Mill is with preparation coffee powder machine of milling

文档序号:55939 发布日期:2021-10-01 浏览:55次 中文

阅读说明:本技术 一种工厂用制作咖啡粉碾磨机器 (Mill is with preparation coffee powder machine of milling ) 是由 钟洁莲 于 2021-07-29 设计创作,主要内容包括:本发明涉及一种碾磨机器,尤其涉及一种工厂用制作咖啡粉碾磨机器。本发明提供一种实现自动研磨咖啡豆、自动筛选咖啡粉和自动冲泡热咖啡的工厂用制作咖啡粉碾磨机器。一种工厂用制作咖啡粉碾磨机器,包括:第一支撑块,支撑板底部设有第一支撑块;第二支撑块,支撑板底部设有第二支撑块;自动碾磨机构,支撑板上设有自动碾磨机构;自动出料机构,自动碾磨机构上设有自动出料机构;自动下料机构,自动碾磨机构上设有自动下料机构。本发明通过碾磨杆对咖啡豆进行研磨,并形成咖啡粉,实现碾磨杆研磨咖啡豆形成咖啡粉效果。(The invention relates to a grinding machine, in particular to a grinding machine for making coffee powder for a factory. The invention provides a grinding machine for making coffee powder, which is used for factories for automatically grinding coffee beans, automatically screening coffee powder and automatically brewing hot coffee. A mill for making coffee grounds for a factory comprising: the bottom of the supporting plate is provided with a first supporting block; the bottom of the supporting plate is provided with a second supporting block; the automatic grinding mechanism is arranged on the supporting plate; the automatic discharging mechanism is arranged on the automatic grinding mechanism; the automatic blanking mechanism is arranged on the automatic grinding mechanism. According to the invention, the coffee beans are ground by the grinding rod to form coffee powder, so that the effect of grinding the coffee beans by the grinding rod to form the coffee powder is realized.)

1. A mill for coffee grounds for manufacturing plants, comprising:

the bottom of the supporting plate (3) is provided with a first supporting block (1);

the bottom of the supporting plate (3) is provided with a second supporting block (2);

the automatic grinding mechanism (4) is arranged on the supporting plate (3);

the automatic discharging mechanism (5) is arranged on the automatic grinding mechanism (4);

the automatic blanking mechanism (6) is arranged on the automatic grinding mechanism (4).

2. A mill for coffee grounds for factory use according to claim 1, wherein the automatic grinding mechanism (4) comprises:

a fixed barrel (41), wherein the fixed barrel (41) is arranged on the support plate (3);

the lower part of the fixed barrel (41) is provided with a first sieve plate (42);

the first connecting rod (43) is arranged on the supporting plate (3);

the upper part of the first connecting rod (43) is rotatably provided with a first rotating rod (44);

a grinding rod (45), wherein the lower part of the first rotating rod (44) is provided with the grinding rod (45);

the fixed motor (46), the fixed motor (46) is installed on the supporting plate (3);

and a first connecting belt (47) is connected between the output shaft of the fixed motor (46) and the first rotating rod (44).

3. A mill for coffee grounds for factory use according to claim 2, wherein the automatic discharge mechanism (5) comprises:

the second connecting rods (51) are arranged on the two sides of the fixed barrel (41);

the sliding rods (52) are arranged on the two second connecting rods (51) in a sliding manner;

the two second connecting rods (51) are wound with the first springs (53), and two ends of each first spring (53) are respectively connected with the second connecting rods (51) and the sliding rod (52);

the lower parts of the two sliding rods (52) are provided with grinding plates (54);

the first rotating rod (44) is provided with two rotating driving rods (55), and the rotating driving rods (55) are matched with the sliding rod (52).

4. A mill for coffee grounds for factory use according to claim 3, wherein the automatic blanking mechanism (6) comprises:

a discharge barrel (61), wherein the fixed motor (46) is provided with the discharge barrel (61);

the first rotating rod (44) is provided with a fixed wheel block (62);

a rotary feeding barrel (63) is arranged on the fixed wheel block (62).

5. A mill for coffee grounds for industrial use according to claim 4, further comprising screening means (7), the support plate (3) being provided with the screening means (7), the screening means (7) comprising:

the supporting and fixing column (71), and the supporting and fixing column (71) is arranged on the supporting plate (3);

the second sieve plate (72) is arranged on the supporting and fixing column (71) in a sliding mode;

the bottom of the second connecting rod (51) is provided with a third connecting rod (73);

the third connecting rod (73) is provided with a sliding gear strip (74) in a sliding manner, and the sliding gear strip (74) is connected with the second sieve plate (72);

the second spring (75) is wound on the third connecting rod (73), and two ends of the second spring (75) are respectively connected with the third connecting rod (73) and the sliding gear strip (74).

6. A mill for coffee grounds for industrial use according to claim 5, further comprising an automatic transfer mechanism (8), the support plate (3) being provided with the automatic transfer mechanism (8), the automatic transfer mechanism (8) comprising:

the supporting plate (3) is provided with a fourth connecting rod (81), and the fourth connecting rod (81) is arranged on the supporting plate (3);

the output shaft of the fixed motor (46) is connected with a second rotating rod (82), and the second rotating rod (82) is rotatably connected with a fourth connecting rod (81);

the fifth connecting rods (83), and the fifth connecting rods (83) are arranged on the two sides of the middle part of the supporting plate (3);

a fourth rotating rod (88), wherein the lower part of the fixed motor (46) is rotatably provided with the fourth rotating rod (88);

the gear set (84) is connected between the second rotating rod (82) and the fourth rotating rod (88);

a third rotating rod (86), wherein the third rotating rod (86) is rotatably connected between the two fifth connecting rods (83);

a second connecting belt (85) is connected between the fourth rotating rod (88) and the third rotating rod (86);

a gear lack (87) is arranged on the third rotating rod (86), and a toothed part of the gear lack (87) is meshed with the sliding gear rack (74).

7. A mill for coffee grounds for factory use according to claim 6, further comprising automatic water outlet means (9), the support plate (3) being provided with the automatic water outlet means (9).

8. A mill for coffee grounds for factory use according to claim 7, wherein the automatic water outlet means (9) comprises:

a water bucket (91), wherein the water bucket (91) is arranged on the supporting plate (3);

the middle part of the supporting plate (3) is provided with the collecting barrel (93), and the collecting barrel (93) is positioned below the second sieve plate (72);

a water outlet pipe (92), wherein the water outlet pipe (92) is connected between the water bucket (91) and the collecting bucket (93);

the connecting fixing blocks (94) are arranged, and the connecting fixing blocks (94) are arranged on two sides inside the water bucket (91);

blocking rod (95), sliding type is connected with blocking rod (95) between two connection fixed blocks (94), and blocking rod (95) are connected with second sieve (72).

Technical Field

The invention relates to a grinding machine, in particular to a grinding machine for making coffee powder for a factory.

Background

Coffee is a beverage prepared by grinding coffee beans into powder by using a coffee bean grinder, the coffee beans are generally uniformly filled into a grinding cylinder by using a traditional coffee bean grinder, then a handle is rotated to grind the coffee beans into powder, however, coffee powder with different thicknesses can be generated in the grinding process, so that the fragrance of the coffee cannot be completely diffused, and the drinking experience of the coffee is influenced.

Patent application CN212037251U, published as 20201201, a coffee bean grinder is disclosed, including grinding blade disc, the grinding vessel, the handle, the adjusting disk, the dog, the handle lid, the decollator, outer sawtooth, powder storehouse and pivot etc, the user pours coffee beans into the grinding vessel, rotate the handle lid after that, the handle lid drives the handle rotation, the handle drives the pivot and rotates, the pivot drives grinding blade disc and rotates, make grinding blade disc grind the coffee beans in the grinding vessel, and form the coffee powder, however, this equipment grinds coffee beans and relies on the manual completion of user, user's job task has been increased.

To this end, we have designed a milling machine for making coffee powder for plants that achieve automatic grinding of coffee beans, automatic screening of coffee powder and automatic brewing of hot coffee.

Disclosure of Invention

In order to overcome the defects that the traditional coffee bean grinder cannot automatically grind coffee beans, automatically screen coffee powder and automatically brew hot coffee, the invention has the technical problems that: provides a grinding machine for making coffee powder for factories which can automatically grind coffee beans, automatically screen coffee powder and automatically brew hot coffee.

The technical implementation scheme of the invention is as follows: a mill for making coffee grounds for a factory comprising:

the bottom of the supporting plate is provided with a first supporting block;

the bottom of the supporting plate is provided with a second supporting block;

the automatic grinding mechanism is arranged on the supporting plate;

the automatic discharging mechanism is arranged on the automatic grinding mechanism;

the automatic blanking mechanism is arranged on the automatic grinding mechanism.

Further, the automatic milling mechanism comprises:

the fixed barrel is arranged on the supporting plate;

the lower part of the fixed barrel is provided with a first sieve plate;

the supporting plate is provided with a first connecting rod;

the upper part of the first connecting rod is rotatably provided with a first rotating rod;

the lower part of the first rotating rod is provided with a grinding rod;

the supporting plate is provided with a fixed motor;

first connecting band is connected with first connecting band between fixed motor output shaft and the first rotary rod.

Further, automatic discharging mechanism includes:

the two sides of the fixed barrel are both provided with a second connecting rod;

the two second connecting rods are provided with sliding rods in a sliding manner;

the two second connecting rods are wound with the first springs, and two ends of each first spring are connected with the second connecting rods and the sliding rod respectively;

the lower parts of the two sliding rods are provided with grinding plates;

the first rotating rod is provided with two rotary driving rods, and the rotary driving rods are matched with the sliding rods.

Further, automatic unloading mechanism includes:

the discharge barrel is arranged on the fixed motor;

the first rotating rod is provided with a fixed wheel block;

the rotary feeding barrel is arranged on the fixed wheel block.

Further, still including screening mechanism, be equipped with screening mechanism in the backup pad, screening mechanism includes:

the supporting fixing column is arranged on the supporting plate;

the second sieve plate is arranged on the supporting and fixing column in a sliding manner;

the bottom of the second connecting rod is provided with a third connecting rod;

the third connecting rod is provided with a sliding gear strip in a sliding manner, and the sliding gear strip is connected with the second sieve plate;

and the second spring is wound on the third connecting rod, and two ends of the second spring are respectively connected with the third connecting rod and the sliding gear strip.

Further, still including automatic transport mechanism, be equipped with automatic transport mechanism in the backup pad, automatic transport mechanism includes:

the supporting plate is provided with a fourth connecting rod;

the output shaft of the fixed motor is connected with a second rotating rod which is rotatably connected with a fourth connecting rod;

the fifth connecting rods are arranged on two sides of the middle part of the supporting plate;

the lower part of the fixed motor is rotatably provided with a fourth rotating rod;

the gear set is connected between the second rotating rod and the fourth rotating rod;

a third rotating rod is rotatably connected between the two fifth connecting rods;

a second connecting belt is connected between the fourth rotating rod and the third rotating rod;

and the third rotating rod is provided with a gear lack, and the toothed part of the gear lack is meshed with the sliding gear rack.

Further, still including automatic water mechanism, be equipped with automatic water mechanism in the backup pad, automatic water mechanism includes:

a bucket is arranged on the supporting plate;

the middle part of the supporting plate is provided with a collecting barrel which is positioned below the second sieve plate;

the water outlet pipe is connected between the water bucket and the collecting bucket;

the connecting fixing blocks are arranged on two sides inside the water bucket;

the blocking rod is connected with the blocking rod between two connection fixing blocks in a sliding mode and is connected with the second sieve plate.

Compared with the prior art, the invention has the following advantages: 1. according to the invention, the grinding rod is used for grinding coffee beans to form coffee powder, so that the effect of grinding the coffee beans by the grinding rod to form the coffee powder is realized;

2. according to the coffee powder screening device, the grinding plate is separated from the first sieve plate, coffee powder falls onto the supporting plate through the through holes of the first sieve plate, larger coffee powder particles are left on the first sieve plate, and the coffee powder screening effect of the first sieve plate is realized;

3. according to the automatic coffee bean feeding device, when the rotary feeding barrel rotates to be aligned with the outlet of the discharging barrel, coffee beans fall into the rotary feeding barrel through the outlet of the discharging barrel, so that the workload of manually pouring coffee beans is reduced, and the automatic coffee bean feeding effect is realized;

4. according to the invention, a shaking power is formed by the second sieve plate, coffee powder on the second sieve plate is shaken, and the coffee powder is screened for the second time, so that the coffee powder screening effect of the second sieve plate is realized.

Drawings

Fig. 1 is a schematic perspective view of the present invention.

Fig. 2 is a schematic perspective view of the automatic milling mechanism of the present invention.

Fig. 3 is a schematic perspective view of the automatic discharging mechanism of the present invention.

Fig. 4 is a schematic perspective view of the automatic blanking mechanism of the present invention.

Fig. 5 is a schematic perspective view of the screening mechanism of the present invention.

Fig. 6 is a schematic perspective view of the automatic transfer mechanism of the present invention.

Fig. 7 is a schematic view of the automatic water outlet structure of the present invention.

Description of reference numerals: 1. a first supporting block, 2, a second supporting block, 3, a supporting plate, 4, an automatic grinding mechanism, 41, a fixed barrel, 42, a first sieve plate, 43, a first connecting rod, 44, a first rotating rod, 45, a grinding rod, 46, a fixed motor, 47, a first connecting belt, 5, an automatic discharging mechanism, 51, a second connecting rod, 52, a sliding rod, 53, a first spring, 54, a grinding plate, 55, a rotating driving rod, 6, an automatic blanking mechanism, 61, a discharging barrel, 62, a fixed wheel block, 63, a rotating feeding barrel, 7, a screening mechanism, 71, a supporting fixed column, 72, a second sieve plate, 73, a third connecting rod, 74, a sliding gear strip, 75, a second spring, 8, an automatic conveying mechanism, 81, a fourth connecting rod, 82, a second rotating rod, 83, a fifth connecting rod, 84, a gear set, 85, a second connecting belt, 86, a third rotating rod, 87, a gear lacking gear, 88. a fourth rotating rod 9, an automatic water outlet mechanism 91, a water bucket 92, a water outlet pipe 93, a collecting bucket 94, a connecting fixing block 95 and a blocking rod.

Detailed Description

The invention is further described below with reference to the figures and examples.

Example 1

A mill for making coffee powder in a factory is shown in figures 1-4 and comprises a first supporting block 1, a second supporting block 2, a supporting plate 3, an automatic milling mechanism 4, an automatic discharging mechanism 5 and an automatic discharging mechanism 6, wherein the first supporting block 1 is arranged on the front side of the bottom of the supporting plate 3, the second supporting block 2 is arranged on the rear side of the bottom of the supporting plate 3, the automatic milling mechanism 4 is arranged on the supporting plate 3, the automatic discharging mechanism 5 is arranged on the automatic milling mechanism 4, and the automatic discharging mechanism 6 is arranged on the automatic milling mechanism 4.

When people want to grind coffee beans, the grinding machine for making coffee powder for factories can be used, firstly, a user starts the automatic grinding mechanism 4, then the coffee beans are put into the automatic blanking mechanism 6, the coffee beans fall into the automatic grinding mechanism 4 through the automatic blanking mechanism 6, the automatic grinding mechanism 4 grinds the coffee beans and forms the coffee powder, the automatic grinding mechanism 4 drives the automatic discharging mechanism 5 to operate, the automatic discharging mechanism 5 opens the outlet of the automatic grinding mechanism 4, the coffee powder falls onto the supporting plate 3 through the outlet of the automatic grinding mechanism 4, after the coffee beans are completely ground, the automatic grinding mechanism 4 is closed, and the actions are stopped.

Automatic mechanism 4 of milling is including fixed bucket 41, first sieve 42, head rod 43, first rotary rod 44, the pole 45 of milling, fixed motor 46 and first connecting band 47, 3 front sides of backup pad are equipped with fixed bucket 41, 41 lower parts of fixed bucket are equipped with first sieve 42, 3 front sides of backup pad are equipped with head rod 43, head rod 43 upper portion rotary type is equipped with first rotary rod 44, first rotary rod 44 lower part is equipped with the pole 45 of milling, fixed motor 46 is installed to 3 rear sides of backup pad, be connected with first connecting band 47 between fixed motor 46 output shaft and the first rotary rod 44.

The user starts fixed motor 46, fixed motor 46 output shaft drives first connecting band 47 and rotates, first connecting band 47 drives first rotary rod 44 and rotates, first rotary rod 44 drives grinding rod 45 and rotates, the user pours coffee bean into first rotary rod 44 entry again, coffee bean drops to fixed bucket 41 through first rotary rod 44 entry, grinding rod 45 grinds coffee bean, and form coffee powder, it forms the coffee powder effect to realize grinding rod 45 grinds coffee bean, the coffee powder drops on backup pad 3 through first sieve 42 through-hole, great coffee powder granule can be left over on first sieve 42, the coffee bean grinds the back, close fixed motor 46, above action stops.

Automatic discharging mechanism 5 is including second connecting rod 51, slide bar 52, first spring 53, grinding plate 54 and rotatory drive rod 55, both sides all are equipped with second connecting rod 51 around fixed bucket 41, all the slidingtype slide bar 52 that is equipped with on two second connecting rods 51, all around having first spring 53 on two second connecting rods 51, first spring 53 both ends are connected with second connecting rod 51 and slide bar 52 respectively, two slide bar 52 lower parts all are equipped with grinding plate 54, be equipped with two rotatory drive rod 55 on the first rotary rod 44, rotatory drive rod 55 and the cooperation of slide bar 52.

After the coffee beans are ground into coffee powder, the coffee powder is left on the grinding plate 54, and when the first rotating lever 44 is rotated, the first rotating lever 44 rotates the rotation driving lever 55, the rotation driving lever 55 is engaged with the sliding lever 52, thereby driving the sliding rod 52 to move back to the outside, the first spring 53 is compressed, the sliding rod 52 drives the grinding plate 54 to move back to the outside, so that the grinding plate 54 is separated from the first sieve plate 42, the coffee powder falls onto the support plate 3 through the through holes of the first sieve plate 42, larger coffee powder particles are left on the first sieve plate 42, the coffee powder screening effect of the first sieve plate 42 is realized, when the driving rod 55 is rotated to be separated from the sliding rod 52, the first spring 53 is reset, thereby moving the sliding rod 52 and the grinding plate 54 inward, and the grinding plate 54 presses and grinds the larger coffee powder particles on the first sieve plate 42, so that the coffee beans are uniformly ground into coffee powder.

Automatic unloading mechanism 6 is equipped with the feed bucket 61 including blowing bucket 61, tight pulley piece 62 and rotatory feedwell 63 in the fixed motor 46 front side, is equipped with tight pulley piece 62 on the first rotary rod 44, is equipped with rotatory feedwell 63 on the tight pulley piece 62.

Inside the user pours coffee beans into blowing bucket 61, when first rotary rod 44 rotates, first rotary rod 44 drives tight pulley block 62 and rotates, tight pulley block 62 drives rotatory feed cylinder 63 and rotates, when rotatory feed cylinder 63 rotated to export the alignment with blowing bucket 61, coffee beans dropped in rotatory feed cylinder 63 through blowing bucket 61 export, rotatory feed cylinder 63 rotated to export the back with blowing bucket 61, coffee beans stopped to drop in rotatory feed cylinder 63 through blowing bucket 61 export, repeat the above-mentioned action, can realize intermittent type nature coffee beans unloading effect.

Example 2

On the basis of embodiment 1, as shown in fig. 5 to 7, the screening device 7 is further included, the screening device 7 is disposed on the front side of the supporting plate 3, the screening device 7 includes a supporting and fixing column 71, a second sieve plate 72, a third connecting rod 73, a sliding gear strip 74 and a second spring 75, the supporting and fixing column 71 is disposed on the right portion of the front side of the supporting plate 3, the second sieve plate 72 is slidably disposed on the supporting and fixing column 71, the third connecting rod 73 is disposed on the rear side of the bottom of the second connecting rod 51 on the rear side, the sliding gear strip 74 is slidably disposed on the third connecting rod 73, the sliding gear strip 74 is connected to the second sieve plate 72, the second spring 75 is wound on the third connecting rod 73, and two ends of the second spring 75 are respectively connected to the third connecting rod 73 and the sliding gear strip 74.

After the coffee powder falls onto the second sieve plate 72 through the first sieve plate 42, in order to prevent the existence of large coffee powder particles in the coffee powder, a user pushes the sliding gear bar 74 upwards, the second spring 75 is compressed, the sliding gear bar 74 drives the second sieve plate 72 to move upwards, the sliding gear bar 74 is loosened, the second spring 75 resets, the sliding gear bar 74 and the second sieve plate 72 are driven to move downwards to the recovery position, the actions are repeated for multiple times, a shaking force can be formed on the second sieve plate 72, the coffee powder on the second sieve plate 72 is shaken, the coffee powder is screened for the second time, and the coffee powder screening effect of the second sieve plate 72 is realized.

The automatic conveying mechanism 8 is further included, the automatic conveying mechanism 8 is arranged on the rear side of the supporting plate 3, the automatic conveying mechanism 8 comprises a fourth connecting rod 81, a second rotating rod 82, a fifth connecting rod 83, a gear set 84, a second connecting belt 85, a third rotating rod 86, a missing gear 87 and a fourth rotating rod 88, the fourth connecting rod 81 is arranged on the right portion of the rear side of the supporting plate 3, the second rotating rod 82 is connected with an output shaft of the fixed motor 46, the second rotating rod 82 is rotatably connected with the fourth connecting rod 81, the fifth connecting rod 83 is arranged on the left side and the right side of the middle portion of the supporting plate 3, the fourth rotating rod 88 is rotatably arranged on the lower portion of the fixed motor 46, the gear set 84 is connected between the second rotating rod 82 and the fourth rotating rod 88, the third rotating rod 86 is rotatably connected between the two fifth connecting rods 83, the second connecting belt 85 is connected between the fourth rotating rod 88 and the third rotating rod 86, and the missing gear 87 is arranged on the third rotating rod 86, the toothed portion of the missing gear 87 meshes with the sliding rack 74.

The output shaft of the fixed motor 46 drives the second rotating rod 82 to rotate, the second rotating rod 82 drives the gear set 84 to rotate, the gear set 84 drives the fourth rotating rod 88 to rotate, the fourth rotating rod 88 drives the second connecting belt 85 to rotate, the second connecting belt 85 drives the third rotating rod 86 to rotate, the third rotating rod 86 drives the missing gear 87 to rotate, the toothed part of the missing gear 87 is meshed with the sliding gear strip 74, thereby causing the sliding gear rack 74 to move upward, the sliding gear rack 74 causing the second screening deck 72 to move upward, the second spring 75 to be compressed, when the toothed portion of the missing gear 87 is disengaged from the sliding rack 74, the second spring 75 is reset, thereby driving the sliding gear rack 74 and the second screening deck 72 to move down to the original position, repeating the above actions for a plurality of times, the second sieve plate 72 can automatically shake coffee powder, and the effect of automatically screening the coffee powder by the second sieve plate 72 is achieved.

Still including automatic water mechanism 9, 3 front sides of backup pad are equipped with automatic water mechanism 9, automatic water mechanism 9 is including cask 91, outlet pipe 92, collecting vessel 93, connect fixed block 94 and jam pole 95, 3 front side left parts of backup pad are equipped with cask 91, 3 front side middle parts of backup pad are equipped with collecting vessel 93, collecting vessel 93 is located second sieve 72 below, be connected with outlet pipe 92 between cask 91 and the collecting vessel 93, both parts all are equipped with about the inside right side of cask 91 and connect fixed block 94, sliding type is connected with jam pole 95 between two connection fixed blocks 94, jam pole 95 is connected with second sieve 72.

Coffee powder drops to collecting vessel 93 through second sieve 72, the user puts the cup in collecting vessel 93 below again, pour hot water into cask 91 after that, when second sieve 72 upward movement, second sieve 72 drives stifled pole 95 upward movement, stifled pole 95 breaks away from outlet pipe 92 entry, make hot water flow into collecting vessel 93 through outlet pipe 92 entry, and mix together with the coffee powder, form hot coffee, hot coffee flows into the cup through the outlet of collecting vessel 93, realize hot water automatic discharging effect, when second sieve 72 downward movement, second sieve 72 drives stifled pole 95 downstream, outlet pipe 92 entry is plugged up to stifled pole 95, make hot water can't flow into collecting vessel 93 through outlet pipe 92 entry.

The technical principle of the embodiment of the present invention is described above in conjunction with the specific embodiments. The description is only intended to explain the principles of embodiments of the invention and should not be taken in any way as limiting the scope of the embodiments of the invention. Based on the explanations herein, those skilled in the art will be able to conceive of other embodiments of the present invention without inventive step, and these embodiments will fall within the scope of the present invention.

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