Solvent-free emulsification of high viscosity resin
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United States of America Patent
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Aug 16, 2016
Grant Date -
Jul 14, 2016
app pub date -
Jan 13, 2015
filing date -
Jan 13, 2015
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Abstract
A solvent-free emulsification process for making a latex where a high viscosity resin is prepared under pressure is described.
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- 15 United States
- 10 France
- 8 Japan
- 7 China
- 5 Korea
- 2 Other
Patent Owner(s)
Patent Owner | Address | |
---|---|---|
XEROX CORPORATION | 45 GLOVER AVENUE P O BOX 4505 NORWALK CT 06856-4505 |
International Classification(s)

- 2015 Application Filing Year
- C08J Class
- 2246 Applications Filed
- 1523 Patents Issued To-Date
- 67.81 % Issued To-Date
Inventor(s)
Inventor Name | Address | # of filed Patents | Total Citations |
---|---|---|---|
Hu, Nan-xing | Oakville, CA | 362 | 4426 |
# of filed Patents : 362 Total Citations : 4426 | |||
Sacripante, Guerino G | Oakville, CA | 268 | 6910 |
# of filed Patents : 268 Total Citations : 6910 | |||
Zhou, Ke | Oakville, CA | 190 | 1198 |
# of filed Patents : 190 Total Citations : 1198 |
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- 0 Citation Count
- C08J Class
- 0 % this patent is cited more than
- 9 Age
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Maintenance Fees
Fee | Large entity fee | small entity fee | micro entity fee | due date |
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11.5 Year Payment | $7400.00 | $3700.00 | $1850.00 | Feb 16, 2028 |
Fee | Large entity fee | small entity fee | micro entity fee |
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Surcharge - 11.5 year - Late payment within 6 months | $160.00 | $80.00 | $40.00 |
Surcharge after expiration - Late payment is unavoidable | $700.00 | $350.00 | $175.00 |
Surcharge after expiration - Late payment is unintentional | $1,640.00 | $820.00 | $410.00 |
Full Text
US Patent No: 9772146
Plate heat exchanger
Abstract
A flow-path forming gasket is interposed between peripheries of each adjacent ones of stacked heat transfer plates; communicating-path forming gaskets are each installed, surrounding the passage holes in each adjacent ones of the heat transfer plates alternately; and thereby a first flow path adapted to pass a high-temperature fluid, a second flow path adapted to pass a low-temperature fluid, and communicating paths adapted to cause the fluids, respectively, to flow in and out of the first and second flow paths are formed alternately on opposite sides of each heat transfer plate. A drain hole is formed in each of the heat transfer plates to discharge fluid leaking from the first flow path, the second flow path, or the communicating path. The drain hole is surrounded by gaskets isolated from the first flow path, the second flow path, or the communicating path. A leakage flow path or a leakage collector is formed by the gaskets.
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