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    • 5. 发明申请
    • Method of predicting die lives
    • 预测死亡生活的方法
    • US20060260722A1
    • 2006-11-23
    • US11438257
    • 2006-05-23
    • Hiroaki YoshidaShigekazu ItohTakuma Okajima
    • Hiroaki YoshidaShigekazu ItohTakuma Okajima
    • C21D8/00
    • B21J13/02B21J5/00
    • Disclosed is a method of predicting lives of dies for plastic processing of metals, typically, forging dies, to enable improved die design by predicting an important factor, low cycle fatigue life FL (shot number possible until the die lives end). The method is characterized in that the low cycle damage value “Dc” defined by the formula: Dc=σeq/(YS×softening rate), wherein, σeq is Von Misese's equivalent stress, YS is yield stress (including both of those at tension and compression), and that the following formula is introduced: FL=C1×exp(C2×DcC3), wherein, FL is shot number until the die fracture, and C1, C2 and C3 are constants depending on the material used, so as to presume the possible shot number of the die.
    • 公开了一种预测金属塑料加工(通常为锻造模具)的模具的寿命的方法,通过预测重要因素,低循环疲劳寿命FL(直到模具寿命结束的射出数量)来实现改进的模具设计。 该方法的特征在于由下列公式定义的低循环损伤值“Dc”,其中,ΣSSS软化速率为VonMisese's 等效应力,YS是屈服应力(包括张力和压缩的两者),并且引入以下公式:FL = C 1 xexp(C 2×Dc < SUP> C3 ),其中,FL是直到模头断裂的喷射数,C 1,C 2和C 3 是根据所使用的材料的常数,以便假设模具的可能的射击次数。
    • 6. 发明授权
    • Circularly polarized wave antenna device
    • 圆极化天线装置
    • US06437744B1
    • 2002-08-20
    • US09954361
    • 2001-09-17
    • Hisashi AkiyamaKazunari KawahataShigekazu ItohAtsuyuki Yuasa
    • Hisashi AkiyamaKazunari KawahataShigekazu ItohAtsuyuki Yuasa
    • H01Q138
    • H01Q9/0428H01Q9/0435
    • A circularly polarized wave antenna device that has improved the orthogonality of two radiation electric fields in a degeneration-separated mode. A radiation conductor is formed on one main surface of a substrate, and a ground conductor is formed on the other main surface of the substrate opposite to the radiation conductor. A feeding conductor is formed on the side surface of the substrate so as to extend from the other main surface toward the one main surface. The radiation conductor is formed into a square shape or an electrically square shape in a plan view. On the substrate, capacitive loading conductors are provided in the extended directions of the two diagonal lines of the radiation conductor, the capacitive loading conductors being formed between the ground conductor and the radiation conductor, and having mutually different shapes between the one diagonal direction and the other diagonal direction.
    • 一种改进了退化分离模式中两个辐射电场的正交性的圆极化波天线装置。 辐射导体形成在基板的一个主表面上,并且在与辐射导体相对的基板的另一个主表面上形成接地导体。 馈电导体形成在基板的侧表面上,以便从另一个主表面延伸到一个主表面。 辐射导体在平面图中形成为正方形或电方形。 在基板上,在辐射导体的两个对角线的延伸方向上设置电容负载导体,电容负载导体形成在接地导体和辐射导体之间,并且在一个对角线方向和 其他对角线方向。
    • 7. 发明授权
    • Surface mount type circularly polarized wave antenna and communication
apparatus using the same
    • 表面贴装型圆极化波天线及使用其的通信装置
    • US6140968A
    • 2000-10-31
    • US219250
    • 1998-12-22
    • Kazunari KawahataShigekazu ItohYuichi KushihiMasaru ShikataHaruo Matsumoto
    • Kazunari KawahataShigekazu ItohYuichi KushihiMasaru ShikataHaruo Matsumoto
    • H01Q13/08H01Q1/24H01Q1/38H01Q9/04H01Q13/26H01Q21/24H01Q23/00
    • H01Q9/0428H01Q1/243H01Q1/38
    • A surface mount circularly polarized wave antenna which includes a substrate made of an insulating material and having a first main face, a second main face, and at least one side face extending between the first main face and second main face; a first ground electrode disposed on the first main face of the substrate; a radiation electrode disposed on the second main face; a feeding electrode having a strip shape and extending from the first main face of the substrate, on the one side face of the substrate, and toward the second main face, one edge of the feeding electrode being positioned near to one side of the radiation electrode; and a second ground electrode disposed on the one side face of the substrate where the feeding electrode is disposed, and electrically conductively isolated from the feeding electrode and electrically conductively connected to the first ground electrode; and a degeneracy separation element provided in relation to the radiation electrode for causing radiation of a circularly polarized wave from the radiation electrode.
    • 一种表面安装圆偏振波天线,包括由绝缘材料制成的基板,具有第一主面,第二主面以及在第一主面和第二主面之间延伸的至少一个侧面; 设置在所述基板的所述第一主面上的第一接地电极; 设置在所述第二主面上的辐射电极; 所述馈电电极具有带状并从所述基板的所述第一主面在所述基板的一个侧面上延伸并且朝向所述第二主面,所述馈电电极的一个边缘位于所述辐射电极的一侧附近 ; 以及第二接地电极,设置在所述基板的设置有所述馈电电极的一个侧面上,并且与所述馈电电极导电隔离并导电地连接到所述第一接地电极; 以及与辐射电极相关地设置的用于引起来自辐射电极的圆偏振波的辐射的简并分离元件。
    • 8. 发明申请
    • Method of predicting damage of dies
    • 预测模具损伤的方法
    • US20060230881A1
    • 2006-10-19
    • US11406379
    • 2006-04-19
    • Hiroaki YoshidaShigekazu Itoh
    • Hiroaki YoshidaShigekazu Itoh
    • B21K5/20
    • B21J13/02
    • Disclosed is a method of predicting damage of dies for plastic processing of metallic materials, typically, forging dies, by predicting brittle fracture (“great crack” or “initial crack”) dominating die lives contribute to die design including choice of materials, hardness and configuration of the die. The method is characterized in that the die design is carried out by choosing the condition that none of the anticipated values of brittle fracture, Fc1 to Fc3, calculated by the formulae 1 to 3 below exceed the critical values depending on the material used. Fc1=(σm/σeq)  [formula 1] Fc2=(σm/σ1 max)  [formula 2] Fc3=(σ1max/σeq)  [formula 3] σm: mean normal stress loaded to the tensile side of the die σeq: Von Misese's equivalent stress σ1max: maximum principal stress
    • 公开了一种通过预测脆性断裂(“大裂纹”或“初始裂纹”)预测金属材料(通常为锻造模具)的塑性加工的模具损伤的方法,其主要模具寿命有助于模具设计,包括材料的选择,硬度和 模具的配置。 该方法的特征在于,通过选择以下条件来进行模具设计:通过公式计算脆性断裂F 1 C 1至F 3 C 3的任何预期值 1至3低于临界值,取决于使用的材料。 <?in-line-formula description =“In-line Formulas”end =“lead”?> F c1 =(sigma / SUB“)[公式1] <?in-line-formula description =”In-line Formulas“end =”tail“?> <?in-line-formula description =”In-line Formulas“end =”lead“? (式2)<?in-line-formula description =“In-line-formula”=“s” 公式“end =”tail“?> <?in-line-formula description =”In-line Formulas“end =”lead“?> F c3 (式3)<?in-line-formula description =“In-line Formulas”end =“tail”?> sigma :平均值 负载到模具的拉伸侧的应力:Von Misese的等效应力σ1max最大主应力
    • 10. 发明授权
    • Circularly polarized wave antenna and wireless apparatus
    • 圆极化天线和无线设备
    • US06262683B1
    • 2001-07-17
    • US09531382
    • 2000-03-21
    • Kazunari KawahataShigekazu Itoh
    • Kazunari KawahataShigekazu Itoh
    • H01Q138
    • H01Q9/0435H01Q1/38H01Q9/0407
    • A circularly polarized wave antenna for transmitting/receiving circularly polarized radio waves by a radiative electrode disposed on a dielectric member, wherein: the dielectric member is substantially cylindrical; the radiative electrode has a substantially circular shape, which is similar to the shape of a top surface of the dielectric member, and is disposed on the top surface of the dielectric member; a spacing between an outer peripheral edge of the top surface of the dielectric member and an edge of the radiative electrode is formed so as to be substantially the same around the entirety of the outer peripheral edge of the dielectric member; the circularly polarized wave antenna excites a higher mode; and a feed electrode, which supplies electrical power to said radiative electrode by capacitive coupling, is disposed on a side of the dielectric member.
    • 一种用于通过设置在电介质构件上的辐射电极发送/接收圆偏振无线电波的圆偏振波天线,其中:电介质构件基本上为圆柱形; 辐射电极具有与介电构件的顶表面的形状相似的大致圆形形状,并且设置在电介质构件的顶表面上; 电介质构件的上表面的外周边缘与辐射电极的边缘之间的间隔形成为围绕电介质构件的整个外围边缘大致相同; 圆极化天线激发更高的模式; 并且通过电容耦合向所述辐射电极提供电力的馈电电极设置在电介质构件的一侧。