摘要:
To provide an in-line coating device, an in-line coating method, and a separator which provide high mass production and are capable of applying appropriate bias voltage to workpieces. An in-line-coating device 10 includes: a coating section 12 configured to perform coating of a workpiece W and provided with aligned coating materials 121 to 124; a transport section 13 configured to transport a plurality of the workpieces such that the workpieces face coating materials in the coating section; and a voltage applying section 14 configured to apply, to the workpiece, a bias voltage to attract particles emitted from the coating materials toward the workpiece. The voltage applying section is configured such that the bias voltage applied by the voltage applying section when the workpiece faces one of the coating materials can be different from the bias voltage applied by the voltage applying section when the workpiece faces another one of the coating materials.
摘要:
A workpiece cutting method basically includes providing a workpiece proximate to a first blade (7, 107) including a first cutting edge (7a, 107a). The method further comprises moving a second blade (6, 106) including a second cutting edge (6a, 106a) in contact with the first blade (7, 107) such that the first (7a, 107a) and second (6a, 106a) cutting edges of the first (7, 107) and second (6, 106) blades cooperatively engage to cut the workpiece while maintaining the first (7a, 107a) and second (6a, 106a) cutting edges parallel to each other.
摘要:
An electrical conductive member includes: an electrical conductive structure including: a substrate (31, 152, 252, 352, 452); an electrical conductive carbon layer (33, 155, 254, 354, 454) provided on at least one surface of the substrate and containing electrical conductive carbon; and a middle layer (32, 154, 256, 356, 456) interposed between the substrate and the electrical conductive carbon layer. An intensity ratio R (I D /I G ) of a D-band peak intensity (I D ) to a G-band peak intensity (I G ) measured by a Raman scattering spectroscopic analysis in the electrical conductive carbon layer is 1.3 or more.
摘要:
To provide an in-line coating device, an in-line coating method, and a separator which provide high mass production and are capable of applying appropriate bias voltage to workpieces. An in-line-coating device 10 includes: a coating section 12 configured to perform coating of a workpiece W and provided with aligned coating materials 121 to 124; a transport section 13 configured to transport a plurality of the workpieces such that the workpieces face coating materials in the coating section; and a voltage applying section 14 configured to apply, to the workpiece, a bias voltage to attract particles emitted from the coating materials toward the workpiece. The voltage applying section is configured such that the bias voltage applied by the voltage applying section when the workpiece faces one of the coating materials can be different from the bias voltage applied by the voltage applying section when the workpiece faces another one of the coating materials.
摘要:
An electrical conductive member (20) includes a metal substrate (21), an intermediate layer (23) formed on the metal substrate (21), and an electrical conductive layer (25) formed on the intermediate layer (23). The Intermediate layer (23) contains a constituent of the metal substrate (21), a constituent of the electrical conductive layer (25), and a crystallization inhibiting component that inhibits crystallization in the intermediate layer (23). According to this configuration, the electrical conductive member having excellent electrical conductivity and resistance to corrosion can be obtained.