Method for producing release liner
    7.
    发明授权
    Method for producing release liner 有权
    剥离衬垫的生产方法

    公开(公告)号:US09394467B2

    公开(公告)日:2016-07-19

    申请号:US14005915

    申请日:2012-03-07

    摘要: Efficiently produced is a release liner including a plant-derived film as a substrate and having a good appearance, releasability, and adhesion. A method according to the present invention produces a release liner having a plant-derived film substrate and, on at least one side thereof, a release coat layer derived from a thermosetting silicone resin. The method includes the steps as follows: Step A of applying a thermosetting silicone release agent to at least one side of a plant-derived film substrate, the release agent containing 100 parts by weight of a thermosetting silicone resin and 0.05 to 0.55 part by weight of a curing catalyst; Step B of drying at 40° C. to 90° C. for 10 to 60 seconds after Step A; Step C of applying an ultraviolet ray at 50 to 300 mJ/cm2 after Step B; and Step D of aging at 30° C. to 70° C. for 12 to 240 hours after Step C.

    摘要翻译: 有效制造的是具有植物来源的膜作为基材并具有良好的外观,脱模性和粘合性的剥离衬垫。 根据本发明的方法产生具有植物衍生膜基材的剥离衬垫,并且在其至少一侧上具有源自热固性硅树脂的剥离涂层。 该方法包括以下步骤:步骤A,将热固性硅氧烷脱模剂涂布在植物来源的膜基材的至少一侧,脱模剂含有100重量份的热固性硅树脂和0.05-0.55重量份 的固化催化剂; 步骤B在步骤A之后在40℃至90℃下干燥10至60秒; 在步骤B之后施加50-300mJ / cm 2的紫外线的步骤C; 和步骤D在30℃至70℃下老化12至240小时。

    METHOD FOR PRODUCING RELEASE LINER
    8.
    发明申请
    METHOD FOR PRODUCING RELEASE LINER 有权
    生产排水管线的方法

    公开(公告)号:US20140004360A1

    公开(公告)日:2014-01-02

    申请号:US14005915

    申请日:2012-03-07

    IPC分类号: C09J7/02

    摘要: Efficiently produced is a release liner including a plant-derived film as a substrate and having a good appearance, releasability, and adhesion. A method according to the present invention produces a release liner having a plant-derived film substrate and, on at least one side thereof, a release coat layer derived from a thermosetting silicone resin. The method includes the steps as follows: Step A of applying a thermosetting silicone release agent to at least one side of a plant-derived film substrate, the release agent containing 100 parts by weight of a thermosetting silicone resin and 0.05 to 0.55 part by weight of a curing catalyst; Step B of drying at 40° C. to 90° C. for 10 to 60 seconds after Step A; Step C of applying an ultraviolet ray at 50 to 300 mJ/cm2 after Step B; and Step D of aging at 30° C. to 70° C. for 12 to 240 hours after Step C.

    摘要翻译: 有效制造的是具有植物来源的膜作为基材并具有良好的外观,脱模性和粘合性的剥离衬垫。 根据本发明的方法产生具有植物衍生膜基材的剥离衬垫,并且在其至少一侧上具有源自热固性硅树脂的剥离涂层。 该方法包括以下步骤:步骤A,将热固性硅氧烷脱模剂涂布在植物来源的膜基材的至少一侧,脱模剂含有100重量份的热固性硅树脂和0.05-0.55重量份 的固化催化剂; 步骤B在步骤A之后在40℃至90℃下干燥10至60秒; 在步骤B之后施加50-300mJ / cm 2的紫外线的步骤C; 和步骤D在30℃至70℃下老化12至240小时。

    POLYLACTIC ACID-BASED FILM OR SHEET
    9.
    发明申请
    POLYLACTIC ACID-BASED FILM OR SHEET 审中-公开
    基于聚氨酯的薄膜或薄片

    公开(公告)号:US20130236723A1

    公开(公告)日:2013-09-12

    申请号:US13885407

    申请日:2011-11-21

    IPC分类号: C08L67/04 C08L27/18 C08G63/06

    摘要: Disclosed is a polylactic acid-based film or sheet as a resin film or sheet including a polylactic acid (A). The film or sheet has a melt endotherm ΔHc′ of 10 J/g or more, where ΔHc′ is of a region crystallized upon film formation and specified by following Expression (1): ΔHc′=ΔHm−ΔHc  (1) wherein ΔHc represents an exotherm (J/g) associated with crystallization of the film or sheet in a temperature rise process after film formation; and ΔHm represents an endotherm (J/g) associated with subsequent melting of the film or sheet, each determined by DSC. The film or sheet has a tear strength of 2.5 N/mm or more both in a machine direction (MD) and a transverse direction (TD). The polylactic acid-based resin film or sheet is resistant to melting and deformation even at an elevated temperature higher than 100° C. and is resistant to breaking and tearing during winding into a roll.

    摘要翻译: 公开了作为包含聚乳酸(A)的树脂膜或片材的聚乳酸类膜或片。 该薄膜或片材具有10J / g以上的熔融吸热DeltaHc',其中DeltaHc'是成膜后结晶的区域,并通过以下表达式(1)指定:DeltaHc'= DeltaHm-ΔHc(1)其中DeltaHc表示 在成膜后的升温过程中与膜或片的结晶相关的放热(J / g) 并且DeltaHm表示与随后熔融的膜或片相关联的吸热(J / g),各自由DSC确定。 膜或片在纵向(MD)和横向(TD)上都具有2.5N / mm以上的撕裂强度。 聚乳酸类树脂膜或片材即使在高于100℃的高温下也耐熔融变形,并且在卷成卷期间耐断裂和撕裂。