Abstract:
An alkaline primary battery includes: a positive electrode 2 containing manganese dioxide; an alkaline electrolyte containing zinc oxide; a gelled negative electrode 3 containing zinc alloy particles, the alkaline electrolyte, and a gelling agent; and a negative electrode current collector 6 inserted in the gelled negative electrode. The gelled negative electrode 3 has a predetermined malleability such that when 4.0 g of the gelled negative electrode 3 formed into a cylindrical shape with a diameter of 15 mm is extended with 200 g of a load through 10 g of a flat plate, and then an upper surface of the extended gelled negative electrode 3 is approximated to a circle, this circle has a diameter ranging from 24 mm to 36 mm, both inclusive.
Abstract:
A manufacturing method for an electric motor rotor includes: a stacking process in which a plurality of iron core pieces are stacked to form a laminated iron core; a magnet insertion process in which a permanent magnet is inserted into a magnet insertion hole provided in the laminated iron core; a resin filling process in which the laminated iron core is heated to fill the magnet insertion hole with a molten resin for magnet fixation; and a rotary shaft assembly process in which a rotary shaft is warm-fitted into a rotary shaft insertion hole of the laminated iron core utilizing residual heat from the heating of the laminated iron core 10 in the resin filling process.
Abstract:
A positive electrode and a negative electrode are accommodated in a bottomed cylindrical battery case with a separator interposed therebetween, and an opening part of the battery case is sealed by means of a gasket. A body part of the battery case has a thickness in the range between 0.1 and 0.17 mm. The positive electrode is made of a material obtained by adding graphite to manganese dioxide. The density of the graphite in the material of the positive electrode is in the range between 0.12 and 0.23 g/cm3.
Abstract:
A carburized steel member is manufactured by specific carburizing, cooling, and quenching steps. The steel member contains: C: 0.1% to 0.4%, Si: 0.35% to 3.0%, Mn: 0.1% to 3.0%, P: 0.03% or less, S: 0.15% or less, Al: 0.05% or less, and N: 0.03% or less, and a content of Cr is less than 0.2%, a content of Mo is 0.1% or less, and remainder is constituted of Fe and unavoidable impurities. A surface layer thereof includes: a first layer having a carbon concentration of 0.60 mass % to 0.85 mass % and including a martensitic structure in which no grain boundary oxide layer caused by Si exists; a second layer having a carbon concentration of 0.1 mass % to 0.4 mass % and including a martensitic structure; and a third layer having a carbon concentration of 0.1 mass % to 0.4 mass % and including no martensitic structure.
Abstract:
An alkaline dry battery of this invention includes: a positive electrode including at least one of a manganese dioxide powder and a nickel oxyhydroxide powder; a negative electrode including a zinc alloy powder; a separator interposed between the positive electrode and the negative electrode; an alkaline electrolyte; and a battery case for housing the positive electrode, negative electrode, the separator, and the alkaline electrolyte. The negative electrode further includes a surfactant that adsorbs to a surface of the zinc alloy powder during a non-discharge period and promptly desorbs from the surface of the zinc alloy powder upon start of discharge without impeding ion transfer in the alkaline electrolyte.
Abstract:
In order to provide an alkaline dry battery having excellent heavy load discharge characteristics, suppressed polarization at the time of heavy load pulse discharge, and excellent heavy load discharge characteristics after high temperature storage, a nickel oxyhydroxide powder having a tap density of 2.1 to 2.7 g/cm3 and including non-spherical and sheet-like nickel oxyhydroxide particles is included in a positive electrode active material.
Abstract translation:为了提供具有优异的重负荷放电特性的碱性干电池,在重负载脉冲放电时抑制的极化,以及高温保存后的优异的重负荷放电特性,振实密度为2.1〜2.7g的氢氧化镍粉末 / cm 3,并且包括非球形和片状氢氧化正镍颗粒在正极活性材料中。
Abstract:
In order to enable the safer use of an assembly of multiple cells comprising: a plurality of unit cells; an outer container for housing the unit cells; a terminal plate for sealing an upper opening of the outer container; and a positive output terminal and a negative output terminal formed on the same face of the terminal plate, at least the side face of the negative output terminal is covered by a protective tube having an electrical insulation property.
Abstract:
It is an object to provide an organic waste processing method and apparatus capable of making a formalin nontoxic and decreasing an amount and/or a volume of a formalin-fixed organic waste easily in a shorter time without retaining an original form.A formalin-fixed organic waste processing method comprising the steps of formalin neutralizing a formalin-fixed organic waste, decomposing the waste using an enzyme, and subsequently, carrying out a drying process, and an organic waste processing apparatus comprising a processing chamber 2 for processing the waste, a stirring paddle provided in the processing chamber 2, a driving motor of the paddle, a heater 5 for the processing chamber 2, air supply means 6, exhaust means 14, and control means 7 for controlling the operations of the driving motor, the heater 5, the air supply means 6 and the exhaust means 14.