Patents by Inventor Benoit Poutre

Benoit Poutre has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20060005978
    Abstract: Sweep retaining structure includes a spring wire retainer with a base supported in a groove on the underside of the wedge support which mates with a stem portion of the sweep. The wedge support is apertured, and a central curved portion of the retainer passes through the aperture and supports a sweep-contacting end above the surface of the wedge support. The end is biased toward a contact area on the sweep to engage the area and eliminate sweep loss problems by preventing the sweep from slipping downwardly from the mounted position. To remove the sweep, a tool is inserted through the slot to depress the retainer end, and the sweep is forced off the wedge support. A raised area on the sweep directs soil away from the retainer and contact area to reduce wear and eliminate depression of the end during operation. The underside of the raised area positions the wire end and provides bend-resisting support for the wire.
    Type: Application
    Filed: July 5, 2005
    Publication date: January 12, 2006
    Inventors: Richard Zaun, Benoit Poutre, Donald Peck, Mark Beeck, Richard Hook, James VanAuwelaer, Jarrod Ruckle
  • Publication number: 20050252668
    Abstract: An agricultural tillage sweep providing good soil action without ridges in the soil surface at both high and low speed operation in different soil conditions. Wings extending outwardly and rearwardly from a leading nose portion include non-flat soil contacting surfaces defining opposed outwardly and upwardly directed surfaces converging in the forward direction. The surfaces, which can be concave upwardly and outwardly, define soil throwing action that progressively increase in the rearward direction. A shallow sweep leading area provides greater upward soil lift and lesser outward soil throw compared to trailing areas. At high speeds, the leading area provides vertical lift and substantial outward throw of soil, and at lower speeds the progressive action surfaces provide additional outward throw of soil to facilitate necessary soil mixing action.
    Type: Application
    Filed: May 14, 2004
    Publication date: November 17, 2005
    Inventor: Benoit Poutre
  • Publication number: 20050161239
    Abstract: Sweep retaining structure includes a retainer having a contact end biased towards the sweep. The sweep includes two or more spaced end-receiving areas to accommodate changes in the mounted sweep position. In one embodiment, the retainer is a wire made of spring steel having a contact end biased against the underside of the sweep. In one embodiment, the underside of the sweep includes a series of stepped portions. As the sweep is forced on the adapter on the shank, the contact end springs into retaining position on the stepped portion that aligns with the spring end when the sweep is in the mounted position. The sweep can be attached loosely by hand in an initial position with operating forces moving the sweep to a wedge locked position.
    Type: Application
    Filed: March 17, 2005
    Publication date: July 28, 2005
    Inventors: Benoit Poutre, Richard Hook, James Noonan, Donald Peck, Michael Egert
  • Publication number: 20050044681
    Abstract: A sweep removal tool includes a pair of claws with angled surfaces conforming to the top edge of the sweep stem to locate the tool and help distribute sweep removal impact forces. A retainer depressor centered below the claws moves the retainer to a release position and slides between the angled surfaces during sweep removal. The depressor shape assures desired tine contact, even when the sweep is at an extreme position in the range of possible mounted positions, while preventing damaging contact as the depressor moves relative to the retainer during sweep removal. A curved surface extends between the claws and the depressor and facilitates free pivoting of the tine about the claw contact points to depress the retainer. The tool bottoms against the sweep when the depressor is moved to the release position to prevent retained damage from removal impact forces.
    Type: Application
    Filed: August 29, 2003
    Publication date: March 3, 2005
    Inventors: Benoit Poutre, Donald Peck, Mark Beeck
  • Publication number: 20050023013
    Abstract: Sweep retaining structure includes a retainer having a contact end biased towards the sweep. The sweep includes two or more spaced end-receiving areas to accommodate changes in the mounted sweep position. In one embodiment, the retainer is a wire made of spring steel having a contact end biased against the underside of the sweep. In one embodiment, the underside of the sweep includes a series of stepped portions. As the sweep is forced on the adapter on the shank, the contact end springs into retaining position on the stepped portion that aligns with the spring end when the sweep is in the mounted position. The sweep can be attached loosely by hand in an initial position with operating forces moving the sweep to a wedge locked position.
    Type: Application
    Filed: October 21, 2003
    Publication date: February 3, 2005
    Inventors: Benoit Poutre, Richard Hook, James Noonan, Donald Peck, Michael Egert
  • Publication number: 20030150628
    Abstract: Sweep retaining structure includes a spring wire retainer with a base supported in a groove on the underside of the wedge support which mates with a stem portion of the sweep. The wedge support is apertured, and a central curved portion of the retainer passes through the aperture and supports a sweep-contacting end above the surface of the wedge support. The end is biased toward a contact area on the sweep to engage the area and eliminate sweep loss problems by preventing the sweep from slipping downwardly from the mounted position. To remove the sweep, a tool is inserted through the slot to depress the retainer end, and the sweep is forced off the wedge support. A raised area on the sweep directs soil away from the retainer and contact area to reduce wear and eliminate depression of the end during operation. The underside of the raised area positions the wire end and provides bend-resisting support for the wire.
    Type: Application
    Filed: February 28, 2003
    Publication date: August 14, 2003
    Inventors: Richard David Zaun, Benoit Poutre, Donald Ray Peck, Mark Beeck, Richard Wayne Hook, James Michael VanAuwelaer, Jarrod Ray Ruckle
  • Publication number: 20030075344
    Abstract: Sweep retaining structure includes a spring wire retainer with a base supported in a groove on the underside of the wedge support which mates with a stem portion of the sweep. The wedge support is apertured, and a central curved portion of the retainer passes through the aperture and supports a sweep-contacting end above the surface of the wedge support. The end is biased toward a contact area on the sweep to engage the area and eliminate sweep loss problems by preventing the sweep from slipping downwardly from the mounted position. To remove the sweep, a tool is inserted through the slot to depress the retainer end, and the sweep is forced off the wedge support. A raised area on the sweep directs soil away from the retainer and contact area to reduce wear and eliminate depression of the end during operation. The underside of the raised area positions the wire end and provides bend-resisting support for the wire.
    Type: Application
    Filed: October 19, 2001
    Publication date: April 24, 2003
    Inventors: Richard David Zaun, Benoit Poutre, Donald Ray Peck, Mark Beeck, Richard Wayne Hook, James Michael VanAuwelaer, Jarrod Ray Ruckle