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    • 1. 发明公开
    • BIAXIAL OR TRI-AXIAL ECCENTRIC ROTOR VOLUME PULSED DEFORMATION PLASTICIZING METHOD AND DEVICE
    • 双轴或三轴偏心转子体积脉冲变形塑化方法和装置
    • EP3299141A1
    • 2018-03-28
    • EP16894220.9
    • 2016-12-13
    • South China University of TechnologyGuangzhou Huaxinke Intelligent Manufacturing Technology Co., Ltd.
    • QU, JinpingYANG, ZhitaoFENG, YanhongYIN, Xiaochun
    • B29C45/54B29C45/60
    • B29C45/62B29B7/428B29B7/484B29B7/485B29B7/488B29B7/489B29C37/005B29C45/54B29C45/544B29C45/60B29C47/0857B29C47/365B29C47/402B29C47/408B29C47/767B29C47/92
    • The present invention discloses a biaxial or tri-axial eccentric rotor volume pulsed deformation plasticizing method and device. The method is characterized in that: the conveying volume of materials formed between two or three engaged eccentric rotors, which are formed by spiral structures and eccentric cylindrical structures connected alternately, and an inner surface of a stator changes periodically along the axial direction and the radial direction of the rotors, achieving the volume pulsed deformation plasticizing and conveying of the materials during engaged rotation of the two or three engaged eccentric rotors. The device's eccentric rotors are all formed by length-varying spiral structures and eccentric cylindrical structures connected alternately; the spiral structures of the eccentric rotors are engaged to each other; the axial positions of eccentric cylindrical structures of the two or three rotors are the same. The present invention can implement extrusion of polymer materials or implement, in combination with a plunger injection unit, injection molding of polymer materials, and have many features such as desirable mixing and plasticizing effects for materials, a short thermo-mechanical course, low power consumption, and wide adaptability.
    • 本发明公开了一种双轴或三轴偏心转子体积脉冲变形塑化方法和装置。 其特征在于:两个或三个啮合的偏心转子之间形成的物料输送量由交替连接的螺旋结构和偏心圆柱结构构成,定子内表面沿轴向周期性变化,径向 在两个或三个接合的偏心转子的接合旋转期间实现材料的体积脉冲变形塑化和输送。 该装置的偏心转子全部由长度可变的螺旋结构和交替连接的偏心圆柱结构构成; 偏心转子的螺旋结构彼此啮合; 两个或三个转子的偏心圆柱形结构的轴向位置是相同的。 本发明可实现聚合物材料或器具的挤出,与柱塞注射单元结合,聚合物材料的注射成型,并具有许多特征,例如对材料的期望的混合和塑化效果,短的热机械过程,低功耗 ,适应性广。
    • 2. 发明公开
    • INJECTION MOLDING METHOD AND INJECTION MOLDING DEVICE
    • 注射成型方法和注射成型装置
    • EP2979837A1
    • 2016-02-03
    • EP13880290.5
    • 2013-03-25
    • Mitsubishi Heavy Industries Plastic Technology Co., Ltd.
    • OKABE, RyojiKARIYA, ToshihikoTODA, NaokiNOBUTA, Munehiro
    • B29C45/18B29C45/50B29C45/76B29K105/12
    • B29C45/0005B29C45/1816B29C45/50B29C45/60B29C45/62B29C45/76B29C2945/76605B29C2945/76665B29C2945/76832B29C2945/76859B29K2101/00B29K2105/12
    • Provided is an injection molding method for a resin material with which a stable reinforcing fiber content can be obtained. This injection molding method, which is provided with a heating cylinder (201) on the front end of which a discharge nozzle (203) is formed, a single axis screw (10) provided so as to be rotatable inside the heating cylinder (201), and a fiber-supplying device (213) for filling reinforcing fiber (F) into the heating cylinder (201), and which performs injection molding while supplying the reinforcing fiber (F) and the resin starting material separately and supplying the reinforcing fiber (F) on the front side of the resin starting material. The method is characterized in that: the method is provided with a plasticization process for obtaining a specified amount of a kneaded product by retracting the screw (10) while rotating in the normal direction to melt the resin starting material and knead reinforcing fiber (F) into the melted resin starting material, and an injection process for discharging the kneaded product from the discharge nozzle (203) by advancing the screw (10); and reinforcing fiber (F) is supplied into the heating cylinder (201) in the injection process.
    • 本发明提供一种能够得到稳定的增强纤维成分的树脂材料的注射成型方法。 该注射成型方法具备:形成有排出喷嘴(203)的加热缸(201);以能够在加热缸(201)内旋转的方式设置的单轴螺杆(10) 和用于将增强纤维(F)填充到加热缸(201)中的纤维供应装置(213),并且在单独供应增强纤维(F)和树脂原材料的同时进行注塑,并且将增强纤维 F)在树脂原料的正面上。 该方法的特征在于:该方法提供了通过在正向旋转的同时缩回螺杆(10)以获得特定量的捏合产物的塑化过程以熔融树脂原料和捏合增强纤维(F) 注入到熔化的树脂原料中;以及注入过程,用于通过使螺杆(10)前进而从所述排出喷嘴(203)排出所述捏合产物; 并且在注射过程中将加强纤维(F)供应到加热缸(201)中。
    • 6. 发明授权
    • PLASTICIZING UNIT FOR SCREW INJECTION MOULDING MACHINES
    • 用于螺杆注塑机的塑化单元
    • EP0587574B1
    • 1997-01-08
    • EP92907251.0
    • 1992-04-01
    • FRENKEL C-D AKTIENGESELLSCHAFT
    • MEYER, Paul
    • B29C45/48
    • B29C45/541B29C45/60B29C45/62
    • A plasticizing unit for an injection moulding machine has a cylindrical barrel (1) with a cylindrical screw (4) movable axially and rotatably in it. The unit has an inlet (2) for material, a compression zone, a plasticizing zone (5, 6), and a cylindrical reservoir chamber for plasticized material, which is ejected into the mould by axial movement of the screw (4). The plasticizing zone (5, 6) is of the Transfermix type, where the cross section of the helical groove of the screw (4) varies from full area to zero area and the cross section of a corresponding groove in the barrel (1) varies from zero area to full area so that the material is transferred to the barrel groove, and a return zone (7) after the plasticizing zone (5, 6) returns the material to the reservoir chamber. The screw (4) has a part (9), where its helical groove is of zero area, which acts as a piston in the reservoir chamber for the injection action.
    • 用于注射成型机的塑化单元具有带有轴向可旋转地在其中可旋转的圆柱形螺杆(4)的圆柱形筒(1)。 该单元具有用于材料的入口(2),压缩区域,塑化区域(5,6)以及用于塑化材料的圆柱形储存室,其通过螺杆(4)的轴向移动而被喷射到模具中。 塑化区域(5,6)是Transfermix型的,其中螺杆(4)的螺旋槽的横截面从全部区域到零区域变化,并且桶体(1)中相应槽的横截面变化 从零区域到全部区域,以便材料被转移到桶形凹槽中,并且在塑化区域(5,6)之后的返回区域(7)将材料返回到储存室。 螺杆(4)具有一个部分(9),其中其螺旋槽的面积为零,该部分在储存室中充当用于注入动作的活塞。
    • 8. 发明公开
    • PLASTICIZING UNIT FOR SCREW INJECTION MOULDING MACHINES
    • WEICHMACHUNGEINHEIT螺丝喷射装置。
    • EP0587574A1
    • 1994-03-23
    • EP92907251.0
    • 1992-04-01
    • FRENKEL C-D AKTIENGESELLSCHAFT
    • MEYER, Paul
    • B29C45
    • B29C45/541B29C45/60B29C45/62
    • Un organe de plastification, pour une machine à injection, comprend un tambour cylindrique (1) pourvu d'une vis cylindrique (4) pouvant se déplacer de manière axiale et rotative dans le tambour. L'organe comprend un orifice d'entrée (2) pour un matériau, une zone de compression, une zone de plastification (5, 6) et une chambre-réservoir cylindrique pour le matériau plastifié, qui est expulsé dans le moule par le mouvement axial de la vis (4). La zone de plastification (5, 6) est du type Transfermix, la section d'une rainure hélicoïdale de la vis (4) passant d'une surface pleine à une surface nulle, et la section d'une rainure correspondante dans le tambour (1) passant d'une surface nulle à une surface pleine, de sorte que le matériau est transféré vers la rainure du tambour, et une zone de retour (7), située après la zone de plastification (5, 6), ramène le matériau vers la chambre-réservoir. La vis (4) comprend une partie (9), au niveau de laquelle sa rainure hélicoïdale présente une surface nulle, et qui agit comme un piston dans la chambre de réservoir pour effectuer l'injection.
    • 10. 发明公开
    • TEMPERATURE CONTROL METHOD AND TEMPERATURE CONTROL DEVICE
    • 温度控制方法和温度控制装置
    • EP3226098A1
    • 2017-10-04
    • EP15864022.7
    • 2015-11-25
    • U-MHI PLATEC Co., Ltd.
    • TAKII, TakashiKAI, Yasuhiro
    • G05D23/19B29C45/62B29C45/78
    • B29C45/78B29C45/62B29C45/74B29C2945/76043B29C2945/7619B29C2945/76525B29C2945/76668B29C2945/76969G05D23/19G05D23/1919
    • Provided is a temperature control method capable of causing the heating temperature by a heater to quickly converge to a target temperature in accordance with an environmental ambient temperature. An embodiment of a temperature control method comprises: a step (A) of obtaining, by means of PID control, a first energization rate y1 based on a first temperature difference e1 between an actually measured temperature Ta and a target temperature Ts; a step (B) of obtaining a second energization rate y2 based on a second temperature difference e2 between the ambient temperature Te of the environment in which a heating barrel 2 is disposed and the target temperature Ts; a step (C) of obtaining a corrected energization rate y on the basis of the result of comparison of the first energization rate y1 and the second energization rate y2; and step (D) of controlling the electrical power to be supplied to a heater 4 on the basis of the corrected energization rate y. In step (C), the corrected energization rate y is set to any of predetermined first, second, and third conditions on the basis of the comparison result.
    • 本发明提供一种能够使加热器的加热温度根据环境的周围温度而迅速地收敛于目标温度的温度控制方法。 温度控制方法的一个实施例包括:步骤(A),通过PID控制获得基于实际测量温度Ta和目标温度Ts之间的第一温度差e1的第一通电率y1; 根据配置有加热筒2的环境的周围温度Te与目标温度Ts之间的第二温度差e2求出第二通电率y2的步骤(B) 根据第一通电率y1和第二通电率y2的比较结果求出修正通电率y的步骤(C) 和步骤(D),根据校正后的通电率y控制供给加热器4的电力。 在步骤(C)中,基于比较结果将校正的通电率y设定为预定的第一,第二和第三条件中的任何一个。