Abstract:
A display having high re-workability, a method for producing the display, and a transparent resin filler, are provided. A transparent resin filler (5), in which a value obtained on multiplying a hardness of an as-cured resin, expressed as Shore E, with a bonding strength, is not greater than 400, is used as a material of a transparent resin layer (4) to be charged between a picture image display panel (2) and a front side panel (3). In case an undesirable situation, such as mixing of foreign matter in the transparent resin layer (4), has occurred, a re-working member may be moved with ease through a space between the picture image display panel (2) and the front side panel (3) to separate picture image display panel (2) and the front side panel (3) from each other.
Abstract:
A display having high re-workability, a method for producing the display, and a transparent resin filler, are provided. A transparent resin filler (5), in which a value obtained on multiplying a hardness of an as-cured resin, expressed as Shore E, with a bonding strength, is not greater than 400, is used as a material of a transparent resin layer (4) to be charged between a picture image display panel (2) and a front side panel (3). In case an undesirable situation, such as mixing of foreign matter in the transparent resin layer (4), has occurred, a re-working member may be moved with ease through a space between the picture image display panel (2) and the front side panel (3) to separate picture image display panel (2) and the front side panel (3) from each other.
Abstract:
A redox flow battery comprising an electrode cell including a negative electrode cell, a positive electrode cell and a separator for separating them, in which at least one of the negative electrode cell and the positive electrode cell includes a slurry type electrode solution, a porous current collector and a casing; a tank for storing the slurry type electrode solution; and a pipe for circulating the slurry type electrode solution between the tank and the electrode cell.
Abstract:
The purpose of the present invention is to provide an image analysis technique enabling a detection subject to be rapidly detected from image data. This image analysis device generates metadata for a query image containing the detection subject, and using the metadata, narrows down the image data serving as the search subject beforehand and then conducts object detection.
Abstract:
A video monitoring apparatus capable of efficiently superimposing additional information on a monitoring camera image is provided. The video monitoring apparatus holds image specifying information for specifying an image picked up by a camera and additional information in correspondence with each other. In superimposing additional information on an image, additional information corresponding to images having a distance therebetween falling within a prescribed range is searched for, and out of the thus found additional information, one that may be fit within an image currently picked up by the camera is superimposed on the camera image.
Abstract:
It is an object of this invention to detect a similar picture at high speed with high accuracy from a large-scale picture archive. Previously, a frame is extracted from each picture in a picture archive at fixed time intervals, an image feature quantity is extracted from each extracted frame, and the extracted image feature quantities are clustered, thereby constructing a clustered feature quantity database. A frames search section performs a similar frame search not only for a leading frame of a query picture but also for a subsequent frame, by using the database. A search result integration section checks whether there is a sequence across a plurality of search results and outputs, as a picture similar to the query picture, a segment which is confirmed to be continuous for a certain length or more.
Abstract:
In order to obtain a secondary battery and a method for producing same whereby, notwithstanding the large size of an electrode group of several tens of stacked layers of positive electrode plates, negative electrode plates, and separators, any residual air, gases, or the like present between layers can be effectively driven out, and the electrolyte can be induced to reliably penetrate into the interior of the electrode group, secondary batteries RB1 to RB4 and the method for producing same are configured such that, during creation of a vacuum in a vacuum injection step, a predetermined section of a battery can 10 opposing the vicinity of the center part of an electrode group 1 undergoes deformation by a predetermined amount or more, and a venting function of driving out residual air between the layers is exhibited.
Abstract:
Provided is a large secondary battery including a lamination body in which multiple positive electrode plates, multiple negative electrode plates, and multiple separators are laminated, having a structure in which the lamination body is not shifted. The secondary battery with high reliability and a manufacturing method thereof is provided, in which there is no abnormal state even if an external force such as vibration is applied. Positive electrode plate (2), negative electrode plate (3), and separator (4) are laminated and integrated to form a predetermined number of layers of a lamination body unit. A plurality of the lamination body unit are stacked to form an electrode assembly (1). Uneven surfaces, i.e., salients (21) and recesses (23) are formed on contacting surfaces of the lamination body units to be stacked. Using the uneven surfaces, the lamination body units are positioned and stacked to form a secondary battery (RB1).
Abstract:
A secondary battery with improved life characteristics is provided. The secondary battery (lithium-ion secondary battery) has: an electrode assembly including positive electrodes and negative electrodes; and a package container for housing the electrode assembly along with non-aqueous electrolyte liquid. The package container includes a package can for housing the electrode assembly and a sealing plate sealing the opening of the package can. On the sealing plate, an elevated portion is formed that projects toward the electrode assembly and has, on the side opposite from the electrode assembly, a cavity portion for storing refill non-aqueous electrolyte liquid. The elevated portion has a hole for feeding the refill non-aqueous electrolyte liquid stored in the cavity portion toward the electrode assembly. The hole is sealed with a sealing stopper formed of a resin material letting the refill non-aqueous electrolyte liquid leak toward the electrode assembly.
Abstract:
One embodiment of this invention is an anti-reflection (AR) film including a transparent substrate film; a hard coat layer; and an AR layer produced by a dry coating technique, wherein the hard coat layer and the AR layer are formed on at least one side of the transparent substrate film, and a strain, at which the AR film cracks when stretched at a constant rate of 1 mm/min. or less, is in the range 0.65-1.10%.
Abstract translation:本发明的一个实施方案是包括透明基底膜的抗反射(AR)膜; 硬涂层; 以及通过干式涂布技术制造的AR层,其中,所述硬涂层和所述AR层形成在所述透明基材膜的至少一侧上,并且在以恒定速度拉伸时,所述AR膜在所述应变 1 mm / min。 以下,在0.65-1.10%的范围内。