Abstract:
A vapor deposition device (50) in accordance with the present invention is a vapor deposition device for forming a film on a film formation substrate (60), the vapor deposition device including a vapor deposition source (80) that has an injection hole (81) from which vapor deposition particles are injected, a vapor deposition particle crucible (82) for supplying the vapor deposition particles to the vapor deposition source (80), and a rotation motor (86) for changing a distribution of the injection amount of the vapor deposition particles by rotating the vapor deposition source (80).
Abstract:
A Film (7) is provided on at least a part of a surface of each of a vapor deposition preventing plate (3) and a shutter (4) of a vacuum chamber (5) on which surface vapor deposition particles are vapor-deposited, the film (7) being provided so as to be peeled off from the each of the vapor deposition preventing plate (3) and the shutter (4), and the film being made of a material differing in at least one of a melting point, a sublimation point, solubility in a given solvent, microbial biodegradability, and photodegradability from a material of which a vapor-deposited film that is formed on the film (7) is made.
Abstract:
The present invention provides a ferritic stainless steel casting and a sheet thereof excellent in deep drawability, punch stretchability and ridging resistance and a method for producing the casting and the sheet. In the present invention, a chemical composition is controlled so that the amounts of C, N, Si, Mn, P and Ti may be reduced to the utmost for securing high workability and, on the basis of the chemical composition, the roping and ridging of a steel sheet product is reduced by adding Mg, thus dispersing Mg containing oxides that accelerate the formation of nuclei for solidification and, resultantly, suppressing the development of coarse columnar crystals in a casting. The present invention is characterized in that the average composition of the Mg containing oxides dispersing in a casting satisfies the following expressions and , 17.4(Al2O3)+3.9(MgO)+0.3(MgAl2O4)+18.7(CaO)≦500 , (Al2O3)+(MgO)+(MgAl2O4)+(CaO)≧95 .
Abstract translation:本发明提供一种铁素体不锈钢铸件及其深冲性,冲压伸缩性和抗皱性优异的片材以及铸造和片材的制造方法。 在本发明中,化学成分被控制为使得可以将C,N,Si,Mn,P和Ti的量最大限度地降低以确保高的可加工性,并且基于化学成分,卷绕和起皱 通过添加Mg来还原钢板产品,从而分散加速形成核固化的含Mg氧化物,从而抑制铸造中的粗大柱状晶体的发展。 本发明的特征在于,分散在铸件中的含Mg氧化物的平均组成满足以下表达式2和3,17.4(Al 2 O 3)+3.9(MgO)+0.3(MgAl 2 O 4)+18.7(CaO) &Al; 500 2,(Al 2 O 3)+(MgO)+(MgAl 2 O 4)+(CaO)≥953。
Abstract:
To provide a center device for accommodating a variety of situations which may occur when a home-use game machine, or the like, is used, in which a plurality of users use their own controller devices such as an input device. A center device communicates with a plurality of devices in either a wired or radio manner, receives an instruction operation from a user of each device, and carries out a process based on the instruction operation, the plurality of devices each having unique identifier, including: a unit that obtains an identifier of a device; a unit that provides information concerning the device, the identifier of the device is not associated with the identifier of the user; and a unit that associates the identifier of the device selected by the user, the identifier of the user is already associated with the identifier of another device, with the identifier of the user.
Abstract:
A load processing balance setting apparatus includes first and second air-conditioners for targeted first and second areas, a calculating unit, a determining unit and an adjusting unit. The first area is included within the second area. The calculating unit calculates a sum of an air-conditioning load for the first and second air-conditioners. Preferably, the determining unit determines a first and second processing throughputs for the first and second air-conditioners so that a COP (Coefficient of Performance) for the sum of the air-conditioning loads calculated by the calculating unit is maximized or is equal to or greater than a predetermined level, or so that a power consumption level for the sum of the air-conditioning loads calculated by the calculating unit is minimized or is equal to or less than a predetermined level. The adjusting unit controls the first and second air-conditioners based on the first and second processing throughputs.
Abstract:
A diagnostic aid device is configured to aid diagnosis of an operating efficiency of an air conditioner. The diagnostic aid device includes an obtaining section, a specifying section, a screen generating section and a measure information providing section. The obtaining section obtains an operating data of the air conditioner. Using the operating data obtained by the obtaining section, the specifying section specifies a state value of the air conditioner including air conditioning load factor, COP, power consumption or frequency. The screen generating section generates either a first screen or a second screen based on the state value specified by the specifying section. The first screen represents an operating status of the air conditioner. The second screen represents the operating status and single or plural sets of information related to a measure used to improve the state value.
Abstract:
A BD-ROM on which an AVClip and a Java™ application are recorded. The AVClip includes a video stream and an audio stream multiplexed therein. On the BD-ROM recorded further are management information and the Mixing_On flag corresponding to the management information. The management information indicates a playback control of the AVClip that is to be played back when the Java™ application is executed. The Mixing_On flag indicates whether or not when a user performs an operation on the Java™ application being executed while the AVClip is under the playback control, mixing of the click sound with an audio output of the AVClip is available.
Abstract:
An air conditioning control device is used to control an air conditioner having a utilization unit and a heat source unit. The air conditioning control device includes a state detection unit and a mitigation control unit. The state detection unit is configured to detect an increased energy state where a space temperature of an air conditioning target space of the utilization unit is frequently below a set temperature of the utilization unit during cooling operation or frequently exceeds the set temperature of the utilization unit during heating operation. The mitigation control unit is configured to control the air conditioner so as to mitigate the increased energy state when the state detection unit detects the increased energy state.
Abstract:
In the valve, fuel, flowing down as a valve side flow along the side of the valve, further flows down toward an orifice plate through a fuel path which closes and opens upon forward and backward movement of the valve, and is injected as a mist from each orifice. The valve moves forward and backward by sliding on a valve surrounding portion through a guide portion constituted by plural sliding guides arranged between the valve and valve surrounding portion. Since the sliding guides are tapered from the valve to the surrounding portion, the side flow from the guide portion has a flow velocity distribution biased toward the surrounding portion.
Abstract:
A BD-ROM on which an AVClip and a Java™ application are recorded. The AVClip includes a video stream and an audio stream multiplexed therein. On the BD-ROM recorded further are management information and the Mixing_On flag corresponding to the management information. The management information indicates a playback control of the AVClip that is to be played back when the Java™ application is executed. The Mixing_On flag indicates whether or not when a user performs an operation on the Java™ application being executed while the AVClip is under the playback control, mixing of the click sound with an audio output of the AVClip is available.