CN218486042U - Beating machine - Google Patents

Beating machine Download PDF

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Publication number
CN218486042U
CN218486042U CN202220420458.2U CN202220420458U CN218486042U CN 218486042 U CN218486042 U CN 218486042U CN 202220420458 U CN202220420458 U CN 202220420458U CN 218486042 U CN218486042 U CN 218486042U
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China
Prior art keywords
hammering
guide structure
guide
machine
mounting
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CN202220420458.2U
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Chinese (zh)
Inventor
莫惟高
胡祚才
陈昊
曾宪清
周爱荣
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Shenzhen Inspiration Tea Technology Co ltd
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Shenzhen Inspiration Tea Technology Co ltd
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Priority to CN202220420458.2U priority Critical patent/CN218486042U/en
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Abstract

The application discloses a beating machine. The beating machine comprises a vertical frame, a mounting frame and a beating piece, wherein the vertical frame is provided with a first guide structure, the mounting frame is arranged in a penetrating mode and is connected with a driving mechanism, the mounting frame is provided with a second guide structure, the second guide structure and the first guide structure are connected in a matching mode to guide the mounting frame to move up and down, and the beating piece is fixed on the mounting frame. The utility model provides a beat machine in embodiment, through be provided with first guide structure at the grudging post, the mounting bracket is provided with second guide structure, and wear to establish the mounting bracket and be connected with grudging post and actuating mechanism, thereby can make second guide structure and first guide structure cooperation be connected with guide mounting bracket up-and-down motion, simultaneously because beat the piece and fix on the mounting bracket, make the beat machine can be driven by the mounting bracket and do up-and-down motion, wherein first guide structure and second guide structure can play the effect of direction and absorption vibrations simultaneously.

Description

Beating machine
Technical Field
The application relates to the technical field of food processing machinery, in particular to a beating machine.
Background
At present, manual beating is needed in the process of making a plurality of nectar and a plurality of pastry food materials, which is extremely inconvenient, consumes a plurality of manpower and is insanitary. In the related art, the hammering machine can realize automation of hammering, but the hammering machine is easily affected by vibration during high-speed hammering to make the hammering machine unstable.
SUMMERY OF THE UTILITY MODEL
The embodiment of the application provides a beating machine.
The machine of beating of this application embodiment includes grudging post, mounting bracket and beats the piece, wherein the grudging post is equipped with first guide structure, the mounting bracket is worn to locate the grudging post is connected with actuating mechanism, the mounting bracket is equipped with second guide structure, second guide structure with first guide structure cooperation is connected with the guide the mounting bracket up-and-down motion, it fixes to beat the piece on the mounting bracket.
The utility model provides a beat machine in embodiment, through be provided with first guide structure at the grudging post, the mounting bracket is provided with second guide structure, and wear to establish the mounting bracket and be connected with grudging post and actuating mechanism, thereby can make second guide structure and first guide structure cooperation be connected with guide mounting bracket up-and-down motion, simultaneously because beat the piece and fix on the mounting bracket, make the beat machine can be driven by the mounting bracket and do up-and-down motion, wherein first guide structure and second guide structure can play the effect of direction and absorption vibrations simultaneously.
In some embodiments, the first guide structure includes a slide rail extending in an up-down direction, and the second guide structure includes a guide block slidably engaged with the slide rail.
In some embodiments, the number of the first guide structures and the number of the second guide structures are two, the first guide structures and the second guide structures are arranged in a one-to-one correspondence, and the two first guide structures are respectively located on two opposite sides of the hammering piece.
In some embodiments, the stand includes a base and an upright disposed on the base, the first guide structure is disposed on the upright, and the driving mechanism is mounted on the base.
In some embodiments, the mounting bracket includes a mounting plate, a connecting plate and a cantilever, the connecting plate and the cantilever are respectively located on two opposite sides of the mounting plate, the connecting plate is connected to the driving mechanism, the second guiding structure is disposed on the mounting plate, and the cantilever is fixedly connected to the hammering member.
In some embodiments, the hammering member comprises:
the end face of the rod body is provided with a concave-convex structure; and
the protruding block is arranged on the rod body, protrudes outwards from the rod body along the radial direction of the rod body, covers the end face in the axial direction of the rod body, comprises an upper surface and a lower surface, and is provided with a channel penetrating through the upper surface and the lower surface.
In some embodiments, the beating machine includes a cover body movably sleeved on the beating member, the cover body is formed with a containing groove, an opening of the containing groove faces downward, the containing groove is used for containing an end portion of the cup, and a bottom surface of the containing groove is used for being attached to a cup opening of the cup.
In some embodiments, the protruding block limits the downward movement of the cover out of the hammering piece, and in the case of the upward movement of the hammering piece, the protruding block can bring the cover to move upward together;
in the case of downward movement of the striking member, the connecting plate and the cover can be moved downward by gravity.
In some embodiments, the opening edge of the accommodating groove is provided with a flange, the hammering machine comprises a housing, the housing is provided with an avoiding hole, the hammering piece penetrates through the avoiding hole and reciprocates up and down, and under the condition that the hammering piece moves up to a preset position, the flange seals the edge of the avoiding hole.
In some embodiments, the driving mechanism comprises a motor, a screw rod and a movable sleeve, the motor is fixed on the stand, the screw rod is connected with the motor, the movable sleeve is arranged on the screw rod, the mounting frame is fixedly connected with the movable sleeve, and the motor drives the mounting frame to move up and down through the screw rod and the movable sleeve.
Additional aspects and advantages of the present application will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the present application.
Drawings
The above and/or additional aspects and advantages of the present application will become apparent and readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings of which:
fig. 1 is a schematic perspective view of a hammering machine according to an embodiment of the present application;
FIG. 2 is a schematic perspective view of a hammermill with the housing removed according to an embodiment of the present application;
FIG. 3 is a schematic perspective view of another angle of the thumper of the present embodiment without the housing;
FIG. 4 is a schematic view of a connection structure between a vertical plate and a mounting rack according to an embodiment of the present application;
FIG. 5 is an exploded view of FIG. 4 in accordance with an embodiment of the present application;
FIG. 6 is a schematic perspective view of a hammering member according to the embodiment of the present application;
FIG. 7 is a schematic perspective view of another angle of a beater according to embodiments of the present disclosure;
FIG. 8 is a schematic perspective view of a cover, a beater and a cup according to an embodiment of the present disclosure;
FIG. 9 is a schematic view of a partially exploded structure of a thumping machine according to an embodiment of the present application;
fig. 10 is a perspective view of another angle of the thumping machine according to the embodiment of the present application.
Description of the main element symbols:
the hammering machine 1000, the vertical frame 100, the hollow area 11, the vertical plate 12, the first guide structure 120, the sliding rail 121, the base 13, the mounting frame 200, the mounting plate 21, the second guide structure 210, the guide block 211, the connecting plate 22, the cantilever 23, the hammering piece 300, the rod body 31, the end surface 310, the concave-convex structure 311, the convex block 32, the upper surface 320, the lower surface 321, the channel 322, the driving mechanism 400, the motor 41, the screw rod 42, the movable sleeve 43, the cover body 500, the through hole 51, the accommodating groove 52, the opening 520, the bottom surface 521, the flanging 53, the shell 600, the avoiding hole 61, the cup 2000, the cup mouth 2001 of the cup 2000 and the end 2002 of the cup 2000.
Detailed Description
Reference will now be made in detail to embodiments of the present application, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to the same or similar elements or elements having the same or similar function throughout. The embodiments described below with reference to the accompanying drawings are illustrative and are only for the purpose of explaining the present application and are not to be construed as limiting the present application.
In the description of the present application, it is to be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," and the like are used in the orientations and positional relationships indicated in the drawings for convenience in describing the present application and for simplicity in description, and are not intended to indicate or imply that the referenced devices or elements must have a particular orientation, be constructed in a particular orientation, and be operated in a particular manner, and are not to be construed as limiting the present application. Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, features defined as "first" and "second" may explicitly or implicitly include one or more of the described features. In the description of the present application, "a plurality" means two or more unless specifically limited otherwise.
In the description of the present application, it is to be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; may be mechanically, electrically or may be in communication with each other; they may be directly connected or indirectly connected through intervening media, or may be connected through the use of two elements or the interaction of two elements. The specific meaning of the above terms in the present application can be understood by those of ordinary skill in the art as the case may be.
In this application, unless expressly stated or limited otherwise, the recitation of a first feature "on" or "under" a second feature may include the recitation of the first and second features being in direct contact, and may also include the recitation of the first and second features not being in direct contact, but being in contact with another feature between them. Also, the first feature being "on," "above" and "over" the second feature includes the first feature being directly on and obliquely above the second feature, or merely indicating that the first feature is at a higher level than the second feature. A first feature being "under," "below," and "beneath" a second feature includes the first feature being directly under and obliquely below the second feature, or simply meaning that the first feature is at a lesser elevation than the second feature.
The following disclosure provides many different embodiments or examples for implementing different features of the application. In order to simplify the disclosure of the present application, specific example components and arrangements are described below. Of course, they are merely examples and are not intended to limit the present application. Moreover, the present application may repeat reference numerals and/or letters in the various examples, such repetition is for the purpose of simplicity and clarity and does not in itself dictate a relationship between the various embodiments and/or configurations discussed. In addition, examples of various specific processes and materials are provided herein, but one of ordinary skill in the art may recognize applications of other processes and/or use of other materials.
Referring to fig. 1-4, an embodiment of the present application provides a hammering machine 1000. Wherein, beat machine 1000 includes grudging post 100, mounting bracket 200 and beats piece 300, and wherein, grudging post 100 is equipped with first guide structure 120, and mounting bracket 200 wears to establish and is connected with grudging post 100 and with actuating mechanism 400, and mounting bracket 200 is equipped with second guide structure 210, and second guide structure 210 is connected with the cooperation of first guide structure 120 in order to guide mounting bracket 200 up-and-down motion, beats piece 300 and fixes on mounting bracket 200.
The utility model provides a beat machine 1000 in this application embodiment, through being provided with first guide structure 120 at grudging post 100, mounting bracket 200 is provided with second guide structure 210, and wear to establish mounting bracket 200 and be connected with grudging post 100 and actuating mechanism 400, thereby can make second guide structure 210 and first guide structure 120 cooperation be connected with guide mounting bracket 200 up-and-down motion, simultaneously because beat piece 300 fixes on mounting bracket 200, make beat machine 1000 can be driven by mounting bracket 200 and do reciprocating motion from top to bottom, wherein first guide structure 120 and second guide structure 210 can play the effect of direction and absorption vibrations simultaneously.
It should be noted that the hammering machine 1000 may be used for making fruit tea and many confectionery products for home use or business use. It can be understood that in the process of rapid development of modern food industry, many kinds of food, such as fruit tea, fruit and vegetable juice, fruit and vegetable cake, etc., require corresponding fruit puree and vegetable puree. However, the maker often needs to manually beat the cut fruits or vegetables to obtain the corresponding fruit puree and vegetable puree, which causes great inconvenience to the home-making or commercial-making of the food and is not hygienic yet.
In order to solve the inconvenience of manual beating, the food industry hasten the birth of the beating machine 1000. Then, the conventional fruit and vegetable hammering machine 1000 is easily subjected to unstable vibration during the process of hammering the fruits and vegetables.
In this regard, the hammering machine 1000 provided in the present application is provided with the first guide structure 120 and the second guide structure 210, which can absorb shock while providing a guiding effect, so that the hammering machine 1000 is more stable during operation.
In addition, the beating machine 1000 provided in the present application can obtain clean and sanitary lemon, grape and green grape puree by only throwing the cut lemon, grape and green grape puree into the cup 2000 such as Xueke cup, placing the cup 2000 on the placing seat of the beating machine 1000, and then starting the beating machine 1000.
In particular, the thumper machine 1000 of the present application may be used for home production as well as commercial production. The hammermill 1000 includes a stand 100. The stand 100 can determine the overall height of the hammermill 1000. The stand 100 can provide an installation environment and support for the mounting frame 200, the hammer member 300, and the driving mechanism 400. The vertical frame 100 can be formed by an injection molding process, so that the weight of the hammering machine 1000 is light, the cost is saved, and the vertical frame 100 can also be made of other materials such as composite metal and the like, so that the hardness of the vertical frame 100 is ensured.
The hollow area 11 is formed on the vertical frame 100, so that the mounting frame 200 can be installed in the hollow area 11, for example, the mounting frame 200 can be fixed through the vertical frame 100 by a fastener such as a screw, and the mounting frame 200 can also be an injection molding product, but of course, can also be an alloy product. Further, the mounting bracket 200 is connected to the driving mechanism 400, and the second guiding structure 210 is disposed on the mounting bracket 200, and the mounting bracket 200 can move up and down in the hollow area 11 relative to the stand 100 in cooperation with the first guiding structure 120 disposed on the stand 100.
It is understood that the mounting bracket 200 can be connected to the stand 100 and moved relative to the stand 100, so that the height of the stand 100 can determine the overall height of the beater 1000, the beater 300 is fixed to the mounting bracket 200 and the driving mechanism 400 is connected thereto, and the mounting bracket 200 is moved relative to the stand 100, so that the height of the beater 300 can be adjusted to conveniently place the cup 2000 such as a nikk cup. Alternatively, mounting bracket 200 can be moved relative to stand 100 such that the height of beater 300 can be adjusted, the beating stroke of beater 300 can be reduced, the height of cup 2000 can be accommodated, and the size of beater 1000 can be reduced.
The general shape of the beating member 300 may be cylindrical, and the end of the beating member 300 may be further formed with an irregular concave-convex shape to better beat and obtain corresponding fruit and vegetable puree. Of course, the shape of striking member 300 may be other regular or irregular shapes, and the application is not limited thereto. The beating member 300 can be made of plastic, or the beating member 300 can be in an injection molding process shape, so that the manufacturing cost is low, and the process is simple. The hammering piece 300 can be made of composite materials such as alloy, so that the hammering piece 300 is enough in rigidity, can well keep the shape per se in the process of multiple use, is not easy to deform and is more durable.
Actuating mechanism 400 can be connected with mounting bracket 200, because it fixes on mounting bracket 200 to beat piece 300, actuating mechanism 400 can be indirectly connected with beating piece 300, first guide structure 120 and second guide structure 210 can be slide rail 121 and slider, multiple forms such as rack and pinion and spring are constituteed, under actuating mechanism 400's drive effect, mounting bracket 200 reciprocates at relative grudging post 100 under the guide cooperation of first guide structure 120 and second guide structure 210, thereby can drive and beat piece 300 and carry out up-and-down reciprocating motion, actuating mechanism 400 can provide power for beating the up-and-down reciprocating motion of piece 300 like this, beat piece 300 and beat into the mashed fruit and vegetable with corresponding fruit and vegetable through up-and-down reciprocating motion.
Drive mechanism 400 may include motor 41 as a power component and a transmission assembly as a coupling component connecting motor 41 and thumping member 300. The motor 41 can be a servo motor 41, the transmission assembly can be a plurality of transmission modes such as thread transmission, screw rod 42 transmission, gear transmission, rack transmission and the like, and the rotary motion of the motor 41 can be converted into linear motion through the transmission assembly to drive the hammering piece 300 to do up-and-down reciprocating motion.
Referring to fig. 4 and 5, in some embodiments, the first guiding structure 120 may include a sliding rail 121, the sliding rail 121 may extend in an up-and-down direction, the second guiding structure 210 may include a guiding block 211, and the guiding block 211 may be slidably clamped on the sliding rail 121. Thus, the slide rail 121 and the guide block 211 have simple structures, are reliably and stably matched, and can guide the vertical movement of the installation frame 200 relative to the vertical frame 100.
Specifically, there may be a plurality of slide rails 121, and there may also be a plurality of guide blocks 211, for example, in one embodiment, there may be two slide rails 121, which are respectively disposed at the left and right sides of the stand 100 and extend in the up-down direction, so as to determine the guiding direction as the up-down direction; the guide blocks 211 may be provided in two, respectively corresponding to the two slide rails 121. Of course, in other embodiments, the number of the sliding rails 121 and the number of the guide blocks 211 may be other, and is not limited thereto.
Referring to fig. 2 to 5, in some embodiments, there are two first guide structures 120 and two second guide structures 210, the first guide structures 120 and the second guide structures 210 are disposed in a one-to-one correspondence, and the two first guide structures 120 are respectively located on two opposite sides of the hammering member 300. So, set up two first guide structure 120 and second guide structure 210 one-to-one to be located the both sides of beating a 300 back of the body respectively, make when first guide structure 120 cooperates second guide structure 210 guide mounting bracket 200 up-and-down motion, the atress of mounting bracket 200 is even, and then drives to beat a 300 and beat when eating the material of cup 2000 in, the dynamics of beating a 300 and beating can be more even.
Specifically, the both sides that beat piece 300 carried on the back can be the left and right sides relative both sides of beating piece 300 in this embodiment, can understand, beat piece 300 and fix on mounting bracket 200, mounting bracket 200 wears to locate grudging post 100 and is connected with actuating mechanism 400, so two first guide structure 120 can set up the left and right sides at grudging post 100 respectively, it is corresponding, two second guide structure 210 can set up the left and right sides at mounting bracket 200 respectively, thereby first guide structure 120 cooperates the atress of the in-process mounting bracket 200 of second guide structure 210 guide mounting bracket 200 to be more stable, make mounting bracket 200 when the up-and-down motion drives the up-and-down motion of beating piece 300 simultaneously, it is more even to beat the power that piece 300 acts on edible material.
Referring to fig. 2 and 3, in some embodiments, the stand 100 may include a base 13 and an upright plate 12 disposed on the base 13, the first guide structure 120 may be disposed on the upright plate 12, and the driving mechanism 400 may be mounted on the base 13. In this way, the base 13 can provide a supporting function for the vertical plate 12, and the first guiding structure 120 is disposed on the vertical plate 12 and can extend along the vertical direction of the vertical plate 12, so as to cooperate with the second guiding structure 210 to guide the mounting bracket 200 to slide up and down on the vertical plate 12.
Specifically, the base 13 may be detachably connected to the vertical plate 12, or the base 13 may be welded to the vertical plate 12. The base 13 may be made of the same material as the upright plate 12, but may be made of a different material. The base 13 may be provided with a seat for placing the cup 2000, so as to provide a stable supporting function for the cup 2000, and the driving mechanism 400 may also be fixedly mounted on the base 13 by a fastener such as a screw. The first guiding structure 120 is disposed on the vertical plate 12 and can extend along the vertical direction of the vertical plate 12, so that the first guiding structure 120 cooperates with the second guiding structure 210 to guide the mounting frame 200 to slide up and down on the vertical plate 12 when the driving mechanism 400 provides power to the mounting frame 200.
Referring to fig. 4 and 5, in some embodiments, the mounting frame 200 may include a mounting plate 21, a connecting plate 22 and a cantilever 23, the connecting plate 22 and the cantilever 23 may be respectively disposed on two opposite sides of the mounting plate 21, the connecting plate 22 may be connected to the driving mechanism 400, the second guiding structure 210 may be disposed on the mounting plate 21, and the cantilever 23 may be fixedly connected to the hammering member 300.
In this way, by connecting the connecting plate 22 with the driving mechanism 400, the second guiding structure 210 is disposed on the mounting plate 21, the cantilever 23 is fixedly connected with the hammering piece 300, and the connecting plate 22 and the cantilever 23 are respectively located on two opposite sides of the mounting plate 21, so that the mounting frame 200, the hammering piece 300 and the driving mechanism 400 form a compact whole.
Specifically, the mounting bracket 200 may include a mounting plate 21, a connecting plate 22, a cantilever 23, and the like, where the mounting plate 21 connects the connecting plate 22 and the cantilever 23, the connecting plate 22 and the cantilever 23 are respectively located on two opposite sides of the mounting plate 21, and the opposite sides may be that the connecting plate 22 and the cantilever 23 are located on the front and rear sides of the mounting plate 21. The connecting plate 22 is inserted into the vertical frame 100 through the hollow-out area 11 of the vertical frame 100 to be connected with the driving mechanism 400, the cantilever 23 can be mounted on the mounting plate 21 through a fastener such as a screw, the cantilever 23 can be fixedly connected with the hammering piece 300, and here, the cantilever 23 can be directly connected with the hammering piece or indirectly connected with the hammering piece through other structures, so that the mounting frame 200 can drive the hammering piece 300 to reciprocate up and down on the vertical frame 100 through the cantilever 23.
Referring to fig. 6 and 7, in some embodiments, the hammering member 300 includes a rod 31 and a protrusion 32, and a concave-convex structure 311 is formed on an end surface 310 of the rod 31; the protrusion 32 is provided on the rod body 31, the protrusion 32 protrudes outward from the rod body 31 in a radial direction of the rod body 31 and covers the end surface 310 in an axial direction of the rod body 31, the protrusion 32 includes an upper surface 320 and a lower surface 321, and the protrusion 32 is formed with a passage 322 penetrating the upper surface 320 and the lower surface 321.
Therefore, the concave-convex structure 311 formed on the end surface 310 of the rod body 31 can better destroy fruits and vegetables, the fruits and vegetables are pounded into a hairy shape, the pounding effect is better, and the efficiency is higher; the arrangement of the convex blocks 32 can achieve a certain anti-splashing effect, meanwhile, the contact area between the convex blocks 32 and food materials can be increased, the rigid collision between the hammering piece 300 and the food materials is ensured, and an ideal hammering effect is obtained; the channel 322 penetrates through the upper surface 320 and the lower surface 321 of the protruding block 32, so that squeezing can be reduced, and splashing of juice and particles of food materials in the hammering process can be reduced.
Specifically, the rod 31 may be a plastic member, which is simple in manufacturing method, low in cost and light in weight of the rod 31. Of course, the rod body 31 may be an alloy member, such as an aluminum alloy product, and the like, so as to have sufficient hardness to ensure durability and self-strength. The rod body 31 may have various regular or irregular shapes such as a rectangular parallelepiped shape, a cylindrical shape, and a prismatic shape. The rod body 31 may be of a hollow structure, so that weight and manufacturing costs may be further reduced.
The concave-convex structure 311 is formed on the end surface 310 of the rod 31, it can be understood that the concave-convex structure 311 can be disposed on the end surface 310 of the rod 31 near the bottom of the cup 2000, and the concave-convex structure 311 can be in a dense saw-tooth shape, but can be in other shapes. Make actuating mechanism 400 under the high-speed up-and-down reciprocating motion's of the actuating rod body 31 condition, concave-convex structure 311 can destroy the fruit vegetables better, smashes the fruit vegetables and is the antler form, beats better, the efficiency is higher of effect.
The protruding block 32 is disposed on the rod 31, for example, may be disposed at a position of the rod 31 near the end, and the protruding block 32 may protrude outward from the rod 31 along the radial direction of the rod 31, so that the contact area between the hammering member 300 and the food material may be increased, thereby increasing the collision contact with the food material during the up-down reciprocating motion, and achieving a better hammering effect; meanwhile, the protruding block 32 can cover the end face 310 along the axial direction of the rod body 31, so that splashing of food juice and particles in the hammering process can be well avoided.
The protruding block 32 can include an upper surface 320 and a lower surface 321, a plurality of channels 322 penetrating through the upper surface 320 and the lower surface 321 can be formed on the protruding block 32, and the number of the channels 322 can be multiple, so that the channel 322 penetrates through the upper surface 320 and the lower surface 321 of the protruding block 32, extrusion of the hammering piece 300 and food materials in the hammering process can be reduced, and splashing of juice and particles of the food materials in the hammering process can be reduced.
Referring to fig. 8, in some embodiments, the hammering machine 1000 may include a cover body 500, the cover body 500 is movably sleeved on the hammering member 300, the cover body 500 may be formed with a containing groove 52, and an opening 520 of the containing groove 52 faces downward. The receiving groove 52 may be configured to receive the end portion 2002 of the cup 2000, and the bottom surface 521 of the receiving groove 52 may be configured to be attached to the rim 2001 of the cup 2000.
Thus, the cover body 500 can be used for covering the cup opening 2001 of the cup 2000, and when the beating member 300 reciprocates up and down to beat food materials contained in the cup 2000, the cover body 500 can prevent particles of the beaten food materials from splashing out of the cover body 500 to pollute the beating machine 1000; the arrangement of the containing groove 52 on the cover 500 enables the end 2002 of the cup 2000 to be wrapped in the containing groove 52, so that the cup has good sealing performance, and the food materials contained in the cup 2000 are prevented from being splashed by juice and particles in the hammering process.
Specifically, the cover 500 may be made of plastic, so that the manufacturing cost is low and the process is simple. Certainly, the cover body 500 can also be made of composite materials such as alloy and the like, the rigidity of the cover body is enough, the shape of the cover body can be well kept in the process of multiple times of use, and the cover body is not easy to deform and is more durable.
Cover 500 can be placed over hammer 300 such that a through hole 51 (shown in fig. 3) is formed in cover 500 for passing hammer 300. The shape and size of perforations 51 need to be adapted to the shape and size of beater 300. The cover body 500 may have a certain thickness so as to cover the cup opening 2001 well under the condition that the beating height is high, thereby preventing water and particles of food materials from splashing out of the cup opening 2001.
It can be understood that if the cover body 500 is made in a completely hollow manner, in the case that the bottom end of the cover body 500 is erected at the cup opening 2001, only the height of the cup 2000 is increased, and juice and particles of food materials contained in the cup 2000 cannot be prevented from splashing during hammering. Alternatively, if the container 52 is not provided and the lid body 500 is completely solid except for the through hole 51, it is not easy to clean the lid body 500 after hammering, not only increasing cost and weight.
Therefore, in the present application, the containing groove 52 is formed in the cover body 500, and the opening 520 of the containing groove 52 faces downward, i.e. toward the end portion 2002 of the cup 2000, during the hammering process, the bottom surface 521 of the containing groove 52 can be kept in a state of being attached to the cup opening 2001 of the cup 2000, so that the end portion 2002 of the cup 2000 can be wrapped in the containing groove 52, thereby having good sealing performance and preventing the splashing of juice and particles of the food material contained in the cup 2000 during the hammering process.
Referring to fig. 8 and 9, in some embodiments, the protrusion 32 can limit the downward movement of the cover 500 out of the hammering piece 300, and in case of the upward movement of the hammering piece 300, the protrusion 32 can bring the cover 500 to move upward together, and in case of the downward movement of the hammering piece 300, the cover 500 can move downward under the action of gravity.
Specifically, under the condition that the mounting bracket 200 includes the mounting plate 21, the connecting plate 22 and the cantilever 23, the cantilever 23 may be fixedly connected to the hammering piece 300 through a screw, a connecting block and other components, the cover 500 may be disposed below the cantilever 23 and movably sleeved on the hammering piece 300, at this time, the protruding block 32 disposed on the hammering piece 300 may limit the cover 500 to move downwards, so as to prevent the cover 500 from coming off from the hammering piece 300, and meanwhile, the protruding block 32 may also drive the cover 500 to move upwards together when the hammering piece 300 moves upwards.
Referring to fig. 9 and 10, in some embodiments, a flange 53 is formed at an edge of the opening 520 of the receiving groove 52, the hammering machine 1000 includes a housing 600, the housing 600 has an avoiding hole 61, the hammering member 300 penetrates the avoiding hole 61 and reciprocates up and down, and the flange 53 seals an edge of the avoiding hole 61 when the hammering member 300 moves up to a predetermined position.
In this way, by providing the burring 53 at the edge of the opening 520 of the receiving groove 52, the burring 53 seals the edge of the avoiding hole 61 when the hammering member 300 moves upward to a predetermined position, so that foreign materials from the outside can be prevented from entering the cup 2000.
Specifically, the thumper 1000 may also include a housing 600. The grudging post 100, mounting bracket 200 and actuating mechanism 400 all can be located shell 600, and shell 600 can play certain guard action to moving grudging post 100, mounting bracket 200 and actuating mechanism 400, and shell 600 can be equipped with dodges hole 61, beats a 300 and can wear to establish dodge hole 61 and up-and-down reciprocating motion to beat a 300 and can expose in shell 600 through dodging hole 61, so that with the waiting of cup 2000 in beat the edible material and carry out the rigid contact.
At this time, it can be understood that, if the flanging 53 is not disposed at the edge of the opening 520 of the containing groove 52, when the beating member 300 is exposed out of the housing 600 through the avoiding hole 61 and is in rigid contact with the food material to be beaten in the cup 2000, when the beating member 300 moves upward, a gap between the edge of the opening 520 of the containing groove 52 of the cover body 500 and the avoiding hole 61 is too large, which easily causes foreign matters in the external environment such as winged insects to enter the cup 2000, and pollutes the food material and the beating machine 1000.
Therefore, as shown in fig. 9 and 10, in the present application, the flanging 53 is disposed at the edge of the opening 520 of the receiving groove 52, and when the hammering member 300 moves upward to the predetermined position, the flanging 53 seals the edge of the avoiding hole 61, so that external foreign objects can be prevented from entering the cup 2000.
Referring to fig. 3 again, in some embodiments, the driving mechanism 400 may include a motor 41, a screw rod 42 and a movable sleeve 43, the motor 41 may be fixed on the stand 100, the screw rod 42 may be connected to the motor 41, the movable sleeve 43 may be sleeved on the screw rod 42, the mounting frame 200 may be fixedly connected to the movable sleeve 43, and the motor 41 may drive the mounting frame 200 to move up and down through the screw rod 42 and the movable sleeve 43.
Therefore, the screw rod 42 can convert the rotary motion of the motor 41 into the linear motion of the movable sleeve 43, so as to drive the movable sleeve 43 to move to drive the mounting rack 200 to lift, the motion mode is reliable, and the driving mode is simple.
Specifically, the vertical frame 100 may include a vertical plate 12 and a base 13, the motor 41 may be disposed at the bottom of the hammering machine 1000, for example, the motor may be disposed on the base 13 of the vertical frame 100, the movable sleeve 43 is sleeved on the screw rod 42, and the screw rod 42 is connected to the motor 41, so that the motor 41 may drive the screw rod 42 to rotate, so as to drive the movable sleeve 43 sleeved on the screw rod 42 to move on the screw rod 42 in the up-and-down direction.
The shape of the movable sleeve 43 can be a plurality of regular or irregular block-shaped bodies such as a cylindrical block, a rectangular block, a square block, a triangular block and the like. The movable sleeve 43 can be made of plastic, can also be made of composite metal materials such as aluminum alloy and the like, and can be designed according to actual requirements.
The movable sleeve 43 is also fixedly connected with the mounting frame 200, wherein the movable sleeve 43 can be detachably and fixedly connected with the mounting frame 200 through fasteners such as screws, and can also be fixedly connected in an adhesive manner. Therefore, the movable sleeve 43 can drive the mounting rack 200 to lift in the process of moving relative to the screw rod 42, and the mounting rack 200 can drive the hammering piece 300 to reciprocate up and down.
To sum up, beat machine 1000 in this application is through being provided with first guide structure 120 at grudging post 100, mounting bracket 200 is provided with second guide structure 210, and wear to establish mounting bracket 200 and be connected with grudging post 100 and actuating mechanism 400, thereby can make second guide structure 210 and first guide structure 120 cooperation be connected with guide mounting bracket 200 up-and-down motion, simultaneously because beat piece 300 is fixed on mounting bracket 200, make and beat machine 1000 can be driven by mounting bracket 200 and do reciprocating motion from top to bottom, wherein first guide structure 120 and second guide structure 210 can play the direction simultaneously and absorb the effect of vibrations.
In the description of the present specification, reference to the description of "one embodiment", "certain embodiments", "illustrative embodiments", "examples", "specific examples", or "some examples" or the like means that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the present application. In this specification, schematic representations of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
While embodiments of the present application have been shown and described, it will be understood by those of ordinary skill in the art that: numerous changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the application, the scope of which is defined by the claims and their equivalents.

Claims (9)

1. A hammering machine characterized by comprising:
the vertical frame is provided with a first guide structure;
the mounting frame penetrates through the vertical frame and is connected with the driving mechanism, the mounting frame is provided with a second guide structure, and the second guide structure is matched and connected with the first guide structure to guide the mounting frame to move up and down;
the hammering piece is fixed on the mounting frame;
the hammering piece includes:
the end face of the rod body is provided with a concave-convex structure; and
the protruding block is arranged on the rod body, protrudes outwards from the rod body along the radial direction of the rod body, covers the end face in the axial direction of the rod body, comprises an upper surface and a lower surface, and is provided with a channel penetrating through the upper surface and the lower surface.
2. The hammering machine of claim 1, wherein the first guide structure comprises a slide rail extending in an up-down direction, and the second guide structure comprises a guide block slidably engaged on the slide rail.
3. The hammering machine of claim 1, wherein there are two first guide structures and two second guide structures, and the first guide structures and the second guide structures are disposed in a one-to-one correspondence, and the two first guide structures are respectively located on two opposite sides of the hammering member.
4. The hammering machine of claim 1, wherein the upright frame comprises a base and an upright plate disposed on the base, the first guide structure is disposed on the upright plate, and the driving mechanism is mounted on the base.
5. The thumping machine of claim 1, wherein the mounting bracket comprises a mounting plate, a connecting plate and a cantilever, the connecting plate and the cantilever are respectively located on opposite sides of the mounting plate, the connecting plate is connected to the driving mechanism, the second guiding structure is disposed on the mounting plate, and the cantilever is fixedly connected to the thumping member.
6. The hammering machine according to claim 1, wherein the hammering machine comprises a cover body movably sleeved on the hammering member, the cover body is formed with a containing groove with an opening facing downward, the containing groove is used for containing an end of a cup, and the bottom surface of the containing groove is used for being attached to a cup opening of the cup.
7. The thumping machine of claim 6, wherein the projection limits the downward movement of the cover out of the thumping member, and in the case of an upward movement of the thumping member, the projection can carry the cover together with it;
in the case of downward movement of the hammering member, the cover can move downward under the influence of gravity.
8. The hammering machine according to claim 6, wherein a flange is provided at an edge of an opening of the accommodating groove, the hammering machine comprises a housing, the housing is provided with a relief hole, the hammering member penetrates the relief hole and reciprocates up and down, and the flange seals an edge of the relief hole in a case where the hammering member moves up to a predetermined position.
9. The hammering machine of claim 1, wherein the driving mechanism comprises a motor, a lead screw and a movable sleeve, the motor is fixed on the upright frame, the lead screw is connected with the motor, the movable sleeve is arranged on the lead screw, the mounting frame is fixedly connected with the movable sleeve, and the motor drives the mounting frame to move up and down through the lead screw and the movable sleeve.
CN202220420458.2U 2022-02-28 2022-02-28 Beating machine Active CN218486042U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220420458.2U CN218486042U (en) 2022-02-28 2022-02-28 Beating machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220420458.2U CN218486042U (en) 2022-02-28 2022-02-28 Beating machine

Publications (1)

Publication Number Publication Date
CN218486042U true CN218486042U (en) 2023-02-17

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220420458.2U Active CN218486042U (en) 2022-02-28 2022-02-28 Beating machine

Country Status (1)

Country Link
CN (1) CN218486042U (en)

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