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    • 4. 发明申请
    • Moulding Method
    • 成型方法
    • US20130285282A1
    • 2013-10-31
    • US13979347
    • 2012-01-12
    • Gary Mills
    • Gary Mills
    • B29C69/00
    • B29C69/00B29C41/18B29C41/22B29C41/36B29C41/48B29C44/0461B29K2025/00B29K2105/043
    • There is disclosed a method for producing a moulded plastic product having an outer skin and in inner core. The method is particularly suitable for making structural products such as panels or the like from recycled plastic material. The method comprises the steps of: providing a mould having a mould cavity; forming an outer skin from a first plastic material on at least two opposed surfaces inside the mould cavity; forming an inner core from a second plastic material inside the mould cavity; and at least partially curing the plastic materials to form a moulding inside the mould cavity via the application of heat. The method is characterised by the subsequent steps of (optionally pre-cooling the moulding and then) simultaneously cooling the moulding and compressing the moulding so as to reduce its size in at least one dimension to a desired dimension of the finished product.
    • 公开了一种具有外皮和内芯的模制塑料制品的制造方法。 该方法特别适用于从回收的塑料材料制造诸如面板等的结构产品。 该方法包括以下步骤:提供具有模腔的模具; 在模具腔内的至少两个相对的表面上从第一塑料材料形成外皮; 从模具腔内的第二塑料材料形成内芯; 并且至少部分地固化塑料材料,以通过施加热量在模具腔内形成模塑件。 该方法的特征在于随后的步骤(任选地预冷却模制件,然后)同时冷却模制件并压缩模制件,以便将其至少一个尺寸的尺寸减小到成品的期望尺寸。
    • 9. 发明授权
    • Method for producing a moulded plastic product
    • 塑料制品的制造方法
    • US08940212B2
    • 2015-01-27
    • US13979347
    • 2012-01-12
    • Gary Mills
    • Gary Mills
    • B29C39/12
    • B29C69/00B29C41/18B29C41/22B29C41/36B29C41/48B29C44/0461B29K2025/00B29K2105/043
    • There is disclosed a method for producing a molded plastic product having an outer skin and in inner core. The method is particularly suitable for making structural products such as panels or the like from recycled plastic material. The method comprises the steps of: providing a mold having a mold cavity; forming an outer skin from a first plastic material on at least two opposed surfaces inside the mold cavity; forming an inner core from a second plastic material inside the mold cavity; and at least partially curing the plastic materials to form a molding inside the mold cavity via the application of heat. The method is characterised by the subsequent steps of (optionally pre-cooling the molding and then) simultaneously cooling the molding and compressing the molding so as to reduce its size in at least one dimension to a desired dimension of the finished product.
    • 公开了一种具有外皮和内芯的模制塑料制品的制造方法。 该方法特别适用于从回收的塑料材料制造诸如面板等的结构产品。 该方法包括以下步骤:提供具有模腔的模具; 在模具腔内的至少两个相对的表面上从第一塑料材料形成外皮; 从模具腔内的第二塑料材料形成内芯; 并且至少部分地固化塑料材料,以通过施加热量在模具腔内形成模塑件。 该方法的特征在于随后的步骤(任选地预冷却模制件,然后)同时冷却模制件并压缩模制件,以便将其至少一个尺寸的尺寸减小到成品的期望尺寸。
    • 10. 发明申请
    • Body composition, circulation, and vital signs monitor and method
    • 身体组成,循环和生命体征监测和方法
    • US20090182204A1
    • 2009-07-16
    • US12317538
    • 2008-12-24
    • Herbert J. SemlerPhilip BenzGary MillsJames McNames
    • Herbert J. SemlerPhilip BenzGary MillsJames McNames
    • A61B5/02A61B5/0402A61B5/0476A61B5/053
    • A61B5/04085A61B5/04325A61B5/053A61B5/6833A61B5/7275A61N1/3625A61N1/39A61N1/3937G16H40/63G16H40/67G16H50/20G16H50/30
    • The invented non-invasive vital signs monitor is in a flexible, nominally flat planar form having integral gel electrodes, a sticky-back rear surface, an internal flex circuit capable of sensing, recording and playing out several minutes of the most recently acquired ECG waveform data and a front surface that includes an outplay port. The invented non-invasive body composition ‘risk’ monitor includes a measurement device for monitoring one or more variables including body fluid mass, dehydration, respiratory rate, blood pressure, bio-impedance, cardiography such as cardiac output, and body conformation parameters. The risk monitor may be provided in a lightweight carrying case into which the vital signs monitor plugs. Finally, a lightweight portable probe or transducer containing a transmissive or reflective electro-optical emitter and receptor in the infrared spectrum is fitted on a subject's finger or toe. Associated electronics energize and monitor the probe, detect cardio-rhythmic fluctuations therefrom, and process digital data over a prescribed window to produce a non-invasive, qualitative or quantitative measure of the subject's circulation. In accordance with one embodiment of the invention, a simple tri-color LED array is used to indicate the subject's circulation as being normal, reduced, or borderline. Thus the vital signs, bio-impedance, and circulation monitors may be independent or they may be integrated into one portable, non-invasive device that can concurrently monitor and locally display or remotely convey important patient data including circulation data to a local subject or physician or to/from a remote patient medical data center via wireless telemetry for oversight, treatment and possible intervention by a remote physician.
    • 本发明的非侵入性生命体征监测器是具有整体凝胶电极,粘性后表面,能够感测,记录和播放最近采集的ECG波形数分钟的内部柔性电路的灵活的,标称平坦的平面形式 数据和包括外接端口的前表面。 本发明的非侵入性身体成分“风险”监测器包括用于监测一个或多个变量的测量装置,包括体液量,脱水,呼吸频率,血压,生物阻抗,心输出量等心脏检查以及身体构象参数。 风险监视器可以设置在生命体征监视器插入的轻量级手提箱中。 最后,将包含红外光谱中的透射或反射电光发射器和受体的轻便便携式探头或传感器安装在受试者的手指或脚趾上。 相关电子设备激励和监测探针,检测心跳节奏的波动,并在规定的窗口处理数字数据,以产生对受试者循环的非侵入性,定性或定量的测量。 根据本发明的一个实施例,简单的三色LED阵列用于指示受试者的循环是正常的,减少的或边界的。 因此,生命体征,生物阻抗和循环监测器可以是独立的,或者它们可以被集成到一个便携式非侵入性装置中,其可以同时监测和本地显示或远程传送包括循环数据在内的重要患者数据给局部受试者或医师 或者通过无线遥测器从远程病人医疗数据中心进行远程医疗数据中心,以进行远程医师的监视,治疗和可能的干预。