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    Home > Coatings News > Paints and Coatings Market > Analysis of the principle of the function of desiccant

    Analysis of the principle of the function of desiccant

    • Last Update: 2020-11-29
    • Source: Internet
    • Author: User
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    1
    , the production of bubbles in the coating and the principle of stability:
    in the production process of the coating, will be involved in the air and the formation of bubbles, some raw materials in the coating such as: surfactants, dispersants, etc. will make the bubble stable.
    can also produce bubbles during the construction of the coating, depending on the way the coating is constructed. For example: curtain coating can be continuously involved in the paint air, airless spraying is also easy to get involved in the air, in relatively low humidity conditions or under high temperature conditions spraying construction is easy to produce bubbles .
    Stabilized foaming principle:
    Malangegny effect
    (liquid reflow caused by surfactants, offsetting gravity)
    electrostation effect
    :
    electrostation rejection of surfactants thickens the liquid film of the bubble, thus stabilizing the bubble.
    2
    , the function of defrosting agent
    defrosting agent is in the foam thin layer formation stage or after the effect:
    dispersed uniform defrost penetration into the foam elastic film and distribution in the membrane, and through the reduction of surface pressure leading to the thin layer burst.
    evenly dispersed defrosts penetrate into the foam thin layer and form a single molecule membrane, making it less adhesive and prone to thin layer rupture.
    a third mechanism for de-foaming agents containing hydrophobic particles. These hydrophobic particles reach the surface of the thin layer and absorb surfactants at the top of the thin layer. The thin layer breaks due to the absence of surfactants.
    3
    and evaluation methods:
    defrosts must be able to spread rapidly on the foam surface and penetrate quickly, allowing the foam to burst quickly. The types commonly used in desosters are silicones and polyacrylates.
    silicone defoiling agents are usually polysilicone types. For example: polydymethylsiloxane containing acrylic energy group and polyether modified polymethylsiloxane, etc. Silicone class has high temperature resistance, low temperature resistance, physical stability, chemical inertness, very low surface pressure, is commonly used desiccant.
    such as polypropyleneic acid deblisters by altering the polarity and molecular weight of the polymer leading to selective incompatible deblistering, the use of such desolants needs to be used to assess the effect on gloss.
    to choose the right defrost in the future, we must take into account the process of foam generation in the system, the compatibility and concentration of the system, temperature and viscosity. Each of these factors has a direct effect on the choice of desiccant.
    evaluation foam control agent mainly consider several aspects: spread rate, compatible with the system, de bubble stability and cost-effective. However, the above factors are often contradictory in a formula, for example, the de-foaming agent with the best system compatibility is often the worst de-foaming
    stability;
    the diversity of coating raw materials and construction methods, defoulants need to be evaluated on a case-by-case basis.
    1
    , according to a certain proportion of the need to compare the defoamer added to the varnish, placed in a glass bottle, in the oscillation instrument vibration
    5
    minutes, while taking out observation, according to the number of foams to determine the initial defoaming ability of the defoamer
    ;
    Place
    10
    minutes
    /30
    minutes later, observe the height of the foam again, compare the defrosting speed;
    2
    ,
    with scraper fineness meter scraping paint liquid to determine the compatible of defrosting agent and the system (with or without shrink holes)
    ;
    3
    ,
    system foam eliminated, observe the clarity of the system, whether there is turbidity, layering, oil sequestration and other phenomena
    ;
    4
    ,
    storage stability: after half a month, repeat
    1
    ,
    2
    ,
    3
    steps of experiments, and determine the long-term effectiveness of desiccant
    5
    ,
    to determine the amount of
    .
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