Abstract:
This air intake mechanism is configured of a first louver (23), a second louver (30), and an axial fan (33). The first louver (23) is an annular opening between an outer circular section (25), which is concentric to the rotating axis (rotation center) of the axial fan (33), and an inner circular section (27), which is concentric to the outer circular section (25). The second louver (30) is configured of a plurality of linear slits (30a), which are parallel to each other. The opening width (d2) of each of the slits (30a) that constitutes the second louver (30) is smaller than the opening width (d1) of the first louver (23).
Abstract:
An image forming apparatus according to the present disclosure includes a fan, a first louver, and a second louver. The first louver includes first rectifier vanes that direct airflow produced by the fan. The second louver is located on an inner side of an apparatus body with respect to the first louver and faces the first louver in such a manner as to overlap the first louver in a direction of an axis of rotation of the fan. The second louver includes second rectifier vanes that direct the airflow produced by the fan. Each of the first rectifier vanes and a corresponding one of the second rectifier vanes that is adjacent thereto extend in one plane inclining at a specific angle with respect to the axis of rotation of the fan.
Abstract:
A fixing device includes: a heat source, a heating member, a pressure member, a heat absorption unit, a holding member, and an end part supporting member. The heat source generates infrared rays. The heat absorption unit is formed on an inner circumferential surface of the heating member, absorbs radiation heat of the heat source, and opposes an outer circumferential part of the holding member with a gap. The holding member has a hollow and cylindrical shape, and arranged between the heat source and the inner circumferential surface of the heat member, permits transmission of infrared rays and has heat resistance. The end part supporting member supports the holding member at both axial end parts of the heating member. The outer circumferential part of the holding member, the inner circumferential surface of the heating member, and the end part supporting member form a sealing space sealing the heat absorption unit.
Abstract:
A fixing device includes: a heat source, a heating member, a pressure member, a heat absorption unit, a holding member, and an end part supporting member. The heat source generates infrared rays. The heat absorption unit is formed on an inner circumferential surface of the heating member, absorbs radiation heat of the heat source, and opposes an outer circumferential part of the holding member with a gap. The holding member has a hollow and cylindrical shape, and arranged between the heat source and the inner circumferential surface of the heat member, permits transmission of infrared rays therethrough, and has heat resistance. The end part supporting member supports the holding member at both axial end parts of the heating member. The outer circumferential part of the holding member, the inner circumferential surface of the heating member, and the end part supporting member form a sealing space sealing the heat absorption unit.
Abstract:
A fixing device includes an endless fixing belt, a heating unit, a supporting member, and a pressure roller. The pressure roller sandwiches the fixing belt to form a fixing nip portion between the pressure roller and the fixing belt. The fixing device is configured to insert a recording medium into the fixing nip portion to fix an unfixed toner image carried on the recording medium. The fixing belt includes a heating layer and a sliding layer. The heating layer is configured to generate heat using the heating unit. The sliding layer is laminated onto an inner circumferential surface of the fixing belt and sliding on the supporting member. The plurality of holes are formed in the sliding layer such that the sliding layer has a mesh pattern in plan view.
Abstract:
An image forming apparatus according to the present disclosure includes a fan, a first louver, and a second louver. The first louver includes first rectifier vanes that direct airflow produced by the fan. The second louver is located on an inner side of an apparatus body with respect to the first louver and faces the first louver in such a manner as to overlap the first louver in a direction of an axis of rotation of the fan. The second louver includes second rectifier vanes that direct the airflow produced by the fan. Each of the first rectifier vanes and a corresponding one of the second rectifier vanes that is adjacent thereto extend in one plane inclining at a specific angle with respect to the axis of rotation of the fan.