Abstract:
Provided is a sheet post-processing apparatus capable of reliably protecting an edge-binding stapling unit and a sheet material, and of performing a sheet-binding process without increasing the size of the apparatus. The sheet post-processing apparatus includes: a binding unit movable to a binding position in which the binding unit performs a binding process using a binding member on a sheet, and an access position in which a user is accessable to the binding unit; and a control unit configured to cause, when the binding unit performs a setting operation for the binding member, the binding unit to perform the setting operation after causing the binding unit to move to a position different from the access position.
Abstract:
A sheet conveying apparatus configured to convey a sheet includes: a rotatable support portion configured to support a rotary portion which is configured to convey a sheet; an urging portion configured to urge the support portion in a direction of a rotary shaft center of the support portion with a support shaft, which is configured to support the support portion in a rotatable manner and is inserted through the urging portion; and a regulating portion configured to regulate a position of the support portion urged by the urging portion.
Abstract:
There are provided a liquid accommodating container that has a sufficient volume for reserving waste ink and can accommodate therein a sufficient amount of ink used in printing with space-saving, a liquid ejecting device provided therewith and a liquid introducing method. Therefore non-print ink is discharged and reserved in a portion, in which unused ink for printing was reserved, in an ink tank for replacement of the unused ink.
Abstract:
A developing apparatus includes a developer carrying member configured to carry developer, a blade configured to be deformed by contacting the developer carrying member, and an operation member provided on an opposite side to a side of the blade contacting the developer carrying member. The operation member is configured to contact the deformed blade so as to cause the blade to act on the developer carrying member at a predetermined pressure.
Abstract:
The sheet conveying apparatus includes a conveying belt including a placement area having a suction hole, and configured to convey a sheet with a vacuum force from the suction hole, a sheet supply unit capable of supplying a sheet to a supply position of the sheet with respect to the conveying belt; and a control unit configured to control the conveying belt so as to further move the conveying belt after the conveying belt conveys a last sheet to be conveyed. The control unit causes the conveying belt to wait after moving the placement area to a predetermined position in an area from a position in an upstream direction with respect to the moving direction of the conveying belt to the supply position in a conveying amount of the conveying belt corresponding to a time required for the sheet supply unit to convey a next first sheet to the supply position.
Abstract:
Provided is a sheet discharging apparatus including a discharge unit configured to discharge a sheet on which a toner image has been heated and fixed, a stacking unit configured to stack the sheet discharged by the discharge unit, a suction unit configured to suck air over the stacking unit, and a cooling unit configured to blow air over the stacking unit on a downstream side of an air suction by the suction unit in a sheet discharge direction by the discharge unit.
Abstract:
The transfer material has a laminated structure in which a base material sheet, a transparent sheet, and a coloring material-receiving layer are laminated in the stated order, in which: the coloring material-receiving layer contains inorganic fine particles and a water-soluble resin; the transparent sheet contains at least two kinds of emulsions including an emulsion E1 and an emulsion E2; and the emulsion E1 has a glass transition temperature Tg1 of more than 50° C. and less than 90° C., the emulsion E2 has a glass transition temperature Tg2 of 90° C. or more and 120° C. or less, and at least the emulsion E2 remains in a particle state in the transparent sheet.
Abstract:
A liquid ejection head is capable of ejecting a liquid through an ejection port, the liquid being supplied from a liquid container with a negative pressure generating section. The liquid ejection head comprises a liquid chamber configured to contain the liquid, a liquid supply section configured to allow the liquid to be supplied from the liquid container to the liquid chamber, and an opening configured to communicate with the liquid chamber and to enable the liquid and/or a gas to flow into the liquid chamber through the opening.
Abstract:
A liquid ejection head is capable of ejecting a liquid through an ejection port, the liquid being supplied from a liquid container with a negative pressure generating section. The liquid ejection head comprises a liquid chamber configured to contain the liquid, a liquid supply section configured to allow the liquid to be supplied from the liquid container to the liquid chamber, and an opening configured to communicate with the liquid chamber and to enable the liquid and/or a gas inside the liquid chamber to flow out through the opening.
Abstract:
Provided is a transfer material, including: a coloring material-receiving layer; and a base material sheet. The transfer material has a laminated structure in which the base material sheet and the coloring material-receiving layer are sequentially laminated, the coloring material-receiving layer contains at least inorganic fine particles, a water-soluble resin, and a cationic resin having a weight-average molecular weight of 15,000 or less, and a difference SP2 between a SP value of an image support onto which the transfer material is transferred and a SP value of the coloring material-receiving layer to be brought into abutment with the image support satisfies a relationship of 0≦SP2≦1.0.