Abstract:
An Ni-base alloy for a turbine rotor of a steam turbine contains in percent by weight C: 0.01 to 0.15, Cr: 15 to 28, Co: 10 to 15, Mo: 8 to 12, Al: 1.5 to 2, Ti: 0.1 to 0.6, B: 0.001 to 0.006, Re: 0.5 to 3, and the balance of Ni and unavoidable impurities.
Abstract:
In one embodiment, a nickel-base alloy for forging or rolling contains, in weight %, carbon (C): 0.05 to 0.2, silicon (Si) 0.01 to 1, manganese (Mn): 0.01 to 1, cobalt (Co): 5 to 20, iron (Fe): 0.01 to 10, chromium (Cr): 15 to 25, and one kind or two kinds or more of molybdenum (Mo), tungsten (W) and rhenium (Re), with Mo+(W+Re)/2: 8 to 25, the balance being nickel (Ni) and unavoidable impurities.
Abstract:
A nickel (Ni)-base alloy for a turbine rotor of a steam turbine containing, in mass %, carbon (C): 0.01% to 0.15%, chromium (Cr): 18% to 28%, cobalt (Co): 10% to 15%, molybdenum (Mo): 8% to 12%, aluminum (Al): 0.5% to less than 1.5%, titanium (Ti): 0.7% to 3.0%, and boron (B): 0.001% to 0.006%, the balance being nickel (Ni) and unavoidable impurities.
Abstract:
A CPU provides a fluorescent light detecting head with an irradiation instruction, in response to which the fluorescent light detecting head irradiates an ultraviolet ray for detection on an ultraviolet curing resin material to be examined. The CPU then acquires from the fluorescent light detecting head an intensity of a fluorescent light emitted from a photo polymerization initiator included in the ultraviolet curing resin material when receiving the ultraviolet ray for detection. The CPU retrieves a predetermined number of past data of the intensity of the fluorescent light from a storage unit and performs a (moving) average calculation processing to calculate the intensity of the fluorescent light at the current time. The CPU performs an estimation processing of a state of the ultraviolet curing resin material based on the calculated intensity of the fluorescent light.
Abstract:
An Ni-base alloy for a turbine rotor of a steam turbine contains in percent by weight C: 0.01 to 0.15, Cr: 15 to 28, Co: 10 to 15, Mo: 8 to 12, Al: 1.5 to 2, Ti: 0.1 to 0.6, B: 0.001 to 0.006, Re: 0.5 to 3, and the balance of Ni and unavoidable impurities.
Abstract:
A part feeding device capable of preventing the adhesive surface of a top tape from being exposed even if a pleat line is displaced and easily and collectively removing the top tape collected by winding on a reel body and a part feeding method, the device comprising a top tape transfer part (1) having raising rollers (6) raising the top tape (104) a specified amount by generally 90° with the adhesive surfaces thereof at both ends facing inside, a folding rollers (5) folding the raised top tape by falling on the unraised top tape, and a tape delivery part (18) feeding the folded top tape at a specified pitch, wherein the reel body collecting the peeled top tape can collectively push out the group of the wound top tape in the axial direction.
Abstract:
Two mirrors (15) and (16) making an angle of 90 degrees are formed on a front face of a mirror member (17). An optical fiber for input (12) and an optical fiber for output (13) are held in a fiber array (14) with a predetermined interval, and an emission lens (23) and an injection lens (24) are provided on a front face of the fiber array (14) in a way that they are opposed to end faces of the optical fiber for input (12) and the optical fiber for output (13) respectively. According to the variable optical attenuator, when the mirror member (17) is straightly moved by an actuator (18), light attenuation can be varied thereby.
Abstract:
The present invention provides an optical switch that is provided with a plurality of output side optical transmission means 24; at least one input side optical transmission means 7; reflecting means 3 which moves to be positioned with respect to any one of the output side optical transmission means 24 and reflects an optical signal to the input side optical transmission means 7; and driving means 4 which moves the reflecting means 3 to each of the output side optical transmission means 24.
Abstract:
Provided is a sensor system which allows setting and adjustment to be conducted in a simple manner. The sensor system comprises a plurality of sensor units which are adapted to be placed closely one next to another and each assigned with an individual address, and a mobile console which is adapted to be connected to at least one of the sensor units, each of the sensor units comprising a connector provided on each side for allowing communication with a corresponding one of the adjacent sensor units, and a data relaying arrangement for relaying data received from one of the adjacent sensor units via one of the connectors to the other adjacent sensor unit via the other connectors when the data is not intended for the particular sensor unit so as to permit a data communication from the mobile console to the sensor units or from the sensor units to the mobile console.
Abstract:
A photoelectric switch emits pulsed detection light and outputs a light detection signal as reflected light is received. For generating an on-off judgment output for switching on and off, the level of the light detection signal is shifted towards a specified level during a specified light receiving period by an amount corresponding to the difference between the specified and the level of the light detection signal at a time immediately before the pulsed detection light is expected to arrive. On the basis of thus level-shifted signal, it is determined whether at least one of the conditions for generating the on-off judgment output is satisfied. The on-off judgment output is generated at least on the condition that the levels of the light detection signal at specified timings are in a specified size relationship. According to another embodiment, pulsed detection light is emitted at least three times per cycle of noise from a fluorescent lamp and comparisons are made between a specified level and the level of the light detection signal whenever a peak of the pulsed detection light is expected to arrive, and the on-off judgment output is generated according to the majority of the results of comparisons made during a period of light emission.