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Boor
Billibob J. Boor, Hortonville, WI US
| Patent application number | Description | Published |
|---|---|---|
| 20090308009 | Composite Material Roofing Structure - The present invention is a composition for making high quality, mold resistant, water proof building products. The composition from which these products are formed is a mixture of various polyethylene or polypropylene materials, in conjunction with fillers which may comprise recycled rubber products such as ethylene propylene-diene monomers, and styrene butadiene rubber, or mineral fillers to achieve a different feel and texture to the formulation without compromising the integrity of the product. This is achieved by altering the melt and amount of the high and/or low density polyethylene or polypropylene in the mix to end up with the correct material integrity. Colorants may be additionally be added to the mixture prior to final molding. This composition allows for products to be made that resemble traditional building products, but with a higher performance level that are also recyclable in their entirety. | 12-17-2009 |
| 20120193826 | Color Variation Control Process for Molding Plastic and Composite Multi-Color Articles - A process to effect random color variation in multi-color molded articles includes feeding individual colors to molding equipment in a pre-established sequence and manner that prevents substantial mixing of the colors, and at pre-established ratios in relation to a non-integer multiple of volume associated with the molded article. | 08-02-2012 |
Jaap-Jan Boor, Huizen NL
| Patent application number | Description | Published |
|---|---|---|
| 20120221609 | Data Storage System and Method - A data storage system comprises: a data storage device ( | 08-30-2012 |
Paul J Boor, Macomb, MI US
| Patent application number | Description | Published |
|---|---|---|
| 20110108181 | METHOD AND SYSTEM FOR ONLINE QUALITY MONITORING AND CONTROL OF A VIBRATION WELDING PROCESS - A method for monitoring and controlling a vibration welding system includes collecting sensory data during formation of a welded joint using sensors positioned with respect to welding interfaces of a work piece. A host machine extracts a feature set from a welding signature collectively defined by the sensory data, compares and correlates the feature set with validated information in a library, and executes a control action(s) when the present feature set insufficiently matches the information. A welding system includes a sonotrode, sensors, and the host machine. The host machine is configured to execute the method noted above. | 05-12-2011 |
| 20110206964 | COOLING SYSTEM FOR A BATTERY ASSEMBLY - A cooling assembly for a battery assembly including at least one conduit and at least one cooling plate, the conduit having a flexible portion to facilitate a relative movement between an inlet end and an outlet end thereof to selectively expand and contract the cooling assembly, and the cooling plate including a flow channel formed therein, wherein at least one battery cell is disposed adjacent and in heat transfer communication with the at least one cooling plate to transfer heat from the at least one battery cell to a fluid disposed in the flow channel. | 08-25-2011 |
Richard Boor, Deep River CA
| Patent application number | Description | Published |
|---|---|---|
| 20120085155 | PORTABLE POLYMER TESTER - The present invention provides a polymer indentation method and tester that includes measuring the time taken by a polymeric material to recover a set portion of an initial deformation and use this duration as a material degradation indicator. The recovery time was found to be more sensitive to cable degradation than the specific compressive stiffness (or indenter modulus) measured during the indentation phase, and this high sensitivity was achieved for both thermally aged and irradiated polymer samples. | 04-12-2012 |
Steven E. Boor, Plano, TX US
| Patent application number | Description | Published |
|---|---|---|
| 20120056673 | BUFFERING APPARATUS AND METHOD - The output impedance of an amplifier is substantially matched to an input impedance of a receiver using a buffer circuit. The buffer circuit includes a primary transistor and a secondary transistor. A first back gate terminal of the primary transistor is coupled to a second back gate terminal of the secondary transistor and the primary transistor is configured to have an output for the buffer circuit. An input signal is received from the amplifier at a gate terminal of the secondary transistor. The first back gate terminal of the primary transistor is responsively driven independently from the output of the buffer circuit to effectively adjust a transconductance of the primary transistor and substantially match an output impedance of the amplifier with an input impedance of the receiver. | 03-08-2012 |
