会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明申请
    • MOBILE TERMINAL AND INFORMATION-PROCESSING METHOD FOR SAME
    • 移动终端及其信息处理方法
    • WO2011043555A3
    • 2011-07-07
    • PCT/KR2010006672
    • 2010-09-30
    • LG ELECTRONICS INCCHO YONGWONSHIN DONGSOOLEE MANHOKIM YOUNGHWAN
    • CHO YONGWONSHIN DONGSOOLEE MANHOKIM YOUNGHWAN
    • G06F3/041G06F3/048G06F3/0488H04B1/40
    • G06F3/04886G06F3/0237H04M1/23H04M2250/22
    • The present invention relates to a mobile terminal and to an information-processing method for same. The mobile terminal and the information processing-method for same according to the present invention comprise: a step of displaying a plurality of virtual key buttons onto a touch screen having at least one touch input node for generating a touch signal corresponding to a touch; a step of receiving a touch signal for the displayed virtual key buttons; and a step of outputting a key value corresponding to the received touch signal, for at least one virtual key button from among the plurality of virtual key buttons, in accordance with the touch data calculated on the basis of the received touch signal. The touch data can be calculated by extending the touch signal to the virtual touch input node adjacent to the touch input node from which the touch signal is generated from among at least one touch input node. According to the present invention, the key value which a user actually intended to input can be output to thereby improve touch input recognition.
    • 移动终端及其信息处理方法技术领域本发明涉及移动终端及其信息处理方法。 根据本发明的移动终端及其信息处理方法包括:在具有至少一个触摸输入节点的触摸屏上显示多个虚拟按键按钮的步骤,用于生成与触摸对应的触摸信号; 接收用于所显示的虚拟按键的触摸信号的步骤; 以及根据基于所接收的触摸信号计算出的触摸数据,针对多个虚拟按键按钮中的至少一个虚拟按键按键输出与接收到的触摸信号相对应的按键值的步骤。 可以通过将触摸信号扩展到邻近于从至少一个触摸输入节点中生成触摸信号的触摸输入节点的虚拟触摸输入节点来计算触摸数据。 根据本发明,可以输出用户实际意图输入的键值,从而改善触摸输入识别。
    • 3. 发明申请
    • STAINLESS STEEL FOR POLYMER FUEL CELL SEPARATOR AND METHOD FOR PREPARING SAME
    • 用于聚合物燃料电池分离器的不锈钢及其制备方法
    • WO2010077065A3
    • 2010-10-07
    • PCT/KR2009007891
    • 2009-12-29
    • POSCOKIM JONGHEEJO KIHOONKIM YOUNGHWANLEE JEONGHELEE YUNYONGKIM JINSUKSEOK JONGHEON
    • KIM JONGHEEJO KIHOONKIM YOUNGHWANLEE JEONGHELEE YUNYONGKIM JINSUKSEOK JONGHEON
    • C22C38/18C23C22/17C23G1/02C23G1/08
    • C22C38/54C22C38/001C22C38/004C22C38/005C22C38/02C22C38/04C22C38/06C22C38/20C22C38/24C22C38/26C22C38/28C22C38/42C22C38/44C22C38/46C22C38/48C22C38/50C23C8/02C23C22/34C23C22/73C23G1/081H01M8/021H01M2008/1095Y02E60/50Y02P70/56
    • The present invention relates to a ferrite stainless steel for a polymer fuel cell separator that has superior corrosion resistance and interface contact resistance in a polymer fuel cell operating environment, and a method for preparing the same. The stainless steel according to the invention consists of, in wt%, C: 0.02 % or less, N: 0.02 % or less, Si: 0.4 % or less, Mn: 0.2 % or less, P: 0.04 % or less, S: 0.02 % or less, Cr: 25.0-32.0 %, Cu: 0-2.0 %, Ni: 0.8 % or less, Ti: 0.01-0.5 % or less, Nb: 0.01-0.5 % or less, residual Fe and unavoidable elements to be included, and the method for preparing the stainless steel that has a secondary passivation coating formed on its surface comprises a step wherein the stainless steel is subjected to bright annealing or annealing and acid washing to form a primary passivation coating; a step wherein the stainless steel is subjected to acid washing in a 10-20 wt% aqueous sulfuric acid solution at a temperature of 50-75°C for a certain period to remove the primary passivation coating; a step wherein the stainless steel is washed; and a step wherein the stainless steel is subjected to passivation treatment in a mixed acid of 10-20 wt% nitric acid with 1-10 wt% hydrofluoric acid at a temperature of 40-60°C for a certain period to form the secondary passivation coating. Based on such configuration, not only can stainless steel with reduced exudation resistance and superior corrosion resistance be prepared but also stainless steel for a polymer fuel cell separator can be produced that has low interfacial contact resistance and superior long-term performance even under fuel cell operation conditions of 60-150°C and various surface roughness conditions.
    • 本发明涉及一种聚合物燃料电池隔板的铁素体不锈钢,其在聚合物燃料电池的运行环境中具有优异的耐腐蚀性和界面接触电阻,及其制备方法。 本发明的不锈钢以重量%计含有C:0.02%以下,N:0.02%以下,Si:0.4%以下,Mn:0.2%以下,P:0.04%以下,S :0.02%以下,Cr:25.0〜32.0%,Cu:0-2.0%,Ni:0.8%以下,Ti:0.01-0.5%以下,Nb:0.01-0.5%以下,残留的Fe和不可避免的元素 并且在其表面上形成有二次钝化涂层的不锈钢的制备方法包括:对不锈钢进行光亮退火或退火和酸洗以形成初级钝化涂层的步骤; 将不锈钢在10〜20重量%的硫酸水溶液中在50-75℃的温度下进行酸洗一定时间以除去主钝化涂层; 其中洗涤不锈钢的步骤; 以及其中不锈钢在10〜20重量%硝酸与1-10重量%氢氟酸的混合酸中在40-60℃的温度下进行钝化处理一定时间以形成二次钝化 涂层。 基于这样的配置,不仅可以制备具有降低的渗出性和优异的耐腐蚀性的不锈钢,而且即使在燃料电池操作下也可以制造具有低界面接触电阻和优异的长期性能的聚合物燃料电池隔板的不锈钢 条件为60-150℃,各种表面粗糙度条件。