Abstract:
A longitudinal sealing mechanism is adapted to seal an overlapped portion of a packaging material formed into a tubular shape with the overlapped portion extending along a conveying direction of the packaging material. The longitudinal sealing mechanism includes a contact section, a heating section and a receiving member. The contact section comes into contact with the overlapped portion of the packaging material. The heating section heats the contact section to perform longitudinal sealing of the overlapped portion to form a longitudinal seal portion. The receiving member abuts against the contact section with the overlapped portion of the packaging material being disposed therebetween. The contact section, the heating section, and the receiving member are arranged such that an amount of heat per unit time applied to the packaging material from the contact section decreases in a direction toward both sides of the longitudinal seal portion.
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 between a plurality of controller devices, receives an instructing operation carried out by the user of each controller device, and executes processing according to the instructing operation. The center device selects at least one of the controller devices as a controller device to be authenticated from among the plurality of controller devices by utilizing communication with each of the plurality of controller devices, and conducts authentication processing relative to each of the controller devices while communicating with each of the selected controller device.
Abstract:
To provide a knotless cord that is capable of exerting sufficient tensile strength of a fibrous body. A knotless cord has a sleeve and a fibrous body inserted into the sleeve, wherein the sleeve and the fibrous body are connected to each other by applying tension in a longitudinal direction of the sleeve and then tightening the sleeve. Moreover, in the knotless cord a locking portion for preventing the fibrous body from slipping out of the sleeve is provided in at least two sections (first locking portion, second locking portion). Therefore, stress generated by applying tension is dispersed throughout the entire fibrous body, while preventing the fibrous body from slipping out of the sleeve, whereby stress concentration occurring in each locking portion is alleviated.
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>,<?在线公式描述=“在线公式”end =“lead “→> 17.4(Al 2 O 3)+ 3.9(MgO)+0.3(MgAl 2 O 4) )+18.7(CaO)<= 500 <2> <?in-line-formula description =“In-line Formulas”end =“tail”?> <?in-line-formula description =“In-line Formulas” (Al 2 O 3 O 3)+(MgO)+(MgAl 2 O 4 O 3) >)+(CaO)> = 95 <?in-line-formula description =“In-line Formulas”end =“tail”?>
Abstract:
A packaging machine includes a pair of sealing members, a cutting device and a switching unit. The sealing members are configured to selectively seal a cylindrical packing material that extends therebetween. The cutting device includes a pressing member arranged on one of the pair of sealing members and a receiving member arranged on the other of the pair of sealing members. The cutting device is configured to selectively press the pressing member against the receiving member to melt and cut the cylindrical packaging material by heat and pressure. The switching unit is configured to switch the pressing member between a pressing state and a non-pressing state with respect to the receiving member when the sealing members are pressed together. The stopping unit is configured to selectively stop the pressing member from retracting from the pressing state with respect to the receiving member.
Abstract:
The present invention is the playback apparatus 400 for (i) mounting thereon the BD-ROM 200 in which a plurality of data groups and an application program that refers to each of the data groups are stored and (ii) playing back each of the data groups by executing the application program. The playback apparatus 400 comprises: the playback processing unit 412 operable to control the execution of the application program; the network IF unit 419 operable to obtain, from an external server including therein one or more alternative data groups, an alternative data group to replace part of the data groups; and the HDD unit 418 that stores therein correspondence information showing a correspondence between a storage location where on an internal recording medium the alternative data group is stored and a storage location where on the external recording medium the part of the data groups to be replaced. Here, at a time when the application program in execution reads a data group being referred to, the playback processing unit 412 (i) judges based on the correspondence information whether an alternative data group for replacing the data group being referred to exists on the internal recording medium, and (ii) specifies, as a data retrieve destination, a storage location of the alternative data group indicated by the correspondence information when the judgment is affirmative.
Abstract:
A packaging machine includes a cutting device having a configuration wherein a pressing member provided in one jaw of a pair of sealing jaws that come into contact with each other on both sides of a cylindrical film comes into contact under pressure with a receiving member provided in the other jaw, whereby the cylindrical film being sealed by the sealing jaws is melted. The packaging machine also includes a cylinder for switching the pressing member in contact position under pressure with the receiving member or in non-contact position when the sealing jaws are in mutual contact, and a toggling mechanism configured with a cylinder rod and links. When the pressing member is brought into the contact position under pressure, the links of the toggling mechanism secure the pressing member from behind.
Abstract:
A disk drive with the ability to detect errors caused by thermal asperities and assign alternate sectors is described. One of a plurality of error recovery procedures is executed after turning off a signal filter which normally removes a set of low frequencies from the output signal from the head. The unfiltered signal is used to judge whether a thermal asperity caused the error. If it is determined that a thermal asperity caused the error, the sector is marked as defective and an alternate sector is assigned even if other error recovery procedures are able to read the sector. The reliability of the drive is enhanced by removal of sectors from use which have temporarily recoverable errors caused by thermal asperities.
Abstract:
A method for producing a magnetic disk device includes injecting replacement gas into a hermetically-sealed enclosure by means of an injection nozzle while suctioning gas from inside of the hermetically-sealed enclosure by means of a suction nozzle in such a way that the gas pressure inside of the enclosure does not fall below the vapor pressure of the organic compounds present inside of the enclosure, wherein the hermetically-sealed enclosure houses within a magnetic disk for storing data, a magnetic head for writing/reading the data, and an actuator for moving the magnetic head relative to the magnetic disk, and wherein a gas injection port and a gas expulsion port are formed in the hermetically-sealed enclosure and provide communication between the inside and outside, wherein an injection nozzle is disposed at the gas injection port and a suction nozzle is disposed at the gas expulsion port.
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), including: a vapor deposition source (91) which has a plurality of injection holes (92) from which vapor deposition particles are to be injected towards the film formation substrate (60), the plurality of injection holes (92) being arranged in a line or in a plurality of lines; a vapor deposition crucible (93) for supplying the vapor deposition particles to the vapor deposition source (91) via a pipe (94), the pipe being connected to the vapor deposition source (91) on a side where one end of the line(s) of the plurality of injection holes (92) is located; moving means for moving the film formation substrate (60) relative to the vapor deposition source(s) (91); and a rotation mechanism (100) for rotating the vapor deposition source (91).