Radulescu
Adrian Radulescu, Laval CA
Patent application number | Description | Published |
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20080265608 | SHIELD ASSEMBLY FOR CARGO SPACE OF A TRANSPORT VEHICLE - A shield assembly is described for the cargo space of a transport vehicle wherein access to the cargo space is provided by a displaceable wall section mounted on a lower rail secured spaced from a lower side frame of the cargo space. The assembly comprises an elongated rectangular flexible seal guard having an elongated securable side edge section. The flexible seal guard has a width which is greater than a space defined between the rail and the lower side frame. The rail has a directional retention slot for immovably securing the securable side edge section of the flexible seal guard thereto whereby the flexible seal guard is supported for frictional engagement at an opposed free side edge against the lower side frame to substantially seal the space whereby to prevent foreign matter from entering into the cargo space. | 10-30-2008 |
Adrian Radulescu, Pointe-Claire CA
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20150233139 | RETRACTABLE ENCLOSURE - A retractable enclosure is comprised of at least two displaceable structural bow frames which each define a roof section and opposed upwardly extending side sections. These sections are interconnected by joint connectors. The sections are also formed of extruded profiled straight metal tubes which have extruded interconnection channels. The tarp sections of flexible material are engaged by channels of some of the bow frames and collapse and expand as the bow frames are displaced closer or away from one another. Access to the enclosure can be provided from all sides thereof for access to its interior. | 08-20-2015 |
Andrei Ion Radulescu, Targoviste RO
Patent application number | Description | Published |
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20130314188 | Magnetic Structure for Large Air Gap - New and Useful magnetic structures are provided. One feature of the magnetic structures is that they are configured to help minimize the air gap reluctance, improving the magnetic structure's coupling coefficient. Another feature is that reducing the windings AC impedance of a magnetic structure is produced by shielding the winding under ears formed of magnetic material. Still another feature is that leakage inductance of a magnetic structure is reduced, by making ears with cuts which converge toward the magnetic rods that are used in the formation of the structure. | 11-28-2013 |
20130314197 | Magnetic Configuration for High Efficiency Power Processing - Several new and useful features for a magnetic structure are provided. One feature is that the magnetic structures are configured to help minimize the winding's AC losses, improving the system's efficiency. Another feature is that the combination of different magnetic hats creates a shaping path for the magnetic field. Still another feature is that a magnetic hat concept can be applied to a variety of magnetic core shapes. | 11-28-2013 |
20130314200 | Multiple Cells Magnetic Structure for Wireless Power - The magnetic component structures of this invention provides an improved magnetic core and winding arrangement which increases the inductive coupling between the primary and the secondary part compared to a similar single cell structure. | 11-28-2013 |
Astridel Radulescu, Milano IT
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20150066721 | DEVICE AND METHOD FOR PROCESSING DATA REPRESENTATIVE OF FINANCIAL TRANSACTIONS - The invention relates to a device ( | 03-05-2015 |
Cristian-Radu Radulescu, Leige BE
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20140124140 | PORTABLE DEVICE FOR ATTACHING A CONNECTOR TO AN OPTICAL FIBER - A portable device for attaching a connector to an optical fiber, the optical fiber having an end, the device comprising means for receiving the optical fiber at the end of the optical fiber; and a connector station for autonomously attaching the connector to the optical fiber. | 05-08-2014 |
20150177460 | OPTICAL FIBER CLEAVING MECHANISM AND METHOD OF USE - A cleaving mechanism and related method is adapted to cleave an optical fiber and thereby produce a cleaved end on the optical fiber. The cleaving mechanism includes a fixture, a cleave tool for cleaving the optical fiber, a clamp, a scoring member, and a tensioner. The fixture and clamp may hold the optical fiber without substantial twisting of the optical fiber. The fixture and/or the clamp may include a set of flexures that may include a pair of bending beam elements. The tensioner may include a voice coil and may detect slippage of the optical fiber. The tensioner may tune tension on the optical fiber and thereby tune a cleaving angle of the cleaved end. The cleaving mechanism may further include a vision system and thereby further tune the tension. The tensioner may compensate for wear of the cleaving mechanism. The cleave tool may include a bending anvil. The optical fiber may be included in a fiber optic cable that may further include a protective layer surrounding the optical fiber. | 06-25-2015 |
Robert Ciprian Radulescu, Clermont-Ferrand FR
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20140251521 | TIRE COMPRISING A LAYER OF CIRCUMFERENTIAL REINFORCING ELEMENTS - A tire having a crown reinforcement formed of at least two working crown layers of reinforcing elements, a first layer C of rubber mixture being positioned between at least the ends of the said at least two working crown layers, and the crown reinforcement having at least one layer of circumferential metal reinforcing elements. The tensile modulus of elasticity at 10% elongation of the first layer C of rubber mixture is less than 8 MPa and the maximum tan(δ) value, denoted tan(δ)max, of the first layer C of rubber mixture is less than 0.100. | 09-11-2014 |
20140261951 | TIRE COMPRISING A LAYER OF CIRCUMFERENTIAL REINFORCING ELEMENTS - A tire having a crown reinforcement formed of at least two working crown layers each formed of reinforcing elements inserted between two calendaring layers of rubber compound, crossed from one layer to the other making angles of between 10° and 45° with the circumferential direction and the crown reinforcements comprising at least one layer of circumferential reinforcing elements. The elastic modulus under 10% tensile strain of at least one calendaring layer of at least one working crown layer is less than 8.5 MPa and the maximum value of tan(δ), denoted tan(δ)max, of said at least one calendaring layer of at least one working crown layer is less than 0.100. | 09-18-2014 |
20140283969 | TIRE COMPRISING A LAYER OF CIRCUMFERENTIAL REINFORCING ELEMENTS - A tire having a crown reinforcement formed of at least two working crown layers having unequal axial widths, a layer C of rubber mixture being positioned between at least the ends of the said at least two working crown layers, and the crown reinforcement having at least one layer of circumferential reinforcing elements positioned radially between two working crown layers. The distance d between the end of the axially narrowest working layer and the working layer separated from the axially narrowest working layer by the layer C of rubber mixture is such that 1.1ø≦d≦2.2ø, ø being the diameter of the reinforcing elements of the said at least one layer of circumferential reinforcing elements, and, in a meridian plane, the thickness of the layer C of rubber mixture is substantially uniform. | 09-25-2014 |
20150059943 | HEAVY GOODS VEHICLE DRIVEN AXLE TIRE TREAD - Tread having a maximum thickness PMU of material to be worn away during running, having: at least two grooves of circumferential overall orientation delimiting at least one intermediate row and two edge rows, a plurality of cuts of transverse overall orientation on each intermediate and edge row, representing, in the new state, a void of total volume Vco open onto the tread surface, at most equal to 13% of the total volume of the tread, channels or cavities extending under the tread surface in the new state, adapted to form new grooves after the tread has partially worn away, and having, in the initial state, a total volume Vcc at least equal to 30% of the total void volume Vco in the new state, intermediate rows of suffix (i) and edge rows of suffix (e) each provided with a plurality of cuts of transverse or oblique orientation distributed over each row evenly or near-evenly with a mean pitch of Pi and Pe respectively, having mean depths, Di and De respectively, which are at least equal to 20% of the thickness PMU and at most equal to thickness PMU, wherein: | 03-05-2015 |