The present invention generally relates to handles of hand-held devices, such as handles of walking sticks, umbrellas and fishing poles.
All kinds of pliable handles based on known technology have a flexible outer sheath disposed about the core member hermetically, and deformable gel that is disposed between the core member and the outer sheath. In the structure of the pliable handle shown in
For controlling the unfurling and furling in some hand-held umbrellas, there is a clasp in the central rod of an umbrella. The clasp is attached to a slip cover to which many subordinate rods of the umbrella are connected. When the umbrella is furled, the clasp locked the slip cover and made the umbrella furl. The clasp is connected to a button, and after pressing the button the clasp is detached from the slip cover to cause the umbrella to unfurl. When the umbrella is furled, the clasp locks the slip cover again. For beauty and convenience of use, a through opening is set in the side wall of the core member, containing a button. When people grip the pliable handle, they press the button with their thumb, causing the clasp to detach from the slip cover, and the umbrella to unfurl. According to the structure of above-mentioned pliable handle, a through opening contains a button in the side wall of the core member. When people grip the pliable handle, the gel may leak from the gap between the through opening and the button into the space between the inside of the core member and central rod of umbrella, which may hinder the movement of the button. Additionally, the gel may leak from the gap between the outer sheath and the button and go out of the outer sheath.
Some handles of hand-held devices, such as the handles of walking sticks and fishing poles, that are used at night and for caution, include a through opening set in the side wall of the core member, that contains a button battery, small bulb, luminous diode and so forth and a button switch. When people grip the pliable handle, they press the button switch with their thumb, causing the button battery and luminous components to form a closed circuit in series. The pliable handle radiates at night by the light of an electrical luminous component, so people who are far away can get the caution, and know the position of the user. Handles having a button component and the structure of the above-mentioned pliable handles have gel-leak problems.
The present utility model provides a pliable handle including a button, in which the gel does not leak into the inside of the core member and out of the outer sheath. The shape of the pliable handle also has an aesthetically pleasing appearance.
A pliable handle on which a button can be installed comprises a rigid core member with a bore set in the core member along the longitudinal axis of the core member for locking the bottom of the central rod. A flexible outer sheath is disposed about the core member hermetically, and a deformable gel is disposed between the core member and the outer sheath.
In the core member there is a space for containing the button which can move in a radial direction, and there is a through opening for receiving the button in the side wall of the core member, the side wall corresponds to the space and an outwardly extending annular flange or an outer annular flange is formed on the exterior surface of the core member corresponding to the through opening. An opening is set on the flexible outer sheath for receiving the outer annular flange of the core member. The opening of the outer sheath covers the outer annular flange of the core member.
For enhancing the seal between the outwardly extending annular flange of the core member and the upper opening of the outer sheath: an annular groove is set on the outer surface of the upper outer flange of the core member. An inwardly extending annular flange is set inside of the upper opening of the outer sheath. The inwardly extending annular flange of the outer sheath wedges into the groove of the outer flange of the core member.
A rigid cover board of a button bore, which corresponds to the through opening, is pressed on the vicinity of the opening of the outer sheath, the opening of the outer sheath hermetically covers the outer flange of the core member.
A structure of cover board, which is beautiful and assembled easily, includes:
The cover board has two securing flanges, which extend upwardly and downwardly respectively. The two securing flanges correspond to the top and the bottom of the core member respectively.
Specially, a rigid upper cap is set on the top of the core member, a rigid lower cap is set on the bottom of the core member; there are two outwardly extending annular shoulders around the top portion and the bottom portion of the core member, and there is a hermetical annular groove in the middle of each shoulder; two hermetical loops are set at the top and at the bottom of the core member, the two hermetical loops are parallel and extend inwardly. The upper hermetical loop on the top of the outer sheath is wedged into the gap between the core member and the upper cap, the lower hermetic loop on the top of the outer sheath is wedged into the hermetical groove of upper shoulder of the core member; the lower hermetic loop at the bottom of the outer sheath is wedged into the gap between the core member and the lower cap. The upper hermetical loop at the bottom of the outer sheath is wedged into the hermetical groove of lower shoulder of the core member. Further, the ends of securing flanges of the cover board are secured to the upper cap and lower cap, respectively.
Preferably, two bores are respectively formed on the upper cap and the said lower cap, the ends of securing flanges of the cover board are wedged into the bores on the upper cap and the lower cap, respectively.
A method of forming a pliable handle on which a button can be installed, wherein the steps are as follows:
Provide a rigid core member inside which a space for receiving a button which is moveable in a radial direction is provided, a through opening corresponding to the space for the button is disposed on the side wall of the core member, an outwardly extending annular flange corresponding to the through opening is provided on the outer wall of the core member, and an annular groove is disposed on the outer surface of the outwardly extending annular flange;
A flexible outer sheath is provided which can be disposed about the core member hermetically, the flexible outer sheath includes an opening for receiving the outwardly extending annular flange of the core member, an inwardly extending annular flange is disposed on the bottom of the inner surface of the opening of the outer sheath;
Get suitable capacity of gel according to the capacity of the gel containing space defined between the flexible outer sheath and the core member;
Have the gel cover one side of the outer surface of the core member where it is away from the outwardly extending annular flange;
Enlarge the top opening of the flexible outer sheath to enable the flexible outer sheath to be sleeved about the core member;
Align the opening of the outer sheath with the outwardly extending annular flange of the core member to have the inwardly extending annular flange of the opening of the outer sheath be inserted into the recess of the outwardly extending annular flange of the core member, the gel is sealed between the outer surface of the core member and a portion of the inner wall of the outer sheath where is away from the opening of the outer sheath.
The present device features a pliable handle on which a button can be installed, the outwardly extending annular flange of the through opening of the side wall of the core member cooperates with the opening of the flexible outer sheath, a rigid cover board presses on the opening of the outer sheath, the opening of the outer sheath covers the outwardly extending annular flange of the core member hermetically. Effectively, the gel-leak from the through opening of side wall of the core member into the inner of the core member and from the opening of the outer sheath is prevented. It retains the comfortable grip, and provides a facility for assembling the button. The inner flange of the outer sheath wedges into the groove of the outer flange of the core member, further, enhancing the seal between the outer flange of the core member and the opening of the outer sheath. Specifically, a rigid upper cap and a rigid lower cap are set at the bottom and on the top of the core member, fixing and sealing the proximal end and distal end of the outer sheath, the ends having two hermetical loops, respectively, the ends of the securing flanges are fixed on the upper cap and the lower cap respectively; the seal between the core member and the proximal end, the distal end of the outer sheath is good and the assembly is easy. Bores are set on the upper cap and the lower cap, fixing the ends of the securing flanges of the securing cover board, making a simple structure that is easy for implementing and assembling.
The exploded structure of the embodiment of the pliable handle on which a button is installed of the present utility model, as shown in
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During assembly, measure the gel and then get the quantificational gel. Put the gel on one side of outer surface 250 of the core member 200 which is furthest from the outwardly extending annular flange 221. The gel is extruded in a slice shape. The core member 200 with the gel is put into the inner space 310 of the outer sheath 300. The opening 320 of the outer sheath 300 faces the outwardly extending annular flange 221 of the core member 200 and the inwardly extending annular flange 321 of the opening 320 of the outer sheath 300 wedges into the groove 222 of the outwardly extending annular flange 221 of the core member 200. The hermetical loop 341 which is on the top of the outer sheath 300 engages with the top surface of the core member 200. The hermetical loop 342 which is on the top of the outer sheath 300 wedges into the upper hermetical annular groove 231 of the upper annular shoulder 230 of the core member 200. The lower hermetical loop 351 which is at the bottom of the outer sheath 300 engages with the bottom surface of the core member 200. The upper hermetical loop 352 which is at the bottom of the outer sheath 300 wedges into the lower hermetical annular groove 241 of the lower annular shoulder 240 of the core member 200. The gel is sealed between the inner wall of the outer sheath 300, which is far from the opening 320 of the outer sheath 300, and the outer 250 of the core member 200. The gel is formed the gel-body 600.
The button bore 510 of the cover board 500 faces the through opening 220 of the side wall of the core member 200, putting the cover board 500 on the longitudinal groove 330 which is on the surface of the outer sheath 300. The press-loop 511 which is in the middle of the cover board 500 is put on the wide portion of the middle of the groove 330. The upper end 521 of the securing flange 520 of the cover board 500 wedges into an incision 343 of the longitudinal groove 330. The upper end 531 of the securing flange 530 of the cover board 500 wedges into the incision 353 of the longitudinal groove 330. The gel is put on the outer surface of upper joint 260 of the core member 200 and the inner of the lower portion 111 of the longitudinal bore 110, respectively. The lower portion 111 of the longitudinal bore 110 faces the upper joint 260 of the core member 200. The oblong bore 121 of the bottom surface 120 of the upper cap 100 faces the upper end 521 of the securing flange 520 of the cover board 500. The upper cap 100 presses on the upper joint 260 of the core member 200. The bottom surface of the upper cap 100 presses on the hermetical loop 341 which is on the top of the outer sheath 300. The gap between the bottom surface of the upper cap 100 and the top surface of the core member 200 is sealed.
Coat the gel on the outer surface of the lower joint 270 of the core member 200 and the inner of the longitudinal bore 410 of the lower cap 400, respectively. The longitudinal bore 410 of the lower cap 400 faces the lower joint 270 of the core member 200. The oblong bore 421 of the top surface 420 of the lower cap 400 faces the upper end 531 of the securing flange 530 of the cover board 500, where the lower cap 400 presses on the lower joint 270 of the core member 200. the top surface of the lower cap 400 presses on the lower hermetical loop 351, which is at the bottom of the outer sheath 300, to cause the gap between the top surface of the lower cap 400 and bottom surface of the core member 200 to be sealed. At this point, the inwardly extending annular flange 321 of the opening 320 of the outer sheath 300 is wedged into the groove 222 of the outwardly extending annular flange 221 of the core member 200 by the press-loop 511 of the middle of the cover board 500, and it is sealed strictly. The upper securing flange 520 and the lower securing flange 530 press the two ends of groove 330 on the upper surface 232 of the upper annular shoulder 230 and the lower surface 242 of the lower annular shoulder 240, respectively. The bottom of the groove 330 of the outer sheath 300 is positioned between the cover board 500 and the outer surface 250 of the core member, where the gel is disposed between the bottom of the groove 330 of the outer sheath 300 and the outer surface 250 of the core member.
As mentioned above, it is the preferred embodiment of the present utility model. It will not limit the scope of the present utility model. The equivalent change and the modification based on the contents of the technical project and the specification of the present utility model belong to the scope of the present utility model.
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Number | Date | Country | |
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20070094848 A1 | May 2007 | US |