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    • 3. 发明公开
    • Phonetics learning method
    • Phonetik-Lernverfahren
    • EP1927966A1
    • 2008-06-04
    • EP07018015.3
    • 2007-09-13
    • Su, Wei-Chou
    • Su, Wei-Chou
    • G09B19/06
    • G09B19/06
    • A phonetic learning method includes phonetic symbols, transliteration and an input method, using 26 English alphabets, a dot (16), a line (17), and a slash (18) added on phonetic symbols to indicate six orientations of English vowels. For getting a numeral code for the transliterated English alphabets from Chinese phonetic symbols, English alphabets are added with the numerals on a mobile phone as a numeral code input of a Chinese character. The easy orientation marks enable beginners to make out and pronounce its sound, to learn Chinese more easily, and the simple numeral code input method is easy to use, much like to write with a hand when a user keys in a word, and the orientation numeral codes are easy to memorize.
    • 语音学习方法包括语音符号,音译和输入法,使用26个英文字母,一个点(16),一行(17)和一个斜体(18),加上语音符号,以表示英语元音六个方位。 要从汉语拼音符号获得音译英文字母的数字代码,英文字母在手机上添加数字作为汉字的数字代码输入。 简单的方向标记使初学者能够发出声音,更容易地学习中文,简单的数字代码输入法很容易使用,很像在用户输入一个单词时用手写的方向和方向 数字代码很容易记住。
    • 9. 发明专利
    • Hydraulic buffer hinge structure
    • GB2588105A
    • 2021-04-21
    • GB201914433
    • 2019-10-07
    • SU WEI LIN
    • SU-WEI LIN
    • E05F3/20E05F1/12
    • A hydraulic buffer hinge with a first hinge plate 10 and first sleeve 11, a second hinge plate 20 and second sleeve 21; and a hydraulic buffer device comprising a buffer portion (31 Fig 2) rotatably connected to a rotation component 33 with a variable receiving portion “C” formed therebetween; a resilient portion 35 having a spindle 351 and a resilient element e.g. spring 353, with the spindle partially entering the buffer portion, and a casing 37 enclosing parts of the buffer to confine movement of the buffer liquid. The top end of the rotation component is connected to the first sleeve and the bottom end of the resilient portion is connected to the second sleeve such that when the hinge is operated the buffer portion and rotation component are drawn apart against the spring increasing the size of the receiving portion. Preferably the rotation component has two helical grooves (311 Fig 2) which receive an actuating rod 331 fixed to the rotation component 333 and the rod slides in the grooves to cause linear movement. An adjustment valve may be located in a via 330, the spring may be adjusted at using a screw (Fig 4).