Cereal food production equipment

文档序号:1796387 发布日期:2021-11-05 浏览:23次 中文

阅读说明:本技术 一种谷物食品生产设备 (Cereal food production equipment ) 是由 林嘉雪 于 2021-07-20 设计创作,主要内容包括:本发明公开了一种谷物食品生产设备,其结构设有底座、箱体、前盖、控制箱,箱体固定安装在底座上方,前盖与箱体为一体化结构且设在其前侧端,通过弹簧钢块的弹性性质,其受压令滚动球向侧外端位移,使相对的滚动球产生磁场作用力而活跃弹跳,配合弹变体对撞动体产生一定的撞动力,增加撞动体自转速度,由伸缩板的伸缩性配合整体进行伸缩变动,撑顶球之间的磁场变化,两两之间的相斥磁场使得撑顶球受下压到一定程度时,会在相斥力的作用下产生最大反作用力,而令伸缩板反向延伸,便于其与弹变体相配合,起到反撑城作用,从而使得承载板在活动装置的配合下,能循环做升降位移活动,便于承载板上承载的玉米能有位置变动,避免静态烘干。(The invention discloses a grain food production device, which is structurally provided with a base, a box body, a front cover and a control box, wherein the box body is fixedly arranged above the base, the front cover and the box body are of an integrated structure and are arranged at the front side end of the box body, rolling balls are enabled to displace towards the outer side end under the pressure of a spring steel block through the elastic property of the spring steel block, so that the opposite rolling balls generate magnetic field acting force to actively bounce, a certain collision force is generated on a collision body by matching with an elastic transformation body to increase the autorotation speed of the collision body, the expansion and contraction are integrally matched by the expansion and contraction of an expansion plate, the magnetic field between propping balls is changed, when the propping balls are pressed to a certain degree by the repulsive magnetic field between every two balls, the maximum reactive force is generated under the repulsive force, so that the expansion plate extends reversely, the expansion plate is convenient to be matched with the elastic transformation body to play a role of propping against the grain food, thereby a bearing plate is matched with a movable device, the corn drying device can circularly do lifting displacement movement, so that the position of the corn carried on the bearing plate can be changed conveniently, and static drying is avoided.)

1. The utility model provides a cereal food production facility, its structure is equipped with base (1), box (2), protecgulum (3), control box (4), box (2) fixed mounting is in base (1) top, protecgulum (3) and box (2) structure as an organic whole just establish its preceding side, control box (4) are located box (2) top and cooperate its characterized in that:

the line end (21), the drying chamber (22), the drying disc (23), the hot drying head (24) and the exhaust port (25) are arranged on the box body (2), the line end (21) is located at the top of the drying chamber (22), the hot drying head (24) is installed and matched on the outer side of the drying chamber (22), the drying disc (23) is embedded and connected into the drying chamber (22), the exhaust port (25) and the box body (2) are of an integrated structure and are arranged in a penetrating mode, and the exhaust port (25) is communicated with the drying chamber (22).

2. A cereal food production apparatus as claimed in claim 1 wherein: drying tray (23) are equipped with deckle board (231), loading board (232), head (233), loading board (232) both sides end sliding fit connects at deckle board (231) both ends inboardly, head (233) embedding is installed inside drying tray (23), head (233) clearance fit is in loading board (232) below.

3. A cereal food production apparatus as claimed in claim 2 wherein: the movable device (233) is provided with a support frame (a1), an elastic variant body (a2) and an impact body (a3), the lower end of the elastic variant body (a2) is hinged to the top end of the support frame (a1) and movably matched with the support frame, the upper end of the elastic variant body (a2) is hinged to the impact body (a3), and the impact body (a3) is movably matched with the position above the elastic variant body (a 2).

4. A cereal food production apparatus as claimed in claim 3 wherein: strut (a1) is equipped with expansion plate (a11), tough piece (a12), props a ball (a13), tough piece (a12) embedding is connected in expansion plate (a11) inboard, tough piece (a12) other end with prop a ball (a13) and be connected and clearance fit, prop a ball (a13) embedding activity inside expansion plate (a 11).

5. A cereal food production apparatus as claimed in claim 3 wherein: the elastic body (a2) is provided with a spring steel block (a21), a cavity channel (a22) and a rolling ball (a23), the cavity channel (a22) and the spring steel block (a21) are of an integrated structure and are embedded at one side position of the cavity channel, and the rolling ball (a23) moves inside the cavity channel (a 22).

6. A cereal food production apparatus as claimed in claim 3 wherein: the collision body (a3) is provided with a transverse frame (a31), a through rod (a32) and a rotating ball (a33), the transverse frame (a31) and the through rod (a32) are of an integrated structure and are connected to the positions of two side ends of the integrated structure, the rotating ball (a33) is connected with the through rod (a32) in a penetrating and movable fit mode, and the transverse frame (a31) is connected to the outer side of the rotating ball (a33) in a clearance fit mode.

7. The cereal food production facility of claim 6, wherein: the rotary ball (a33) is provided with an outer ball frame (q1), an impact body (q2), an inner ring (q3), a spring (q4) and a ring cavity (q5), wherein the ring cavity (q5) is located between the outer ball frame (q1) and the inner ring (q3), the tail end of the impact body (q2) is embedded into the inner side of the inner ring (q3), the impact body (q2) is in penetrating fit with the inner ring (q3), the impact body (q2) is embedded into the ring cavity (q5) in a movable mode, and the spring (q4) is wound on the middle section of the impact body (q2) and is in movable fit.

8. The cereal food production facility of claim 7, wherein: the impact body (q2) is provided with a connecting rod (q21), a jacking ball (q22) and a gravity ball (q23), the jacking ball (q22) is fixedly connected to the top end of the connecting rod (q21), and the gravity ball (q23) is connected to the bottom of the connecting rod (q 21).

Technical Field

The invention belongs to the field of food safety production, and particularly relates to grain food production equipment.

Background

The production of cereal food is a kind of food production field, which mainly processes and makes the harvested cereal into diversified foods, and in the process of making corn flakes from corn cereals, a dryer is needed to dry the corn after the tabletting process to make the corn into a dry substance, so that people can conveniently brew and eat the corn flakes for breakfast.

Based on the discovery of the inventor, the existing cereal food production equipment has the following defects:

when utilizing the drying-machine to dry the operation, place the maize after the preforming on bearing the weight of the dish usually, make it receive the steam in the drying chamber, and make the moisture evaporation, because the maize juice after the preforming is still more, the volume is the slice, makes maize and steam contact surface be heated inequality easily and lead to the stoving effect different, and static stoving on bearing the weight of the dish, needs longer stoving time.

There is therefore a need to propose a cereal production plant.

Disclosure of Invention

Aiming at the defects in the prior art, the invention aims to provide grain food production equipment to solve the problems in the prior art.

In order to achieve the purpose, the invention is realized by the following technical scheme: the utility model provides a cereal food production facility, its structure is equipped with base, box, protecgulum, control box, box fixed mounting is in the base top, the protecgulum just establishes its preceding side with box structure as an organic whole, the control box is located the box top and cooperatees.

The box is equipped with line end, drying chamber, drying disc, stoving head, gas vent, the line end is located drying chamber top position department, the installation cooperation of stoving head is in the drying chamber outside, the drying disc embedding is connected inside the drying chamber, the gas vent just link up the setting with the box structure as an organic whole, the gas vent link up with the drying chamber mutually.

As a further improvement of the invention, the drying tray is provided with a frame plate, a bearing plate and moving devices, the two side ends of the bearing plate are connected to the inner sides of the two ends of the frame plate in a sliding fit manner, the moving devices are embedded and installed in the drying tray, the moving devices are movably matched below the bearing plate, the frame plate is of a concave plate frame structure, the bearing plate is in a horizontal plate state and can perform lifting displacement movement, and five moving devices are arranged and are transversely and uniformly distributed relative to the bearing plate.

As a further improvement of the invention, the movable device is provided with a support frame, elastic bodies and an impact body, the lower ends of the elastic bodies are hinged and connected to the top end of the support frame and are movably matched, the upper ends of the elastic bodies are hinged and connected with the impact body, the impact body is movably matched at the position above the elastic bodies, the support frame and the elastic bodies are respectively provided with two, each support frame and each elastic body are matched in one group, the two groups are symmetrically arranged, and the impact body is arranged in a transverse state.

As a further improvement of the invention, the support frame is provided with an expansion plate, a tough block and a supporting ball, the tough block is embedded and connected to the inner side of the expansion plate, the other end of the tough block is connected with and movably matched with the supporting ball, the supporting ball is embedded and movable in the expansion plate, the expansion plate has vertical flexibility, the tough block is a silica gel block and has certain toughness supporting degree, and the supporting balls are magnetic balls and generate a repulsive magnetic field between every two balls.

As a further improvement of the invention, the elastic variant is provided with a spring steel block, a cavity channel and a rolling ball, the cavity channel and the spring steel block are of an integrated structure and are embedded at one side position of the cavity channel, the rolling ball moves in the cavity channel, the spring steel block is in an arc shape and can be deformed in an arc direction, the spring steel block has a certain elasticity, the cavity channel is provided with three positions, an outer frame is made of soft resin materials and has a certain deformation, and the rolling ball is provided with magnetic force.

As a further improvement of the invention, the collision body is provided with a transverse frame, a through rod and a rotating ball, the transverse frame and the through rod are of an integrated structure and are connected at the positions of two side ends of the transverse frame, the rotating ball is connected with the through rod in a penetrating way and is movably matched with the through rod, the transverse frame is connected to the outer side of the rotating ball in a clearance fit way, the transverse frame and the through rod are fixed to be transversely arranged, and the rotating ball is in a spherical state and can rotate.

As a further improvement of the invention, the rotary ball is provided with an outer ball frame, an impact body, an inner ring, springs and a ring cavity, wherein the ring cavity is positioned between the outer ball frame and the inner ring, the tail end of the impact body is embedded into the inner side of the inner ring, the impact body is in through fit with the inner ring, the impact body is embedded and movable in the ring cavity, the springs are wound on the middle section of the impact body and are in movable fit, the ring cavity is in a ring-shaped empty groove state, the number of the impact bodies is four, and the four impact bodies are uniformly distributed in a ring shape relative to the inner ring.

As a further improvement of the invention, the impact body is provided with a connecting rod, a top impact ball and a gravity ball, the top impact ball is fixedly connected to the top end of the connecting rod, the gravity ball is connected to the bottom of the connecting rod, the connecting rod is in an inverted splayed shape, the included angle between the top impact ball and the gravity ball can be changed in a small range, the top impact ball is a spherical object with magnetism, and the gravity ball is in a round ball structure and has a certain weight.

Compared with the prior art, the invention has the following beneficial effects:

1. the elastic property of the spring steel block enables the rolling balls to move towards the outer ends of the sides under the pressure, the opposite rolling balls generate magnetic field acting force to bounce actively, the elastic deformation body is matched with the collision body to generate certain collision power, the rotation speed of the collision body is increased, the expansion and contraction of the expansion plates are matched with the whole body to perform expansion and contraction change, the magnetic field between the propping balls changes, the repulsion magnetic fields between every two support balls enable the propping balls to generate maximum reaction force under the action of repulsion force when being pressed to a certain degree, the expansion plates extend reversely, the expansion plates are convenient to be matched with the elastic deformation body to play a role of resisting and propping, and therefore the bearing plates can circularly perform lifting and displacement activities under the matching of the movable devices, corns borne on the bearing plates can change positions, and static drying is avoided.

2. The weight of the gravity ball generates a pulling force on the connecting rod, so that the connecting rod can penetrate through the inner ring to displace, the top collision ball is driven to be far away from the inner side of the outer ball frame, the connecting rod can be driven to generate reverse displacement power under the elastic fit of the spring, the whole body of the collision body can continuously change the position of the inner ring, the top collision ball continuously generates an impact force on the inner side of the outer ball frame, the whole body of the rotation ball can vibrate due to the impact force in the rotation, certain vibration force is generated on the bearing plate, and the corn bearing on the bearing plate is further assisted to have activity.

Drawings

FIG. 1 is a schematic view of a cereal food production facility according to the present invention.

Fig. 2 is a schematic view of the internal cross-sectional structure of a case according to the present invention.

Fig. 3 is a schematic view of an internal sectional structure of a drying tray according to the present invention.

FIG. 4 is a schematic view of an internal cross-sectional structure of an active device according to the present invention.

Fig. 5 is a schematic view of the internal cross-section of a bracket of the present invention.

FIG. 6 is a schematic view of the internal cross-sectional structure of a modified elastomer of the present invention.

Fig. 7 is a schematic view of the internal sectional structure of an impact body of the present invention.

Fig. 8 is a schematic view of the internal cross-sectional structure of a rotary ball according to the present invention.

FIG. 9 is a schematic cross-sectional view of the inside of an impactor body according to the invention.

In the figure: the drying device comprises a base-1, a box body-2, a front cover-3, a control box-4, a line end-21, a drying chamber-22, a drying disk-23, a hot drying head-24, an exhaust port-25, a frame plate-231, a bearing plate-232, a movable device-233, a support frame-a 1, an elastic variant-a 2, an impact body-a 3, a telescopic plate-a 11, a tough block-a 12, a top supporting ball-a 13, a spring steel block-a 21, a cavity channel-a 22, a rolling ball-a 23, a transverse frame-a 31, a penetrating rod-a 32, a rotating ball-a 33, an outer ball frame-q 1, an impact body-q 2, an inner ring-q 3, a spring-q 4, a ring cavity-q 5, a connecting rod-q 21, a top impact ball-q 22 and a gravity ball-q 23.

Detailed Description

The invention is further described below with reference to the accompanying drawings:

example 1:

as shown in figures 1 to 6:

the invention provides grain food production equipment which is structurally provided with a base 1, a box body 2, a front cover 3 and a control box 4, wherein the box body 2 is fixedly arranged above the base 1, the front cover 3 and the box body 2 are of an integrated structure and are arranged at the front side end of the box body, and the control box 4 is positioned at the top of the box body 2 and is matched with the box body.

The box 2 is equipped with line end 21, drying chamber 22, drying disc 23, hot drying head 24, gas vent 25, line end 21 is located drying chamber 22 top position department, the cooperation of hot drying head 24 installation is in the drying chamber 22 outside, drying disc 23 embedding is connected inside drying chamber 22, gas vent 25 and box 2 be integrated structure and link up the setting, gas vent 25 link up with drying chamber 22 mutually.

Wherein, drying tray 23 is equipped with framed panel 231, loading board 232, head 233, loading board 232 both sides end sliding fit connects at framed panel 231 both ends inboard, head 233 embedding is installed inside drying tray 23, head 233 movable fit is in loading board 232 below, framed panel 231 is concave grillage structure, loading board 232 is the diaphragm state, and can go up and down the displacement activity, head 233 is equipped with five, and is horizontal evenly distributed about loading board 232, loading board 232 carries out the lift displacement activity of certain distance under head 233's cooperation, and the material of bearing in its top can produce inertia and have the position to change, makes the material not be in static state.

The movable device 233 is provided with a support frame a1, an elastic variant a2 and an impact body a3, the lower end of the elastic variant a2 is hinged and connected to the top end of a support frame a1 and is movably matched with the support frame a1, the upper end of the elastic variant a2 is hinged and connected with the impact body a3, the impact body a3 is movably matched with the position above the elastic variant a2, two support frames a1 and two elastic variant a2 are arranged, each support frame a1 and the elastic variant a2 are matched in one group, the two groups are symmetrically arranged, the impact body a3 is arranged in a transverse state, and after being pressed, under the arc deformation of the elastic variant a2 and the telescopic change of the support frame a1, the displacement is generated so that the upper substance has a descending limit.

The strut a1 is provided with a telescopic plate a11, a tough block a12 and a propping ball a13, the tough block a12 is embedded and connected inside a telescopic plate a11, the other end of the tough block a12 is connected with the propping ball a13 and movably matched with the telescopic plate a11, the propping ball a13 is embedded and moved inside the telescopic plate a11, the telescopic plate a11 has vertical flexibility, the tough block a12 is a silica gel block and has certain toughness supporting degree, the propping ball a13 is a ball with magnetism, and a repulsive magnetic field is generated between the two balls, the propping ball a13 compresses and changes the telescopic plate a11 under the compression condition, so that the magnetic field between the propping balls a13 is changed, and when the repulsive magnetic field is maximum, the auxiliary telescopic plate a11 generates a counteracting expanding force to enable the circular expansion of the propping balls.

The elastic body a2 is provided with a spring steel block a21, a cavity a22 and a rolling ball a23, the cavity a22 and the spring steel block a21 are of an integrated structure and are embedded at one side of the cavity, the rolling ball a23 moves inside the cavity a22, the spring steel block a21 is in an arc shape and can deform in an arc direction and has certain elasticity, the cavity a22 is provided with three positions, an outer frame is made of soft resin materials and has certain deformation, the rolling ball a23 has magnetic force, the cavity a22 can change along with the deformation of the spring steel block a21, the rolling ball a23 is enabled to move outwards, and the magnetic force of the rolling ball a23 is enabled to act on an external object conveniently.

The specific use mode and function of the embodiment are as follows: the personnel arranges the corn which is not dried by the tabletting on the drying disc 23 by placing the corn on the top surface end of the bearing plate 232 after the tabletting process, then closes the front cover 3, adjusts and controls the control box 4, so that the line end 21 is matched with the hot drying head 24, hot air is generated to act on the drying chamber 22, the drying operation of the flake corn on the drying disc 23 is convenient, when the bearing plate 232 is loaded with corn, the corn with more juice has certain heavy pressure on the bearing plate 232, so that the movable device 233 is pressed down to generate movable force, the corn is pressed by the collision body a3 and then is subjected to arc-shaped lateral concave extrusion through the elastic property of the spring steel block a21, the position of the hollow channel a22 is changed along with the deformation of the spring steel block a21, the rolling ball a23 is convenient to displace towards the lateral outer end, the oppositely arranged elastic body a2 is gradually concave, so that the opposite rolling ball a23 generates the acting force of a magnetic field, the rolling ball a23 is convenient to actively bounce, the matching elastic body a2 generates a certain collision force to the collision body a3, the self-rotation speed of the collision body a3 is increased, the spring steel block a21 is matched with the collision body a3 to press down and deform, meanwhile, the bracing frame a1 is also pressed down, the retractility of the telescopic plate a11 is matched with the whole to perform telescopic change, when the propping ball a13 is pressed down, the telescopic plate a11 and the toughening block a12 tend to be in a linear state under the assistance of the toughness property of the toughening block a12, the magnetic field change between the propping balls a13 is convenient, the repelling magnetic field between every two balls enables the propping ball a13 to be pressed down to a certain degree, the maximum reaction force is generated under the action of the repelling force, the telescopic plate a11 extends reversely, the matching with the elastic body a2 is convenient to perform the function of resisting the propping, the collision body 3 is favorable for propping up the bearing plate 232, and the bearing plate 232 can be circularly moved up and down under the matching of the movable device 233, the maize of being convenient for bear on the loading board 232 constantly produces inertia and has the position change on the loading board 232, avoids static stoving, and the drying efficiency who causes is not good to and the condition that the stoving degree differs.

Example 2:

as shown in fig. 7 to 9:

the collision body a3 is provided with a cross frame a31, a penetrating rod a32 and a rotating ball a33, the cross frame a31 and the penetrating rod a32 are integrated and connected at the two side end positions, the rotating ball a33 is connected with the penetrating rod a32 in a penetrating and movable fit mode, the cross frame a31 is connected to the outer side of the rotating ball a33 in a clearance fit mode, the cross frame a31 and the penetrating rod a32 are fixed in a transverse swing mode, the rotating ball a33 is in a spherical state and can perform self-rotation movement, the cross frame a31 drives the rotating ball a33 to move, and the penetrating rod a32 penetrates through the penetrating rod a32, so that the self-rotation movement can be generated simultaneously during the movement.

The rotary ball a33 is provided with an outer ball frame q1, an impact body q2, an inner ring q3, a spring q4 and a ring cavity q5, the ring cavity q5 is positioned between the outer ball frame q1 and the inner ring q3, the tail end of the impact body q2 is embedded into the inner side of the inner ring q3, the impact body q2 is matched with the inner ring q3 in a penetrating mode, the impact body q2 is embedded and movable in the ring cavity q5, the spring q4 is wound around the middle section of the impact body q2 and movably matched, the ring cavity q5 is in a ring-shaped empty groove state, the impact bodies q2 are provided with four and are uniformly distributed in a ring shape relative to the inner ring q3, the impact body q2 is matched with the spring q4 in an elastic mode and reciprocates through the inner ring q3 to displace, the impact effect on the outer ball frame q1 is facilitated, and better driving rotating force is achieved.

Wherein, the impactor q2 is equipped with connecting rod q21, top ball q22, gravity ball q23, top ball q22 fixed connection is on connecting rod q21 top, gravity ball q23 is connected in the connecting rod q21 bottom, connecting rod q21 is the form of falling eight characters, and the contained angle between can have small amplitude variation, top ball q22 is hit for having magnetic globular thing, gravity ball q23 is the ball structure, and has certain weight, gravity ball q 23's weight produces the pulling force to connecting rod q21, and it drives the top and hits ball q22 displacement to make it have the interval change to the foreign object, and make its impact dynamics to the foreign object production bigger.

The specific use mode and function of the embodiment are as follows: through the mutual penetration of the through rod a32 and the rotating ball a33, the rotating ball a33 can penetrate through the through rod a32 to rotate and roll, the cross frame a31 is in clearance fit with the periphery of the rotating ball a33 to assist the positioning in rotation, the weight of the gravity ball q23 generates a pulling force on the connecting rod q21, so that the connecting rod q21 can penetrate through the inner ring q3 to displace, the top impacting ball q22 is far away from the inner side of the outer ball frame q1, under the elastic fit of the spring q4, the connecting rod q21 can be driven to generate reverse displacement power, the whole impacting body q2 can penetrate through the inner ring q3 to change the position continuously, the top impacting ball q22 generates a constant impacting force on the inner side of the outer ball frame q1, the whole rotating ball a 8 can vibrate due to the force in rotation, a certain vibration force can be generated on the bearing plate 686232, the corn bearing plate is further assisted by the constant impact force on the corn bearing plate 232, and the corn bearing plate can be dried uniformly.

The technical solutions of the present invention or similar technical solutions designed by those skilled in the art based on the teachings of the technical solutions of the present invention are all within the scope of the present invention to achieve the above technical effects.

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