摘要:
The present invention provides a method for producing a long strip-shaped porous thermosetting resin sheet free of defective portions leading to breakage. The present invention is a method for producing a porous thermosetting resin sheet, the method including the steps of cutting a hollow-cylindrical or solid-cylindrical thermosetting resin block containing a porogen into a sheet of a thermosetting resin with a predetermined thickness by bringing a cutting blade into contact with the thermosetting resin block while rotating the thermosetting resin block about a hollow cylinder axis or a solid cylinder axis; and making the resultant thermosetting resin sheet porous by removing the porogen from the thermosetting resin sheet. The cutting blade is reciprocated approximately parallel to a direction of the rotational axis of the thermosetting resin block while the cutting is being performed.
摘要:
The present invention provides a method for producing a separator for nonaqueous electrolyte electricity storage devices. The method allows: avoidance of use of a solvent that places a large load on the environment; and relatively easy control of parameters such as the porosity and the pore diameter. The production method of the present invention includes the steps of: preparing an epoxy resin composition containing an epoxy resin, a curing agent, and a porogen; forming a cured product of the epoxy resin composition into a sheet shape or curing a sheet-shaped formed body of the epoxy resin composition, so as to obtain an epoxy resin sheet; removing the porogen from the epoxy resin sheet by means of a halogen-free solvent so as to form a porous epoxy resin membrane; and drying the porous epoxy resin membrane by heat-roll drying.
摘要:
Provided is a packaged hydrogen-generating agent, the hydrogen-generating reaction of which is highly stable and repeatable, and which preferably is resistant to influence from changes in the environmental temperature. Also provided are a method for manufacturing said package, and a hydrogen generation method. The packaged hydrogen-generating agent is provided with: a hydrogen-generating agent (1); a covering material (2) which encloses the hydrogen-generating agent (1) and allows deformation; and a water-absorbing body (3), part of which is in contact with the hydrogen-generating agent (1). The covering material (2) preferably covers at least the area around the contact part (3a) where the water-absorbing body (3) and the hydrogen-generating agent (1) are in contact, so as to create a firm attachment at the contact part (3a).
摘要:
A fuel cell system includes a fuel cell apparatus run by liquid fuel, a fuel tank which stores liquid fuel, an auxiliary unit which supplies liquid fuel to the fuel cell apparatus from the fuel tank, and a control unit which controls the fuel cell apparatus, the fuel tank and the auxiliary unit in a general and unified manner. The auxiliary unit is disposed in a position interposed between the fuel tank and the fuel cell apparatus.
摘要:
A fuel cell of the present invention comprises a power generating cell (C), which has at least two surfaces, a fuel gas being supplied through one of the surfaces and oxygen being supplied through the other surface, thereby generating electric power, a cell holder (6) that holds the power generating cell (c) to face the one of the surfaces inward, whereby forming an inner space together with the power generating cell (C), and a fuel generating section (B) that is arranged in the inner space of the cell holder (6) and generates the fuel gas.
摘要:
The present invention relates to and provides a fuel cell in which sealing can be reliably made for each unit cell, thereby, enabling thinning, facilitating maintenance, and enabling miniaturization and weight reduction, and enabling free shape design. A fuel cell of the present invention is characterized by comprising a sheet-like solid polymer electrolyte 1 and a pair of electrode plates 2, 3 arranged on both sides of the solid polymer electrolyte 1, and further comprising a pair of metallic plates 4, 5 arranged on both sides of the electrode plates 2, 3, and provided flow path grooves 9, and inlets 4c, 5c and outlets communicating with the flow path grooves, wherein the peripheral edges of the metallic plates 4, 5 are mechanically sealed with an insulation material 6 interposed between the metallic plates.
摘要:
An ECU executes a program including the step of controlling the current value of an actuator that moves a sleeve by increasing the current value subsequent to complete synchronization between a rear output shaft and a front output shaft of a transfer when the oil temperature of a front differential connected to the front output shaft of the transfer via a front propeller shaft is low to switch from a two-wheel drive state to a four-wheel drive state. The rear output shaft and front output shaft are brought into synchronization by a synchronizer abutting against the sleeve.
摘要:
An ECU executes a program including the step of controlling the current value of an actuator that moves a sleeve by increasing the current value subsequent to complete synchronization between a rear output shaft and a front output shaft of a transfer when the oil temperature of a front differential connected to the front output shaft of the transfer via a front propeller shaft is low to switch from a two-wheel drive state to a four-wheel drive state. The rear output shaft and front output shaft are brought into synchronization by a synchronizer abutting against the sleeve.
摘要:
A fuel cell apparatus which runs on liquid fuel includes a first inlet manifold which is a way to supply air to the anode of the fuel cell apparatus, a second inlet manifold which is a way to supply the liquid fuel to the cathode of the fuel cell apparatus, an outlet manifold which is a way in which fluid discharged from the anode and the cathode flows.
摘要:
There is provided a compact and light-weight fuel cell device. The fuel cell device has a structure where a plurality of substantially horizontally-disposed cells are vertically piled to form a stack, on whose ends there are end plates and the stack is tightened with two bands. Each cell comprises an MEA comprising a pair of electrode layers and a reaction layer therebetween, and conductive separators sandwiching the MEA in which channels for flowing liquids such as a gas and a liquid fuel are formed. An unreformed organic liquid fuel is directly fed to an anode, while oxygen-containing air is fed to a cathode. In the upper part of the fuel cell device, there are an air inlet and a fuel outlet, while in the lower part of the opposite side there are an air outlet and a fuel inlet.