Drive mechanism for interproximal flossing device
First Claim
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1. A drive mechanism for an interproximal flosser having an electric motor with a rotating drive shaft, the drive mechanism comprising:
- a link member having a first portion and a second portion, said first portion having a first end for attachment to said drive shaft in an off-center manner, and a second portion having a second end for receiving a tip member;
a laterally-extending pivot axis formed on said link member; and
a flexible hinge portion having a vertical bending axis formed on said link member;
wherein when the drive shaft rotates, said first end of said link member is rotated off-center from said drive shaft, creating vertical, lateral, and a combination of vertical and lateral movement, and said flexible hinge portion isolating said lateral movement from said tip member while transmitting to said tip member said vertical movement through said pivot axis, so that said tip member moves through a vertical arc; and
wherein said flexible hinge portion resiliently twists about its axial axis to isolate said lateral movement from said tip member motion.
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Abstract
An interproximal flossing device including a link member that isolates lateral from vertical rotational movement to transfer only translatory arcuate movement. This is done by the combination of a hinge and pivot structure. A tip attachment structure is also included for secure placement of the tip on the link member, and allows easy removal and replacement. A tip member removal structure is also included to allow for easy removal of the tip member from the link member.
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Citations
4 Claims
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1. A drive mechanism for an interproximal flosser having an electric motor with a rotating drive shaft, the drive mechanism comprising:
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a link member having a first portion and a second portion, said first portion having a first end for attachment to said drive shaft in an off-center manner, and a second portion having a second end for receiving a tip member;
a laterally-extending pivot axis formed on said link member; and
a flexible hinge portion having a vertical bending axis formed on said link member;
wherein when the drive shaft rotates, said first end of said link member is rotated off-center from said drive shaft, creating vertical, lateral, and a combination of vertical and lateral movement, and said flexible hinge portion isolating said lateral movement from said tip member while transmitting to said tip member said vertical movement through said pivot axis, so that said tip member moves through a vertical arc; and
wherein said flexible hinge portion resiliently twists about its axial axis to isolate said lateral movement from said tip member motion.
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2. A drive mechanism for an interproximal flosser having an electric motor with a rotating drive shaft, the drive mechanism comprising:
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a link member having a first portion and a second portion, said first portion having a first end for attachment to said drive shaft in an off-center manner, and a second portion having a second end for receiving a tip member;
a laterally-extending pivot axis formed on said link member; and
a flexible hinge portion having a vertical bending axis formed on said link member;
wherein when the drive shaft rotates, said first end of said link member is rotated off-center from said drive shaft, creating vertical, lateral, and a combination of vertical and lateral movement, and said flexible hinge portion isolating said lateral movement from said tip member while transmitting to said tip member said vertical movement through said pivot axis, so that said tip member moves through a vertical arc; and
wherein said flexible hinge portion resiliently bends about a vertical axis to isolate said lateral movement from said tip member, and said flexible hinge portion resiliently axially twists about its axial axis to isolate said lateral movement from said tip member motion.
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3. A drive mechanism for an interproximal flosser having an electric motor with a rotating drive shaft, the drive mechanism comprising:
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a link member having a first portion and a second portion, said first portion having a first end for attachment to said drive shaft in an off-center manner, and a second portion having a second end for receiving a tip member;
a laterally-extending pivot axis formed on said link member; and
a flexible hinge portion having a vertical bending axis formed on said link member;
wherein when the drive shaft rotates, said first end of said link member is rotated off-center from said drive shaft, creating vertical, lateral, and a combination of vertical and lateral movement, and said flexible hinge portion isolating said lateral movement from said tip member while transmitting to said tip member said vertical movement through said pivot axis, so that said tip member moves through a vertical arc; and
wherein said flexible hinge portion is a living hinge made of the same material as said first and second portions of said link member.
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4. A drive mechanism for an interproximal flosser having an electric motor with a rotating drive shaft, the drive mechanism comprising:
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a link member having a first portion and a second portion, said first portion having a first end, and a second portion having a second end for receiving a tip member;
a means for attaching said first end of said link member to the drive shaft in an off-center manner;
a laterally-extending pivot axis formed between said first and second portions; and
a flexible hinge portion having a vertical bending axis formed on said link member;
wherein when the drive shaft rotates, said first end of said link member is rotated off-center from said drive shaft, creating vertical, lateral, and a combination of vertical and lateral movement, and said flexible hinge portion isolating said lateral movement from said tip member while transmitting to said tip member said vertical movement through said pivot axis, so that said tip member moves through a vertical arc; and
wherein said means for attaching includes a pair of opposing flexible hinges, each having a laterally extending flexing axis formed on a sub-frame.
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Specification