Handle and a hammering tool
11253986 · 2022-02-22
Assignee
- HANGZHOU GREAT STAR INDUSTRIAL CO., LTD. (Zhejiang, CN)
- Hangzhou Great Star Tools Co., Ltd. (Zhejiang, CN)
Inventors
Cpc classification
B25D1/04
PERFORMING OPERATIONS; TRANSPORTING
B25G1/10
PERFORMING OPERATIONS; TRANSPORTING
B25G3/26
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A handle includes an inner core and a gripping portion disposed around the periphery of the inner core, and at least one chamber is formed between the inner core and the gripping portion. A hammering tool includes the handle. When the hammering tool is used for striking, the internal damping slot of the hammerhead can use a damping material as a first buffering and absorb the vibration and impact force of the hammerhead, which are then delivered to the inner core of the handle, the inner damping layer and its chamber serve as a second buffering and absorb the vibration and impact force delivered from the inner core of the handle, and finally, the outer damping layer serves as a third buffering and absorbs the vibration and impact force delivered from the inner damping layer.
Claims
1. A handle, wherein the handle comprises an inner core and a gripping portion disposed around the periphery of the inner core, and at least one chamber is formed between the inner core and the gripping portion; wherein the gripping portion comprises an outer damping layer, an inner damping layer is disposed between the outer damping layer and the inner core, and the chamber is disposed in the inner damping layer; wherein the handle further comprises an external member, wherein the external member and the inner damping layer are respectively located in different parts of the inner core, and the external member wraps part of the inner core, and the inner damping layer wraps other part of the inner core, and then the outer damping layer wraps both of the external member and the inner damping layer; and wherein the external member further comprises a sleeve head portion having an internal diameter that is greater than an internal diameter of a sleeve joint portion.
2. The handle of claim 1, wherein the chamber is disposed on at least one lateral side of the handle.
3. The handle of claim 1, wherein a damping material or an airbag is disposed in the chamber.
4. The handle of claim 3, wherein the damping material is liquid silicone if the damping material is disposed in the chamber.
5. The handle of claim 3, wherein compressed air or liquid substance is filled in internal of the airbag if the airbag is disposed in the chamber.
6. The handle of claim 1, wherein the material of the outer damping layer is thermoplastic polyurethane or thermoplastic rubber material.
7. The handle of claim 1, wherein the material of the inner damping layer is thermoplastic polyurethane.
8. The handle of claim 1, wherein the inner damping layer is prefabricated first and then sleeved on the inner core, or is directly injection molded on the inner core in an injection molding mode.
9. The handle of claim 1, wherein the outer damping layer is prefabricated first and then sleeved on at least one location of the inner damping layer and/or the external member, or is directly injection molded on at least one location of the inner damping layer and/or the external member in an injection molding mode.
10. The handle of claim 1, wherein the external member is fixed on the inner core by an assembly part.
11. The handle of claim 10, wherein the external member is assembled onto the inner core along a first direction, the external member is assembled and fixed on the inner core by the assembly part along a second direction, and the first direction is different from the second direction.
12. The handle of claim 1, wherein the inner core has a locating hole, which is provided at the rear end of the inner core, and a locating pin is equipped through the locating hole, the locating pin is coated and fixed by the outer damping layer.
13. The handle of claim 12, wherein the locating hole further comprises a locating slot, the locating pin is composed of a first pin member and a second pin member jointed axially, and the first pin member has a lug, which is embedded into the locating slot, to prevent the locating pin from rotating axially in the locating hole.
14. The handle of claim 1, wherein the outer damping layer further comprises at least one inspection hole, which penetrates the outer damping layer and corresponds to at least one location of the inner damping layer, for observing the inner damping layer and the chamber.
15. The handle of claim 1, wherein the outer damping layer is prefabricated first and then sheathed on at least one location of the external member, or is directly injection molded on at least one location of the external member in an injection molding mode.
16. The handle of claim 15, wherein an accommodation space is provided between the outer damping layer and the inner core, and the accommodation space is stuffed by the inner damping layer.
17. The handle of claim 16, wherein the inner core has a locating hole, which is provided at a rear end of the inner core, a locating pin is equipped through the locating hole, and the locating pin is coated and fixed by the outer damping layer.
18. The handle of claim 17, wherein the rear end of the outer damping layer is connected to a sealing cover, the sealing cover comprises: a cover portion, for sealing the opening of the outer damping layer; and at least one inserting portion, extending out from the cover portion, the inserting portion is inserted into the accommodation space via the opening, and the inserting portion is coated and fixed by the outer damping layer.
19. A hammering tool, wherein the hammering tool comprises a handle, wherein the handle comprises an inner core and a gripping portion disposed around the periphery of the inner core, and at least one chamber is formed between the inner core and the gripping portion; wherein the gripping portion comprises an outer damping layer, an inner damping layer is disposed between the outer damping layer and the inner core, and the chamber is disposed in the inner damping layer; wherein the handle further comprises an external member, wherein the external member and the inner damping layer are respectively located in different parts of the inner core, and the external member wraps part of the inner core, and the inner damping layer wraps other part of the inner core, and then the outer damping layer wraps both of the external member and the inner damping layer; wherein the external member further comprises a sleeve head portion having an internal diameter that is greater than an internal diameter of a sleeve joint portion; and the hammering tool further comprises a hammerhead connected to the inner core of the handle.
20. The hammering tool of claim 19, wherein the hammerhead and the inner core are integrally molded.
21. The hammering tool of claim 19, wherein a internal of the hammerhead has at least one damping slot, and the damping slot is used for stuffing with damping material therein.
22. The hammering tool of claim 19, wherein a stopping portion is disposed between the hammerhead and the inner core, and the stopping portion is used to confine a location of the external member sheathed on the inner core.
23. The hammering tool of claim 22, wherein the external member further comprises: the sleeve head portion, which is limited by the stopping portion and thereby assembled with the stopping portion; the sleeve joint portion, which is extended out from the sleeve head portion; and a through hole, penetrating the sleeve head portion and the sleeve joint portion, and the through hole is used for the inner core to be equipped through therein.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
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(13) wherein,
(14) 10 hammerhead 11 head portion 12 handle portion 13 damping slot 14 damping material 15 stopping portion 20 inner core 21 assembly hole 22 locating hole 221 locating slot 23 locating pin 231 first pin member 232 second pin member 233 lug 30 external member 31 sleeve head portion 32 sleeve joint portion 33 through hole 34 punched hole 35 assembly part 40 inner damping layer 41 chamber 50 outer damping layer 51 inspection hole 52 accommodation space 53 opening 60 sealing cover 61 cover portion 62 inserting portion 63 fixing hole X first direction Y second direction Z third direction.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(15) To facilitate the illustration, X, Y and Z shown in the figures indicates ae first direction, a second direction and a third direction respectively, and the first direction, the second direction and the third direction are perpendicular to each other.
(16) The first preferred example of the present invention provides a hammering tool, wherein the hammering tool comprises a handle, as shown in
(17) Preferably, the gripping portion comprises an outer damping layer 50, an inner damping layer 40 is disposed between the outer damping layer 50 and the inner core 20, and the chamber 41 is disposed in the inner damping layer 40. The inner damping layer 40 is prefabricated first and then sleeved on the inner core 20, or directly injection molded on the inner core 20 in an injection molding mode. The handle further comprises an external member 30, an assembly hole 21 is disposed on the inner core 20, and the external member 30 penetrates the assembly hole 21 and is fixed on the inner core 20 by an assembly part 35. The outer damping layer 50 is prefabricated first and then sleeved on at least one location of the inner damping layer 40 and/or the external member 30, or is directly injection molded on at least one location of the inner damping layer 40 and/or the external member 30 in an injection molding mode.
(18) As shown in
(19) The inner core 20 has an assembly hole 21 and a locating hole 22, the assembly hole 21 is provided at a location of the inner core 20 close to the stopping portion 15, and the locating hole 22 is provided at the rear end of the inner core 20.
(20) The external member 30 has a sleeve head portion 31 and a sleeve joint portion 32 extended from the sleeve head portion 31, and the sleeve head portion 31 and the sleeve joint portion 32 are penetrated by a through hole 33. The shape of the through hole 33 matches the shape of the cross section of the inner core 20, to facilitate the external member 30 to be sleeved on the inner core 20 by the through hole 33. The sleeve joint portion 32 has a punched hole 34, the punched hole 34 and the assembly hole 21 correspond to each other, for the assembly part 35 to be equipped through and fixed.
(21) As shown in
(22) As shown in
(23) As shown in
(24) The inner damping layer 40 forms a chamber 41 having a hollow part, and the inner damping layer 40 coats the inner core 20 and avoids the location of the external member 30, as shown in
(25) As shown in
(26) As shown in
(27) As shown in
(28) As shown in
(29) To sum up, according to the hammering tools disclosed by all examples of the present invention, when they are used for striking, the internal damping slot of the head portion may use the damping material as a first buffering and absorb the vibration and impact force of the hammerhead, which are then delivered to the inner core of the handle, the inner damping layer and its chamber serve as a second buffering and absorb the vibration and impact force delivered from the inner core of the handle, finally, the outer damping layer serves as a third buffering and absorbs the vibration and impact force delivered from the inner damping layer. The vibration and impact force felt by the hand of the user when in operation are dramatically decreased through these three buffering and damping structures.
(30) In addition, the assembling direction (a first direction) of the external member relative to the inner core of the handle is different from the fixation direction (a second direction) of the assembly part fixing the external member, and the sleeve joint portion of the external member and the assembly part are further coated by the outer damping layer, thereby preventing the external member from detaching from the inner core of the handle from the assembly direction.
(31) The preferred specific embodiments of the invention have been described in detail above. It should be understood that numerous modifications and variations can be made by those ordinary skilled in the art in accordance with the concepts of the present invention once they comprehend the concepts, specific embodiments and effects of the invention. Hence, the technical solutions that may be derived by those skilled in the art according to the concepts of the present invention on the basis of the prior art through logical analysis, reasoning and limited experiments should be within the scope of protection defined by the claims of the present invention.