Abstract:
An electric storage apparatus includes a plurality of electric storage components, and a holder holding each of the electric storage components at both end portions of each of the electric storage components in a longitudinal direction. The holder includes a plurality of guide portions provided within an orthogonal plane orthogonal to the longitudinal direction of the electric storage component and configured to move both end portions of each of the electric storage components toward a predetermined holding position, and an opening portion formed at one end of each of the guide portions and configured to insert the end portion of the electric storage component into the guide portion.
Abstract:
A battery pack includes a space as a heat carrier flow path that is formed between the adjacent battery modules; and protrusions that protrude toward an inside of the space, and that are arranged on surfaces of opposing surfaces and that define the space. The protrusions have a longitudinal direction when viewed from a protruding direction. The plurality of protrusions arranged on one surface of the opposing surfaces and the plurality of protrusions arranged on the other surface of the opposing surfaces are arranged in positions that are offset, in a flow direction of the heat carrier, from positions that oppose each other across the space. The longitudinal direction of the protrusions arranged on the one surface and the longitudinal direction of the protrusions arranged on the other surface are inclined in the same direction, with respect to the flow direction.
Abstract:
Provided is a composite substrate, including a glass sheet and a resin sheet bonded to each other, in which the glass sheet has a refractive index nd of 1.55 or more and 2.3 or less and the resin sheet has a refractive index nd of 1.55 or more and 2.3 or less.
Abstract:
Provided is a glass substrate satisfying ion exchange performance and devitrification resistance of a glass simultaneously and having higher mechanical strength compared to a conventional glass substrate. A tempered glass substrate which has a compression stress layer on a surface thereof, has a glass composition including, in terms of mole %, 50 to 85% of SiO2, 5 to 30% of Al2O3, 0 to 20% of Li2O, 0 to 20% of Na2O, 0 to 20% of K2O, 0.001 to 10% of TiO2, and 15 to 35% of Li2O+Na2O+K2O+Al2O3, has a (Li2O+Na2O+K2O)/Al2O3 value of 0.7 to 3 in terms of mole fraction, and is substantially free of As2O3 and F.
Abstract translation:本发明提供一种玻璃基板,与现有的玻璃基板同时满足玻璃的离子交换性能和耐失透性,并具有较高的机械强度。 在其表面具有压应力层的钢化玻璃基板具有玻璃组合物,其摩尔%为50〜85%的SiO 2,5〜30%的Al 2 O 3,0〜20%的Li 2 O,0〜 20%的Na 2 O,0〜20%的K 2 O,0.001〜10%的TiO 2和15〜35%的Li 2 O + Na 2 O + K 2 O + Al 2 O 3,(Li 2 O + Na 2 O + K 2 O)/ Al 2 O 3的值为0.7〜 摩尔分数,基本上不含As2O3和F.
Abstract:
Provided is a glass sheet, comprising, as a glass composition in terms of mass %, 40 to 80% of SiO2, 0 to 30% of Al2O3, 0 to 15% of B2O3, 0 to 25% of an alkali metal oxide (one kind or two or more kinds of Li2O, Na2O, and K2O), and 0 to 15% of an alkaline earth metal oxide (one kind or two or more kinds of MgO, CaO, SrO, and BaO), and being used as a viewing zone control member for covering partially or wholly a two-dimensional display.
Abstract translation:提供一种玻璃板,其以质量%计含有40〜80%的SiO 2,0〜30%的Al 2 O 3,0〜15%的B 2 O 3,0〜25%的碱金属氧化物(1质量% 一种或两种以上的Li 2 O,Na 2 O和K 2 O)和0〜15%的碱土金属氧化物(MgO,CaO,SrO和BaO中的一种或两种以上)作为 观看区域控制部件,用于部分或全部地覆盖二维显示器。
Abstract:
An electric storage apparatus includes a plurality of electric storage components, and a holder holding each of the electric storage components at both end portions of each of the electric storage components in a longitudinal direction. The holder includes a plurality of guide portions provided within an orthogonal plane orthogonal to the longitudinal direction of the electric storage component and configured to move both end portions of each of the electric storage components toward a predetermined holding position, and an opening portion formed at one end of each of the guide portions and configured to insert the end portion of the electric storage component into the guide portion.
Abstract:
A liquid heat exchange medium (40) is provided in a case (20) together with an electric storage element (11) to exchange heat with the electric storage element. The heat exchange medium is an ester compound of a fatty acid with a carbon number of 6 to 8 and 2-ethyl hexanol. The heat exchange medium contains 90 or more volume % of 2-ethylhexyl caprylate.Selected Drawing: FIG. 1
Abstract:
A tempered glass of the present invention includes, as a glass composition, in terms of mass %, 45 to 75% of SiO2, 0 to 30% of Al2O3, and 0 to 30% of Li2O+Na2O+K2O and has a β-OH value of 0.3 to 1/mm.
Abstract translation:作为玻璃组合物,本发明的强化玻璃以质量%计含有45〜75%的SiO 2,0〜30%的Al 2 O 3,0〜30%的Li 2 O + Na 2 O + K 2 O, -OH值为0.3〜1 / mm。
Abstract:
Provided is a tempered glass, which has a compressive stress layer on a surface thereof, comprising, in terms of mol %, 40 to 80% of SiO2, 5 to 15% of Al2O3, 0 to 8% of B2O3, 0 to 10% of Li2O, 5 to 20% of Na2O, 0.5 to 20% of K2O, 0 to 10% of MgO, and 8 to 16.5% of Al2O3+MgO, wherein the glass has, in terms of a molar ratio, a (Li2O+Na2O+K2O)/Al2O3 ratio of 1.4 to 3, an Na2O/Al2O3 ratio of 1 to 3, and an MgO/Al2O3 ratio of 0 to 1, and is substantially free of As2O3, PbO, and F.
Abstract translation:本发明提供一种钢化玻璃,其表面具有压应力层,以摩尔%计,SiO 2为40〜80%,Al 2 O 3为5〜15%,B 2 O为0〜8%,B 2 O 0为0〜10% 的Li 2 O,5〜20%的Na 2 O,0.5〜20%的K 2 O,0〜10%的MgO和8〜16.5%的Al 2 O 3 + MgO,其中,所述玻璃的摩尔比为(Li 2 O + Na2O + K2O)/ Al2O3比为1.4〜3,Na2O / Al2O3比为1〜3,MgO / Al2O3比为0〜1,基本上不含As2O3,PbO和F.
Abstract:
An electricity storage device has: an enclosed container; an electricity storage unit contained in the enclosed container; a coolant, contained in the enclosed container, for cooling the electricity storage unit; and protrusions that extend into the coolant and conduct the heat of the coolant to a top lid of the enclosed container. The protrusions are formed on the top lid.