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    • 12. 发明申请
    • METHOD AND INSTALLATION FOR THE PRODUCTION OF CONTAINERS
    • 容器生产方法和安装
    • US20100072673A1
    • 2010-03-25
    • US12561198
    • 2009-09-16
    • Guy FeuilloleyLuc Desoutter
    • Guy FeuilloleyLuc Desoutter
    • B29C49/64H05B6/00
    • B29B13/024B29C35/0805B29C49/06B29C49/68B29C2035/0822B29C2035/0838
    • The invention relates to a method of producing a container from a thermoplastic blank (2), comprising: a step in which the blank (2) is heated using at least one beam (22) of coherent electromagnetic radiation, and a step in which the container is formed from the blank (2) thus heated. The invention also relates to an installation (1) which is used to produce containers (2) and which comprises a unit (16) for heating the blanks (2) in order to form containers from the blanks (2) thus heated. The inventive installation (1) defines a path (23) along which the blanks (2) travel inside the heating unit (16). In addition, the heating unit (16) comprises at least one coherent electromagnetic radiation source (26) which is directed towards a zone (25) that is located on the aforementioned path (23).
    • 本发明涉及一种从热塑性坯料(2)制造容器的方法,包括:使用至少一个相干电磁辐射束(22)加热坯料(2)的步骤,其中 容器由如此加热的坯料(2)形成。 本发明还涉及一种用于生产容器(2)的装置(1),其包括用于加热坯件(2)的单元(16),以便从被加热的坯料(2)形成容器。 本发明的装置(1)限定了坯料(2)沿加热单元(16)行进的路径(23)。 此外,加热单元(16)包括至少一个相干的电磁辐射源(26),该辐射源指向位于上述路径(23)上的区域(25)。
    • 13. 发明申请
    • Method for Monitoring a Plasma, Device for Carrying Out this Method, Use of this Method for Depositing a Film Onto a Pet Hollow Body
    • 用于监测等离子体的方法,用于实施该方法的装置,该方法用于将宠物空心体的膜沉积
    • US20080292781A1
    • 2008-11-27
    • US12091933
    • 2006-10-26
    • Jean-Michel RiusGuy Feuilloley
    • Jean-Michel RiusGuy Feuilloley
    • C23C16/52B05C11/00
    • C23C16/52C23C16/045C23C16/26H01J37/32935H01J37/32972
    • The invention relates to a method for monitoring the composition of a plasma, this plasma being generated from determined precursors for depositing a film onto a polymer material. This method involves receiving light intensities emitted by the plasma and comprises: a step for selecting a first reference wavelength range that is selected within a plasma emission spectral region in which no significant signal of a parasitic chemical species can exist, i.e. which is not part of the determined precursors and which is thus normally not present in the plasma and whose presence in the plasma influences the nature of the deposited film; a step for selecting a second wavelength range which is selected within a plasma emission spectral region in which a significant signal of a parasitic chemical species is likely to exist; a step for simultaneously acquiring light intensities emitted by the plasma in each of the two selected wavelength ranges emitted by the plasma in each of the two selected wavelength ranges, and; a step for calculating, on the basis of these light intensities, at least one monitoring coefficient.
    • 本发明涉及用于监测等离子体组成的方法,该等离子体是由确定的前体产生的,用于将膜沉积在聚合物材料上。 该方法包括接收由等离子体发射的光强度,包括:选择在等离子体发射光谱区域内选择的第一参考波长范围的步骤,其中不存在寄生化学物质的显着信号,即不属于 所确定的前体并因此通常不存在于等离子体中,并且其在等离子体中的存在影响沉积膜的性质; 选择在可能存在寄生化学物质的有效信号的等离子体发射光谱区域内选择的第二波长范围的步骤; 在两个选择的波长范围中的每一个中同时获取由等离子体发射的两个所选波长范围中的每一个中由等离子体发射的光强度的步骤; 基于这些光强计算至少一个监测系数的步骤。
    • 15. 发明申请
    • DEVICE FOR INJECTING A PRESSURIZED LIQUID IN ORDER TO SHAPE A CONTAINER, COMPRISING A WORK CHAMBER ARRANGED DOWNSTREAM FROM PUMPING MEANS
    • 用于注射加压液体的装置,用于形成容纳者,包括从泵送装置安装的下水道的工作室
    • US20140157723A1
    • 2014-06-12
    • US14234561
    • 2012-07-19
    • Guy Feuilloley
    • Guy Feuilloley
    • B65B1/04
    • B65B1/04B29C49/06B29C49/46B29C2049/4664B65B3/022
    • A device (31) for injecting an incompressible, pressurized liquid into a container (18) made of a thermoplastic material so as to shape the container (18), includes: a pipe (30) for supplying the liquid, which is to connect a liquid source (40) to the container (18); pumping elements (42) for causing the liquid to flow in the supply pipe (30) toward the container (18) at a first pressure (P1); and compression elements (44) for temporarily raising the pressure of the liquid contained in the container (18) to a second pressure (P2) that is greater than the first pressure (P1), wherein the compression elements (44) are formed by a work chamber (48), whose volume is variable, and which is connected only to the supply pipe (30) between the pumping elements (42) and the container (18).
    • 一种用于将不可压缩的加压液体喷射到由热塑性材料制成的容器(18)中以使容器(18)成形的装置(31)包括:用于供应液体的管道(30),其用于连接 液体源(40)到容器(18); 用于使液体以第一压力(P1)朝向容器(18)流动的泵送元件(42); 以及用于将容纳在容器(18)中的液体的压力临时提高到大于第一压力(P1)的第二压力(P2)的压缩元件(44),其中压缩元件(44)由 工作室(48),其体积可变,并且仅与泵送元件(42)和容器(18)之间的供应管(30)连接。
    • 16. 发明申请
    • METHOD OF FORMING A CONTAINER BY BLOWING AND FILLING
    • 通过吹塑和填充形成容器的方法
    • US20130113143A1
    • 2013-05-09
    • US13810685
    • 2011-07-12
    • Sebastien FevreGuy Feuilloley
    • Sebastien FevreGuy Feuilloley
    • B29D22/00
    • B29D22/003B29C49/06B29C49/12B29C49/46B29C49/58B29C2049/465B29C2049/4664B29C2049/5837B29C2049/5841B65B3/022
    • A method of forming a container (18), includes: a partial expansion first step (E1) during which the container (18) is filled with a pressurized blowing gas (G); a second step (E2) of filling the container (18) during which the container (18) is filled with a filling liquid (L) that expels the blowing gas (G) through an outlet orifice (34); and a third step (E3) during which the contents of the container (18) are put under a pressure (HP) so as to make the container (18) conform to its final state (18D), characterized in that, during the filling second step (E2), the ratio of the flow rate of the incoming filling liquid (L) to the flow rate of the outgoing blowing gas (G) is controlled so as to allow the container (18) to continue to expand during this second step (E2).
    • 一种形成容器(18)的方法,包括:容器(18)填充加压吹气(G)的部分膨胀第一步骤(E1); 填充容器(18)的第二步骤(E2),在该容器(18)期间,容器(18)填充有通过出口孔(34)排出吹送气体(G)的填充液体(L); 以及第三步骤(E3),在该步骤中,将容器(18)的内容物放置在压力(HP)下,以使容器(18)符合其最终状态(18D),其特征在于,在填充期间 第二步骤(E2)中,控制进入的填充液体(L)的流量与排出吹出气体(G)的流量的比例,以使容器(18)在该秒期间继续膨胀 步骤(E2)。