The present invention relates generally to toothbrushes and, more particularly, bristle-mounting systems designed to relieve bristle strain to extend bristle life.
Toothbrushes are well known and commonly employed to maintain dental hygiene. Toothbrushes are routinely used daily or more often to brush teeth to remove food particles, plaque, and other debris from around the teeth and gums. Most dental hygiene professionals recommend brushing the teeth by moving the toothbrush in a reciprocal lateral direction with the toothbrush held in a general horizontal position during brushing to facilitate safe and efficient cleaning of the teeth and gums.
A standard toothbrush includes bristles mounted in a head. The head provides support for the bristles. The bristles are mounted on the toothbrush in an upright orientation to enable the brushing ends of the bristles to engage the teeth when the toothbrush is used to brush teeth. During the use of a toothbrush, the bristles inherently bend repeatedly. Following prolonged use, the repeated bending of the bristles causes the bristles to splay permanently outwards from the upward orientation and can cause some of the bristles to break where they bend at their attachment point to the head reducing bristle density, whereupon the toothbrush is discarded and replaced.
In the United States alone it is estimated that nearly a billion toothbrushes, representing more than 50 million pounds of waste, are discarded and end up in land fills every year. These toothbrushes are made from a combination of plastic, rubber, nylon, and a combination of plastic and cardboard for the packaging. These materials are largely not biodegradable. Therefore, they remain in landfills indefinitely. Furthermore, discarded toothbrushes often end up in the oceans, washed up on our beaches, or consumed by marine life. Accordingly, there is a need in the art for a toothbrush having a bristle-mounting system that retards bristle bending relative to the head for retarding bristle strain and breakage for prolonging bristle competency and bristle life for, in turn, prolonging the useful life of the toothbrush for reducing the adverse environmental impacts that discarded toothbrushes inflict on the environment.
According to the principle of the invention, a toothbrush includes an elongate body including a handle and a head formed with bristle assemblies. The bristle assemblies each include an upper elastic boot, a lower elastic boot, an elastic collar, an intermediate layer, and a tuft of bristles bound by a coupling. The upper elastic boot and the lower elastic boot are formed on either side of the intermediate layer. The elastic collar extends through the intermediate layer from the lower elastic boot to the upper elastic boot. The coupling is in the lower elastic boot. The tuft of bristles extends from the coupling in the lower elastic boot through the elastic collar and through the upper elastic boot and beyond the upper elastic boot to a brushing extremity. The upper elastic boot provides lateral elastic compliance between the upper elastic boot and the tuft of bristles through the upper elastic boot, the lower elastic boot provides lateral elastic compliance between the lower elastic boot and the coupling in the lower elastic boot, and the intermediate layer pinches the elastic collar against the tuft of bristles through the elastic collar elastically and pivotally retaining to the elastic collar the tuft of bristles through the elastic collar. The intermediate layer is formed with an inwardly-directed continuous edge against and surrounding the elastic collar between the upper elastic boot and the lower elastic boot, and is sufficiently rigid along a plane perpendicular relative to the elastic collar and the tuft of bristles through elastic collar to enable the inwardly-directed continuous edge to pinch the elastic collar against the tuft of bristles through the elastic collar. The upper elastic boot surrounds the tuft of bristles extending through the upper elastic boot. The lower elastic boot surrounds the coupling. The coupling is enclosed in the lower elastic boot. The upper elastic boot, the lower elastic boot, and the elastic collar are coaxial. The upper elastic boot, the lower elastic boot, and the elastic collar are integral to form a unitary elastic body.
Referring to the drawings:
Turning now to the drawings, in which like reference characters indicate corresponding elements throughout the several views, attention is first directed to
In
Each bristle tuft 32 and its assemblage with block 40 and layer 42 define a bristle assembly 50. The bristle assemblies 50 are identical in every respect, operate identically to one another, and operate independently from one another. Accordingly, the details of one bristle assembly 50 of toothbrush 20 will now be discussed in detail, with the understanding that the ensuing discussion applies equally to each of the bristle assemblies 50.
In
Bristles 30 are made of a material that is inherently resilient and flexible. In an illustrative embodiment, bristles 30 are made of a metal or metal alloy, as described in U.S. Pat. No. 6,442,785, the entire contents of which are incorporated herein by reference. Alloy bristles are flexible, resilient, hydrophobic, and can reach deeper. A preferred alloy exhibits inherent superelasticity at temperature ranges experienced under typical use of a toothbrush, such as NiTi alloy including 55.6% Ni and 44.4% Ti. In an alternate embodiment, bristles 30 can be fashioned of nylon or other material or combination of material commonly used in standard toothbrushes.
Upper boot 52 and lower boot 54 are on either side of layer 42 and opening 64, are integral with bock 40 formed around layer 42, and are carried or otherwise supported by layer 42. Upper boot 42, a circular, elongate collar, extends upright from upper surface 60 of layer 42, and lower boot 54, also a circular, elongate collar, extends downwardly from lower surface 62 of layer 42. Upper boot 52, lower boot 54, and collar 56 are integral to form a unitary elastic body 59. Collar 56, integral with upper and lower boots 52 and 54, extends through opening 64 of layer 42 from lower boot 54 to upper boot 52. Upper boot 52, lower boot 54, collar 56, and opening 64 are coaxial.
Coupling 58 is in lower boot 54, and is enclosed in lower boot 54 in head 24. Tuft 32 of bristles 30 extends from coupling 58 in lower boot 54 through collar 56 and through upper boot 52 and beyond upper boot 52 to brushing extremity 34. Upper boot 52 surrounds tuft 32 of bristles 30 extending through upper boot 54. Lower boot 54 surrounds coupling 58. Upper boot 52, being elastic, provides lateral or sideways elastic compliance between upper boot 52 and tuft 32 of bristles 30 through upper boot 52. Lower boot 54, also being elastic, provides lateral or sideways elastic compliance between lower boot 54 and coupling 58 in lower boot 54. Coupling 56 is in lower boot 54 under opening 64 of layer 42, and cap 44 under coupling 56 and lower boot 54 encloses coupling 56 in lower boot 54 of head 24.
Layer 42 pinches collar 56 against tuft 32 of bristles 30 through collar 56 elastically and pivotally retaining tuft 32 of bristles 30 through collar 56 to collar 56, according to the principle of the invention. Layer 42 is formed with inwardly-directed continuous edge 42A that defines opening 64. Edge 42A is against and surrounds collar 56 between upper boot 52 and lower boot 54. Layer 42 resides along plane P that is perpendicular relative to collar 56. Layer 42 is integral with head 24 and is sufficiently rigid along plane P that is perpendicular relative to collar 56 and to tuft 32 of bristles 30 through collar 56 when tuft 32 of bristles 30 are at rest in
Upper and lower boots 52 and 54 work independently from one another with respect to tuft 32 of bristles 30 and coupling 56, respectively. As for upper boot 52, upper boot 52 receives thereagainst tuft 32 of bristles 30 through upper boot 52 when tuft 32 of bristles 30 flex from the at-rest position in
Again, tuft 32 of bristles 30 is in the at rest position when bristles 30 of tuft 32 are free from the influence of brushing, such as when toothbrush 20 is at rest and not in use. Upper boot 52, lower boot 54, and collar 54 resume their original shapes when tuft 32 of bristles 30 is free from the influence of brushing, and elastically reset tuft 32 of bristles 30 to the at-rest position in
Accordingly, collar 56 deforms elastically by tuft 32 of bristles 30 displacing pivotally therein, upper boot 52 deforms elastically side-to-side in the directions of double arrowed line A in
Collar 56 resumes its original or at-rest shape in
In sum, toothbrush 20 includes elongate body 22 including handle 26 and head 24 formed with bristle assemblies 50. Each bristle assembly 50 includes upper elastic boot 52, lower elastic boot 54, elastic collar 56, intermediate layer 42, and tuft 32 of bristles 30 bound by coupling 58. Upper elastic boot 52 and lower elastic boot 54 are formed on either side of intermediate layer 42. Elastic collar 56 extends through intermediate layer 42, through opening 64 of intermediate layer 42, from lower elastic boot 54 to upper elastic boot 52. Coupling 58 is in lower elastic boot 54. Tuft 32 of bristles 30 extends from coupling 58 in lower elastic boot 54 through elastic collar 56 and through upper elastic boot 52 and beyond upper elastic boot 52 to brushing extremity 34. Upper elastic boot 52 provides lateral or side-to-side elastic compliance between upper elastic boot 52 and tuft 32 of bristles 30 through upper elastic boot 54, lower elastic boot 54 provides lateral or side-to-side elastic compliance between lower elastic boot 54 and coupling 58 in lower elastic boot 54, and intermediate layer 54 pinches elastic collar 56 against tuft 32 of bristles 30 through elastic collar 56 elastically and pivotally retaining to elastic collar 56 to tuft 32 of bristles 30 through elastic collar 56. Intermediate layer 42 is formed with inwardly-directed continuous edge 42A that defines opening 64 and that is against and surrounds elastic collar 56 between upper elastic boot 52 and lower elastic boot 54, and is sufficiently rigid along plane P perpendicular relative to elastic collar 56 and tuft 32 of bristles 30 through elastic collar 56 to enable inwardly-directed continuous edge 42A to pinch elastic collar 56 against tuft 32 of bristles 30 through elastic collar 56. Upper elastic boot 52 surrounds tuft 32 of bristles 30 extending through upper elastic boot 52. Lower elastic boot 54 surrounds coupling 58. Coupling 58 is enclosed in lower elastic boot 54. Upper elastic boot 52, lower elastic boot 54, and elastic collar 56 are coaxial. Upper elastic boot 52, lower elastic boot 54, and elastic collar 56 are integral to form unitary elastic body 59, which is a sub-body or sub-part of block 40.
The present invention is described above with reference to illustrative embodiments. However, those skilled in the art will recognize that changes and modifications may be made in the described embodiments without departing from the nature and scope of the present invention. Various further changes and modifications to the embodiment herein chosen for purposes of illustration will readily occur to those skilled in the art. To the extent that such modifications and variations do not depart from the spirit of the invention, they are intended to be included within the scope thereof.
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Number | Date | Country | |
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Parent | 15817197 | Nov 2017 | US |
Child | 16751935 | US |