CN220555537U - Bean feeding mechanism of coffee roasting machine - Google Patents

Bean feeding mechanism of coffee roasting machine Download PDF

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Publication number
CN220555537U
CN220555537U CN202321525795.9U CN202321525795U CN220555537U CN 220555537 U CN220555537 U CN 220555537U CN 202321525795 U CN202321525795 U CN 202321525795U CN 220555537 U CN220555537 U CN 220555537U
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China
Prior art keywords
plate
opening
bean
sliding
bean inlet
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CN202321525795.9U
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Chinese (zh)
Inventor
郭挺
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Wuhan Wanhuaguan Technology Co ltd
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Wuhan Wanhuaguan Technology Co ltd
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Priority to CN202321525795.9U priority Critical patent/CN220555537U/en
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Abstract

The utility model relates to a bean feeding mechanism of a coffee roasting machine, which comprises a bean feeding port outer plate, a bean feeding port sliding plate, a straight plate, a bean feeding port inner plate and an opening and closing plate, wherein the bean feeding port outer plate and the bean feeding port sliding plate are fixed on the outer side of the straight plate, and the bean feeding port sliding plate is arranged below the bean feeding port outer plate; the straight plate is provided with a first opening for coffee beans to enter, and the first opening corresponds to the position of the bean inlet sliding plate; the bean inlet inner plate is fixedly connected with the straight plate, a second opening for coffee beans to enter is formed in the bean inlet inner plate, the second opening corresponds to the first opening in position, and the opening and closing plate is arranged on the bean inlet inner plate and used for adjusting the opening size of the second opening. Through adopting the form that goes into beans mouth planking, income beans mouth slide, straight board, go into beans mouth lining board and switching board and combine together, simple structure, convenient assembling, it is smooth and easy to go into beans, goes into beans speed and easily controls.

Description

Bean feeding mechanism of coffee roasting machine
Technical Field
The utility model relates to coffee roasting equipment, in particular to a bean feeding mechanism of a coffee roasting machine.
Background
The freshly ground coffee retains the aroma and flavor of coffee beans to a greater extent than instant coffee, and is readily appreciated by consumers. The raw coffee beans are heated and baked to become cooked coffee beans, and then the cooked coffee beans can be ground to prepare coffee drinks, so that places such as a drink shop, an office building and the like for preparing the freshly ground coffee are provided with coffee baking machines, and drinkers can enjoy high-quality experience. The coffee roasting machine is provided with a roasting chamber for containing the raw coffee beans, the raw coffee beans are roasted by compressed gas or electric heating, the color of the raw coffee beans is gradually deepened, meanwhile, the silver skin on the surface is heated to crack, and along with the water loss, the silver skin is separated from the raw coffee beans and separated out through a gap of the roasting chamber.
The structure of the bean feeding mechanism of the existing coffee bean baking device is relatively complex, the bean feeding process is not smooth enough, and the speed of feeding beans is not easy to grasp.
Disclosure of Invention
In order to solve the problems, the utility model provides a bean feeding mechanism of a coffee roasting machine, which has a simple structure, smooth bean feeding and easy control of bean feeding speed.
The technical scheme adopted by the utility model is as follows: a coffee roasting machine goes into beans mechanism, its characterized in that: the bean inlet outer plate and the bean inlet sliding plate are fixed on the outer side of the straight plate, and the bean inlet sliding plate is arranged below the bean inlet outer plate; the straight plate is provided with a first opening for coffee beans to enter, and the first opening corresponds to the position of the bean inlet sliding plate; the bean inlet inner plate is fixedly connected with the straight plate, a second opening for coffee beans to enter is formed in the bean inlet inner plate, the second opening corresponds to the first opening in position, and the opening and closing plate is arranged on the bean inlet inner plate and used for adjusting the opening size of the second opening.
Preferably, the bean inlet outer plate comprises a first outer plate which is vertically arranged, a second outer plate and a third outer plate which are obliquely arranged, and the first outer plate, the second outer plate and the third outer plate and the straight plate enclose a bean inlet with wide upper part and narrow lower part.
Preferably, the bean inlet sliding plate comprises a first sliding plate which is obliquely arranged, a second sliding plate and a third sliding plate which are vertically arranged; the first sliding plate is inclined inwards from top to bottom, and the second sliding plate and the third sliding plate are respectively arranged at two sides of the first sliding plate; the upper opening of the bean inlet sliding plate corresponds to a bean inlet below the bean inlet outer plate, and the side opening corresponds to the first opening.
Preferably, the bean inlet inner plate is provided with a sliding groove, the opening and closing plate is provided with a sliding table matched with the sliding groove, the sliding table moves in the sliding groove from top to bottom, and the opening and closing plate gradually closes the second opening.
Preferably, the sliding groove is positioned above the second opening, is in smooth transition with the second opening, and has an opening width larger than that of the second opening.
Preferably, the opening and closing plate is provided with a locking groove, and the locking groove is positioned above the sliding table; the upper part of the sliding chute is provided with a clearance groove, and the top of the sliding chute is provided with a locking table which stretches into the groove; the width of the clearance groove is larger than that of the chute.
Preferably, when the sliding table moves to the limit position from bottom to top in the sliding groove, the top of the sliding table contacts with the bottom of the locking table, and the opening and closing plate is limited to move upwards continuously.
Preferably, the sliding table is positioned in the empty avoiding groove, and the lower part of the opening and closing plate is positioned in the sliding groove of the opening and expanding section; the opening and closing plate is inclined to one side, so that the locking table is clamped into the locking groove on the corresponding side, and the opening and closing plate is fixed.
Preferably, the bottom of the side opening of the bean inlet slide plate is higher than the bottom of the first opening, and the bottom of the first opening is higher than the bottom of the second opening.
Preferably, the bottom of the first outer plate is bent and provided with an observation lamp mounting position; the observation lamp installation position is used for installing an observation lamp and observing coffee beans in the bean bin.
The beneficial effects obtained by the utility model are as follows: through adopting the form that goes into beans mouth planking, income beans mouth slide, straight board, go into beans mouth lining board and switching board and combine together, simple structure, convenient assembling, it is smooth and easy to go into beans, goes into beans speed and easily controls.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is an exploded view of FIG. 1;
FIG. 3 is a schematic view showing the bean inlet fully closed;
FIG. 4 is a schematic view showing the bean inlet fully opened;
FIG. 5 is a schematic view showing the opening and closing plate being fixed to one side in an inclined manner;
FIG. 6 is a schematic view showing the opening and closing plate being fixed to the other side in an inclined manner;
in the figure: 1. a bean inlet outer plate; 11. a first outer plate; 12. a second outer plate; 13. a third outer plate; 2. a bean inlet slide plate; 21. a first slide plate; 22. a second slide plate; 23. a third slide plate; 3. a straight plate; 31. a first opening; 4. a bean inlet inner plate; 41. a second opening; 42. a chute; 43. an empty-avoiding groove; 44. a locking stage; 5. an opening/closing plate; 51. a sliding table; 52. a locking groove; 6. a handle; 7. and observing the lamp installation position.
Detailed Description
The utility model will be further described with reference to the drawings and the specific examples.
As shown in fig. 1-4, the bean inlet mechanism of the coffee roasting machine comprises a bean inlet outer plate 1, a bean inlet sliding plate 2, a straight plate 3, a bean inlet inner plate 4 and an opening and closing plate 5, wherein the bean inlet outer plate 1 and the bean inlet sliding plate 2 are fixed on the outer side of the straight plate 3, and the bean inlet sliding plate 2 is arranged below the bean inlet outer plate 1; the straight plate 3 is provided with a first opening 31 for coffee beans to enter, and the first opening 31 corresponds to the position of the bean inlet sliding plate 2; the bean inlet inner plate 4 is fixedly connected with the straight plate 3, a second opening 41 for allowing coffee beans to enter is formed in the bean inlet inner plate 4, the second opening 41 corresponds to the first opening 31 in position, and the opening and closing plate 5 is arranged on the bean inlet inner plate 4 and used for adjusting the opening size of the second opening 42. The coffee beans are put in the bean inlet outer plate 1, pass through the bean inlet sliding plate 2, and enter the bean bin from the first opening 31 and the second opening 41 for baking.
In this embodiment, the bean inlet outer plate 1 includes a first outer plate 11 vertically arranged, and a second outer plate 12 and a third outer plate 13 obliquely arranged, wherein the lower part of the first outer plate 11 is in an isosceles trapezoid structure with a wide upper part and a narrow lower part, and the second outer plate 12 and the third outer plate 13 are symmetrically arranged at two sides of the first outer plate 11; the first outer plate 11, the second outer plate 12 and the third outer plate 13 and the straight plate 3 jointly enclose a bean inlet with wide upper part and narrow lower part.
In this embodiment, the bean inlet slide plate 2 includes a first slide plate 21 arranged obliquely, and a second slide plate 22 and a third slide plate 23 arranged vertically; the second slide plate 22 and the third slide plate 23 have the same structure and are in an isosceles right triangle structure and are symmetrically arranged on two sides of the first slide plate 21; the first slide plate 21 is inclined from top to bottom to the inner side and is arranged on the bevel edges of the second slide plate 22 and the third slide plate 23; the upper opening of the bean inlet slide plate 2 corresponds to the bean inlet below the bean inlet outer plate 1, and the side opening corresponds to the first opening 31. The bean inlet slide plate 2 is used for communicating a bean inlet below the bean inlet outer plate 1 with the first opening 31, so that coffee beans can be vertically placed in and then horizontally enter the bean bin.
In this embodiment, as shown in fig. 3-4, the inner plate 4 of the bean inlet is provided with a sliding groove 42, the opening and closing plate 5 is provided with a sliding table 51 matched with the sliding groove 42, the sliding table 51 moves from top to bottom in the sliding groove 42, and the opening and closing plate 5 gradually closes the second opening 41. For controlling the speed of the coffee beans entering the bean bin.
Referring to fig. 2, the chute 42 is located above the second opening 41, and is in smooth transition with the second opening 41, and has a width larger than that of the second opening 41; when the sliding table 51 moves in the sliding groove 42, the lower side wall of the opening and closing plate 5 and the side wall of the second opening 41 slide in a matched manner, and in order to ensure the reliability and the tightness of the movement, the lower side wall of the opening and closing plate 5 and the side wall of the second opening 41 can be in clearance fit.
The opening and closing plate 5 is provided with a locking groove 52, and the locking groove 52 is positioned above the sliding table 51; the upper part of the chute 42 is provided with a clearance groove 43, and the top is provided with a locking table 44 extending into the groove; the width of the clearance groove 43 is larger than that of the chute 42, namely, the second opening 41, the chute 42 and the clearance groove 43 sequentially form a continuous notch with the narrow bottom and the wide top from bottom to top, so that the smooth movement of the opening and closing plate 5 is ensured.
As shown in fig. 4, when the sliding table 51 moves from bottom to top to an upper limit position (i.e., the opening and closing plate is completely opened) in the sliding groove 42, the top of the sliding table 51 contacts with the bottom of the locking table 44, so as to limit the opening and closing plate 5 to move upwards continuously, and prevent the opening and closing plate 5 from falling out.
Referring to fig. 5-6, the shutter 5 moves upward to open the second opening 41 in the bean inlet inner plate 4, when the shutter 5 needs to be fixed, the sliding table 51 is positioned in the empty-avoiding groove 43 on the corresponding side, and simultaneously the lower part of the shutter 5 is separated from the limitation of the side wall of the second opening 41 and moves into the wider sliding groove 42; at this time, the shutter 5 is tilted to one side, the lock base 44 on one side is engaged with the lock groove 52 on the corresponding side, the top of the slide table 51 on the other side is brought into contact with the bottom of the lock base 44, and the shutter 5 is hooked and fixed by the lock groove 52 and the lock base 44.
In this embodiment, the bottom of the side opening of the bean inlet slide plate 2 is higher than the bottom of the first opening 31, and the bottom of the first opening 31 is higher than the bottom of the second opening 42, so as to prevent coffee beans from being stuck between the combining surfaces of the first opening 31 and the second opening 42.
In this embodiment, the top of the opening and closing plate 5 is provided with a handle 6, and the handle 6 can be made of wood material, so that heat conduction is not easy, and scalding is prevented.
In the embodiment, the bottom of the first outer plate 11 is bent and provided with an observation lamp mounting position 7; the observation lamp mounting position 7 is used for mounting an observation lamp and observing coffee beans in the bean bin.
The foregoing has shown and described the basic principles and main structural features of the present utility model. The present utility model is not limited to the above examples, and various changes and modifications may be made therein without departing from the spirit and scope of the utility model as claimed. The scope of the utility model is defined by the appended claims and equivalents thereof.

Claims (10)

1. A coffee roasting machine goes into beans mechanism, its characterized in that: the bean inlet outer plate and the bean inlet sliding plate are fixed on the outer side of the straight plate, and the bean inlet sliding plate is arranged below the bean inlet outer plate; the straight plate is provided with a first opening for coffee beans to enter, and the first opening corresponds to the position of the bean inlet sliding plate; the bean inlet inner plate is fixedly connected with the straight plate, a second opening for coffee beans to enter is formed in the bean inlet inner plate, the second opening corresponds to the first opening in position, and the opening and closing plate is arranged on the bean inlet inner plate and used for adjusting the opening size of the second opening.
2. A coffee roasting machine bean feeding mechanism according to claim 1, wherein: the bean inlet outer plate comprises a first outer plate which is vertically arranged, a second outer plate and a third outer plate which are obliquely arranged, and the first outer plate, the second outer plate and the third outer plate and the straight plate are enclosed to form a bean inlet with wide upper part and narrow lower part.
3. A coffee roasting machine bean feeding mechanism according to claim 2, wherein: the bean inlet sliding plate comprises a first sliding plate which is obliquely arranged, a second sliding plate and a third sliding plate which are vertically arranged; the first sliding plate is inclined inwards from top to bottom, and the second sliding plate and the third sliding plate are respectively arranged at two sides of the first sliding plate; the upper opening of the bean inlet sliding plate corresponds to a bean inlet below the bean inlet outer plate, and the side opening corresponds to the first opening.
4. A coffee roasting machine bean feeding mechanism according to claim 1, wherein: the bean inlet inner plate is provided with a sliding groove, the opening and closing plate is provided with a sliding table matched with the sliding groove, the sliding table moves in the sliding groove from top to bottom, and the opening and closing plate gradually closes the second opening.
5. A coffee roasting machine bean feeding mechanism as claimed in claim 4, wherein: the sliding groove is positioned above the second opening, is in smooth transition with the second opening, and has a width larger than that of the second opening.
6. A coffee roasting machine bean feeding mechanism as claimed in claim 4, wherein: the locking groove is arranged on the opening and closing plate and is positioned above the sliding table; the upper part of the sliding chute is provided with a clearance groove, and the top of the sliding chute is provided with a locking table which stretches into the groove; the width of the clearance groove is larger than that of the chute.
7. A coffee roasting machine bean feeding mechanism as claimed in claim 6, wherein: when the sliding table moves to the limit position from bottom to top in the sliding groove, the top of the sliding table contacts with the bottom of the locking table to limit the opening and closing plate to move upwards continuously.
8. A coffee roasting machine bean feeding mechanism as claimed in claim 6, wherein: the sliding table is positioned in the clearance groove, and the lower part of the opening and closing plate is positioned in the sliding groove of the opening and expanding section; the opening and closing plate is inclined to one side, so that the locking table is clamped into the locking groove on the corresponding side, and the opening and closing plate is fixed.
9. A coffee roasting machine bean feeding mechanism according to claim 1, wherein: the bottom of the side opening of the bean inlet sliding plate is higher than the bottom of the first opening, and the bottom of the first opening is higher than the bottom of the second opening.
10. A coffee roasting machine bean feeding mechanism according to claim 2, wherein: the bottom of the first outer plate is bent and provided with an observation lamp installation position.
CN202321525795.9U 2023-06-15 2023-06-15 Bean feeding mechanism of coffee roasting machine Active CN220555537U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321525795.9U CN220555537U (en) 2023-06-15 2023-06-15 Bean feeding mechanism of coffee roasting machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321525795.9U CN220555537U (en) 2023-06-15 2023-06-15 Bean feeding mechanism of coffee roasting machine

Publications (1)

Publication Number Publication Date
CN220555537U true CN220555537U (en) 2024-03-05

Family

ID=90050464

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321525795.9U Active CN220555537U (en) 2023-06-15 2023-06-15 Bean feeding mechanism of coffee roasting machine

Country Status (1)

Country Link
CN (1) CN220555537U (en)

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