The present disclosure generally relates to daily living utensils field, and especially relates to a nut cracker.
Nuts are a king of fruit of closed fruits, which have hard shell and contain one or more seeds therein, such as chestnuts, almonds, etc. Nuts are a quintessential part of a plant and generally nutritious which include high protein, grease, mineral and vitamin, thereby they are an excellent effect on human growth, development, physical constitution and disease prevention. As a result of the above functional effects, people are very fond of nuts. However, nuts have hard shells, especially macadamia nuts, which are hard to crack and inconvenient to eat. A conventional nut cracker can easily crush flesh of the nut during opening the nut, thereby resulting in inconvenient to use.
The technical problems to be solved: in view of the shortcomings of the related art, the present disclosure relates to a nut cracker which can prevent a gear cutter frown backing off during use of the nut cracker so that the gear cutter can apply a litter force on a nut to open it, thereby avoiding a problem of crushing of flesh of the nut due to excessive force.
The technical solution adopted for solving technical problems of the present disclosure is:
A nut cracker according to an exemplary embodiment of the present disclosure includes a main member including a first portion and a second portion; a gear cutter member including a gear cutter rotatably connected to the first portion of the main member; a clamping member including a clamping bar rotatably connected to the second portion of the main member and meshed with the gear cutter; a stopping switch member rotatably connected to the second portion of the main member and including a stopping switch provided for preventing the gear cutter from backing off, and a first elastic element with one end thereof abutting against the stopping switch for resetting the stopping switch; and a locating structure fixed to the first portion of the main member for fastening a nut.
The present disclosure provides the advantages as below.
The structure of the present disclosure is provided that the clamping bar can drive the gear cutter move when the handle moves back and forth between the first state and the second state under an action of an external force, thereby the stopping switch member can prevent the gear cutter from backing off during use of the nut cracker so that the gear cutter can apply a litter force on a nut to open it, which can avoid a problem of crushing of flesh of the nut due to excessive force.
Many aspects of the embodiments can be better understood with reference to the following drawings. The components in the drawings are not necessarily dawns to scale, the emphasis instead being placed upon clearly illustrating the principles of the embodiments. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the several views.
The disclosure is illustrated by way of example and not by way of limitation in the figures of the accompanying drawings, in which like reference numerals indicate similar elements.
Referring to
Because the handle 50 can move back and forth between the first state and the second state by the external force so that the stopping switch member 40 can prevent the gear cutter 22 from backing off during use of the nut cracker 100, thereby the gear cutter 22 can apply a litter force on a nut to open it, which can avoid a problem of crushing the nut pulp due to excessive force.
Referring to
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Furthermore, the main member 10 further includes a receiving recess 14 (shown in
In an exemplary embodiment of the present disclosure, the receiving recess 14 is a waist-shaped configuration, thereby the clamping shaft 34 can slide in the receiving recess 14 so that the clamping bar 32 can mesh with or separate from the gear cutter 22.
In an exemplary embodiment f the present disclosure, resetting of the clamping bar 32 is meant that the clamping bar 32 can move from the first state to the second state under the action of the clamping spring 36. That is, the distance between the clamping bar 32 and the first handle portion 52 is maximum.
Referring to
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In an exemplary embodiment of the present disclosure, the clamping spring 36 is a wire spring. The original state of the clamping spring 36 is a pre-pressed state, that is to say, in the original state, the clamping spring 36 has a certain pre-pressure.
Referring to
Furthermore, each first fastening portion 366 is extended outward from a distal end of the first fixing portion 362 so that a first fixing bar 367 is formed at a distal end of the first fastening portion 366. The first fixing portion 362 is formed at a distal end of the second fixing portion 364 in a spiral way.
Referring to
In an exemplary embodiment of the present disclosure, a pair of triangles is formed by connecting lines of the first locating post 71, the clamping shaft 34 and the first receiving groove 324. The pair of triangles is respectively formed between an outer surface of a corresponding main body 12 and a first receiving groove 324.
Because the triangle is formed by connecting lines of the first locating post 71, the clamping shaft 34 and the first receiving groove 324, thereby the clamping spring 36 can be firmly fixed.
Referring to
In an exemplary embodiment of the present disclosure, the volume of the receiving room 70 can be changed according to a size of the nut. So, the nut cracker 100 of the present disclosure can be applied to different nuts. The present disclosure can open all kinds of nuts with only one nut cracker 100 at home, thereby greatly improving the convenience of use.
Furthermore, the minimum volume of the receiving room 70 of the present disclosure is greater than that of a user's finger. That is to say, users can't accidentally injure their fingers when they use the nut cracker 100 of the present disclosure. Moreover, children can't cut their fingers during playing with the nut cracker 100 of the present disclosure.
Referring to
In an exemplary embodiment of the present disclosure, when the gear cutter 22 moves to its final position, that is, the volume of the receiving room 70 is minimum, the clamping bar 32 returns to the second state under the action of the clamping spring 36. At this time, the gear cutter 22 is separated from the clamping bar 32. The plurality of second teeth 220 of the gear cutter 22 is separated from the stopping switch 42 no matter how the user exerts force on the handle 50 to move it the first state, that is, the minimum tightening state. When the handle 50 is released, the gear cutter 22 can open again to mesh with the stopping switch 42. Such a repetitive grip does not further feed, thereby avoiding accidental injury to the user. At the same time, the stopping switch 42 is separated from the gear cutter 22 under the action of the external force, and the gear cutter 22 is reset under the action of the gear cutter spring 26, namely the volume of the receiving room 70 is maximum.
When the volume of the receiving room 70 is minimum, the gear cutter spring 26 is compressed, while when the volume of the receiving room 70 is maximum, the gear cutter spring 26 is in its original state.
In an exemplary embodiment of the present disclosure, the gear cutter spring 26 is a wire spring. The original state of the gear cutter spring 26 is a pre-pressed state, that is to say, in the original state, the gear cutter spring 26 has a certain pre-pressure.
Referring to
Furthermore, the gear cutter spring 26 further includes a pair of second fastening portions 266 respectively fixed to a corresponding main body 12 of the main member 10.
Furthermore, each second fastening portion 266 is extended outward from a distal end of the third fixing portion 262 so that a second fixing bar 267 is formed at a distal end of the second fastening portion 266. The third fixing portion 262 is formed at a distal end of the fourth fixing portion 264 in a spiral way. Each second fixing bar 267 can hook a corresponding main body 12.
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In an exemplary embodiment of the present disclosure, a triangle is formed by connecting lines of the gear cutter shaft 24, the second receiving groove 224 and the first fixing bar 367, thereby the gear cutter spring 26 can be firmly fixed.
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Furthermore, the stopping switch member 40 further includes a fixing post 44 fixed to the second portion of the main member 10 and the first elastic element 46 is sleeved around the fixing post 44.
Furthermore, the stopping switch member 40 further includes a moving post 48 passing through a second hole 428 of the stopping switch 42 to be movably received in a moving recess 18 (seen in
Furthermore, in the first state, the gear cutter 22 is separated from the stopping switch 42, the first elastic element 46 is compressed and the moving post 48 is positioned on a second end of the moving recess 18. While in the second state, the first elastic element 46 is in its original state, the moving post 48 is positioned on a first end of the moving recess 18, and the gear cutter 22 is meshed with the stopping switch 42. The stopping switch 42 can prevent the gear cutter 22 from backing off when the handle 50 is moved back and forth between the first state and the second state. So, the nut cracker 100 of the present disclosure can be applied to different nuts.
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In use, the handle 50 is driven by an external force to repeatedly move between the first and the second state so that the clamping bar 32 drives the state gear cutter 22 move to press the nut until the nut is cracked. In this position, the stopping switch 42 is separated from the gear cutter 22 by the external force. The gear cutter 22 is also reset under the action of the gear cutter spring 26, that is, the volume of the receiving room 70 is maximum.
In an exemplary embodiment of the present disclosure, the first state of the handle 50 is defined as a closed state, while the second state of the handle 50 is defined as an opening state. That is, the handle 50 can move between the opening state and the closed state.
In the course of use, the movement of the gear cutter 22 of the present disclosure is realized through opening and closing the handle 50, that is, it is achieved the purpose of energy saving through the principle of lever.
In use, the clamping spring 36 not only can reset the clamping bar 32, but also can drive the clamping bar 32 mesh with the gear cutter 22. That is to say, the clamping spring 36 simultaneously has two functions: one function is to reset the clamping bar 32 and drive the handle 50 move between the opening state and the closed state, the other function is to drive the clamping bar 32 mesh with the gear cutter 22 for achieving the purpose of cutting the nut shell.
The nut cracker 100 of the present disclosure is mainly used for crust breaking of macadamia nuts and other nuts, with a diameter of the nut between Φ16-Φ32 mm. Of course, the nut cracker 100 of the present disclosure is also suitable for other types of nuts such as pecans, walnuts, almonds, hazelnuts, chestnuts, etc
In an exemplary embodiment of the present disclosure, the receiving room 70 is a waist-shaped hole similar to the shape of most nuts, which improves the convenience of use.
In an exemplary embodiment of the present disclosure, the cross-section of a working surface of the gear cutter 22 contacting with the nut is designed in a form of a v-shaped cutting knife to facilitate opening the nut shell.
Although the features and elements of the present disclosure are described as embodiments in particular combinations, each feature or element can be used alone or in other various combinations within the principles of the present disclosure to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
Number | Date | Country | Kind |
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2017209130601 | Jul 2017 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2017/119016 | 12/27/2017 | WO | 00 |