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    • 7. 发明申请
    • 合成樹脂製立体装飾片とその製造方法
    • 合成树脂立体化装饰品及其制造方法
    • WO2006051661A1
    • 2006-05-18
    • PCT/JP2005/018483
    • 2005-09-29
    • 黒田 暢夫桑原 英二
    • 桑原 英二
    • B29C59/02B29C43/20B29C65/48B29C65/04B44C1/24B29K101/12B29L9/00
    • B27N3/20B29C35/12B29C43/021B29C43/40B29C59/026B29C65/04B29C65/7441B29C66/1122B29C66/45B29C66/4724B29C66/71B29C66/81427B29C66/8322B29C2043/023B29K2105/256B29L2031/722B29L2031/723B32B38/06B44C1/24B44C3/046Y10T428/24479B29K2023/00B29K2023/083B29K2027/06B29K2067/00B29K2075/00B29K2077/00
    • (1) A method of manufacturing a stereoscopic pattern piece having a flat rear surface, (2) a method of manufacturing a stereoscopic pattern piece by easily cutting a base material with a melt-cutting blade, (3) a method of manufacturing a stereoscopic pattern piece having a bonding or adhesive function on the rear surface, and (4) a method of manufacturing a stereoscopic pattern piece without limiting the characteristics of the base material. (1) The stereoscopic pattern piece is manufactured by high-frequency induction heating with a recessed mold (32). (2) A recessed mold (132) used has a second melt-cutting blade (152) on the outer periphery of the melt-cutting blade (151). (3) First, upper and intermediate layer stereoscopic shaped bodies (216) having recessed parts (244) on their lower surfaces are formed by using the recessed mold (232) and a projected mold (233), and then the high-frequency induction heating is further performed to flow a lower layer material (213) in the recessed part. (4) First, upper and intermediate layer stereoscopic shaped bodies (316, 416) are formed, and then the high-frequency induction heating is further performed to weld the upper and intermediate stereoscopic shaped bodies to a base material (414).
    • (1)一种制造具有平坦后表面的立体图案片的方法,(2)通过使用熔切刀片容易地切割基材来制造立体图案片的方法,(3)制造立体图案的方法 在后表面具有粘结或粘合功能的图案片,以及(4)立体图案片的制造方法,而不限制基材的特性。 (1)通过利用凹模(32)的高频感应加热制造立体图案片。 (2)使用的凹模(132)在熔融切割刀片(151)的外周具有第二熔融切割刀片(152)。 (3)首先,通过使用凹模(232)和突出模(233)形成在其下表面具有凹部(244)的上层和中层立体成形体(216),然后通过高频感应 进一步进行加热以使凹陷部分中的下层材料(213)流动。 (4)首先,形成上层和中间层立体成形体(316,416),然后进一步进行高频感应加热,以将上侧和中间立体形状体焊接到基材(414)上。