DETERMINING ELONGATION OF ELASTIC BANDAGE
    11.
    发明申请
    DETERMINING ELONGATION OF ELASTIC BANDAGE 有权
    确定弹性带的延伸

    公开(公告)号:US20150154451A1

    公开(公告)日:2015-06-04

    申请号:US14406812

    申请日:2013-07-03

    Abstract: The present invention is directed to new methods of determining elongation, tension and applied pressure of elastic bandages comprising tension indicators. In one embodiment, a computer-implemented method of detecting elongation of an elastic bandage (e.g. on a mobile computing device having a processor and graphical user interface) is described. The method comprises receiving image data that includes a digital photograph of an elongated tension indicator of an elastic bandage; analyzing the image data to determine elongation of the elastic bandage by comparing geometric features of the elongated tension indicator to model geometric features that define a predetermined elongation state (such as an unelongated state); and providing output indicia associated with the determined elongation. Also described are various articles, some of which are intermediate articles of the methods described herein. Such articles include non-transient computer readable medium, a three-dimensional member comprising at least one layer of certain elastic bandages. In one embodiment, the elastic bandage comprises a tension indicator and a computer readable code.

    Abstract translation: 本发明涉及确定包括张力指示器的弹性绷带的伸长率,张力和施加压力的新方法。 在一个实施例中,描述了检测弹性绷带伸长率的计算机实现的方法(例如,在具有处理器和图形用户界面的移动计算设备上)。 该方法包括接收包括弹性绷带的细长张力指示器的数字照片的图像数据; 通过将细长张力指示器的几何特征与限定预定伸长状态(例如未延长状态)的模型几何特征进行比较来分析图像数据以确定弹性绷带的伸长率; 并提供与确定的伸长率相关联的输出标记。 还描述了各种制品,其中一些是本文所述方法的中间制品。 这样的物品包括非瞬时计算机可读介质,包括至少一层某些弹性绷带的三维构件。 在一个实施例中,弹性绷带包括张力指示器和计算机可读代码。

    COMPOSITE ADHESIVE FIRE BARRIER AND METHOD OF MAKING AND USING THE SAME

    公开(公告)号:US20240307722A1

    公开(公告)日:2024-09-19

    申请号:US18575968

    申请日:2022-07-18

    CPC classification number: A62C3/16 A62C3/06 C08K3/34 C09J7/38 C09J183/04

    Abstract: A composite adhesive fire barrier comprises a fire barrier material having first and second opposed major surfaces and a pressure-sensitive adhesive layer disposed on the first major surface of the fire barrier material. The fire barrier material comprises inorganic fibers and has an inorganic component content of at least 50 percent by weight. The pressure-sensitive adhesive layer comprises a crosslinked mixture of a silicone having a kinematic viscosity of at least 30,000 centistokes and an MQ silicate tackifying resin disposed on the fire barrier material. The silicone and the MQ silicate tackifying resin are present in a respective weight ratio of 4:1 to 20:1. A release liner comprising a fluorinated compound is releasably adhered to the pressure-sensitive adhesive layer. Methods of making and using the composite adhesive fire barrier are also disclosed.

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