CN217368618U - Nut grinding machine - Google Patents

Nut grinding machine Download PDF

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Publication number
CN217368618U
CN217368618U CN202221113787.9U CN202221113787U CN217368618U CN 217368618 U CN217368618 U CN 217368618U CN 202221113787 U CN202221113787 U CN 202221113787U CN 217368618 U CN217368618 U CN 217368618U
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China
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nut
cylinder
grinding
grinding cylinder
assembly
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CN202221113787.9U
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Chinese (zh)
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周炳康
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CHANGZHOU HANHUA KITCHENWARE CO LTD
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CHANGZHOU HANHUA KITCHENWARE CO LTD
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Abstract

The utility model relates to a nut grinds machine for grind hard nut class food or article into powdered or tiny cubic, its characterized in that: comprises a cylinder body component, a handle, a locking part and a grinding cylinder part; the handle is positioned at the outer side of the cylinder body assembly; the grinding cylinder part is positioned in the cylinder body; the handle and the grinding cylinder part are connected into a whole and drive the grinding cylinder part to rotate, and the cylinder body forms a supporting grinding cylinder part; the locking part is positioned at the bottom of the lowest end of the cylinder body assembly, and the cylinder body assembly is provided with holes for discharging nut residues. This nut grinds machine uses for a long time and can not lead to grinding section of thick bamboo to produce the swing and produce the friction with the shell, avoids the user to eat nut powder or the nut tiny cube that has metal or plastic powder, has overcome the problem that produces adverse effect to the human body to there can not be the nut residue in the gap of the inboard formation of this nut grinds machine grinding section of thick bamboo outside and shell and hinders the rotation of grinding section of thick bamboo, thereby makes the user not need often to dismantle and clear up it.

Description

Nut grinding machine
The technical field is as follows:
the utility model belongs to the technical field of food apparatus, concretely relates to nut grinds machine.
Background art:
in the prior art, in order to grind hard nuts into powder or fine blocks for brewing or baking at home, a grinding machine is generally adopted for grinding, the grinding machine is provided with a fixed shell and a grinding cylinder which rotates relative to the shell, a gap exists between the shell and the grinding cylinder, the nuts are ground by rotating the grinding cylinder, the nuts enter from the side part of the grinding cylinder, and ground nut powder or nut fine blocks fall out from the inside of the grinding cylinder. However, the nut grinder has a fixed shell which can only support the grinding cylinder at one end so that the grinding cylinder can grind nuts in a rotating manner, after the nut grinder is used for a long time, the rotating motion of the grinding cylinder is easy to change into swinging while rotating, the swinging of the grinding cylinder can cause the grinding cylinder to generate friction with the fixed shell, so that metal or plastic powder generated by the friction is communicated with the ground nuts to fall out of the grinding cylinder, and then enters a storage device prepared in advance by a user, and the user can have adverse effects on the human body when eating the nut powder or nut fine pieces with the metal or plastic powder; simultaneously because the nut has some to remain in the gap that grinding cylinder outside and the inboard formation of shell after grinding, long-time use grinds the chance and leads to remaining nut residue in this gap to hinder the rotatory grinding of grinding cylinder, needs often to dismantle and clears up, and such operation can very the user bring not good use experience when grinding the nut in a large number.
The utility model has the following contents:
the utility model aims at providing a nut grinds machine, this nut grinds machine uses for a long time and also can not lead to grinding section of thick bamboo to produce the swing and produce the friction with the shell, and then avoid the user to eat nut powder or the nut tiny cube that has metal or plastic powder, just also overcome the problem that produces adverse effect to the human body, and can not exist the rotation that nut residue hinders grinding section of thick bamboo in the gap that the inboard of this nut grinds machine grinding section of thick bamboo outside and shell formed, thereby make the user not need often dismantle and clear up it.
In order to solve the problem in the background art, the utility model provides a nut grinder for grind hard nut class food or article into powdered or tiny cubic, its improvement lies in: comprises a cylinder body component, a handle, a locking part and a grinding cylinder part; the handle is positioned on the outer side of the cylinder body assembly; the grinding cylinder part is positioned in the cylinder body assembly; the handle is connected with the grinding cylinder part into a whole, the cylinder body assembly is limited between the handle and the grinding cylinder part, the handle drives the grinding cylinder part to rotate, and the cylinder body assembly supports and holds the grinding cylinder part; the locking part is positioned at the bottom of the lowest end of the cylinder body assembly, and holes for draining nut residues are formed in the positions, facing the bottom of the lowest end, of the cylinder body assembly.
Further, the barrel assembly includes: a housing, a mouth, a flap, and a positioning portion; the shell is used for accommodating the grinding cylinder part, and the bottom of the shell facing the locking part is provided with a hole for draining nut residues; the mouth part is positioned at the upper part of the shell and is used for receiving nuts to be ground; the opening cover can be taken out and put in the opening part and is used for extruding the nuts to be ground in the opening part to enable the nuts to be ground to be abutted against the grinding cylinder part; the positioning part is used for assembling and positioning the barrel at the clamped part, the first end part of the positioning part is arranged at the side part of the shell, the positioning part is provided with a left wing and a right wing which are positioned on the same horizontal plane, and the second end part which is far away from the left wing and the right wing and is positioned on the positioning part and used for installing the locking part.
Further, the cylinder assembly is also provided with anti-slip pads, the anti-slip pads are arranged below the left wing and the right wing of the positioning portion, and the anti-slip pads are used for supporting the left wing and the right wing of the positioning portion and enabling the left wing and the right wing of the positioning portion to have frictional resistance relative to the upper surface of the clamped portion.
Furthermore, the locking part comprises a screw rod and a top block, the locking part is installed at the second end part of the positioning part, the screw rod of the locking part is in detachable spiral fit with the second end part of the positioning part, the top block is in spiral connection with the top of the screw rod, and the top block has friction resistance relative to the lower surface of the clamped part.
Further, the periphery of one side edge part of the grinding cylinder part, which is far away from the handle, is provided with anti-friction convex points, and the periphery wall of the grinding cylinder part is provided with a cutting opening.
Further, the grinding cylinder part comprises a grinding cylinder and a cylinder hoop, the cylinder hoop is fixed in a splicing mode, is connected, wrapped and supported through a buckle and a clamping groove, and is located between the grinding cylinder and the cylinder body component, the grinding cylinder and the cylinder body component are separated, so that a constant interval is kept between the grinding cylinder and the cylinder body component, and the peripheral wall of the grinding cylinder is provided with a cutting opening.
Further, the cutting openings are arranged in a staggered mode, the cutting openings are arranged along a straight line in the direction from the handle to the cylinder assembly direction or are arranged around the grinding cylinder portion in a spiral direction, and the center distance between every two adjacent cutting openings is 4-8 mm.
Furthermore, the area of a single hole of a hole for discharging nut residues on the barrel body is 8-10 times of the area of a single cutting opening.
The utility model has the advantages that: the nut grinding machine can not cause the grinding cylinder to swing while rotating and generate friction with the shell even if being used for a long time, further avoids the situation that metal or plastic powder generated by the friction between the grinding cylinder and the shell is communicated with ground nuts and falls out of the grinding cylinder into the storage device, is beneficial to improving the purity of the ground nuts, is also beneficial to avoiding the situation that a user eats nut powder or nut fine blocks with metal or plastic powder, and well overcomes the problem of adverse effect on a human body; simultaneously in this nut grinding machine owing to open the system in the shell bottom and be favorable to the discharge portion of draining of nut residue, just can be fine will be located the timely discharge of nut residue that exists in the gap of the inboard formation of grinding section of thick bamboo outside and shell, fine solution the nut residue to the rotatory hindrance of grinding section of thick bamboo portion to make the user not need often dismantle and clear up just can be fine grind the nut to it, greatly improved user's experience and felt.
Drawings
The present invention will be further explained with reference to the drawings and examples.
Fig. 1 is a schematic diagram of the overall three-dimensional structure of the nut grinder of the present invention;
FIG. 2 is a schematic plan view of the overall structure of the nut grinder of the present invention;
FIG. 3 is a schematic sectional view of the whole structure of the nut grinder of the present invention;
FIG. 4 is a schematic view of a first embodiment of a grinding drum 400 of the nut grinder of the present invention;
fig. 5 is a schematic view of a second embodiment of a grinding drum 400 of the nut grinder of the present invention.
In the figure:
a cylinder assembly 100, a housing 110, a mouth 120, a flap 130, a positioning part 140,
the non-slip mat 150, the handle 200, the locking part 300, the screw 310, the top block 320,
grinding drum 400, drum 410, and drum hoop 420.
Detailed Description
Figures 1 through 5, discussed below, and the various embodiments used to describe the principles of the present invention in this patent document are by way of illustration only and should not be construed in any way to limit the scope of the invention. Those skilled in the art will appreciate that the principles of the present invention may be implemented in any suitable nut grinder. The terminology used to describe various embodiments is exemplary. It should be understood that these are provided solely to aid in the understanding of the present specification, and their use and definition do not limit the scope of the present invention in any way. The use of the terms first, second, etc. to distinguish between objects having the same set of terms is not intended to represent a temporal order in any way, unless otherwise specifically stated. A group is defined as a non-empty group containing at least one element.
In order to make the purpose, technical solution and advantages of the embodiments of the present invention clearer, the drawings of the embodiments of the present invention are combined below to clearly and completely describe the technical solution of the embodiments of the present invention. It is to be understood that the embodiments described are only some of the embodiments of the present invention, and not all of them. Based on the described embodiments of the present invention, all other embodiments obtained by a person of ordinary skill in the art without creative efforts belong to the protection scope of the present invention. It should be understood that the exemplary embodiments described herein should be considered in descriptive sense only and not for purposes of limitation. Descriptions of features or aspects within each exemplary embodiment should generally be considered as available for similar features or aspects in other exemplary embodiments.
As shown in fig. 1, 2, 3, the nut grinder of the present invention according to an exemplary embodiment for grinding hard nut-like food or objects into powder or fine pieces improves in that: the nut grinder comprises a barrel assembly 100, a handle 200, a locking part 300 and a grinding barrel part 400; the handle 200 is positioned at the outer side of the barrel assembly 100; the grinding cylinder part 400 is positioned inside the cylinder assembly 100; the handle 200 and the grinding cylinder 400 are detachably connected into a whole through screw threads, the cylinder assembly 100 is limited between the handle 200 and the grinding cylinder 400, the handle 200 drives the grinding cylinder 400 to rotate so as to grind nuts, and the cylinder assembly 100 supports one end of the grinding cylinder 400 and keeps the grinding cylinder 400 to stably rotate in the cylinder assembly 100; the locking part 300 is located at the bottom of the lowest end of the cylinder assembly 100, and a hole for discharging nut residues is formed on the outer shell 110 at the position of the cylinder assembly 100 facing the bottom of the lowest end. This nut grinds machine constitutes 100 and locking portion 300 through the barrel and is followed both sides respectively to the centre gripping by the clamping part to make this nut grind machine can be firm when needs grind the nut lock on by the clamping part, can break away from on being the clamping part when this nut grinds machine need not grind the nut. The hole of making the nut residue of having the drainage on the shell 110 of the lowermost extreme bottom that the barrel constitutes 100 is favorable to getting rid of the nut residue that is located in the gap between the shell 110 that the barrel constitutes 100 and grinding drum portion 400 two, effectively avoids the nut residue to cause the jam inside, hinders the rotatory grinding of grinding drum portion 400, make the user not need often dismantle to it clear up just can be fine grind the nut, user's experience sense has greatly been improved.
As shown in fig. 1, 2 and 3, the cylinder assembly 100 includes: a housing 110, a mouth 120, a flap 130, a positioning portion 140; the shell 110 is used for accommodating the grinding drum part 400, the bottom of the shell 110 facing the locking part 300 is provided with a hole for draining nut residues, and the hole for draining the nut residues is arranged at the bottom of the shell 110, so that the nut residues can be drained under the action of gravity, and the complex operation caused by self-cleaning by a user is avoided; the mouth 120 is located at an upper portion of the shell 110 for receiving nuts to be ground; the flap 130 is capable of being withdrawn and inserted into the mouth 120 for squeezing the nuts to be ground within the mouth 120 into abutting contact with the grinding cylinder 400; when the rotatory grinding cylinder portion 400 that drives through handle 200 grinds the nut, extrude the nut that is located oral area 120 through flap 130, enable the nut and laminate in grinding cylinder portion 400, avoid producing the idle condition emergence that does not grind the nut of grinding cylinder portion 400 among the grinding process, greatly improved the efficiency that the nut ground. The positioning part 140 is used for installing and positioning the cylinder assembly 100 at a clamped part, a first end part of the positioning part 140 is installed at a side part of the housing 110, the positioning part 140 has a left wing and a right wing which are located at the same horizontal plane, and a second end part which is located on the positioning part 140 away from the left wing and the right wing and is used for installing the locking part 300. Through designing the left wing and the right wing that are used for carrying out the centre gripping to the part upper surface that is gripped on location portion 140 to and the design is located the second end and is used for installing locking portion 300 in order to carry out the structure of centre gripping to the part lower surface that is gripped, more be favorable to stably carry out the centre gripping to the part that is gripped, and this location portion 140 structural design is simple, only needs a part just can realize the centre gripping to the part that is gripped, more is favorable to the production preparation.
As shown in fig. 1, 2 and 3, the barrel assembly 100 further includes a non-slip mat 150, the non-slip mat 150 is installed below the left wing and the right wing of the positioning portion 140, and the non-slip mat 150 has non-slip teeth on the outer surface thereof for supporting and protecting the left wing and the right wing of the positioning portion 140, so that the left wing and the right wing of the positioning portion 140 are not worn by the clamped portion and have frictional resistance with respect to the upper surface of the clamped portion. The locking part 300 comprises a screw 310 and a top block 320, the locking part 300 is mounted at the second end of the positioning part 140, the screw 310 of the locking part 300 is detachably and spirally matched with the second end of the positioning part 140, the top block 320 is spirally connected with the top of the screw 310, and the outer surface of the top block 320 is provided with an anti-slip tooth part, so that the top block 320 has friction resistance relative to the lower surface of the clamped part. The clamped part is clamped by the non-slip mat 150 mounted on the positioning part 140 of the barrel assembly 100 and the locking part 300, so that the nut grinder can be better fixed on the clamped part.
As shown in fig. 4, the grinding cylinder 400 includes a grinding cylinder 410 and a cylinder hoop 420, the cylinder hoop 420 is fixed in a splicing manner, surrounds and supports one side edge portion of the grinding cylinder 410 through a snap and a slot connection, the cylinder hoop 420 is located between the grinding cylinder 410 and the cylinder assembly 100, separates the grinding cylinder 410 from the cylinder assembly 100, keeps a constant distance between the grinding cylinder 410 and the cylinder assembly 100, and the peripheral wall of the grinding cylinder 410 has a cut opening. The grinding cylinder 410 is supported by the cylinder hoop 420, so that the grinding cylinder 400 driven by the handle 200 cannot deflect and swing to rub against the shell 110 no matter how long the nuts are ground, and the situation that the nuts are ground by the grinding cylinder 400 in the cylinder assembly 100 is avoided, and the situation that the nuts after being ground are communicated with metal or plastic powder generated by the grinding cylinder 410 and directly rubbed against the shell 110 and fall out of the grinding cylinder 410 and enter the storage device is avoided.
As another structure, as shown in FIG. 5, the periphery of the grinding cylinder 400 on the side away from the handle 200 has anti-friction protrusions, and the periphery of the grinding cylinder 400 has a cut-out. By the arrangement of the anti-friction bumps on the periphery of the grinding cylinder 400, the grinding cylinder 400 driven by the handle 200 can be prevented from being shifted in position in the cylinder assembly 100 and being swung to rub the shell 110 no matter how long the nuts are ground, and metal or plastic powder generated by direct friction between the grinding cylinder 400 and the shell 110 is prevented from communicating with the ground nuts and falling out of the grinding cylinder 400 into the storage device.
As shown in fig. 1 to 5, the cutting holes are arranged in a staggered manner, the cutting holes are arranged in a straight line from the handle 200 to the cylinder assembly 100 or in a spiral direction around the grinding cylinder 400, and the center distance between adjacent cutting holes is 4 to 8 mm. This kind of mode of arranging of cutting mouthful more is favorable to the omnidirectional to grind the nut, improves the efficiency of grinding the nut, can not produce great grinding resistance when carrying out the nut in a large number and grind. 4 ~ 8 mm's centre-to-centre spacing setting can effectively avoid when adjacent cutting mouth link up, can be more even with the nut grinding. Lie in the single hole area in the hole of the excretion nut residue on the barrel constitution 100 is single 8 ~ 10 times of cutting mouthful area to better overcoming the nut and grinding the residue and causing the jam to the nut grinding machine, making the nut grinding machine normally grind the nut, the hole adopts such area setting to set up and also can effectively prevent to be taken out and drop from the hole by the cutting mouthful by the nut that is ground when more profitable grinding residue is discharged.
The utility model has the advantages that: the nut grinding machine can not cause the grinding cylinder to swing while rotating and generate friction with the shell even if being used for a long time, further avoids metal or plastic powder generated by the friction between the grinding cylinder and the shell from being communicated with ground nuts and falling out of the grinding cylinder into the storage device, is beneficial to improving the purity of the ground nuts, is also beneficial to avoiding the phenomenon that a user eats nut powder or nut small pieces with metal or plastic powder, and well overcomes the problem of adverse effect on a human body; simultaneously in this nut grinding machine owing to open the system in the shell bottom and be favorable to the discharge of nut residue, just can be fine will be located the timely discharge of nut residue that exists in the gap of the inboard formation of grinding cylinder portion outside and shell, fine solution the nut residue to the rotatory hindrance of grinding cylinder portion to make the user not need often dismantle and clear up just can be fine grind the nut to it, greatly improved user's experience and felt.
In addition to the above embodiments, the present embodiment is based on the above preferred embodiments of the present invention, and the above descriptions are provided to enable workers to make various changes and modifications without departing from the technical spirit of the present invention. The technical scope of the present invention is not limited to the content of the specification, and must be determined according to the scope of the claims.

Claims (8)

1. A nut grinder is characterized in that: comprises a cylinder body assembly (100), a handle (200), a locking part (300) and a grinding cylinder part (400); the handle (200) is positioned at the outer side of the barrel assembly (100); the grinding cylinder part (400) is positioned inside the cylinder assembly (100); the handle (200) is integrally connected with the grinding cylinder part (400) to limit the cylinder assembly (100) between the handle and the grinding cylinder part, the handle (200) drives the grinding cylinder part (400) to rotate, and the cylinder assembly (100) supports the grinding cylinder part (400); the locking part (300) is positioned at the bottom of the lowest end of the barrel assembly (100), and holes for draining nut residues are formed in the positions, facing the bottom of the lowest end, of the barrel assembly (100).
2. The nut grinder of claim 1, wherein: the cartridge assembly (100) comprises: a housing (110), a mouth (120), a flap (130), and a positioning portion (140); the shell (110) is used for accommodating the grinding cylinder part (400), and the bottom of the shell (110) facing the locking part (300) is provided with a hole for draining nut residues; the mouth (120) is located at the upper part of the shell (110) and is used for receiving nuts to be ground; the flap (130) is capable of being withdrawn and inserted into the mouth (120) for squeezing the nuts to be ground located in the mouth (120) into abutting contact with the grinding drum (400); the positioning part (140) is used for installing and positioning the cylinder assembly (100) at a clamped part, a first end part of the positioning part (140) is installed at the side part of the shell (110), the positioning part (140) is provided with a left wing and a right wing which are located on the same horizontal plane, and a second end part which is far away from the left wing and the right wing and is located on the positioning part (140) and used for installing the locking part (300).
3. The nut grinder of claim 2, wherein: the cylinder assembly (100) is further provided with anti-slip pads (150), the anti-slip pads (150) are installed below the left wing and the right wing of the positioning portion (140), and the anti-slip pads (150) are used for supporting the left wing and the right wing of the positioning portion (140) and enabling the left wing and the right wing of the positioning portion (140) to have frictional resistance relative to the upper surface of the clamped portion.
4. The nut grinder of claim 2 wherein: the locking part (300) comprises a screw rod (310) and a top block (320), the locking part (300) is installed at the second end part of the positioning part (140), the screw rod (310) of the locking part (300) is in detachable spiral fit with the second end part of the positioning part (140), the top block (320) is in spiral connection with the top of the screw rod (310), and the top block (320) has friction resistance relative to the lower surface of the clamped part.
5. The nut grinder of claim 1 wherein: the periphery of one side edge of the grinding cylinder part (400) far away from the handle (200) is provided with an anti-friction convex point, and the periphery wall of the grinding cylinder part (400) is provided with a cutting opening.
6. The nut grinder of claim 1, wherein: the grinding cylinder part (400) comprises a grinding cylinder (410) and a cylinder hoop (420), the cylinder hoop (420) is fixed in a splicing mode, is connected with a clamping groove through a buckle and is wrapped and supported on one side edge part of the grinding cylinder (410), the cylinder hoop (420) is located between the grinding cylinder (410) and the cylinder body assembly (100), the grinding cylinder (410) is separated from the cylinder body assembly (100), a constant interval is kept between the grinding cylinder (410) and the cylinder body assembly (100), and a cutting opening is formed in the peripheral wall of the grinding cylinder (410).
7. The nut grinder of any one of claims 5 or 6, wherein: the cutting openings are arranged in a staggered mode, the cutting openings are arranged along a straight line in the direction from the handle (200) to the cylinder assembly (100) or are arranged around the grinding cylinder portion (400) in the spiral direction, and the center distance between every two adjacent cutting openings is 4-8 mm.
8. The nut grinder of claim 1, wherein: the area of a single hole of a hole for discharging nut residues on the barrel assembly (100) is 8-10 times that of a single cutting opening.
CN202221113787.9U 2022-05-10 2022-05-10 Nut grinding machine Active CN217368618U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221113787.9U CN217368618U (en) 2022-05-10 2022-05-10 Nut grinding machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221113787.9U CN217368618U (en) 2022-05-10 2022-05-10 Nut grinding machine

Publications (1)

Publication Number Publication Date
CN217368618U true CN217368618U (en) 2022-09-06

Family

ID=83086081

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221113787.9U Active CN217368618U (en) 2022-05-10 2022-05-10 Nut grinding machine

Country Status (1)

Country Link
CN (1) CN217368618U (en)

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