The present invention relates to process cartridges applying electrophotographic technology, which are mainly used in printers and other image forming apparatus.
Generally, a process cartridge applying electrophotographic technology comprises at least: a photosensitive drum on which an electrostatic latent image is formed and a developer roller which provides developer on the photosensitive drum to develop the electrostatic latent image. Its image forming mechanism can be roughly described as follows: an electrostatic latent image is formed on a photosensitive drum through an exposure unit such as a laser scan unit corresponding to a digital image signal, the electrostatic latent image is developed through the developer provided from a developer roller, the developed image is transferred onto a recording medium, and the transferred image is fixed on a recording medium through heat and pressure thus to form an image.
A process cartridge is generally divided into a contact process cartridge and a non-contact process cartridge according to whether a photosensitive drum and a developer roller are separated with each other for a predetermined gap. In a contact process cartridge, a photosensitive drum and a developer roller are contacted with each other. A printer exerts a direct current bias voltage on the developer roller. A developer is moved from the developer roller to the photosensitive drum through voltage difference between the photosensitive drum and the developer roller. This type of the development is called a contact development method.
In a non-contact process cartridge, a photosensitive drum and a developer roller are separated with each other for a predetermined gap. A printer exerts a direct current bias voltage and an alternating current bias voltage in an overlapping mode. A developer jumps onto the photosensitive drum from the developer roller. This type of the development is called a jumping development method.
Since bias voltages exerted to developer rollers are different in a contact development method and a jumping development method, the process cartridges of these two development methods can only be used with correspondent printers and cannot universally be used. That is, a contact process cartridge cannot be used in a jumping development printer while a jumping development method can also not be used in a contact development printer.
Currently, there is a process cartridge applying a jumping development method. Its structure is shown in
The printing quality of this development method is to control the distance between the photosensitive drum 6′ and the magnetic roller component 4′ mainly through the thickness of the interval sets at the end of the magnetic toner 2′. Especially under the working condition, the photosensitive drum 6′ and the magnetic roller component 4′ are all exited in rotating states. The jump of the photosensitive drum 6′ and the magnetic roller component 4′ can easily change the distance between the photosensitive drum 6′ and the magnetic roller component 4′. So, in order to ensure good printing quality, little change of the distance between the photosensitive drum 6′ and the magnetic roller component 4′ is required. The precise accuracy is required to be 0.01. The accuracy of the cartridge parts is so high that it causes the manufacturing cost to be very high.
The technical problem to be solved by the present invention is to provide a contact process cartridge capable of applying in a printer or an image forming apparatus using a jumping development method, reducing the manufacturing accuracy requirement of the process cartridge parts and thus reducing the manufacturing cost and improving printing quality.
To solve the above technical problem, the technical program employed in the present invention is to provide a process cartridge comprising a toner chamber component and a waste toner chamber component connected with each other, wherein the toner chamber component comprises a developer roller and the waste toner chamber component comprises a photosensitive drum and said developer roller is contacted with the photosensitive drum; and a conductive electrode capable of contacting with a power supply electrode of the image forming apparatus to receive a developing bias. The conductive electrode is electrically connected to said developer roller, in which a rectifier is provided on the process cartridge for converting an alternating current bias voltage from said power supply electrode into a direct current bias voltage. The rectifier is electrically connected between said conductive electrode and the developer roller.
According to a process cartridge of the present invention, said rectifier can be provided at the end of the process cartridge, such as the end of the toner chamber component.
According to a process cartridge of the present invention, there is a toner supply roller used for providing developer to a developer roller inside the toner chamber.
A rectifier is added on a contact developing process cartridge to convert an alternating current bias voltage of a power supply electrode in an image forming apparatus into a direct current bias voltage in the present invention. The rectifier is electrically connected between a conductive electrode and a developer roller in the process cartridge. Thus, the contact process cartridge can be used in a printer with jumping development method. This printer usually exerts a direct current bias voltage and an alternating current bias voltage on the developer roller in an overlapping mode. Since there is no gap between the photosensitive drum and the developer roller in the contact process cartridge, it is not required to accurately ensure the gap between the photosensitive drum and the developer roller. Thus, the manufacturing cost of the process cartridge is reduced and the printing quality is improved. The above contact process cartridge can be transformed from a jumping process cartridge.
The present invention is further described below in conjunction with each embodiment and figures.
Referring to
Referring to
The working mechanism of the above process cartridge is: after the non-magnetic toner 2 is agitated evenly through the agitator 3 inside the toner chamber 1, the non-magnetic toner 2 and the developer roller 5 rubs against each other through transport and delivery of the toner supply roller 4, making the non-magnetic toner 2 to take charge and to be adsorbed on the outer surface of the developer roller 5. When the developer roller 5 carrying the charged non-magnetic toner 2 rotates, and is tangent and makes friction to the toner deposit blade 10, the amount of electrical charge of the non-magnetic toner 2 is increased. Under the action of the toner deposit blade 10, the non-magnetic toner 2 forms a very thin and evenly distributed non-magnetic toner layer on the surface of the developer roller 5. When the photosensitive drum 6 having formed an electrostatic latent image closes a certain distance to the developer roller 5 carrying the non-magnetic toner 2, the non-magnetic toner 2 can rotate to the surface of the photosensitive drum 6 to form a toner image under the action of the direct current field. The photosensitive drum 6 having the toner image acts in common with the transfer roller in the printer, causing the toner image to be transferred on a printing paper and then enter into a fixing system, as the cycle like this.
A rectifier is added on a contact process cartridge to convert an alternating current bias voltage into a direct current bias voltage in the present invention. The rectifier is electrically connected between a conductive electrode and a developer roller in the process cartridge. Thus, the contact process cartridge can be used in a printer with a jumping development method. This printer usually exerts a direct current bias voltage and an alternating current bias voltage on the developer roller in an overlapping mode. Since there is no gap between a photosensitive drum and the developer roller in the contact process cartridge, it is not required to accurately ensure the gap between the photosensitive drum and the developing roller. Thus, the manufacturing cost of the process cartridge is reduced and the printing quality is improved. The above contact process cartridge can be transformed from a jumping process cartridge.
Number | Date | Country | Kind |
---|---|---|---|
200920053735.5 | Mar 2009 | CN | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/CN2010/071162 | 3/19/2010 | WO | 00 | 8/24/2011 |