Sensor has been developed for the measurement of seismic wave rotary components. The vertical axis rotary component sensor is constituted of four L22Ds, similar to each other in performance, fixed in a ring formation on a metal bed. The ring is 22cm in diameter, and the four coils are connected so that their outputs will be added up. A horizontal axis rotary component sensor is built in the similar way. The rotary component sensors are all connected to a spectrum analyzer for the measurement of micromotions. It is found that the four-L22D combination can detect a rotary component of 335mV/deg/s. The sensor can detect both vertical and horizontal components with roughly the same sensitivity. A ring-form combination of conventional electromagnetic seismometers, though only as a temporary expedient, can perform high-resolution detection of rotary components and determine the absolute values of earthquakes or noise levels. In the case of a gyrosensor available on the market, its resolution ...
Studies are made on electrode behaviors of hydride ion in eutectic LiCl-KCl molten salt by various electrochemical methods. As a result, it is confirmed and clarified, by cyclic voltammetry, that anode reaction of hydride ion exists and it is a diffusion-controlled, reversible and one-electron reaction. Also, generation of hydrogen gas is confirmed by a potentiostatic electrolysis, and the electrolysis in the current efficiency of about 95% is possible by controlling electric potential. Moreover, results of chronopotentiometry and chronoamperometry show that hydride ion is anodically oxidized by the diffusion controlling reaction and the reaction itself is reversible. Results of cyclic voltammetry indicate that a diffusion constant D{sub H} {sup {minus}} equals 3.0 {times}10 {sup {minus}5}cm{sup 2}{center dot}S{sup {minus}1} (425 centigrade). This value corresponds well to the values estimated from chronopotentiometry and chronoamperometry. 9 refs., 13 figs.
This invention relates to the production method of composite electrode substrate for fuel cell. An impermeable material is used for edge sealant. The sealant is put in the clearance between two electrodes consisting of porous carbon material via thermoplastic resin sheet, and heated while being pressed. This production method increases the adherence between the porous carbon bodies and reduces the contact resistivity at the joint interface. Consequently, it becomes possible to produce the composite electrode for fuel cell without separator, resulting in simplification of assembly work, weight reduction, and downsizing. The preferable porous carbon body is made from shrinkage-treated fiber. After sheet forming, the thermosetting resin is impregnated, and then it is burnt to carbonization. Or mixed sheet of rayon and acrylic fiber is laminated to be heated and pressed without impregnating the resin. The pressed resin is then burnt to carbonization. The preferable sealant for the edge of ...