This application is the US National Stage Entry Application of International Application PCT/EP2018/050594, filed Jan. 10, 2018, now published as WO/2018/134103 which claims priority to European Applications EP17151799.8 and EP17151794.9, both of which were filed on Jan. 17, 2017, the entire contents of which are incorporated herein by reference.
The present disclosure relates to wet shavers comprising a cartridge pivotable about two pivot axes, and especially to shavers including a shaving handle system including connectors adapted to enable pivoting of the cartridge around the two axes. Specifically, the disclosure relates to special types of connectors usable with shaving cartridges wherein the shaving cartridges are capable of pivoting about two distinct axes with respect to the shaver handles.
There are well known safety razors where the cartridge is mounted on the handle with freedom to move about a rocking axis, which is transverse to the cutting edge of the cartridge or is mounted for movement about an axis parallel with the cutting edge of the cartridge.
Oftentimes, the handle may include a yoke member and a spring adapted for biasing the yoke member to a central position, and also deforming resiliently to permit rocking of the cartridge about the rocking axis.
The present disclosure involves a connector for attaching a cartridge to a handle. The connector is adapted to rotate around a rocking axis with respect to the handle. The connector comprises at least a pair of arms adapted to attach the connector to the cartridge, a holder adapted to attach the connector to the handle, and at least a pair of resilient lateral tongues protruding from the connector and positioned symmetrically with regard to a connector axis. One of the lateral tongues is adapted to flex when the connector is rotated in a first direction around the rocking axis, and at least another of the other o lateral tongues is adapted to flex when the connector is rotated in a second direction around the rocking axis.
Many modern wet shavers have connectors facilitating the cartridge to pivot around an axis parallel with blades. Some shavers provide connectors additionally enabling the cartridge to rotate about a second axis. The mechanisms adapted to allow for such rotation around the second axis are rather complex and could be complicated to manufacture.
The present disclosure introduces a connector which connects the cartridge with the handle in a simple manner, thus allowing the shaver to be manufactured in large numbers in a short time with minimum costs, thereby saving of material in the process. The connector includes at least two lateral tongues which generate biasing forces to urge the connector back into its non-rotated position as the connector rotates about the rocking axis. The at least two lateral tongues are independent of each other to ensure smooth rotation of the connector (and cartridge).
Further embodiments of the connector may include one or more of the following additional features:
each lateral tongue comprises at least a curved section, such that the curved section is adapted to stretch into a linear shape during flexing of the lateral tongue;
the lateral tongues are substantially U-shaped;
the connector is adapted to rotate in the first and second directions until reaching an end rotated position, and wherein at the end rotated position of the connector both lateral tongues are adapted to be elastically deformed simultaneously;
the connector comprises a central tongue extending along the connector axis, where the pair of elastic tongues is integrally formed with the central tongue;
the central tongue, when flexed, generates a return torque between 0 Nmm and 30 Nmm;
the curved section of each lateral tongue, when flexed, is stretched into a linear shape extending along a line which forms an angle between 0-30 degrees with the connector axis;
the connector is made of plastic;
at least the lateral tongues are made of metal.
A shaver comprising the connector according to one of the above embodiments may be designed such that the shaver comprises a cartridge coupled with the arms of the connector, and a handle coupled with the holder of the connector and optionally such that:
the connector is permanently attached to the handle;
the connector is removably attached to the handle;
the connector is fixedly connected to the cartridge;
the connector is releasably connected to the cartridge.
At the same time, there is contemplated a novel shaving handle system for holding a cartridge, which could be implemented with the above described connector in accordance with the detailed description and
Alternatively, a shaving handle system may comprise a handle extending longitudinally along a longitudinal handle direction between a proximal end and a distal end. The shaving handle system comprises a connector adapted to rotate around a rocking axis with respect to the handle, the connector comprising two lateral tongues extending forwardly from the proximal end of the handle. The handle comprises a deflecting means for flexing either one of the lateral tongues. The lateral tongues are abutting the deflecting means, such that when the connector is rotated in a first direction around the rocking axis with respect to the handle, one of the two lateral tongues is flexed by the deflecting means, and such that when the connector is rotated in a second direction around the rocking axis with respect to the handle, the other of the two lateral tongues is flexed by the deflecting means.
Further embodiments of the above defined shaving handle system may include one or more of the following additional features:
the shaving handle system further comprises an elongated support and a pair of hooks, the elongated support and the pair of hooks extending from the proximal end of the handle for movably attaching the connector to the handle; the way how the connector and the handle are connected to each other improves the quality of the sliding movement of the connector with respect to the handle, since the less parts are present to obstruct such movement, the more fluent the movement appears to be; also, with the more complex structural alternatives known from the field of shavers, there exists a high degree of probability that hair debris and water may gather in some parts of the product; this is largely avoided by the constructional simplicity of the above mentioned shaving handle system in that it allows the shaver to be properly rinsed; wherein:
the handle has an upper face and a lower face, the upper face being opposite to the lower face, wherein the elongated support extends from the lower face and the hooks extend from the upper face. In this shaving handle system, the elongated support and the pair of hooks are adapted to reliably hold the connector in position and allowing it to rotate in an unobstructed fashion; the position of the elongated support at the lower face of the handle and the pair of hooks at the upper face of the handle ensures steady position of the connector with respect to the handle on one hand, and smooth rotation of the connector with respect to the handle on the other hand; one purpose of the present disclosure is to ensure smooth unobstructed rotational movement of the cartridge about the axes both from and into a neutral position; both these goals are achieved by simple structural features;
the connector comprises a pair of elongated arms, each arm having an end, wherein a pivot axis is parallel to the line connecting the end of the arms, whereas the rocking axis is transverse to the line connecting the ends of the arms, the connector being movably attached along the rocking axis to the handle; with this configuration of the two axes around which the cartridge moves, the above attachment of the connector to the handle is especially effective; the movement of the cartridge about the pivot axis can be achieved by use of shell bearings, while the movement of the cartridge about the rocking axis can be achieved by swivelling connector; thereby, the two rotational movements are independent of each other and less complex; reducing complexity of the structure in this way leads to smoother movement; wherein:
the connector is movable along the rocking axis between a first end position and a second end position;
each of the arms comprises a bearing structure;
the pivot axis and the rocking axis intersect each other; such mutual orientation of axes offers more comfortable shaving compared to other orientations;
the proximal end of the handle comprises an oval depression, and the connector is provided with an arcuate face matching side to side with the shape of the oval depression, the arcuate face of the connector being adapted to rock along the oval depression of the handle around the rocking axis transverse to the line connecting the ends of the arms; the oval depression in the handle and the arcuate face of the connector are adapted to maintain constant contact with each other, thus ensuring proper alignment of the individual components during the process of shaving;
the arms extend substantially in a common plane, and the connector comprises a flexible central tongue extending substantially in the same plane as the two arms;
the central tongue and each of the lateral tongues are separated and independent of each other;
the elongated support extends forwardly from the middle of the width of the proximal end of the handle, the support comprising an upwardly protruding block for fixing the connector to the handle, and the deflecting means in the form of a deflector forming the end of the elongated support and being curved in the upward direction;
the shaving handle system comprises two elongated supports extending forwardly from each side of the proximal end of the handle, and the elongated supports each comprise an upwardly protruding step extending along the entire width of the elongated support and adapted to fix the connector to the handle, and the deflecting means in the form of a pin located at the end of the elongated support and protruding in the upward direction;
the connector further comprises reinforcing ribs extending along the length of the arms and towards the center of the connector, the reinforcing ribs being adapted to engage with the steps of the elongated supports, thereby fixing the connector to the handle;
the shaving handle system comprises a stud protruding upwardly from the connector, wherein the connector is adapted to rock from a rest position to the first end position or the second end position, wherein in the first end position the rocking of the connector is stopped by the stud coming into contact with a first of the pair of hooks, and wherein in the second end position the rocking of the connector is stopped by the stud coming into contact with a second of the pair of hooks;
the width of the elongated support taken along the line connecting the ends of the arms is not greater than one third of the width of the proximal end of the handle taken along the line connecting the ends of the arms; this feature aims to provide an increased effectivity and reliability of the attachment of the connector to the handle, while leaving as much space as possible for an unobstructed movement of the connector with respect to the handle; using less material implies less cost in the production, and also less potential friction between the connector and the handle, which could otherwise disrupt the rotational movement; reduced friction may be achieved with various materials, such as plastic materials.
The shaving handle system as defined above is adapted for use in a shaving razor having a cartridge comprising at least one blade having a blade edge extending along a blade edge axis, where according to some embodiments, the shaving razor may comprise one or more of the following features:
the connector of the shaving handle system comprises a pair of elongated arms, each arm having an end, wherein a pivot axis is parallel to the line connecting the end of the arms, whereas a rocking axis is transverse to the line connecting the ends of the arms, the connector being movably attached along the rocking axis to the handle;
the blade edge axis is parallel to the pivot axis;
the cartridge and the connector are attached to each other such that the cartridge and the connector rotate simultaneously around the rocking axis; and
the cartridge is pivotally attached to the connector along the pivot axis.
The following description of the main embodiments of the present disclosure is made with reference to the accompanying drawings, where the same reference numbers denote identical or similar elements.
As can be also seen in
As visible in
Referring further to
The connector 40 is adapted for attaching the cartridge 30 to the proximal end 20B of the handle 20. For this purpose, the connector 40 is formed by a pair of arms 46. The arms 46 extend substantially between the handle 20 and the cartridge 30. Each arm 46 has an end 46A, which may be constructed as a shell bearing, i.e. as holder having a rounded surface. The ends 46A of the arms 46 can be seen as defining an imaginary line P. The line P spans between the ends 46A of the arms 46 and creates an imaginary connection between the two ends 46A of the arms 46. In an embodiment, the pivot axis X is defined as an axis, which is parallel to the line P connecting the ends 46A of the arms 46. The handle system may further comprise a rocking axis Z, which is transverse to the line P connecting the ends 46A of the arms 46, such that the connector 40 is movably attached along the rocking axis Z (best visible in
The connector 40 extends in a plane PY, defined by the line P and a connector axis Y. Line P connects the ends 46A of the arms 46. With the connector 40 in neutral non-rotated position, the connector axis Y is identical with the longitudinal handle direction L. When the connector 40 is rotated around the rocking axis Z in the direction of the arrow F, the connector axis Y forms an angle R with the longitudinal handle direction L. This is illustrated in
In some embodiments, the cartridge 30 is adapted to perform a movement from a non-pivoted position up to an extreme pivoted position. The extreme pivoted position of the cartridge 30 may correspond to rotation about a pivot angle A up to 40° (and could equal for example to 20°, or 30°). The pivot angle A is a difference angle between the non-pivoted and the extreme pivoted position of the cartridge 30, corresponding to the rotation about the pivot axis X.
The above definition of the pivot axis X includes various possible positions of the pivot axis X. The pivot axis can be located, such that it intersects the inside of the cartridge 30, or it may lie outside the cartridge body in front of the blade edges 35A, such that it lies substantially within the surface of the skin during shaving. The pivot axis X may be parallel with the shaving plane. The pivot axis X lies close to the shaving plane or is part of the shaving plane. The pivot axis X may be identical with a blade edge axis B. The rocking axis Z may also be perpendicular to the pivot axis X.
Throughout the present paragraph reference is made to the cartridge 30 in the neutral non-pivoted position. In this situation, the rocking axis Z may be parallel with the shaving plane S, or may be included in the shaving plane S. Alternatively, the rocking axis Z may form an angle with the shaving plane S. When the cartridge is not pivoted about the pivot axis X, the rocking axis Z may intersect two or more blade edge axes B, where two or more blades 35 are provided in the cartridge 30. The pivot axis X and the rocking axis Z may intersect each other. This point of intersection of the pivot axis X and the rocking axis Z can lie in the shaving plane S. In some embodiments, the point of intersection of the pivot axis X and the rocking axis Z may be located on a blade edge axis B. In other embodiments, the intersection of the pivot axis X and the rocking axis Z may lie above or below the shaving plane S (the shaving plane being defined in
The rocking axis Z, however, may also form an angle with the plane PY taking into account slight allowable variations in the position of the rocking axis Z. For example, the right angle between the rocking axis Z and the plane PY could be varied by about 2°, 4°, 6°, or 8°, as it is applied on true position tolerancing for axis placement in the Geometric, Dimensioning and Tolerancing (GD&T) standards.
As shown in
Both embodiments of
The cartridge 30 further includes one or two cams 31, or cam surfaces, adapted to cooperate with a central elastic tongue 44. The central elastic tongue 44 generates biasing force acting on the cartridge 30, when the cartridge 30 is pivoted about the pivot axis X, thus forcing the cartridge 30 to return to a non-pivoted position. The non-pivoted position corresponds to such a position of the cartridge 30, where no shaving forces are applied thereto, and where the cartridge 30 is not pivoted with respect to the pivot axis X, such that the cartridge 30 is in a neutral state. The cartridge 30 in the non-pivoted position is illustrated for example in
As can be seen in
From the center part of the arcuate face 42 forwardly towards the cartridge 30 extends a central tongue 44. The central tongue 44 extends generally parallel with the two arms 46 and is located in the middle between the two arms 46. Adjacent to the central tongue 44, there extend two lateral tongues 45. The central tongue 44 lies in the same plane PY as the two arms 46. It may also lie above or below this plane PY, being substantially parallel to this plane PY. The lateral tongues 45 are located between the central tongue 44 and the corresponding arm 46. Each lateral tongue 45 extends forwardly from the arcuate face of the connector 40 toward the cartridge 30. The lateral tongues 45 extend generally in the same direction as the two arms 46 and the central tongue. The lateral tongues 45 can be shorter than the central tongue 44. The length of the lateral tongues 45 ranges between 50-90% of the length of the central tongue 44. The lateral tongues 45 may be located either in the same plane PY as the arms 46, or in a plane extending below the plane PY. Each lateral tongue 45 is made from elastic material such that flexing of the lateral tongue 45 is possible. The elastic material could be for example plastic.
The connector 40 may comprise reinforcing ribs 46B protruding from each arm 46 towards the center of the connector 40, where the elastic tongues 44, 45 are located. The reinforcing ribs 46B may extend along most of the length of the arms 46. The reinforcing ribs 46B span along 30-90% of the length of the arms 46. The reinforcing ribs 46B may have the same length as the lateral tongues 45. For example, the reinforcing ribs 46B may be half of the length of the arms 46. The connector 40 may also include a stud 43 protruding upwards from the central portion of the arcuate face 42. The sides of the connector 40 may be symmetrical with respect to a plane of symmetry passing through the central tongue 44. This plane of symmetry can be transverse to the plane PY.
Referring to
Generally, the elongated support 22, 24 extends from a portion of the proximal end 20B of the handle 20, such that it supports the connector 40 from below, while the pair of hooks 21A support the connector 40 from above. The elongated support 22, 24 extends from lower face 20D of the proximal end 20B of the handle 20. The elongated support 22 may have a beam shape, which can be seen in
In an alternative embodiment, the elongated support 24 may have a platform shape, such as that in
The beam support 22 and the platform support 24 are only given examples and may be modified, or the features pertaining to one type of support may appear on the other type of elongated support and may be combined with other features. For example, the deflector 22A of the beam support 22 may be replaced with a pin 25 of the platform support 24, since they serve a similar function. The beam support 22 may be provided in pair and can extend from the sides of the handle 20, instead of extending from the central part. Similarly, single platform support 24 may extend from the central portion of the proximal end 20B. Similarly, the reinforcing ribs 46B cooperating with steps 24B, or the block 22B cooperating with the arcuate face 42 could appear on either type of the elongated support. In some embodiments, the number of elongated supports can be three (extending from the sides and from the center) or more.
The elongated support 22, 24 may have a width WB, WP. The width WB, WP of the elongated support 22, 24 is not greater than one third of the width WH of the proximal end 20B of the handle 20. The width WH of the proximal end 20B of the handle is taken along the line P connecting the ends of the arms 46. Since the line P may rotate together with the connector 40, the width WH is taken along the line P, when the connector is in non-rotated position. For example, the width WB, WP of the elongated support 22, 24 could be one fourth of the width WH of the proximal end 20B. Similar arrangements are possible with regard to the width (not showed on the drawings) of the hooks 21A. The hooks 21A should be no wider than one third of the width WH of the proximal end 20B, for example can have the width about one fourth of the width WH of the proximal end 20B.
The disclosure provides means for rotating the cartridge 30 around two pivot axes by using simple mechanical components and ensures quality of the movement by increasing its smoothness, thereby leading to a better shaving experience. The two different pivotal movements should be independent from each other. This also applies to biasing forces applied, when the cartridge 30 is being returned to the non-pivoted (referring to the pivoting about the pivot axis X) and/or non-rotated position (referring to the rotation about the rocking axis Z). In other words, these biasing forces should also be independent of each other.
The arcuate face 42 of the connector 40 is adapted to swivel along the oval depression of the handle 20, such that the connector 40 rotates with respect to the handle 20 around the rocking axis Z, as the shaving forces are applied to the cartridge 30. In general, the elongated support 22, 24 comprises deflecting means. The connector 40 comprises two lateral tongues 45 extending in a direction substantially perpendicular to both the pivot axis X and the rocking axis Z. The lateral tongues 45 abut the deflecting means, such that when the cartridge 30 is rotated in a first direction around the rocking axis Z, one of the two lateral tongues 45 is flexed by the deflecting means, and such that when the connector 40 is rotated in a second direction around the rocking axis Z, the other of the two lateral tongues 45 is flexed by the deflecting means. The flexion of each of the lateral tongues 45 generates biasing force returning the rotated connector 40 into the non-rotated position. Since the cartridge 30 and the connector 40 are attached to one another, the rotation of the connector 40 is in each case accompanied with the corresponding rotation of the cartridge 30. The central tongue 44 and each of the lateral tongues 45 are separated and independent of each other.
The next paragraphs will describe the rotational movement of the connector 40 around the rocking axis Z, when the handle 20 is provided with an elongated support 22 extending from the middle of the width WH of the proximal end 20B of the handle 20, corresponding to
The elongated support 22 of
As illustrated in
In the non-rotated position, the angle R between the connector axis Y and the longitudinal handle direction L is equal to zero (viewed from a top view). Depending on the embodiment, the angle R in an end rotated position could range from 10° to 45°. For example, values of the angle R corresponding to the end rotated position may be, for instance, 20° or 30°.
In the non-rotated position of
In both embodiments of
In both embodiments of
A further embodiment of the present disclosure is described with reference to
It is repeated that the connector 40 may include at least two arms 46 for attaching and holding the cartridge 30 at the proximal end 20B of the handle 20. Each arm 46 has an end which may be constructed as shell bearings 46A or any alternative holding means.
The shell bearings 46A facilitate pivotal movement of the cartridge 30 around the pivot axis X. The line between the arms 46 connecting the shell bearings 46A defines line P. At the same time, the connector 40 is adapted for rotational movement around the rocking axis Z as will be described in more detail below. The connector extends in the plane PY, where the Y-axis is a connector axis, which is identical with the longitudinal handle direction when the connector 40 is in the neutral position. The connector axis Y extends through the middle of the connector 40 and represents an axis of symmetry for the connector 40 as of
According to
At the end facing the handle 20, the connector 40 is provided with a holder 48. The holder 48 could be constructed as two lateral walls protruding symmetrically from the connector body 42 towards the handle 20 and connected by a back wall extending in between the two lateral walls. Each lateral wall is parallel with the connector axis Y. Each lateral wall of the holder 48 may be provided with a projection 49, where each projection 49 facilitates rotatable connection with the handle 20. Each projection 49 may slidably fit into a groove 26 positioned at the proximal end 20B of the handle 20 below the holder 48. In
One of the technical features of the holder 48 is that the overall structure of the connector 40 is such that the body 42 and the arms 46 form a relatively small compact unit substantially outside the handle body. The holder 48 may be the only component of the connector 40 protruding inside the handle body in order to facilitate the connection between the handle 20 and the connector 40. This simplifies the construction and reduces risk of occurrence of faulty product during manufacture or breaking of the shaver 10 during use. Also, the holder 48 not only facilitates connection to the handle 20, but also holds the central tongue 44. The central tongue 44 can protrude as far as from the back wall of the holder 48, thus allowing for the central tongue 44 to be longer. The longer central tongue 44 is more sensitive to the shaving forces applied to the cartridge 30 and lead to more comfortable shaving. Both lateral tongues 45 (which will be more described later) and the central tongue 44 protrude from the same part of the connector 40, namely from the holder 48. This also enables that the central tongue 44 and the lateral tongues 45 are formed as integral part or unit.
According to
In embodiments, each lateral tongue 45 comprises at least four distinct sections, namely a fixing section 45A, a U-shaped section 45B, a curved section 45C and a tip section 45D respectively as illustrated in
The fixing section 45A may be rigidly fixed to the holder 48, for example to the edge where the lateral wall and the back wall of the holder 48 connect. The fixing section 45A may extend parallel to the lateral walls of the holder 48 and/or substantially in the direction towards the arms 46 (toward the cartridge 30). The fixing sections 45A can be made from a rigid non-elastic material in order to facilitate better stability of the lateral tongues 45. In that case, only the U-shaped section 45B and/or the curved section 45C can be made elastic.
The U-shaped section 45B is curved such that the bottom of the U-shape faces towards the arms 46. The U-shaped section 45B is made from an elastic resilient material, such as plastic. The ends of the U-shape are respectively adjacent to the fixing section 45A and the curved section 45C. The curved section 45C extends in the opposite direction than the fixing section 45A, i.e. away from the arms 46. Due to the U-shaped section 45B, the lateral tongues 45 have the overall shape of the letter U.
The curved section 45C is curved such that it progressively converges to the connector axis Y, resulting in the end of the curved section adjacent tip section 45D being closer to the connector axis Y than the end of the curved section adjacent the U-shaped section 45B. The curved sections 45C have non-zero curvature, i.e. they both curve towards and converge to the connector axis Y. The curved sections 45C are symmetrical and their curvature is the same. The curved sections 45C are made of an elastic resilient material, such as plastic.
In order to achieve better formability of the lateral tongues 45 and smoother changing of the shape of the lateral tongues 45, the curved portion 45C may have lower modulus of elasticity than the U-shaped portion 45B, i.e. the U-shaped portion 45B could be stiffer when compared to the curved portion 45C.
The tip portions 45D are linear, i.e. having no curvature. The tip portions 45D continuously connect to the respective curved portions 45C and continue to converge toward the connector axis Y (however, unlike in case of the curved sections 45C, this convergence is no longer progressively increasing). In the neutral position of the connector 40 each respective tip portion 45D bears against a post 27. The posts 27 protrude upright from the base of the proximal end 20B of the handle 20 and are positioned substantially symmetrically with regard to the longitudinal handle axis. Similar to the fixing sections 45A, the tip sections 45D can be rigid and non-elastic as opposed to the U-shaped section 45B and curved section 45C, thereby leading to smoother transfer of shaving forces from the rotated cartridge 30 into the deforming portions of the lateral tongues 45. In some embodiments, even the U-shaped section 45B might be rigid and the elasticity of the lateral tongues 45 may lie entirely in the curved sections 45C.
Turning now to the operation of the lateral tongues 45 and with reference to
Referring to
The provision of the left lateral tongue 45 being adapted to lean against the side wall 28A and generate elastic forces of its own in addition to the elastic forces already generated by the right lateral tongues improves the process of rotation of the connector 40, especially at the end rotated positions. Immediately after the shaving forces are generated, the right lateral tongue stretches and generates biasing forces. As soon as the end rotated position is being approached by the connector 40, the rotation is smoothly decelerated and finally stopped by the left lateral tongue 45 leaning against the left side wall 28A. Due to this mechanism, the stopping of the connector 40 at the end rotated position is not sudden, therefore the user does not sense that the end position has been reached. Instead, the user is provided with the sensation of the cartridge 30 flowing along the skin without experiencing sharp changes in motion. The entire shaving experience is improved, especially the motion of the cartridge 30 is smoother. This is relevant especially when the cartridge 30 is allowed to rotate around two axes, when the cartridge 30 complexly adapts to the shape of the skin of a user. The user does not experience sudden changes in motion of the cartridge 30 and the control of the shaver 10 is better.
The left and right lateral tongues 45 are both adapted to get elastically deformed during rotation of the connector 40, and both contribute to the biasing effect that causes the connector 40 to return to the neutral position. Therefore, all the biasing force is not generated only by one of the pair of the lateral tongues and the biasing force becomes better distributed with the resulting effect contributing to increased smoothness of the rotation of the connector 40.
Specifically, the curved portions 45C can be deformed both by stretching due to the posts 27 and by deformation due to the left side wall 28A of the handle 20. Hence, it should be noted that the entire operation of the mechanisms, as described with reference to
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