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    • 151. 发明授权
    • 다분기 파이프 일체 사출 방법 및 이를 이용한 플라스틱 파워트레인 배관라인
    • 多分支管一体式注射方法和塑料动力传动系分支管线
    • KR101371017B1
    • 2014-03-25
    • KR1020130031757
    • 2013-03-25
    • 한일튜브 주식회사
    • 추성화최정기
    • B29C45/46B29C45/77
    • B29C45/1706B29C45/2708B29C45/77B29C2045/1707B29C2945/76658B29D23/001F16L41/00
    • A plastic powertrain multi-branch pipe line (100) of the present invention comprises: a hollow pipe-type plastic main tube (200) wherein a linear section (2) and a curved section (3) a branched section (4), a connecting parts section (5) and at least one connection unit (5-1, 5-2) are integrated formed: and a plastic sub tube (300) connected with the plastic main tube (200), and is manufactured by molding a plastic resin in a melting state by the plastic main tube (200) and the plastic sub tube (300) with a water injection technology. Thereby, it does not produce: difficulties in cutting a steel pipe and molding a pipe end, which occur on a steel powertrain pipe line; a high risk of oil leak or water leak by welding between parts; and difficulties in use of multiple rubber hoses and clamps for connecting corresponding parts and difficulties in connecting work due to them, and a plating process for rust prevention is not required at all, and in particularly, the present invention increases fuel efficiency of a vehicle by weight lightening of at least 30% compares with the steel powertrain pipe line. [Reference numerals] (S10) Setting equipment of a Water Injection Technology injector; (S100) Controlling water pressure and flow in a straight section; (S110,S210,S310,S410) Normal processing?; (S200) Controlling water pressure and flow in a curved section; (S21) Water injection mold; (S22) Water spraying injector; (S23) Runner gate; (S24) Product ejecting ejector; (S30) Setting injecting conditions of the Water Injection Technology (WIT); (S300) Controlling water pressure and flow in a branched section; (S400) Controlling water pressure and flow in a connecting part section; (S41) Ejection material capacity and injection speed ejection material injection; (S42) Spraying water pressure; (S43) Runner gate closing period; (S44) Water flow controlling condition; (S50) Injecting material injection; (S500) Injecting process completion; (S60) Water high-pressure spraying; (S600) Product ejecting ejector operation; (S70) Runner gate closing; (S700) Preparation for multi-branched pipe ejection and re-injection; (S800) Ejection discontinuation and countermeasures
    • 本发明的塑料动力系多分支管线(100)包括:中空管型塑料主管(200),其中线性部分(2)和弯曲部分(3)分支部分(4), 连接部分部分(5)和至少一个连接单元(5-1,5-2)形成为一体,并与塑料主管(200)连接的塑料子管(300),并通过模塑塑料 通过塑料主管(200)和塑料子管(300)以水注射技术处于熔化状态的树脂。 因此,不会产生在钢动力总成管线上发生的钢管切割困难和管端成型; 通过焊接部件之间的油泄漏或漏水的高风险; 并且难以使用多个橡胶软管和用于连接相应部件的夹具和由于它们连接工作的困难,并且根本不需要防锈电镀工艺,特别地,本发明通过以下方式提高了车辆的燃料效率 与钢动力总成管线相比,重量减轻至少30%。 (附图标记)(S10)注水技术喷射器的设定装置; (S100)控制水压和直流段的流量; (S110,S210,S310,S410)正常处理 (S200)控制弯曲部分的水压和流量; (S21)注水模具; (S22)喷水喷射器; (S23)赛门; (S24)产品喷射器; (S30)设置注水技术(WIT)的注入条件; (S300)控制分支段的水压和流量; (S400)控制连接部分的水压和流量; (S41)喷射材料容量和喷射速度喷射材料注入; (S42)喷水压力 (S43)跑门关闭期; (S44)水流控制条件; (S50)注射材料注入; (S500)注入流程完成; (S60)水高压喷雾; (S600)产品喷射器操作; (S70)跑门关闭; (S700)多分支管道喷射和再注入的准备; (S800)喷射停止和对策
    • 152. 发明授权
    • 사출 성형기의 제어방법
    • 一种注射成型机的控制方法
    • KR101160561B1
    • 2012-06-27
    • KR1020110068221
    • 2011-07-11
    • (주)태일기계
    • 전갑용
    • B29C45/76B29C45/77
    • B29C45/76B29C2945/76006B29C2945/76257B29C2945/76568B29C2945/76658B29C2945/76943B29C2945/76959
    • PURPOSE: A controlling method of an injection molding machine is provided to accurately set a driving time and an operation ranges of a servo motor by accurately setting a charging space. CONSTITUTION: A controlling method of an injection molding machine includes a screw position controlling step and a one time injection amount determining step. The screw position controlling step is as follows. A measured pressure value is output to a differentiator and the pressure value temporally changed is calculated by the differentiator. A speed of an injection servo motor is decreased when the pressure value input to the differentiator. A one time injection amount determining step is as follows. The pressure value inside a cavity in the injection is measured. The measured pressure value is compared with a pre-set critical pressure value. A position of a screw changed when the measured pressure value reaches the critical pressure value is input.
    • 目的:提供注射成型机的控制方法,通过精确地设定充电空间来精确地设定伺服电动机的驱动时间和操作范围。 构成:注射成型机的控制方法包括螺杆位置控制步骤和一次注射量确定步骤。 螺杆位置控制步骤如下。 将测量的压力值输出到微分器,并且由微分器计算时间上改变的压力值。 当输入到微分器的压力值时,喷射伺服电动机的速度降低。 一次注射量确定步骤如下。 测量喷射腔内的压力值。 将测量的压力值与预设的临界压力值进行比较。 当测量的压力值达到临界压力值时,螺杆的位置变化。
    • 156. 发明专利
    • Injection device and injection method
    • 注射装置和注射方法
    • JP2013144424A
    • 2013-07-25
    • JP2012115426
    • 2012-05-21
    • Sharp Corpシャープ株式会社
    • TAHIRA MASAOYOSHIDA MITSUNOBUKUGA TORU
    • B29C39/44B29C39/10B29C39/22B29K105/04
    • B29C39/24B29C39/22B29C39/44B29C45/1781B29C2945/76083B29C2945/76284B29C2945/76461B29C2945/76568B29C2945/76658
    • PROBLEM TO BE SOLVED: To provide an injection device and an injection method by which it is possible to easily correct misalignment between an injection nozzle and an injection hole.SOLUTION: In an injection device 20, a moving section 25 moves an object 40 to be treated in a relative manner so that an injection hole 41 reaches a location within a predetermined reference range 53 at the fore end of the tip of an injection nozzle 23. After the movement, an observation unit 24 observes the reference range 53 from an oblique direction 52 with respect to the injection direction 51 in which the injection nozzle 23 injects an injectant. On the basis of the observation result from the observation unit, the state of misalignment between the injection direction 51 of the injection nozzle 23 and the injection hole 41 of the object 40 to be treated is determined. If the misalignment is determined, a moving section 25 moves at least one object 40 to be treated and the injection nozzle 23 so as to correct the misalignment. After the correction, the injectant is injected into an interior space 42 of the object 40 to be treated from the injection nozzle 23 via the injection hole 41. As a result, an yield of a finished product can be improved without increasing the number of processes by the injection device 20.
    • 要解决的问题:提供一种注射装置和注射方法,通过该注射装置和注射方法可以容易地校正注射喷嘴和注射孔之间的未对准。解决方案:在注射装置20中,移动部25将物体40移动为 以相对方式进行处理,使得喷射孔41到达喷射喷嘴23的前端的前端处的预定参考范围53内的位置。在移动之后,观察单元24从倾斜方向观察参考范围53 52相对于喷射喷嘴23喷射注射剂的喷射方向51。 基于观察单元的观察结果,确定喷射喷嘴23的喷射方向51与被处理物体40的喷射孔41之间的未对准状态。 如果确定了未对准,则移动部分25移动至少一个要处理的物体40和喷射喷嘴23,以便校正未对准。 在校正之后,通过注射孔41将注射剂从注射喷嘴23注射到待处理对象物40的内部空间42中。结果,可以提高成品率,而不增加处理次数 通过注射装置20。
    • 157. 发明专利
    • Injection apparatus
    • 注射装置
    • JP2013086399A
    • 2013-05-13
    • JP2011230018
    • 2011-10-19
    • Toyota Industries Corp株式会社豊田自動織機
    • YAMAGUCHI KAZUYUKINAKAMURA MASAYAOMIYA KENJI
    • B29C45/53
    • B29C45/77B22D17/10B22D17/32B29C45/531B29C45/76B29C2945/76578B29C2945/76605B29C2945/76658B29C2945/76692
    • PROBLEM TO BE SOLVED: To provide an injection apparatus that achieves improvement in responsiveness.SOLUTION: The injection apparatus 11 is configured as follows. An accumulator 22 is connected to a second chamber 17f of an injection cylinder 17. A control unit S to control the moving speed of the injection cylinder 17 is connected to a second rod 17d of the injection cylinder 17. The control unit S includes: a rotary shaft 24 that follows the moving of the second rod 17d and is movable in the same direction as the second rod 17d; a nut 25 that converts the linear motion of the second rod 17d into the rotational motion of the rotary shaft 24; and a brake disk 26 that is coupled to the other end of the rotary shaft 24. The control unit S also includes: first/second brake pads 27a, 27b that generate frictional resistance by coming into sliding contact with the brake disk 26; a driving nut N1 that is moved by a drive motor M1; and a moving mechanism that follows the moving of the driving nut N1 and moves the second brake pad 27b to the brake disk 26.
    • 要解决的问题:提供一种实现响应性提高的注射装置。 解决方案:注射装置11如下构成。 蓄能器22连接到注射缸17的第二室17f。用于控制注射缸17的移动速度的控制单元S连接到注射缸17的第二杆17d。控制单元S包括: 旋转轴24跟随第二杆17d的移动,并且能够沿与第二杆17d相同的方向移动; 将第二杆17d的直线运动转换成旋转轴24的旋转运动的螺母25; 以及联接到旋转轴24的另一端的制动盘26.控制单元S还包括:通过与制动盘26滑动接触而产生摩擦阻力的第一/第二制动衬块27a,27b; 由驱动马达M1移动的驱动螺母N1; 以及跟随驱动螺母N1的移动并将第二制动衬块27b移动到制动盘26的移动机构。(C)2013,JPO&INPIT
    • 158. 发明专利
    • Method and system for preventing mixing of material in two-shot molding for production of crash pad
    • 用于防止二冲程成型中材料混合的生产方法和系统
    • JP2009040028A
    • 2009-02-26
    • JP2007332777
    • 2007-12-25
    • Hyundai Motor Co Ltd現代自動車株式会社
    • KONG BYUNG SEOK
    • B29C45/16B29C45/37B29K23/00B29L31/58
    • B29C45/164B29C45/0046B29C45/77B29C2945/76006B29C2945/76257B29C2945/76531B29C2945/76545B29C2945/76658B29C2945/76765B29L2031/3038
    • PROBLEM TO BE SOLVED: To provide a method and system for preventing mixing of materials, in which, in a process of producing a crash pad through the simultaneous injection of two types of resin, the penetration of one type of resin into a region filled with the other type of resin is effectively prevented.
      SOLUTION: The method for preventing mixing of materials in the process of producing the crash pad 10 comprises integrally forming a PAB door region 20 portion of a second material of high softness and portions other than the PAB door region 20 of a first material of high rigidity by a two-shot molding method, wherein a flow retarding dam 55 is formed on an injection die 50 to decrease the thickness of the crash pad 10 at a portion where a mixing phenomenon of the first material and second material occurs, outside of the PAB door region 20, thus retarding the flow of the first material and promoting the solidification of the first material and second material.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种防止材料混合的方法和系统,其中在通过同时注入两种树脂制造碰撞垫的过程中,将一种类型的树脂渗透到 有效地防止填充有其他类型的树脂的区域。 解决方案:在制造防撞垫10的过程中防止材料混合的方法包括将第一材料的PAB门区域20以外的高柔软度的第二材料和除了第一材料的PAB门区域20之外的部分一体地形成PAB门区域20 通过双注射成型方法具有高刚性,其中在注射模具50上形成有阻流挡板55,以在第一材料和第二材料的混合现象发生的部分处减小碰撞垫10的厚度,外部 从而阻止第一材料的流动并促进第一材料和第二材料的凝固。 版权所有(C)2009,JPO&INPIT