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    • 3. 发明授权
    • Molding machine having controlled injection screw speed and resin
pressure
    • 成型机具有受控的注射螺杆速度和树脂压力
    • US5340297A
    • 1994-08-23
    • US991319
    • 1992-12-16
    • Michiaki TakizawaTakashi Hakoda
    • Michiaki TakizawaTakashi Hakoda
    • B29C45/50B29C45/57B29C45/76B29C45/77
    • B29C45/77B29C45/766
    • A controller for a molding machine is capable of easily setting control data without considering the speed-control area and the pressure-control area. To achieve the object, the controller comprises: an input unit for inputting speed of a movable section of the molding machine with respect to positions thereof and time, and resin pressure; a memory for storing data, which include the speed of the movable section and the resin pressure inputted; and a control unit for controlling the speed of the movable section and the resin pressure on the basis of the data stored in the memory. In the controller, the speed and the pressure can be inputted independently, and proper control data, which match molding conditions, can be defined easily.
    • 用于成型机的控制器能够容易地设置控制数据而不考虑速度控制区域和压力控制区域。 为了实现该目的,控制器包括:输入单元,用于相对于其位置和时间以及树脂压力输入成型机的可移动部分的速度; 用于存储数据的存储器,其包括可移动部分的速度和输入的树脂压力; 以及控制单元,用于基于存储在存储器中的数据来控制可动部分的速度和树脂压力。 在控制器中,可以独立地输入速度和压力,并且可以容易地定义与成型条件相匹配的合适的控制数据。
    • 5. 发明授权
    • Dynamic pressure bearing device and method for manufacturing same
    • 动压轴承装置及其制造方法
    • US06244749B1
    • 2001-06-12
    • US09451780
    • 1999-12-01
    • Hisaya NakagawaMichiaki TakizawaMasamichi Hayakawa
    • Hisaya NakagawaMichiaki TakizawaMasamichi Hayakawa
    • F16C1702
    • F16C33/1075F16C17/028F16C17/18F16C33/103Y10S384/902
    • The dynamic pressure bearing device is structured such that the pores of porous material as they are are disposed in the surfaces thereof forming the negative pressure cancel portions 15b and a lubricating fluid is supplied to the negative pressure generating areas thereof through the pores of the negative pressure cancel portions 15b, whereby, even if recess-shaped grooves forming the negative pressure cancel portions 15b are formed shallow in depth and wide in width, or even if such grooves themselves are not formed at all, the dynamic pressure bearing device is able to fulfill its negative pressure cancel function in a sufficient manner. This makes it possible to eliminate the need for provision of the conventional recess-shaped grooves which are formed deep and narrow, thereby eliminating the need to execute an expensive operation such as a cutting operation or the like, so that the negative pressure cancel portions 15b can be formed at a low cost by inexpensive means such as by molding or the like.
    • 动压轴承装置被构造成使得多孔材料的孔被布置在其形成负压抵消部分15b的表面中,并且润滑流体通过负压孔被供给到其负压产生区域 抵消部15b,即使形成负压抵消部15b的凹部形状的槽形成深浅,宽度宽,即使根本没有形成这样的槽本身,也能够实现动压轴承装置 其负压取消功能充分。 这使得可以消除对形成深而窄的常规凹槽的需要,从而不需要执行诸如切割操作等的昂贵的操作,从而使得负压抵消部分15b 可以通过诸如通过模制等的廉价手段以低成本形成。
    • 8. 发明授权
    • Temperature control unit for injection molding machines
    • 注塑机温控单元
    • US5525050A
    • 1996-06-11
    • US305994
    • 1994-09-19
    • Michiaki TakizawaTakashi Magario
    • Michiaki TakizawaTakashi Magario
    • B29C45/73B29C45/74B29C45/78
    • B29C45/78
    • A temperature control unit for an injection molding machine having a control thermostat capable of detecting the temperature of a fluid flowing out of dies, wherein plural injection unit thermostats are coupled to the control thermostat. A heating/cooling dual control thermostat is provided for detecting the temperature of the fluid flowing into the dies and the heating/cooling dual control thermostat is coupled to the control thermostat in a cascade connection, whereby an injection unit temperature control system and a die temperature control system are connected via a communication line. The resulting temperature control unit has a simplified construction for temperature control and has reduced cost, while improving operability and maneuverability thereof. By cascade-controlling the die temperature, highly stabilized temperature control may be realized.
    • 一种用于注射成型机的温度控制单元,其具有能够检测流出模具的流体的温度的控制恒温器,其中多个注射单元恒温器连接到控制恒温器。 提供加热/冷却双重控制恒温器,用于检测流入模具的流体的温度,并且加热/冷却双重控制恒温器在级联连接中耦合到控制恒温器,由此喷射单元温度控制系统和模具温度 控制系统通过通信线连接。 所得到的温度控制单元具有用于温度控制的简化结构,并且降低了成本,同时提高了其可操作性和可操作性。 通过级联控制管芯温度,可以实现高度稳定的温度控制。
    • 9. 发明授权
    • Method of setting molding conditions for an injection molding machine
    • 设定注塑机成型条件的方法
    • US5518671A
    • 1996-05-21
    • US325168
    • 1994-10-20
    • Michiaki TakizawaFumio ShiozawaTakashi MagarioMakoto TakeuchiMasatake HoshinaMinoru YamazakiToshimi Kato
    • Michiaki TakizawaFumio ShiozawaTakashi MagarioMakoto TakeuchiMasatake HoshinaMinoru YamazakiToshimi Kato
    • B29C45/76
    • B29C45/766
    • A method of setting molding conditions for an injection molding machine 1 using a mold 2 whose specifications data are unclear included three setting processes. In the first setting process A, by inputting known data into controller 3, the molding conditions based on a data base prepared in advance and said input known data are set. In the second setting process B, injection molding is performed according to prescribed molding conditions pre-selected concerning injection pressure P, injection speed V and the injection start position of screw 4, and then, based on the product just molded, injection pressure P is altered, to set said altered injection pressure P, injection speed V and proper pre-feed measurement value Md as molding conditions. In the third setting process C, injection molding is performed according to molding conditions obtained from said second setting process B, and subsequently, taking into account the findings from the product just molded, said molding conditions are adjusted. In this manner, even an unskilled operator is allowed to undertake setting molding conditions reliably and with great ease for an injection molding machine loaded with a set of molds whose specifications data are unclear.
    • 使用其规格数据不清楚的模具2设定注射成型机1的成型条件的方法三个设定处理。 在第一设定处理A中,通过将已知数据输入到控制器3中,设定基于预先准备的数据库和所述输入的已知数据的成型条件。 在第二设定处理B中,根据预先设定的关于注射压力P,注射速度V和螺杆4的注射开始位置的成型条件进行注射成型,然后基于刚刚成型的产品,注射压力P为 改变,将所述改变的注射压力P,注射速度V和适当的预进料测量值Md设置为成型条件。 在第三设定方法C中,根据从所述第二设定处理B获得的成型条件进行注射成型,随后考虑到刚刚成型的产品的发现,调整成型条件。 以这种方式,即使不熟练的操作者也可以可靠地进行设定成型条件,并且非常容易地装载一组规格数据不清楚的模具的注塑机。