Medical films and articles prepared from emulsion polymers
A technology of polymers and hard polymers, applied in medical science, bandages, absorbent pads, etc., can solve problems that are not suitable for commercial applications, and achieve the effect of water resistance and flexibility
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Examples
Embodiment approach
[0016] According to another embodiment of the present invention, amine group-containing (i.e. amine-containing) monomers, including monomers containing side chains and having hydrophobic properties, can be effectively used as the polymer mixture of the present invention. Hard components, soft components, and combinations of hard and soft components. The amine groups may be quaternary amine (ie, quaternary ammonium) groups, amine oxide groups, and / or protonated tertiary amine groups.
[0017] US Patent No. 5,731,377 describes exemplary hard / soft emulsion polymer components that can be used to prepare the polymer mixtures claimed in the present invention, as well as methods for preparing such polymers. According to one embodiment of the present invention, the hard / soft polymer component of the polymer mixture has the rheological properties required for the preparation of the protective films and related articles of the present invention such that these films and articles have th...
Embodiment 1A
[0057] • 20 hard / / 80 soft polymer particle mixture, both hard and soft polymers are approximately 94 nanometers as measured by the BI-90 technique. (All ratios are solids to solids by weight)
[0058] Hard polymer composition = 27BA / 70.5Sty / 2MAA / 0.5 ureido methacrylate [hard, particle size about 94 nm]
[0059] Soft polymer composition = 60BA / 36.5Sty / 2.5MAA / 1 ureido methacrylate [soft, particle size about 94 nm]
[0060] Note: The release force to debond the hard / soft mixture from the surface is about 450 grams under the conditions shown. This is called "stickiness". The probe is brought into contact with the sample, and enters the sample until the force reaches 500 grams for 2 seconds, and then the probe is released at a predetermined rate of 0.2 mm / s to obtain the maximum force on the probe from the membrane sample surface.
Embodiment 1B
[0062] - Blend of 20 hard (42 nm) / / 80 soft polymer (363 nm), particle size measured by BI-90 technique.
[0063] Hard polymer composition = 27BA / 70.5Sty / 2MAA / 0.5 ureido methacrylate [hard, particle size about 42 nm]
[0064] Soft polymer composition = 60BA / 36.5Sty / 2.5MAA / 1 ureido methacrylate [soft, particle size about 363 nm]
[0065] • The overall composition of these polymers is the same as their respective hard / soft 94nm polymer analogs.
[0066] The peel force or "tack" of the hard / soft blend averaged about 36 grams.
[0067] These differences appear to be real because the standard deviation rules out overlap in the data. Therefore, these differences are real.
PUM
Property | Measurement | Unit |
---|---|---|
glass transition temperature | aaaaa | aaaaa |
particle size | aaaaa | aaaaa |
glass transition temperature | aaaaa | aaaaa |
Abstract
Description
Claims
Application Information
- R&D Engineer
- R&D Manager
- IP Professional
- Industry Leading Data Capabilities
- Powerful AI technology
- Patent DNA Extraction
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2024 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com