Abstract:
A vertical heat treatment apparatus includes: at least one loading and unloading part 3 and 4 for loading and unloading a carrying container 2 containing a plurality of process objects W into and from said vertical heat treatment apparatus; a first storage part 5 that stores a plurality of carrying containers loaded into said vertical heat treatment apparatus via the loading and unloading part; a heat treatment furnace 7 that accommodates a holder 6 holding a plurality of process objects at multiple levels to perform a predetermined heat treatment to the process objects; and a transfer 8 part that supports thereon a carrying container for transferring process objects between the holder and the carrying container, wherein an upper loading and unloading part 3 and a lower loading and unloading part 4 are provided as said at least one loading and unloading part, and a second storage part 20 that stores a carrying container is disposed between the upper and lower loading and unloading parts. Either one of the loading and unloading parts 3, 4 is utilized as a third storage part 30 that stores a carrying container 2. The carrying container storage capacity may be increased and the throughput may be improved.
Abstract:
An image forming apparatus includes: a memory connecting portion, to which an external memory is detachably connected; a detecting portion that detects a connection state of the external memory; a printing portion that prints an image based on an image file to be printed which is stored in the external memory; and a controller that performs an automatic printing processing in which the controller controls the printing portion to automatically start printing the image in response to a detection by the detecting portion of connection of the external memory to the memory connecting portion.
Abstract:
An ink jet recording head comprises a support member that has an opening used for ink supply and that is formed of a resin material, a recording element board that has an ink supply port that communicates with the opening, and a wall that at least partially contacts a peripheral side face of the recording element board that is bonded to the support element. The wall is formed on the support member surrounding the opening, and is used to position the recording element board, relative to the support member, in a direction in which contact is made by the wall.
Abstract:
A slitter for slitting a web 1 wound by an oscillation winding method includes a guide roller 2. The guide roller 2 has an axial length shorter than width of the web 1. The slitter includes guide means guiding the web 1 to engage the web with the guide roller 2. The web 1 includes widthwise opposite end portions of the web 1 protruding out of axial opposite end portions of the guide roller 2. The slitter includes slit blades 6 slitting the web 1 at positions of the axial opposite end portions of the guide roller 2.
Abstract:
A torque fluctuation absorbing apparatus includes a first plate member, a second plate member rotatable relative to the first plate member, and a first friction member disposed between the first plate member and the second plate member and pressed against the first plate member in a slidable manner. The second plate member includes a first retaining surface that makes contact with the first friction member. The first friction member includes a plurality of grooves at a surface facing the first retaining surface of the second plate member, the grooves extending in a radial direction of the first friction member.
Abstract:
A laminated core (10) and a method for manufacturing the same formed with multiple continuous segment core pieces (13) wound in a spiral form by bending connecting portions (12) mutually connecting the segment core pieces (13), the connecting portions (12) being formed in an outer peripheral area (11), while the connecting portions (12) of vertically adjacent layers being displaced in a circumferential direction with inner edges or outer edges of the segment core pieces (13) fitted, the laminated core comprising: a concave cutout (21) provided in a radial exterior of each connecting portion (12) to dispose a radially expanded portion (20) within an outer circle of the laminated core (10), the radially expanded portion (20) being formed with each connecting portion (12) expanding radially outward at the time of bending each connecting portion (12); an interior cutout (22) provided in a radial interior of each connecting portion (12) to define a bending position of each connecting portion (12); and a receptacle (16) provided in a radial exterior of each segment core piece (13) to receive an expanded part (15) formed in the thickness direction at the time of bending each connecting portion (12).
Abstract:
A laminated core (10) and a method for manufacturing the same formed with multiple continuous segment core pieces (13) wound in a spiral form by bending connecting portions (12) mutually connecting the segment core pieces (13), the connecting portions (12) being formed in an outer peripheral area (11), while the connecting portions (12) of vertically adjacent layers being displaced in a circumferential direction with inner edges or outer edges of the segment core pieces (13) fitted, the laminated core comprising: a concave cutout (21) provided in a radial exterior of each connecting portion (12) to dispose a radially expanded portion (20) within an outer circle of the laminated core (10), the radially expanded portion (20) being formed with each connecting portion (12) expanding radially outward at the time of bending each connecting portion (12); an interior cutout (22) provided in a radial interior of each connecting portion (12) to define a bending position of each connecting portion (12); and a receptacle (16) provided in a radial exterior of each segment core piece (13) to receive an expanded part (15) formed in the thickness direction at the time of bending each connecting portion (12).
Abstract:
The present invention provides an ink jet recording head comprises a support member that has an opening used for ink supply and that is formed of a resin material, a recording element board that has an ink support port that communicates with the opening, and a wall that at least partially contacts a peripheral side face of the recording element board that is bonded to the support element, wherein the wall is formed on the support member surrounding the opening, and is used to position the recording element board, relative to the support member, in a direction in which contact is made by the wall.
Abstract:
There is provided a production method for a liquid discharging apparatus including a liquid discharging head having a discharging port configured to discharge liquid, and a thermoplastic support portion having a liquid supply passage configured to supply the liquid to the liquid discharging head. The production method includes a preparation step of preparing the liquid discharging head and the support portion, a heating step of heating the liquid discharging head, an approach step of moving the liquid discharging head close to the support portion and melting the support portion by applying radiant heat from the liquid discharging head to the support portion, and a pressing step of pressing the liquid discharging head against the support portion so that the melted support portion forms a wall portion to contact an outer peripheral portion of the liquid discharging head.
Abstract:
Each time mobile communication terminal 10 moves a distance of 150 kilometers, it computes its approximate position by performing a stand-alone position measurement, and stores the approximate position. When mobile communication terminal 10 needs to precisely measure its location it notifies position measurement assist server 30 of the stored approximate position, to thereby perform a GPS position measurement operation by using satellite capturing data transmitted, accordingly, from position measurement assist server 30.