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    • 1. 发明专利
    • Device for molding three-dimensional object, and method for molding three-dimensional object
    • 用于模制三维物体的装置和用于模制三维物体的方法
    • JP2014136311A
    • 2014-07-28
    • JP2013004229
    • 2013-01-15
    • Konica Minolta Incコニカミノルタ株式会社
    • HASHIMOTO YOSHIYUKI
    • B29C67/00
    • PROBLEM TO BE SOLVED: To provide a device for molding a three-dimensional object, which allows for easy removal of supporting material and prevents the degradation in appearance of the molded object even for the occurrence of unremoved supporting material.SOLUTION: The device for molding a three-dimensional object by laminating a modeling material for defining the outer shape of the object and a supporting material for supporting or protecting the modeling material includes at least a mechanism part for discharging and laminating the modeling material and the supporting material and a device control part for controlling the mechanism part. The device control part applies a material to at least one of the modeling material and the supporting material. The function of the material allows the color not to be similar to the other one during molding and to be changed to a color similar to the other one or a transparent color in response to stimulation given from outside after molding.
    • 要解决的问题:提供一种用于模制三维物体的装置,其允许容易地去除支撑材料并且防止模制物体的外观劣化,即使发生未被移除的支撑材料。解决方案:用于成型的装置 通过层压用于限定物体的外形的建模材料和用于支撑或保护建模材料的支撑材料的三维物体包括至少一个用于排出和层压建模材料和支撑材料的机构部件和装置控制 控制机构部分的部分。 设备控制部件将材料应用于建模材料和支撑材料中的至少一个。 该材料的功能允许在模制期间颜色不与其它颜色相似,并且响应于成型后从外部施加的刺激而改变为与另一种颜色相似的颜色或透明颜色。
    • 2. 发明专利
    • Solar battery panel
    • 太阳能电池板
    • JP2013235977A
    • 2013-11-21
    • JP2012107749
    • 2012-05-09
    • Konica Minolta Incコニカミノルタ株式会社
    • HASHIMOTO YOSHIYUKI
    • H01L31/04G08B13/00H02J7/35
    • Y02B10/12Y02B10/14Y02E10/566
    • PROBLEM TO BE SOLVED: To provide a solar battery panel that can restrain theft by preventing unauthorised use.SOLUTION: A solar battery panel including solar battery cells includes: output switch means able to switch between connection and disconnection of a path to output power generated by the solar battery cells; communication means for performing communication with an external device; authentication means for implementing authentication verification on the basis of authentication information acquired from the external device by the communication means; and first control means for controlling the output switch means from a disconnection state to a connection state. The first control means changes the output switch means from the disconnection state to the connection state if authentication is successful in the authentication verification by the authentication means.
    • 要解决的问题:提供一种能够通过防止未经授权的使用来抑制盗窃的太阳能电池面板。解决方案:包括太阳能电池单元的太阳能电池板包括:输出开关装置,其能够在连接和断开由路由产生的输出功率的路径之间切换 太阳能电池单元; 用于与外部设备进行通信的通信装置; 基于通过所述通信装置从所述外部设备获取的认证信息来实现认证验证的认证装置; 以及第一控制装置,用于将输出开关装置从断开状态控制到连接状态。 如果认证装置的认证验证成功,则第一控制装置将输出切换装置从断开状态改变为连接状态。
    • 3. 发明专利
    • 三次元造形装置および三次元造形方法
    • 三维轮廓装置和三维轮廓方法
    • JP2015036234A
    • 2015-02-23
    • JP2013168779
    • 2013-08-15
    • コニカミノルタ株式会社Konica Minolta Inc
    • KASHIWAKURA KUNIAKIHASHIMOTO YOSHIYUKIYAKURA TERUAKIMUNENAKA TAIYA
    • B29C67/00
    • 【課題】三次元造形物の副走査方向および積層方向における強度の低下を防止することが可能な三次元造形装置および三次元造形方法を提供する。【解決手段】造形ステージ140と、造形ステージ140に向けて造形材料を吐出する複数の吐出ノズルが列状に配置されたインクジェットヘッド122と、インクジェットヘッド122と造形ステージ140との相対位置を変化させる移動機構130と、を有し、主走査方向に走査しながら造形材料を吐出する第1動作と、インクジェットヘッド122による造形材料の吐出位置を異ならせるように主走査方向と直交する副走査方向に走査する第2動作とを繰り返すことにより一層分の造形材料層を形成する二次元パターン形成部、インクジェットヘッド122から吐出された造形材料を硬化させるための硬化処理(光照射処理)を、造形材料層を形成するための最後の第1動作の開始以降に行う光源126を備える。【選択図】図6
    • 要解决的问题:提供一种能够防止沿着辅助扫描方向和层叠方向的三维轮廓物体的强度损失的三维轮廓设备和三维轮廓方法。解决方案:提供的装置 具有:轮廓加工台140; 喷墨头122在其上排列有用于向成形台140喷射轮廓材料的多个喷射喷嘴; 以及用于改变喷墨头122和轮廓级140的相对位置的移动机构130,并且还附加地具有:二维图案形成单元,用于通过重复喷射轮廓的第一动作来形成与一层相称的轮廓材料层 同时沿着主扫描方向进行扫描并且沿着与主扫描方向正交的辅助扫描方向调用扫描的第二动作,以改变喷墨头122的轮廓材料的喷射位置; 以及用于在用于形成轮廓材料层的最终第一动作开始时执行用于固化从喷墨头122喷射的轮廓材料的固化处理(光照射处理)的光源126。
    • 4. 发明专利
    • Photovoltaic power generation system
    • 光伏发电系统
    • JP2014029915A
    • 2014-02-13
    • JP2012169446
    • 2012-07-31
    • Konica Minolta Incコニカミノルタ株式会社
    • HASHIMOTO YOSHIYUKI
    • H01L31/042
    • Y02B10/12Y02E10/542
    • PROBLEM TO BE SOLVED: To appropriately determine accumulated snow and melt the snow without requiring external power supply and newly adding means for detecting whether or not snow is accumulated.SOLUTION: The photovoltaic power generation system is installed in a roof material. In plural regions portioned by frames of the roof material are disposed first solar cell panels capable of power generation on top and bottom faces and second solar cell panels capable of at least surface power generation. Snow melting means 50 that melt snow accumulated on the roof material are disposed in respective corresponding positions of the first and second solar cell panels. The photovoltaic power generation system includes: a power-generation-amount monitoring means 32 that monitors a power generation amount of the first and second solar cell panels; and snow melting control means 31 that supplies power to snow melting means. The power-generation-amount monitoring means 32 determines whether or not snow is accumulated by comparing a power generation amount of plural first solar cell panels or power generation amounts of the first and second solar power generation panels. When determining that snow is accumulated, the power-generation-amount monitoring means 32 instructs the snow melting control means 31 to supply power to the snow melting means 50.
    • 要解决的问题:适当地确定累积的雪并融化雪而不需要外部电源,以及用于检测是否积雪的新添加装置。解决方案:光伏发电系统安装在屋顶材料中。 在由屋顶材料的框架分割的多个区域中设置能够在顶面和底面上发电的第一太阳能电池板和能够至少进行表面发电的第二太阳能电池板。 将融化在屋顶材料上的积雪的雪融化装置50设置在第一和第二太阳能电池板的相应对应位置。 光伏发电系统包括:监视第一和第二太阳能电池板的发电量的发电量监视装置32; 以及向雪融化装置供电的积雪控制装置31。 发电量监视装置32通过比较多个第一太阳能电池板的发电量或第一和第二太阳能发电板的发电量来确定雪是否积累。 当确定积雪时,发电量监视装置32指示雪融化控制装置31向雪融化装置50供电。
    • 5. 发明专利
    • Solar battery-integrated building material
    • 太阳能电池一体化建筑材料
    • JP2013181305A
    • 2013-09-12
    • JP2012045029
    • 2012-03-01
    • Konica Minolta Incコニカミノルタ株式会社
    • HASHIMOTO YOSHIYUKI
    • E04D13/18E04D1/30E04F13/12E04H5/00H01L31/042
    • Y02B10/12Y02E10/50
    • PROBLEM TO BE SOLVED: To enhance electric power generation (cost effectiveness) per solar battery cell area, in a structure for incorporating a plurality of solar battery cells into a building material made of a corrugated plate or a folded plate, on which projections and depressions appear in a constant period.SOLUTION: In a solar battery-integrated building material, a plurality of solar battery cells are incorporated into a base material where projections and depressions, elongated in a constant direction, are repeatedly formed. The solar battery cell is arranged in each projecting area including the top of the projection, and the adjacent solar battery cells are electrically connected together in a depressed area between the projecting areas.
    • 要解决的问题:为了提高每个太阳能电池单元面积的发电(成本效益),在将多个太阳能电池单元并入由波纹板或折叠板制成的建筑材料的结构中, 出现在一个恒定的时期。解决方案:在一种太阳能电池集成的建筑材料中,多个太阳能电池单元被并入到基本材料中,其中反复形成沿恒定方向延伸的突起和凹陷。 太阳能电池单元布置在包括突起的顶部的每个突出区域中,并且相邻的太阳能电池单元在突出区域之间的凹陷区域中电连接在一起。