Cracking-shelling mechanism for nuts with a hard or soft shell
11717014 · 2023-08-08
Assignee
Inventors
- Jerónimo Martin Cabeza (Denia, ES)
- Francisco Esteban Pastor Martí (Denia, ES)
- Josep V. Roig Borrell (Denia, ES)
Cpc classification
International classification
Abstract
The invention relates to a cracking-shelling mechanism for nuts with a hard or soft shell, with a plurality of first and second blocks the facing sides of which have a plurality of complementary first and second notches in a staggered arrangement, wherein each first notch is associated with at least a second notch and forms a cracking hole with each one, wherein the notches have first and second vertexes for each hole, forming a specific angle with respect to the longitudinal axis, and in the standby position of the first block, said first and second vertexes of each first notch are arranged so as to coincide with second and first vertexes, respectively, of a second notch.
Claims
1. A cracking-shelling mechanism for nuts with a hard or soft shell, for nut shelling machines, comprising: a plurality of first longitudinal blocks parallel to one another which are configured to reciprocate in both directions according to a longitudinal axis thereof, and a plurality of second longitudinal blocks parallel to the first longitudinal blocks and arranged in an alternating and adjacent manner with respect to same, wherein all the blocks have first and second ends, respective lower and upper bases, and two sides, and wherein between the sides of each first and second block there is formed a plurality of tapered vertical through holes between the upper and lower bases of the blocks, facing sides between each first and second block comprise a plurality of first and second notches, respectively, complementary to one another and in a staggered arrangement, such that each first notch is associated with at least a second notch and forms the through hole with each second notch associated with it, said first and second notches have, for each hole, first and second vertexes demarcating a contour thereof, arranged such that the first vertex is farther away from the longitudinal axis of the corresponding block than the second vertex, and each first and second vertex associated with hole is aligned forming a specific angle with respect to said longitudinal axis, and wherein in a standby position of the first block, each first and second vertex of each first notch is arranged so as to coincide with second and first vertexes, respectively, of a second notch, configuring a closed curved shape.
2. The cracking-shelling mechanism for nuts with a hard or soft shell according to claim 1, wherein the first and second vertexes demarcating the contour of a hole in each first and second notch are aligned forming an angle comprised between 30° and 60° or between 120° and 150° with respect to the longitudinal axis of the corresponding block.
3. The cracking-shelling mechanism for nuts with a hard or soft shell according to claim 2, wherein at least one of the first and/or second notches forms respective holes with respective second and/or first notches, respectively, and the first and second vertexes demarcating the contour of a hole are arranged in a manner symmetrical to the first and second vertexes demarcating the contour of another hole.
4. The cracking-shelling mechanism for nuts with a hard or soft shell according to claim 1, wherein the sides of each block are symmetrical with respect to a longitudinal central plane thereof.
5. The cracking-shelling mechanism for nuts with a hard or soft shell according to claim 1, wherein the second blocks comprise a regulator which regulates a position according to the direction of an axis perpendicular to the regulator and parallel to the longitudinal axis of the holes.
6. The cracking-shelling mechanism for nuts with a hard or soft shell according to claim 5, wherein the regulator which regulates the one of the second blocks comprise a plurality of regulators which are each independent for each of the second blocks.
7. The cracking-shelling mechanism for nuts with a hard or soft shell according to claim 1, wherein the a first end of the plurality of first longitudinal blocks are connected to a reciprocating mechanism which comprises a plurality of reciprocating mechanisms which are formed by a respective connecting rod with an eccentric axis of rotation.
8. The cracking-shelling mechanism for nuts with a hard or soft shell according to claim 1, wherein a first end of the plurality of first longitudinal blocks are connected to a reciprocating mechanism which comprises a plurality of reciprocating mechanisms which are each formed by a respective pneumatic piston.
9. The cracking-shelling mechanism for nuts with a hard or soft shell according to claim 1, wherein the a first end of the plurality of first longitudinal blocks are connected to a reciprocating mechanism which comprises a plurality of reciprocating mechanisms which are each formed by a respective electromagnetic mechanism.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) For the purpose of helping to better understand the features of the invention according to a preferred practical exemplary embodiment thereof, a series of drawings is provided as an integral part of said description, wherein the following has been depicted in an illustrative and non-limiting manner:
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DETAILED DESCRIPTION OF THE INVENTION
(8) In view of the figures that have been provided, it can be observed how, in a preferred embodiment of the invention, the cracking-shelling mechanism (3) for nuts with a hard or soft shell proposed herein for nut shelling machines comprises a plurality of first longitudinal blocks (1) parallel to one another, with a first end (1.1) secured to means for reciprocating movement in both directions according to the longitudinal axis thereof, and a plurality of second longitudinal blocks (2) parallel to the first longitudinal blocks and arranged in an alternating and adjacent manner with respect to same.
(9) All the blocks (1, 2) have first and second ends (1.1, 1.2, 2.1, 2.2), respective lower and upper bases, and two sides (6). Likewise, between the sides (6) of each first and second block (1, 2) there is formed a plurality of tapered vertical through holes (7) between the upper and lower bases of the blocks.
(10) In this mechanism (3) the facing sides (6) between each first and second block (1, 2) further comprise a plurality of first and second notches (8.1, 8.2), respectively, complementary to one another and in a staggered arrangement, such that each first notch (8.1) is associated with at least a second notch (8.2) and forms a cracking hole (7) with each second notch (8.2) associated with it.
(11) Having said that, as shown in
(12) In the case of the second notches (8.2), since they are in a staggered arrangement with respect to the first notches (8.1), the same occurs but opposite to what occurs in the first block, i.e., it is the second notch (8.2) arranged at the second end of each second block (2) which is associated with a single first notch (8.1) and therefore forms a single hole (7), whereas the remaining second notches (8.2) are associated with two first notches (8.1) and therefore form two holes (7) each.
(13) As can be observed in
(14) Likewise, as shown in
(15) As can be observed in
(16)
(17) In this preferred embodiment of the invention, the first and second vertexes (4, 5) demarcating the contour of a hole (7) in each first and second notch (8.1, 8.2) are aligned forming an angle comprised between 30° and 60° or between 120° and 150° with respect to the longitudinal axis of the corresponding block.
(18) Likewise, in this embodiment at least a first and/or a second notch (8.1, 8.2) forms respective holes (7) with respective second and/or first notches (8.2, 8.1), respectively, and the first and second vertexes (4, 5) demarcating the contour of a hole (7) are arranged in a manner symmetrical to the first and second vertexes (5, 4) demarcating the contour of the other hole (7) of one and the same notch.
(19) Therefore, as shown in
(20) The remaining first notches have first and second vertexes (4, 5) with the same inclination as the vertexes of the first notch (8.1) arranged at the first end (1.1), and a second hole (7), the first and second vertexes (4, 5) of which are arranged symmetrically with respect to the aforementioned vertexes, therefore if the aforementioned vertexes form an angle comprised between 30° and 60°, the other vertexes form an angle comprised between 120° and 150°, and vice versa.
(21) In this preferred embodiment of the invention, the sides (6) of each block are symmetrical with respect to a longitudinal central plane thereof. The cracking holes (7) will thereby be formed in a manner symmetrical to each side of the block.
(22) According to another aspect, in this preferred embodiment of the invention the second blocks (2) comprise means for regulating the position according to the direction of an axis perpendicular to same and parallel to the longitudinal axis of the holes. It is thereby possible to modify their position in one direction or the other, achieving a reduction or increase in the size of cracking holes (7).
(23) Namely in this case, the means for regulating the position of said second blocks (2) are independent for each of them, so, for example, the size of the holes (7) may be established by areas, according to the size of the nut reaching each of them from prior screening. Nevertheless, in other cases the regulating means may be common to all the second blocks (2).
(24) As shown in
(25) Having said that, it can be observed in
(26) As a result of the shape and arrangement of the first and second notches (8.1, 8.2), while one hole of a specific notch increases in size, the other hole thereof decreases in size, such that there is always a number of holes that allow the nut to enter while at the same time there is another number of holes which are cracking the nut at that time. Therefore accumulations are not generated, and effectiveness of the mechanism is increased.
(27) In other preferred embodiments of the invention, the means for reciprocating movement of the first blocks (1) are formed by a respective pneumatic piston, a respective electromagnetic mechanism, or a similar mechanism, capable of generating this type of movement.
(28) The described embodiment constitutes only one example of the present invention; therefore, the specific details, terms, and expressions used in the present specification should not be considered as limiting, but rather must be understood solely as a basis for the claims and as a representative basis which provides a comprehensible description as well as sufficient information for one skilled in the art to apply the present invention.