any location within the toner hopper, such as the bottom vessel of the toner hopper.
[0206] In an embodiment of the invention, after the seal is collected, it may be attached or reattached to the agitator in any manner known to those of skill in the art. The seal may be attached to the agitator as shown in
[0207] In an embodiment of the invention, once the seal is attached to the agitator, it is disposed over the toner opening port of the toner hopper. A gasket may be affixed to the perimeter of the toner opening port of the toner hopper. The gasket may be made of any material known to those of skill in the art. The seal may be affixed to the gasket at any time in accordance with the invention. The gasket may have at least one adhesive layer. The gasket may have two adhesive layers. The gasket may have multiple adhesive layers. An adhesive layer of the gasket may be used to adhere the gasket to the perimeter of the toner opening port of the toner hopper. The gasket may be adhered to the perimeter of the toner opening port of the toner hopper in any manner or in any location known to those of skill in the art. A gasket may be adhered to the perimeter of the toner opening port of the toner hopper as shown in
[0208] In an embodiment of the invention, a gasket may be affixed to the perimeter of the top of the bottom vessel of the toner hopper. The gasket may be made of any material known to those of skill in the art. The seal may be affixed to the gasket at any time in accordance with the invention. The gasket may have at least one adhesive layer. The gasket may have two adhesive layers. The gasket may have multiple adhesive layers. The gasket may be adhered to the perimeter of the bottom vessel of the toner hopper n any manner or in any location known to those of skill in the art. A gasket may be adhered to the perimeter of the top side of the bottom vessel of the toner hopper as shown in
[0209] Methods and devices for sealing toner opening ports of printer cartridges are known in the art and are disclosed in U.S. Pat. Nos. 7,835,664, 7,986,900, and 8,369,741, all of which are incorporated herein by reference.
[0210] The above description sets forth, rather broadly, a summary of the disclosed embodiments. There may be, of course, other features of the disclosed embodiments that will be appreciated by a person of skill in the art based on the description and may form the subject matter of claims. The features, functions, and advantages that have been discussed can be achieved independently in various embodiments of the disclosure or may be combined in yet other embodiments, further details of which can be seen with reference he following description.
[0211] The order in which the steps are presented is not limited to any particular order and does not necessarily imply that they have to be performed in the order presented. It will be understood by those of ordinary skill in the art that the order of these steps can be rearranged and performed in any suitable manner. It will further be understood by those of ordinary skill in the art that some steps may be omitted or added and still fall within the spirit of the invention.
[0212] The disclosed embodiments provide various devices and methods for remanufacturing printer cartridge components of laser printers, such as laser cartridges, toner cartridges, or printer cartridge components. The disclosed embodiments of the devices and methods may be used with printer cartridge components that can be used in laser printer models, such as the Hewlett Packard Corporation HP-M553 family of laser printers, or other HP laser printer models, and may also be used with other suitable printer cartridges.
[0213] Many modifications and other embodiments of the disclosure will come to mind to one skilled in the art to which this disclosure pertains having the benefit of the teachings presented in the foregoing descriptions and the associated drawings. The embodiments described herein are meant to be illustrative and are not intended to be limiting. Although specific terms are employed herein, they are used in a generic and descriptive sense only and not for purposes of limitation. The invention is not limited in its application to the details of the construction and to the arrangement of the components set forth in the above description or as illustrated in the drawings.
Embodiment (2)
[0214] The present invention satisfies the need for methods and devices for accessing the toner opening port of the toner hopper to install a replacement seal and remanufacture a printer cartridge. One embodiment of the invention comprises a method for sealing or resealing the toner hopper of a printer cartridge. The printer cartridge contains various components, including a toner hopper. The toner hopper has a partially open end that allows toner to be used by the printer cartridge to form an image. The toner hopper is otherwise a closed box. A hole is cut or melted in a wall of the printer cartridge to access an internal area of the printer cartridge. The hole may be formed by any method known in the art. The hole will lead to the toner opening port of the toner hopper. A seal is inserted through the hole into the internal area of the printer cartridge. The seal is affixed to the toner opening port. The toner opening port is closed with the seal to prevent toner from leaking from the toner hopper during shipment or before the cartridge is used.
[0215] In one embodiment, the internal area of the toner cartridge is accessed by cutting a hole in a wall of the printer cartridge. In another embodiment, the seal is affixed to the toner opening port of the toner hopper. The seal may be affixed with an adhesive, heat, or any other method known in the art. In one embodiment of the invention, the original seal is removed from the toner hopper. Toner can be replenished in the toner hopper.
[0216] Cutting the hole in the wall of the printer cartridge will usually create debris. In an embodiment of the invention, the debris is removed. The debris may be removed by blowing, sweeping, vacuuming, or any other method known in the art. In one embodiment, the method comprises aligning a guide next o the printer cartridge. The guide may be aligned to determine where the hole should be cut, or in some embodiments, the location of the optimal position for the hole.
[0217] In one embodiment, the hole is cut in an optimal position to insert the seal to cover the toner opening port. In one embodiment, the optimal position will allow the least resistance and provide the shortest path to insert the seal and affix it to the toner opening port. In one embodiment, the optimal position is a wall of the printer cartridge adjacent to the toner opening port of the toner hopper. In some embodiments, the optimal position is not on a seam of the printer cartridge or in a position that would create an additional port in the toner hopper. The hole may be cut by sawing, drilling, or any other method known in the art.
[0218] In one embodiment of the invention, the hole is filled with a plug. The plug can be made of any material known in the art. The plug may be attached to the seal. The seal may be configured to close the hole.
[0219] One embodiment of the invention is a method of creating, a guide to determine the optimal placement of a hole in a wall of a second printer cartridge. In one embodiment, the method comprises aligning the guide against a printer cartridge with a hole and marking the guide to indicate the placement of the hole on the printer cartridge. In one embodiment, the guide is used to determine where to cut a hole in a second printer cartridge. In one embodiment, the guide is used to cut a hole in a wall of a second printer cartridge.
[0220] One embodiment of the invention is a method of creating a guide to determine the optimal placement of a hole in a wall of a printer cartridge. In one embodiment, the method comprises measuring the dimensions of the printer cartridge, determining the optimal placement of a hole in the wall of the printer cartridge, and preparing a guide incorporating the dimensions of the printer cartridge and the optimal placement of a hole in the wall of the printer cartridge. In one embodiment, the method comprises aligning the guide with a printer cartridge. In another embodiment, the method comprises using the guide to cut a hole in the wall of a printer cartridge. The guide may be made from paper, wood, plastic, or any other material known in the art.
[0221] One embodiment of the invention is an apparatus that can access the inside of a toner cartridge. The apparatus can comprise a cutting tool. The cutting tool can comprise a rotary tool, Dremel tool, or any other apparatus known in the art. The apparatus may comprise a tool that a seal into the internal area of the toner cartridge. The apparatus may comprise a tool that affixes a seal on the toner hopper. The apparatus may comprise a tool that removes debris.
[0222] Methods and devices for sealing toner opening ports of printer cartridges are known in the art and are disclosed in U.S. Pat. Nos. 7,835,664, 7,986,900, and 8,369,741, all of which are incorporated herein by reference.
[0223] The above description sets forth, rather broadly, a summary of the disclosed embodiments. There may be, of course, other features of the disclosed embodiments that will be appreciated by a person of skill in the art based on the description and may form the subject matter of claims. The features, functions, and advantages that have been discussed can be achieved independently in various embodiments of the disclosure or may be combined in yet other embodiments, further details of which can be seen with reference to the following description.
[0224] The order in which the steps are presented is not limited to any particular order and does not necessarily imply that they have to be performed in the order presented. It will be understood by those of ordinary skill in the art that the order of these steps can be rearranged and performed in any suitable manner. It will further be understood by those of ordinary skill in the art that some steps may be omitted or added and still fall within the spirit of the invention.
[0225] The disclosed embodiments provide various devices and methods for remanufacturing printer cartridge components of laser printers, such as laser cartridges, toner cartridges, or printer cartridge components. The disclosed embodiments of the devices and methods may be used with printer cartridge components that can be used in laser printer models, such as the Hewlett Packard Corporation HP-M252 and HP-M552 families of laser printers, or other HP laser printer models, and may also be used with other suitable printer cartridges.
[0226] Many modifications and other embodiments of the disclosure will come to mind to one skilled in the art to which this disclosure pertains having the benefit of the teachings presented in the foregoing descriptions and the associated drawings. The embodiments described herein are meant to be illustrative and are not intended to be limiting. Although specific terms are employed herein, they are used in a generic and descriptive sense only and not for purposes of limitation. The invention is not limited in its application to the details of the construction and to the arrangement of the components set forth in the above description or as illustrated in the drawings.
[0227] With reference to the drawings,
Embodiment (3)
EXAMPLE 1
Sealing the Toner Hopper
[0228] The disclosed inventions satisfy the need for methods and devices for installing or replacing seals on toner hoppers. The invention may be embodied in a seal disposed over the toner opening of the toner hopper, and on op of the doctor blade and retaining blade of the toner hopper. As depicted in
EXAMPLE 2
Toner Bag Replacement
[0229] The disclosed inventions satisfy the need for methods and devices for removing and replacing a bag of toner in a toner hopper. As depicted in
[0230] In one embodiment, the internal area of the toner hopper is accessed by cutting a hole in a wall of the toner cartridge. The bag of toner may be removed through the hole. The replacement bag of toner may be inserted through the hole. The replacement bag of toner may be filled at any time. The replacement bag of toner may be filled before it is inserted in the toner hopper or after it is inserted in the toner hopper.
[0231] The replacement bag of toner may have an adhesive to adhere the bag to the inside of the toner hopper. The adhesive may be protected by a liner, which may be removed to expose the adhesive. The replacement bag of toner may also have a string to attach the bag to an agitator in the toner hopper. The string can be attached to the agitator so that the agitator opens the replacement bag of toner once the remanufactured or reassembled printer cartridge is activated. The replacement bag of toner may be perforated.
[0232] Cutting the hole in the wall of the printer cartridge will usually create debris. In an embodiment of the invention, the debris is removed. The debris may be removed by blowing, sweeping, vacuuming, or any other method known in the art. In one embodiment, the method comprises aligning a guide next to the printer cartridge. The guide may be aligned to determine where the hole should be cut, or in some embodiments, the location of the optimal position for the hole.
[0233] In one embodiment, the hole is cut in an optimal position to insert the replacement bag of toner. In one embodiment, the optimal position will allow the least resistance and provide the shortest path to insert the replacement bag of toner one embodiment, the optimal position is a wall of the printer cartridge adjacent to the agitator of the toner hopper. In some embodiments, the optimal position is not on a seam of the printer cartridge or in a position that would create an additional port in the toner hopper. The hole may be cut by sawing, drilling, or any other method known in the art.
[0234] In one embodiment f the invention, the hole is filled with a plug. The plug can be made of any material known in the art. The plug can be the material removed to access the internal area of the printer hopper. The material can be melted or welded and can be sealed by any method known in the art.
Embodiment (4)
[0235] The first aspect of this embodiment relates to devices and methods for resealing a toner cartridge through a supply roller plug, such as the HP M552/M553 cartridges. This aspect of the invention is shown in
[0236] In the case of the HP M552/M553 cartridges, the manufacturer seals the cartridge on the inside of the toner hopper. This makes it difficult to reseal the toner hopper.
[0237] This embodiment of the invention is based on the concept of add a toner seal to the outside of the toner hopper similar to the old style toner cartridges. The supply roller is installed through a hole in the side of the toner hopper. The hole is then covered using a plastic plug that is sonically welded to the toner hopper to prevent leaking. The shaft of the supply roller fits through a hole in the plastic plug. This aspect of the invention is shown in
[0238] The supply roller can be removed from the toner hopper using pressure or pried from the side of the toner hopper.
[0239] With the supply roller removed from the toner hopper a seal can then be placed onto the seal area on the outside of the toner hopper.
[0240] The pull strip portion of the seal can then be installed through the hole used to install the supply roller.
[0241] A new supply roller plug can then be installed into the end of the toner hopper with a cutout that allows the end user to remove the seal from the toner hopper. The seal pull strip can be fed through the seal exit port on the new supply roller plug,
[0242] The plug can be molded from plastic or made of rubber. The new plug can be attached to the toner hopper using adhesive or glue.
[0243] The second aspect of this embodiment is relates to methods and devices for reattaching a cartridge end cap to a waste hopper.
[0244] The toner cartridge end cap is sonically welded to the toner hopper. To remove the end cap one must break the sonic weld.
[0245] When the cartridge is reassembled there is not a way to reattach the end cap to the waste hopper since the sonic weld has been broken. The present invention provides for drilling a hole through the end cap and waste hopper. The preferred spot can be drilled using a fixture to ensure proper placement. The sonic weld is then broken, freeing the end cap from the waste hopper.
[0246] To reattach the cartridge end cap, one can attach a screw clip to the waste hopper.
[0247] A screw can then be installed through the cartridge end cap and waste hopper which will lock the end cap in place.
[0248] High torque can cause the plastic to strip. One benefit of using the screw clip the plastic is not stripped. The screw clip will hold the end cap in place.
[0249] The third aspect of this embodiment of the present invention relates to a soft shell bottle designed to be incorporated into a toner cartridge. The bottle may be composed of a soft polymeric material, such as polypropylene (PP), polyethylene (PE), polyethylene terephthalate (PET) or nay combination thereof. The soft shell bottle is preferably has a cylindrical shape. In one embodiment, one or both of the ends of the bottle may be fitted with end caps. The end caps may be made of the same material as the bottle itself. The body of the bottle may contain a series of holes. In a preferred embodiment, the holes are covered with a seal. The seal can then be removed from the body of the bottle when the toner cartridge is used. In another preferred embodiment, the body of the body contains a series of protrusions which come into contact with the flaps of an agitator during use. In a preferred embodiment, the bottle contains toner.
[0250] The soft shell bottle is illustrated by