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    • 1. 发明专利
    • Extrusion moulding machine
    • GB2395161A
    • 2004-05-19
    • GB0226758
    • 2002-11-15
    • LIN JUN-RONG
    • LIN JUN-RONG
    • B29C47/08B29C47/36B29C47/52B29B7/24
    • An extrusion molding machine 1 has a main extrusion molding device 2, and a drive mechanism 3 connected to the main extrusion molding device 2. The main extrusion molding device has an upper feed inlet 21, a lower chamber 28, and a gear mechanism 4 therein. The gear mechanism and its housing define a feed mechanism 23, a compression mechanism 24, a blending mechanism 25 and a metering mechanism 26. Other arrangements of the main extrusion moulding device are revealed in figures 7 and 8 (not shown). The gear mechanism 4 has a first pinion 42, a second pinion 43 engaging with the first pinion 42, a third pinion 44 engaging with the second pinion 43, a main gear 41 engaging with the first pinion 42, a fourth pinion 45 engaging with the main gear 41, a fifth pinion 46 engaging with the fourth pinion 45, a sixth pinion 47 engaging with the fifth pinion 46, and a seventh pinion 48 engaging with the sixth pinion 46. The main gear 41 encloses the drive shaft 33. The drive mechanism 3 has a motor device 31, a transmission case 32, and a drive shaft 33 connected to the motor device 31. The drive shaft 33 passes through the transmission case 32.
    • 5. 发明专利
    • Extrusion molding machine
    • GB0226758D0
    • 2002-12-24
    • GB0226758
    • 2002-11-15
    • LIN JUN RONG
    • B29C47/08B29C47/36B29C47/52
    • The conveyor mechanism (23) is designed to include an enclosed interior section (231). The conveyor mechanism is provided in the vicinity of the top conveyor inlet (21) of the main extrusion system (2). A compression mechanism (24) is provided under the conveyor mechanism and the mechanism is provided under the mechanism. The compression mechanism over the main gear (41) arranges the second section of the drive mechanism (4) and a conducting chamber (241). So that the mixing mechanism (25) is provided under the compression mechanism, and the mixing mechanism arranges a mixing chamber (251) over a third section of the mechanism. A dosing mechanism (26) is provided under the mixing mechanism. The dosing mechanism is disposed over a fourth section of the drive mechanism. The chamber (28) of the main extrusion system communicates with the dosing mechanism. The drive mechanism is connected with a drive housing (32) and a drive shaft (33) over a motor (31).
    • 6. 发明专利
    • DE20120960U1
    • 2002-05-08
    • DE20120960
    • 2001-12-17
    • LIN JUN RONG
    • B29C47/08B29C47/36B29C47/52B21C23/00
    • The conveyor mechanism (23) is designed to include an enclosed interior section (231). The conveyor mechanism is provided in the vicinity of the top conveyor inlet (21) of the main extrusion system (2). A compression mechanism (24) is provided under the conveyor mechanism and the mechanism is provided under the mechanism. The compression mechanism over the main gear (41) arranges the second section of the drive mechanism (4) and a conducting chamber (241). So that the mixing mechanism (25) is provided under the compression mechanism, and the mixing mechanism arranges a mixing chamber (251) over a third section of the mechanism. A dosing mechanism (26) is provided under the mixing mechanism. The dosing mechanism is disposed over a fourth section of the drive mechanism. The chamber (28) of the main extrusion system communicates with the dosing mechanism. The drive mechanism is connected with a drive housing (32) and a drive shaft (33) over a motor (31).
    • 7. 发明专利
    • FR2847197B3
    • 2004-10-01
    • FR0214232
    • 2002-11-14
    • LIN JUN-RONG
    • LIN JUN-RONG
    • B29C47/08B29C47/36B29C47/52B30B11/28
    • The conveyor mechanism (23) is designed to include an enclosed interior section (231). The conveyor mechanism is provided in the vicinity of the top conveyor inlet (21) of the main extrusion system (2). A compression mechanism (24) is provided under the conveyor mechanism and the mechanism is provided under the mechanism. The compression mechanism over the main gear (41) arranges the second section of the drive mechanism (4) and a conducting chamber (241). So that the mixing mechanism (25) is provided under the compression mechanism, and the mixing mechanism arranges a mixing chamber (251) over a third section of the mechanism. A dosing mechanism (26) is provided under the mixing mechanism. The dosing mechanism is disposed over a fourth section of the drive mechanism. The chamber (28) of the main extrusion system communicates with the dosing mechanism. The drive mechanism is connected with a drive housing (32) and a drive shaft (33) over a motor (31).
    • 8. 实用新型
    • 免停車可長時間使用之旋轉式過濾網裝置(二) AN ON-THE-FLY LONG-RUNNING ROTARY FILTRATION SCREEN DEVICE(II)
    • 免停车可长时间使用之旋转式过滤网设备(二) AN ON-THE-FLY LONG-RUNNING ROTARY FILTRATION SCREEN DEVICE(II)
    • TWM294350U
    • 2006-07-21
    • TW094219943
    • 2005-12-28
    • 林俊榕 LIN, JUN RONG
    • 林俊榕 LIN, JUN RONG
    • B01D
    • 本創作係一種免停車可長時間使用之旋轉式過濾網裝置(二),主要係由一主座、一分流棒及一過濾套組成的過濾棒、一過濾網、大小齒輪、馬達、及排渣桿等構成,當開動馬達,帶動大齒輪,使過濾棒轉動,並使分流棒前端之圓桿受油壓缸之運作而使過濾棒做左右往復式運動,而使塑膠原料藉由濾網及圓筒上之數小圓孔過濾及攪動,混合較均勻且精純,而雜質可由左下方之導溝流入排渣桿,藉由導桿插入導桿槽帶動排渣桿不斷的轉動並利用其排渣桿圓周表面所設之排渣螺紋將雜質向外推出,即可將雜質清除,而達到免停車,且可長時間使用,並可得較精純之原料等優點者。
    • 本创作系一种免停车可长时间使用之旋转式过滤网设备(二),主要系由一主座、一分流棒及一过滤套组成的过滤棒、一过滤网、大小齿轮、马达、及排渣杆等构成,当开动马达,带动大齿轮,使过滤棒转动,并使分流棒前端之圆杆受油压缸之运作而使过滤棒做左右往复式运动,而使塑胶原料借由滤网及圆筒上之数小圆孔过滤及搅动,混合较均匀且精纯,而杂质可由左下方之导沟流入排渣杆,借由导杆插入导杆槽带动排渣杆不断的转动并利用其排渣杆圆周表面所设之排渣螺纹将杂质向外推出,即可将杂质清除,而达到免停车,且可长时间使用,并可得较精纯之原料等优点者。
    • 9. 发明专利
    • 擠壓成型結構
    • 挤压成型结构
    • TWI248858B
    • 2006-02-11
    • TW090121391
    • 2001-08-28
    • 林俊榕 LIN, JUN RONG
    • 林俊榕 LIN, JUN RONG
    • B29B
    • 本發明係關於一種擠壓成型結構,其中,主體之一側設置傳動機構,作為主體運作時之動力來源,而主體上方之開口處設有一入料口,可提供原料之注入;且主體內部設置齒輪組,其中一主動輪帶動其它齒輪之作動,且配合各齒輪間的排列組合方式形成擠壓成型的結構,由上而下依序可區分成為入料結構、壓縮結構、混鍊結構及計量結構,並於計量結構之側邊設置一集料室,藉此設計,可提供橡、塑膠或其它適用原料之擠壓成型,並可改善傳統擠壓成型結構的缺失,可達到易安裝、易維修及不佔空間等功能,而垂直方向的作動方式,更是大幅的提高產能,進一步的提高其整體的經濟效益。
    • 本发明系关于一种挤压成型结构,其中,主体之一侧设置传动机构,作为主体运作时之动力来源,而主体上方之开口处设有一入料口,可提供原料之注入;且主体内部设置齿轮组,其中一主动轮带动其它齿轮之作动,且配合各齿轮间的排列组合方式形成挤压成型的结构,由上而下依序可区分成为入料结构、压缩结构、混炼结构及计量结构,并于计量结构之侧边设置一集料室,借此设计,可提供橡、塑胶或其它适用原料之挤压成型,并可改善传统挤压成型结构的缺失,可达到易安装、易维修及不占空间等功能,而垂直方向的作动方式,更是大幅的提高产能,进一步的提高其整体的经济效益。