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    • 8. 发明授权
    • Method of forming a molded article from thermoformable thermoplastic sheets
    • 从可热成型热塑性片材形成模制品的方法
    • US08691038B2
    • 2014-04-08
    • US13145655
    • 2010-01-29
    • Dale E. Polk, Jr.
    • Dale E. Polk, Jr.
    • B29C51/10B29C41/38
    • B29C43/04B29C33/20B29C43/00B29C47/0019B29C47/0021B29C47/0038B29C47/004B29C47/0054B29C47/14B29C51/10B29C51/261B29C51/267B29C2043/043B29C2043/3433B29C2043/3613B29C2791/006B29K2055/02B29K2067/00B29K2069/00B29K2075/00B29K2075/02B29K2077/00B29K2079/08B29K2081/06B29K2105/256
    • The present invention relates to a method of forming a molded article (e.g., 141) from first and second heated and thermoformable thermoplastic sheets (75, 78), which are each respectively formed in situ from first and second thermoplastic compositions (e.g., by means of extrusion). The heated first and second thermoformable sheets are each drawn by reduced pressure into contour matching contact with the interior mold surfaces (14, 32) of separate first and second mold portions (11, 29), so as to form separate first and second profiled thermoplastic sheets (129, 144) within the separate mold portions. The first and second mold portions (11, 29) are positioned towards each other (e.g., together) so as to bring into contact and fuse together contact portions (159, 163) of the first and second profiled thermoplastic sheets (129, 144). Fusion between the contacted contact portions (159, 163) is achieved by means of (e.g., exclusively by means of) residual heat of sheet formation residing in each of the first and second profiled thermoplastic sheets (129, 144). The present invention also relates to a mold apparatus (e.g., 1) that includes a mold assembly (3, 5) that further includes a first mold portion (11) and a second mold portion (29) that reside between and are rotatably attached to laterally spaced first and second longitudinal supports (171, 174). At least one mold portion is longitudinally repositionable, between the first and second longitudinal supports, relative to the other mold portion.
    • 本发明涉及从第一和第二加热和可热成形的热塑性片材(75,78)形成模制品(例如141)的方法,它们分别由第一和第二热塑性组合物原位形成(例如,通过手段 的挤出)。 加热的第一和第二可热成形片材各自被减压地拉伸成与分开的第一和第二模具部分(11,29)的内部模具表面(14,32)的轮廓匹配接触,以便形成分离的第一和第二成型热塑性塑料 片(129,144)在分开的模具部分内。 第一和第二模具部分(11,29)朝向彼此(例如,一起)定位,以便使第一和第二成型热塑性片(129,144)的接触部分(159,163)接触并熔合在一起, 。 在接触的接触部分(159,163)之间的融合通过(例如,仅仅借助于)残留的第一和第二成型热塑性片材(129,144)中的片材形成热来实现。 本发明还涉及一种模具设备(例如,1),其包括模具组件(3,5),其还包括第一模具部分(11)和第二模具部分(29),所述第一模具部分和第二模具部分(29) 横向间隔开的第一和第二纵向支撑件(171,174)。 相对于另一个模具部分,至少一个模具部分在第一和第二纵向支撑件之间纵向可重新定位。
    • 9. 发明申请
    • Heat Exchange Panel
    • 换热板
    • US20120018134A1
    • 2012-01-26
    • US13144254
    • 2010-01-13
    • Dale E. Polk, JR.
    • Dale E. Polk, JR.
    • F28F3/08
    • F28F3/12F24S10/55F24S70/60F28F3/04F28F2215/06Y02E10/44
    • A heat exchange panel (1) that includes a lower plate (11) and an upper plate (14) that together define a plurality of channels (51) there-between, which are in fluid communication with a plurality of upper plate extension passages (72), is described. The lower plate (11) includes a plurality of lower plate extensions (20) that extend upwardly from the interior surface (17) of the lower plate. Each channel (51) has at least one lower plate extension (20) extending upwardly therefrom. The upper plate (14) includes a plurality of upwardly extending hollow upper plate extensions (32). The aperture (42) and interior hollow space (48) of each upper plate extension (32) is aligned with and receives an upper portion (69) of a single lower plate extension (20) therein. A portion of the interior surfaces (45) that define the interior hollow space (48) of the upper plate extension (32), and a portion of the exterior surfaces (23) of the upper portion (69) of the lower plate extension (20) received within the interior hollow space (48) together define, in each case, an upper plate extension passage (72). Each upper plate extension passage (72) is in fluid communication with a channel (51) residing there-under. In operation, a fluid introduced into a terminal inlet (54) of a channel (51) passes through each upper plate extension channel (72) in fluid communication with that channel, and passes out from the terminal outlet (57) of the channel. The combination of a plurality of upper plate extension passages (72) and channels (51) in common fluid communication provide the heat exchange panel of the present invention with improved heat exchange efficiencies.
    • 一种热交换面板(1),包括下板(11)和上板(14),所述下板(11)和上板(14)在一起限定多个通道(51),所述多个通道(51)与多个上板延伸通道 72)。 下板(11)包括从下板的内表面(17)向上延伸的多个下板延伸部(20)。 每个通道(51)具有从其向上延伸的至少一个下板延伸部(20)。 上板(14)包括多个向上延伸的中空上板延伸部(32)。 每个上板延伸部(32)的孔(42)和内部中空空间(48)与其中的单个下板延伸部(20)的上部(69)对准并且接纳其中的单个下板延伸部(20)的上部(69)。 限定上板延伸部(32)的内部中空空间(48)的内表面(45)的一部分和下板延伸部的上部(69)的外表面(23)的一部分 在内部空间(48)内容纳的每个壳体(20)一起限定了上板延伸通道(72)。 每个上板延伸通道(72)与其上存在的通道(51)流体连通。 在操作中,引入到通道(51)的端子入口(54)中的流体通过与该通道流体连通的每个上板延伸通道(72),并从通道的端子出口(57)流出。 多个上板延伸通道(72)和通道(51)的共同流体连通的组合使得本发明的热交换面板具有改进的热交换效率。