Strawberry processing preliminary treatment is with automatic device of coring and pedicle of a fruit

文档序号:1090071 发布日期:2020-09-25 浏览:39次 中文

阅读说明:本技术 一种草莓加工预处理用自动去芯去蒂装置 (Strawberry processing preliminary treatment is with automatic device of coring and pedicle of a fruit ) 是由 张彬 于 2020-07-02 设计创作,主要内容包括:本发明公开了一种草莓加工预处理用自动去芯去蒂装置;包括主箱体,主箱体内设有工作腔,工作腔右侧连通设有开口向右的草莓排出腔,工作腔前后端壁间固定连接有处理箱,处理箱左侧设有前后贯通且向上向左开口的进料口,处理箱内设有左右贯通的处理腔,处理腔上侧连通设有芯蒂腔,通过处理齿轮与输送齿轮交替转动实现自动进料处理,自动化程度较高,通过插入杆插入草莓对草莓芯进行分离,插入过程中通过橡胶垫圈可以避免草莓损伤,通过顶杆向上弹出将草莓芯与草莓蒂一同顶至芯蒂腔内并排出,实现草莓芯与草莓蒂的同时分离,从而增加后续加工出的草莓制品的口感。(The invention discloses an automatic coring and pedicel removing device for strawberry processing pretreatment; including the main tank body, be equipped with the working chamber in the main tank body, working chamber right side intercommunication is equipped with opening strawberry discharge chamber to the right, fixedly connected with handles the case between the front and back end wall of working chamber, it link up and upwards open-ended feed inlet left to handle case left side and be equipped with around being equipped with, the processing chamber that link up about handling the incasement, processing chamber upside intercommunication is equipped with the core base of a fruit chamber, rotate in turn through handling gear and conveying gear and realize automatic feed and handle, degree of automation is higher, insert the strawberry through the inserted bar and separate the strawberry core, can avoid the strawberry damage through the rubber packing ring in the insertion process, upwards pop out through the ejector pin with the strawberry core with the strawberry base of a fruit together push up to the core base of a fruit intracavity and discharge, realize the while separation of strawberry core and the strawberry base of a fruit.)

1. The utility model provides a strawberry processing preliminary treatment is with automatic coring and pedicle removing device, includes the main tank body, its characterized in that: a working cavity is arranged in the main box body, a strawberry discharging cavity with a right opening is communicated with the right side of the working cavity, a processing box is fixedly connected between the front end wall and the rear end wall of the working cavity, a feed inlet which is communicated with the front and the rear and is opened upwards to the left is arranged on the left side of the processing box, a processing cavity which is communicated with the left and the right is arranged in the processing box, a core cavity is communicated with the upper side of the processing cavity, a lifting box cavity is communicated with the lower side of the processing cavity, a lifting box is connected with the lifting box in a sliding fit manner, a lifting block cavity is arranged in the lifting box, a limiting box lifting cavity with a left opening is communicated with the left side of the lifting block cavity, a lifting block is connected in the lifting block cavity in a sliding fit manner, a lifting block spring is fixedly connected between the lower end face of the lifting block and the lower end wall of the lifting block cavity, an inserting rod is fixedly connected with, lifting block upper end wall fixedly connected with the ejector pin that ejector pin chamber sliding fit is connected, lift case chamber right side intercommunication is equipped with the push pedal chamber, push pedal chamber right side intercommunication is equipped with crank carousel chamber, crank carousel chamber right side is equipped with and extends to backward crank band pulley chamber in the main tank, crank band pulley chamber right side is equipped with and is located the half gear chamber of working chamber rear side, half gear chamber rear side is equipped with the bevel gear chamber, bilateral symmetry normal running fit is connected with and extends forward to in the main tank rear end wall the conveyer belt shaft in the working chamber, the right side conveyer belt wheel axial extends to backward in the half gear chamber.

2. The automatic coring and pedicle removing device for strawberry processing pretreatment of claim 1, wherein: half gear chamber rear side be equipped with be located bevel gear chamber right side and with main tank body fixed connection's motor, motor front end wall fixedly connected with extends forward to the driving shaft in the half gear intracavity, fixedly connected with is located on the driving shaft processing half gear in the half gear intracavity, the terminal fixedly connected with of driving shaft front side carries half gear, right side half gear chamber rear side end fixedly connected with can with carry the conveying gear of half gear meshing, half gear chamber rear end wall internal rotation cooperation is connected and extends to backward the bevel gear intracavity and extend forward to processing power shaft in the half gear intracavity, processing power shaft front side end fixedly connected with can with processing half gear meshing's processing gear.

3. The automatic coring and pedicle removing device for strawberry processing pretreatment of claim 1, wherein: a processing transmission shaft which extends leftwards into the crank belt wheel cavity and rightwards into the bevel gear cavity is connected with the left end wall of the bevel gear cavity in a rotating and matching way, the right end of the treatment transmission shaft is fixedly connected with a first bevel gear, the rear end of the treatment power shaft is fixedly connected with a second bevel gear meshed with the first bevel gear, a turntable shaft which extends leftwards into the crank turntable cavity and rightwards into the crank belt wheel cavity is connected in a rotating and matching way on the left end wall of the crank belt wheel cavity, a crank transmission belt positioned in the crank belt wheel cavity is connected between the turntable shaft and the processing transmission shaft in a power fit manner, the tail end of the left side of the rotating disc shaft is fixedly connected with a crank rotating disc positioned in the crank rotating disc cavity, the left end face of the crank rotating disc is fixedly connected with a cylindrical pin, and a connecting rod extending upwards is hinged to the cylindrical pin.

4. The automatic coring and pedicle removing device for strawberry processing pretreatment of claim 1, wherein: the terminal fixedly connected with push pedal of cage right-hand member face upside, the connecting rod other end with the terminal surface is articulated under the push pedal, the terminal fixedly connected with spacing case of elevator left end face upside, be equipped with the decurrent trigger magnet chamber of opening in the spacing case, spacing case lift chamber lower extreme wall fixedly connected with trigger magnet that the trigger magnet chamber corresponds, trigger magnet chamber left side intercommunication is equipped with opening stopper chamber to the left, stopper intracavity sliding fit is connected with the magnetism stopper, magnetism stopper right-hand member face with fixedly connected with stopper spring between the stopper chamber right-hand member wall, cage chamber left side intercommunication be equipped with can with the spacing chamber that the stopper chamber corresponds.

5. The automatic coring and pedicle removing device for strawberry processing pretreatment of claim 1, wherein: the utility model discloses a lead screw, including the handle chamber, the handle chamber upper end wall fixedly connected with is located the rubber packing ring in the core base of a fruit chamber outside, core base of a fruit chamber front side intercommunication is equipped with the anterior core base of a fruit discharge chamber of opening, core base of a fruit chamber left and right sides symmetry intercommunication is equipped with the deflector chamber, deflector chamber rear side intercommunication is equipped with the direction chamber that resets, deflector chamber front end wall normal running fit is connected and extends to backward the deflector pivot of intracavity is reset in the direction, deflector pivot rear end face with fixedly connected with direction reset spring between the chamber rear end wall resets in the direction, fixedly connected with deflector in the deflector pivot.

6. The automatic coring and pedicle removing device for strawberry processing pretreatment of claim 1, wherein: the end fixedly connected with conveyer belt wheel of conveyer belt shaft front side, power fit is connected with between the conveyer belt wheel and runs through the conveyor belt of process chamber, be equipped with the fixed chamber of a plurality of equidistance settings and the inside and outside strawberry that link up in the conveyor belt.

Technical Field

The invention relates to the technical field related to food processing, in particular to an automatic coring and pedicle removing device for strawberry processing pretreatment.

Background

Strawberry need be removed before making into dried fruit or fruit sweets class product, take mostly to cut the strawberry base from removing the base at present, but because the strawberry shape variation in size, cut from the easy harm strawberry of operation, and can influence outward appearance and taste greatly behind the strawberry damage, be unfavorable for subsequent processing, on the other hand is comparatively difficult because the strawberry coring, present strawberry food processing mostly can be together processed together with the strawberry core, but the taste of strawberry core itself is relatively poor, together processing can influence off-the-shelf taste.

Disclosure of Invention

Aiming at the technical defects, the invention provides an automatic coring and pedicle removing device for strawberry processing pretreatment, which can overcome the defects.

The invention relates to an automatic core and pedicle removing device for strawberry processing pretreatment, which comprises a main box body, wherein a working cavity is arranged in the main box body, the right side of the working cavity is communicated with a strawberry discharging cavity with a rightward opening, a processing box is fixedly connected between the front end wall and the rear end wall of the working cavity, the left side of the processing box is provided with a feed inlet which is communicated from front to back and is opened upwards and leftwards, a processing cavity which is communicated from left to right is arranged in the processing box, the upper side of the processing cavity is communicated with a core pedicle cavity, the lower side of the processing cavity is communicated with a lifting box cavity, the lifting box cavity is connected with a lifting box in a sliding fit manner, a lifting block cavity is arranged in the lifting box, the left side of the lifting block cavity is communicated with a limiting box lifting cavity with a leftward opening, a lifting block is connected in the lifting block cavity in a sliding fit manner, lifting box upper end wall fixedly connected with inserts the pole, insert be equipped with in the pole to opening and downwardly extending to with the ejector pin chamber of lifter chamber intercommunication, lifter upper end wall fixedly connected with the ejector pin that ejector pin chamber sliding fit connects, lifter chamber right side intercommunication is equipped with the push pedal chamber, push pedal chamber right side intercommunication is equipped with crank carousel chamber, crank carousel chamber right side is equipped with to extend to backward crank pulley chamber in the main tank, crank pulley chamber right side is equipped with and is located the half gear chamber of working chamber rear side, half gear chamber rear side is equipped with the bevel gear chamber, bilateral symmetry normal running fit is connected with in the main tank rear end wall extends forward to the conveyer belt shaft in the working chamber, the right side conveyer belt wheel extends to behind the axial the half gear intracavity.

On the basis of the technical scheme, the rear side of the half gear cavity is provided with a motor which is positioned on the right side of the bevel gear cavity and is fixedly connected with the main box body, the front end wall of the motor is fixedly connected with a driving shaft which extends forwards into the half gear cavity, the driving shaft is fixedly connected with a processing half gear which is positioned in the half gear cavity, the tail end of the front side of the driving shaft is fixedly connected with a conveying half gear, the right side of the rear end of the half gear cavity is fixedly connected with a conveying gear which can be meshed with the conveying half gear, the rear end wall of the half gear cavity is connected with a processing power shaft which extends backwards into the bevel gear cavity and forwards extends into the half gear cavity in a rotating and matching manner, and the tail end of the front side of the processing power shaft is fixedly connected with a processing.

On the basis of the technical scheme, a processing transmission shaft which extends leftwards into the crank belt wheel cavity and rightwards into the bevel gear cavity is connected in a rotating matching manner on the left end wall of the bevel gear cavity, the right end of the treatment transmission shaft is fixedly connected with a first bevel gear, the rear end of the treatment power shaft is fixedly connected with a second bevel gear meshed with the first bevel gear, a turntable shaft which extends leftwards into the crank turntable cavity and rightwards into the crank belt wheel cavity is connected in a rotating and matching way on the left end wall of the crank belt wheel cavity, a crank transmission belt positioned in the crank belt wheel cavity is connected between the turntable shaft and the processing transmission shaft in a power fit manner, the tail end of the left side of the rotating disc shaft is fixedly connected with a crank rotating disc positioned in the crank rotating disc cavity, the left end face of the crank rotating disc is fixedly connected with a cylindrical pin, and a connecting rod extending upwards is hinged to the cylindrical pin.

On the basis of the technical scheme, the terminal fixedly connected with push pedal of lift case right-hand member face upside, the connecting rod other end with the terminal surface is articulated under the push pedal, the terminal fixedly connected with spacing case of lift piece left end face upside, be equipped with the decurrent trigger magnet chamber of opening in the spacing case, spacing case lift chamber lower extreme wall fixedly connected with the trigger magnet that the trigger magnet chamber corresponds, trigger magnet chamber left side intercommunication is equipped with the stopper chamber of opening left, stopper intracavity sliding fit is connected with the magnetism stopper, magnetism stopper right-hand member face with fixedly connected with stopper spring between the stopper chamber right-hand member wall, lift case chamber left side intercommunication be equipped with can with the spacing chamber that the stopper chamber corresponds.

On the basis of the technical scheme, the upper end wall fixedly connected with of the treatment cavity is located the rubber washer outside the core base of a fruit chamber, core base of a fruit chamber front side intercommunication is equipped with the anterior core base of a fruit discharge chamber of opening, core base of a fruit chamber left and right sides symmetry intercommunication is equipped with the deflector chamber, deflector chamber rear side intercommunication is equipped with the direction chamber that resets, deflector chamber front end wall internal rotation fit is connected and extends to backward the deflector pivot of the intracavity is reset in the direction, deflector pivot rear end face with fixedly connected with direction reset spring between the chamber rear end wall resets in the direction, fixedly connected with deflector in the deflector pivot.

On the basis of the technical scheme, the tail end of the front side of the conveying belt wheel shaft is fixedly connected with a conveying belt wheel, a conveying belt penetrating through the treatment cavity is connected between the conveying belt wheels in a power-fit mode, and a plurality of strawberry fixing cavities which are arranged at equal intervals and are penetrated through inside and outside are arranged in the conveying belt.

The invention has the beneficial effects that: realize automatic feed through handling gear and the rotation in turn of carrying the gear and handle, degree of automation is higher, insert the strawberry through the inserted bar and separate the strawberry core, can avoid the strawberry damage through the rubber packing ring in the insertion process, upwards pop out through the ejector pin with the strawberry core with the strawberry base of a fruit together push up to the core base of a fruit intracavity and discharge, separate when realizing strawberry core and strawberry base of a fruit to increase the taste of the strawberry product of follow-up processing play.

Drawings

In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the invention, and it is obvious for those skilled in the art that other drawings can be obtained based on these drawings without creative efforts.

FIG. 1 is a schematic structural view of an automatic core and stem removing device for strawberry pre-processing according to the present invention;

FIG. 2 is a schematic sectional view taken along the line A-A in FIG. 1;

FIG. 3 is a schematic sectional view taken along line B-B in FIG. 1;

FIG. 4 is a schematic sectional view taken along the direction C-C in FIG. 1;

FIG. 5 is an enlarged view of the structure of FIG. 1 at D;

fig. 6 is an enlarged schematic view of fig. 5 at E.

Detailed Description

All of the features disclosed in this specification, or all of the steps in any method or process so disclosed, may be combined in any combination, except combinations of features and/or steps that are mutually exclusive.

The invention will now be described in detail with reference to fig. 1-6, for convenience of description, the following orientations will now be defined: the up, down, left, right, and front-back directions described below correspond to the up, down, left, right, and front-back directions in the projection relationship of fig. 1 itself.

As shown in fig. 1-6, the automatic core and pedicle removing device for strawberry preprocessing of the invention comprises a main box body 10, a working chamber 11 is arranged in the main box body 10, a strawberry discharging chamber 12 with a right opening is communicated with the right side of the working chamber 11, a processing box 32 is fixedly connected between the front end wall and the rear end wall of the working chamber 11, a feed inlet 14 which is communicated from front to back and is opened upwards to left is arranged at the left side of the processing box 32, a processing chamber 33 which is communicated from left to right is arranged in the processing box 32, a pedicle chamber 31 is communicated with the upper side of the processing chamber 33, a lifting box chamber 40 is communicated with the lower side of the processing chamber 33, a lifting box 47 is connected in a sliding fit manner in the lifting box chamber 40, a lifting block chamber 41 is arranged in the lifting box 47, a limiting box lifting chamber 56 with a left opening is communicated with the left side of the lifting block chamber 41, a lifting block 57, a lifting block spring 43 is fixedly connected between the lower end face of the lifting block 57 and the lower end wall of the lifting block cavity 41, an insertion rod 60 is fixedly connected with the upper end wall of the lifting box 47, an ejector rod cavity 58 which is opened and extends downwards to be communicated with the lifting block cavity 41 is arranged in the insertion rod 60, an ejector rod 59 which is connected with the ejector rod cavity 58 in a sliding fit manner is fixedly connected with the upper end wall of the lifting block 57, a push plate cavity 46 is communicated with the right side of the lifting box cavity 40, a crank turntable cavity 49 is communicated with the right side of the push plate cavity 46, a crank pulley cavity 27 which extends backwards to the main box body 10 is arranged on the right side of the crank pulley cavity 49, a half gear cavity 19 which is positioned at the rear side of the working cavity 11 is arranged on the right side of the crank pulley cavity 27, a bevel gear cavity 16 is arranged at the rear side of the half gear cavity 19, a conveying belt 22 which extends forwards to the working cavity 11 is connected in a left-right symmetrical rotating fit manner in, the right-hand conveyor pulley axle 22 extends rearwardly into the half gear cavity 19.

In addition, in one embodiment, the rear side of the half gear cavity 19 is provided with a motor 17 which is positioned at the right side of the bevel gear cavity 16 and is fixedly connected with the main box body 10, a driving shaft 50 which extends forwards into the half gear cavity 19 is fixedly connected with the front end wall of the motor 17, the driving shaft 50 is fixedly connected with a processing half gear 18 positioned in the half gear cavity 19, the front end of the driving shaft 50 is fixedly connected with a conveying half gear 23, the rear end of the right half gear cavity 19 is fixedly connected with a conveying gear 20 which can be meshed with the conveying half gear 23, a processing power shaft 64 which extends backwards into the bevel gear cavity 16 and forwards into the half gear cavity 19 is connected in a rotationally matched manner in the rear end wall of the half gear cavity 19, the front end of the processing power shaft 64 is fixedly connected with a processing gear 28 which can be meshed with the processing half gear 18.

In addition, in one embodiment, a processing transmission shaft 30 extending leftwards into the crank pulley cavity 27 and rightwards into the bevel gear cavity 16 is connected in a rotationally fitting manner in the left end wall of the bevel gear cavity 16, a first bevel gear 15 is fixedly connected to the right end of the processing transmission shaft 30, a second bevel gear 29 engaged with the first bevel gear 15 is fixedly connected to the rear end of the processing power shaft 64, a turntable shaft 25 extending leftwards into the crank turntable cavity 49 and rightwards into the crank pulley cavity 27 is connected in a rotationally fitting manner in the left end wall of the crank pulley cavity 27, a crank transmission belt 26 located in the crank pulley cavity 27 is connected in a rotationally fitting manner between the turntable shaft 25 and the processing transmission shaft 30, a crank turntable 48 located in the crank turntable cavity 49 is fixedly connected to the left end of the turntable shaft 25, a cylindrical pin 44 is fixedly connected to the left end surface of the crank turntable 48, the cylindrical pin 44 is hinged with a connecting rod 45 extending upwards.

In addition, in an embodiment, the terminal fixedly connected with push pedal 51 of lift case 47 right-hand member face upside, the connecting rod 45 other end with the terminal surface is articulated under push pedal 51, the terminal fixedly connected with stop box 61 of lift piece 57 left-hand member face upside, be equipped with the decurrent trigger magnet chamber 55 of opening in the stop box 61, end wall fixedly connected with under stop box lift chamber 56 with the trigger magnet 42 that trigger magnet chamber 55 corresponds, trigger magnet chamber 55 left side intercommunication is equipped with the stopper chamber 62 of opening left side, stopper chamber 62 sliding fit is connected with magnetism stopper 52, magnetism stopper 52 right-hand member face with fixedly connected with stopper spring 54 between the stopper chamber 62 right-hand member wall, lift case chamber 40 left side intercommunication be equipped with can with the stopper chamber 53 that stopper chamber 62 corresponds.

In addition, in one embodiment, the upper end wall of the processing cavity 33 is fixedly connected with a rubber gasket 63 located outside the core pedicle cavity 31, the front side of the core pedicle cavity 31 is communicated with a core pedicle discharge cavity 34 with a forward opening, the left and right sides of the core pedicle cavity 31 are symmetrically communicated with guide plate cavities 39, the rear side of each guide plate cavity 39 is communicated with a guide reset cavity 36, the front end wall of each guide plate cavity 39 is connected with a guide plate rotating shaft 38 which extends backwards into the guide reset cavity 36 in a rotating fit mode, a guide reset spring 35 is fixedly connected between the rear end surface of each guide plate rotating shaft 38 and the rear end wall of each guide reset cavity 36, and each guide plate 37 is fixedly connected to each guide plate rotating shaft 38.

In addition, in one embodiment, the front end of the belt wheel shaft 22 is fixedly connected with a belt wheel 21, a belt 24 penetrating through the processing cavity 33 is connected between the belt wheels 21 in a power fit manner, and a plurality of strawberry fixing cavities 13 which are arranged at equal intervals and penetrate inside and outside are arranged in the belt 24.

The applicant will now specifically describe an automatic coring and pedicle removal device for strawberry processing preparation according to the present application with reference to the accompanying drawings of fig. 1-6 and the description above:

in the initial state, the lifting box 47 is positioned at the bottom end of the lifting box cavity 40, the lifting block 57 is positioned at the top end of the lifting block cavity 41, and the magnetic limiting block 52 is just partially positioned in the limiting cavity 53;

when the strawberry processing machine starts to work, the strawberries to be processed are placed into the strawberry fixing cavity 13 through the feeding hole 14, the motor 17 is started, the motor 17 drives the driving shaft 50 to rotate, so that the processing half gear 18 and the conveying half gear 23 are driven to rotate, at the moment, the conveying half gear 23 is just meshed with the conveying gear 20, the processing half gear 18 is just disengaged from the processing gear 28, the conveying half gear 23 rotates, the conveying gear 20 drives the right conveying belt wheel shaft 22 to rotate, the right conveying belt wheel shaft 22 rotates, the conveying belt 21 drives the conveying belt 24 to rotate, so that the strawberry fixing cavity 13 drives the strawberries to move rightwards, when the strawberries move to the position right below the core pedicle cavity 31, the conveying half gear 23 is just disengaged from the conveying gear 20, the processing half gear 18 is just meshed with the processing gear 28, the conveying;

after the processing half-gear 18 is meshed with the processing gear 28, the processing half-gear 18 rotates to drive the processing power shaft 64 to rotate through the processing gear 28, so that the processing transmission shaft 30 is driven to rotate through the second bevel gear 29 and the first bevel gear 15, the processing transmission shaft 30 rotates to drive the turntable shaft 25 to rotate through the crank transmission belt 26, so that the crank turntable cavity 49 rotates, the crank turntable cavity 49 rotates to drive the cylindrical pin 44 to rotate around the turntable shaft 25, so that the push plate 51 is driven to reciprocate up and down through the connecting rod 45, when the push plate 51 moves upwards, because the magnetic limit block 52 is limited by the limit cavity 53, the limit box 61, the lifting block 57 and the ejector rod 59 cannot slide up and down, the push plate 51 moves upwards to drive the lifting box 47 to move upwards against the thrust of the lifting block spring 43, so as to drive the insertion rod 60 to move upwards to be inserted into the strawberry, and enable the strawberry core to remain in the, the upper end face of the strawberry is always pressed by the rubber gasket 63 in the inserting process, so that the strawberry is protected from being damaged by the rubber gasket 63, when the push plate 51 moves upwards to the top end of the push plate cavity 46, the lifting box 47 just moves upwards until the trigger magnet 42 is inserted into the trigger magnet cavity 55, so that the magnetic limiting block 52 overcomes the thrust of the limiting block spring 54 to move rightwards to be separated from the limiting cavity 53 under the action of the suction force between the trigger magnet 42 and the magnetic limiting block 52, the lifting block 57 instantly pops up and slides upwards under the action of the elastic force of the lifting block spring 43 after the limiting action of the magnetic limiting block 52 is lost, so as to drive the ejector rod 59 and the limiting box 61 to slide upwards, the ejector rod 59 moves upwards to eject the strawberry core in the ejector rod cavity 58 and the strawberry pedicle upwards together, and overcome the elastic force of the guide return spring 35 to drive the guide plate 37 and the guide plate rotating shaft 38 to rotate and open, after the strawberry core enters the core base cavity 31, the guide plate rotating shaft 38 rotates reversely under the elastic force of the guide return spring 35, so that the guide plate 37 is driven to be closed again, the strawberry core in the core base cavity 31 can leave the main box body 10 through the core base discharge cavity 34 under the action of self weight, when the mandril 59 ejects the strawberry core upwards, the push plate 51 starts to move downwards, and the mandril 59 and the insertion rod 60 are driven to move downwards through the lifting box 47 to be reset, at the moment, the conveying half gear 23 is just meshed with the conveying gear 20, and the processing half gear 18 is just disengaged from the processing gear 28;

the pretreatment before the strawberry processing is finished by repeating the processes, the core and the base of the strawberries are removed, and the treated strawberries can be discharged through the strawberry discharge cavity 12.

The invention has the beneficial effects that: realize automatic feed through handling gear and the rotation in turn of carrying the gear and handle, degree of automation is higher, insert the strawberry through the inserted bar and separate the strawberry core, can avoid the strawberry damage through the rubber packing ring in the insertion process, upwards pop out through the ejector pin with the strawberry core with the strawberry base of a fruit together push up to the core base of a fruit intracavity and discharge, separate when realizing strawberry core and strawberry base of a fruit to increase the taste of the strawberry product of follow-up processing play.

The above description is only an embodiment of the invention, but the scope of the invention is not limited thereto, and any changes or substitutions that are not thought of through the inventive work should be included in the scope of the invention. Therefore, the protection scope of the invention should be subject to the protection scope defined by the claims.

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