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    • 4. 发明授权
    • Freeze indicators suitable for mass production
    • 冷冻指示器适合批量生产
    • US07624698B2
    • 2009-12-01
    • US12069025
    • 2008-02-06
    • Dene H. TaylorThaddeus PrusikDawn E. Smith
    • Dene H. TaylorThaddeus PrusikDawn E. Smith
    • G01K11/12G01K11/14
    • G01K1/02G01K3/005G01K11/06G01K11/12G01K2207/04Y10S252/962
    • A freeze indicator employs, as active indicator element, dispersion of solid particles in a liquid medium which can be water or aqueous and which coagulates to provide an irreversible appearance change when subject to freezing. The liquid dispersion can be contained in an indicator volume around which extends a vapor block layer. The vapor block layer can prevent loss of liquid vapor from the dispersion and consequent drying out and dysfunctionality of the freeze indicator. For containing an aqueous medium, bilayer and trilayer laminate materials can be used which have a low water vapor transmission rate. The active indicator element can be a dilute colloidal dispersion of a metal such as gold or silver or other inorganic pigment material in water or an aqueous medium. Some embodiments avoid use of dispersants and the like and employ an active indicator element consisting of inorganic pigment particles, water and optionally an ice nucleating agent. Heavy water, or deuterated water can be components of the water, if desired.
    • 冷冻指示器使用固体颗粒在液体介质中的分散体作为活性指示剂元素,液体介质可以是水或水,并在凝固时提供不可逆的外观变化。 液体分散体可以包含在延伸蒸气阻挡层的指示体积中。 蒸气阻挡层可以防止液体蒸气从分散体中的损失,从而导致冷冻指示器的干燥和功能失调。 为了含有水性介质,可以使用具有低水蒸气透过率的双层和三层层压材料。 活性指示剂元素可以是诸如金或银之类的金属或其它无机颜料材料在水或水介质中的稀释胶体分散体。 一些实施方案避免使用分散剂等并且使用由无机颜料颗粒,水和任选的冰核成核剂组成的活性指示剂元件。 如果需要,重水或氘代水可以是水的组分。
    • 6. 发明授权
    • Process for preparing an indicator composition and indicator compositions
    • 制备指示剂组合物和指示剂组合物的方法
    • US08529682B2
    • 2013-09-10
    • US13248254
    • 2011-09-29
    • Thaddeus PrusikDawn E. SmithRay H. Baughman
    • Thaddeus PrusikDawn E. SmithRay H. Baughman
    • C09D11/00G01N31/00G01K1/02G01K3/00G04F1/00
    • C09D11/50
    • Indicator inks, indicators formed by printing or otherwise utilizing the inks and host products utilizing the indicators are disclosed. Reactivity-enhancing adjuvants stimulate enhanced thermal reactivity of diacetylenic or other indicator agents capable of responding to ambient thermal conditions with a visual change signaling an end point. The diacetylenic or other agents may be sensitive or relatively insensitive to ambient temperatures. Use of a reactivity-enhancing adjuvant provides a useful means for adapting the reactivities of indicator agents to the response characteristics of prospective host products, for example perishables such as vaccines or fresh fish and maturables such as fruit, cheese and wine. Some exemplary adjuvants include low-temperature polymerization initiators, for example methyl ethyl ketone peroxide and polymerization accelerators, for example cobalt compounds. Such initiators and accelerators can also be used in combination.
    • 公开了指示剂油墨,通过使用指示剂印刷或以其它方式利用油墨和主体产品形成的指示剂。 反应性增强佐剂刺激能够响应于环境热条件的二乙炔或其他指示剂的增强的热反应性,其中以指示终点的视觉改变。 二乙炔或其它试剂可能对环境温度敏感或相对不敏感。 使用反应性增强佐剂提供了一种有用的方法,用于使指示剂的反应性适应于预期宿主产物的反应特性,例如易腐食物例如疫苗或鲜鱼以及可食用如水果,奶酪和葡萄酒。 一些示例性的助剂包括低温聚合引发剂,例如甲基乙基酮过氧化物和聚合促进剂,例如钴化合物。 这样的引发剂和促进剂也可以组合使用。