Disclosure of Invention
The invention mainly aims to provide a coffee machine for preventing coffee powder from being wetted and adhered.
Another object of the present invention is to provide a method of operating the above coffee machine.
In order to achieve the main purpose, the invention provides a coffee machine, which comprises a brewing unit and a bean grinding unit, wherein the brewing unit comprises a coffee brewing box and a pressing part, and the top of the coffee brewing box is provided with an opening; the pressing part is positioned above the coffee brewing box and can move up and down along the vertical direction. The bean grinding unit comprises a grinding body, a bean grinding cavity is arranged in the grinding body, and the bean grinding cavity is provided with a powder outlet. The powder outlet is provided with a powder feeding pipeline, the fixed end of the powder feeding pipeline is arranged on the mill body, the free end of the powder feeding pipeline is positioned between the opening of the coffee brewing box and the pressing part, the fixed end of the powder feeding pipeline is higher than the free end of the powder feeding pipeline, and the free end of the powder feeding pipeline is made of flexible materials.
According to the scheme, after the coffee powder is sent into the coffee brewing box by the bean grinding unit, the pressing part moves downwards and presses the powder sending pipeline, and a coffee powder outlet at the free end of the powder sending pipeline is sealed. When the coffee powder is required to be continuously sent into the coffee brewing box, the pressing part moves upwards to enable the powder sending pipeline to recover the shape under the action of elastic restoring force, and the coffee powder outlet is opened, so that the coffee powder is sent. The compacting component is matched with the powder feeding pipeline to prevent the pipeline and coffee powder in the bean grinding cavity from being wetted and adhered.
In a preferred embodiment, the brewing unit further comprises a base, the coffee brewing cartridge is mounted in the base, and the free end of the deformed powder feeding tube is located between the compacting member and the base.
Therefore, the coffee powder outlet at the free end of the powder feeding pipeline is tightly pressed between the pressing part and the peripheral wall of the coffee brewing box, and a good sealing effect can be realized.
The bean grinding unit further comprises a bean box, the bean box comprises a barrel body and an installation part located at one axial end of the barrel body, the installation part is connected with the grinding body through threads, an elastic clamping device is arranged on the barrel body, one end of the elastic clamping device is fixed on the barrel body, and the other end of the elastic clamping device is abutted to the grinding body.
In order to achieve the main purpose, the invention also provides a coffee machine, which comprises a brewing unit and a bean grinding unit, wherein the brewing unit comprises a coffee brewing box and a pressing part, the top of the coffee brewing box is provided with an opening, the pressing part is positioned above the coffee brewing box and can move up and down along the vertical direction, the bottom wall of the pressing part is tightly matched with the peripheral wall of the coffee brewing box, the bean grinding unit comprises a grinding body, a bean grinding cavity is arranged in the grinding body, and the bean grinding cavity is provided with a powder outlet; the powder outlet is provided with a powder feeding pipeline, the fixed end of the powder feeding pipeline is arranged on the mill body, the fixed end of the powder feeding pipeline is higher than the free end of the powder feeding pipeline, the pressing part is abutted to the free end of the powder feeding pipeline, and the coffee powder outlet at the free end of the powder feeding pipeline is closed.
In a preferred embodiment, the brewing unit further comprises a base, the coffee brewing cartridge is mounted in the base, and the free end of the powder feeding tube is located between the compacting member and the base.
The bean grinding unit also comprises a bean box, wherein the bean box comprises a barrel body and a mounting part positioned at one axial end of the barrel body, and the mounting part is connected with the grinding body through threads; an elastic clamping device is arranged on the cylinder body, one end of the elastic clamping device is fixed on the bean box, and the other end of the elastic clamping device is abutted on the grinding body.
Therefore, the bean box is detachably and fixedly connected with the grinding body, and the recovery of coffee beans in the bean box and the cleaning of the bean box can be conveniently realized. In addition, the elastic clamping device is convenient to realize tight fit between the bean box and the grinding body.
The elastic clamping device comprises a cover part, an elastic piece and a fixed column, wherein the cylinder body is provided with a mounting groove, the elastic piece and the fixed column are positioned in the mounting groove, and the cover part is arranged on the top wall of the mounting groove; the both ends of elastic component butt respectively on lid and fixed column, and the bottom of fixed column has columnar butt portion, and the diameter of butt portion is less than the diameter of fixed column, and butt portion passes the diapire of mounting groove and butt on the mill body.
Therefore, when the bean box is rotationally fastened, the fixing column is always abutted on the grinding body, so that the bean box is ensured to be fixedly connected with the grinding body all the time in the rotating process.
Still further, the top wall of the grinding body is provided with a plurality of constant head tanks evenly arranged along the circumference of the grinding body, the abutting part is abutted in one of the constant head tanks, the outer peripheral wall of one end of the cylinder body, which is close to the installation part, is provided with a stop part extending outwards along the radial direction of the cylinder body, and the stop part covers the upper part of the constant head tank.
Therefore, when the positioning groove is arranged to facilitate the rotation and fastening of the bean box, the abutting part is positioned to prevent the abutting part from sliding on the top wall of the mill body, and in addition, dust or other sundries can be prevented from entering the positioning groove by the arrangement of the stop part, so that the screwing process of the bean box is not smooth.
The soybean grinding unit further comprises a motor and an upper soybean grinding wheel, a lower soybean grinding wheel and a lower soybean grinding wheel mounting frame which are coaxially arranged, wherein the motor is arranged below the soybean grinding cavity, a driving shaft of the motor stretches into the soybean grinding cavity, the upper soybean grinding wheel, the lower soybean grinding wheel and the lower soybean grinding wheel mounting frame are positioned in the soybean grinding cavity, the lower soybean grinding wheel mounting frame is fixedly connected with the driving shaft, the upper soybean grinding wheel is fixed at the bottom of the mounting part, and the lower soybean grinding wheel is fixed on the lower soybean grinding wheel mounting frame.
Therefore, the upper bean grinding wheel is detachably and fixedly connected with the bean box, the lower bean grinding wheel is detachably and fixedly connected with the lower bean grinding wheel mounting frame, and the upper bean grinding wheel and the lower bean grinding wheel are convenient to clean and assemble.
In order to achieve the above another object, the present invention provides a method for operating a coffee machine, wherein the coffee machine comprises the following steps:
the bean grinding unit grinds the coffee beans into coffee powder;
the coffee powder enters the coffee brewing box from the bean grinding cavity through the powder feeding pipeline;
the pressing part moves downwards until the pressing part is tightly matched with the coffee brewing box, the pressing part applies pressure to the free end of the powder feeding pipeline, the free end of the powder feeding pipeline is deformed, and the coffee powder outlet is sealed;
high pressure hot water is injected into the coffee brewing cartridge.
Detailed Description
Referring to fig. 1, the coffee maker of the present embodiment includes a brewing unit 1 and a bean grinding unit 5, the bean grinding unit 5 is used for grinding coffee beans into coffee powder, and the brewing unit 1 is used for brewing the coffee powder made by the bean grinding unit 5 into coffee liquid.
Referring to fig. 2 to 5, the bean grinding unit 5 includes a grinding body assembly including a grinding body 51, a motor 54, and upper and lower bean grinding wheels 71, 72 and a lower bean grinding wheel mounting frame 73 coaxially disposed, and a bean box 52. The grinding body 51 is provided with a grinding chamber 511, and the bean box 52 includes a cylindrical body 521 and a mounting portion 522 at one axial end of the cylindrical body 521, the mounting portion 522 being screwed with the grinding body 51. The cylinder 521 is provided with two elastic clamping devices which are symmetrically arranged relative to the central axis of the bean box 52. One end of the elastic clamping device is fixed on the bean box 52, and the other end of the elastic clamping device is abutted on the grinding body 51.
The elastic clamping device comprises a cover member 61, an elastic member 62 and a fixing column 63, wherein a mounting groove 5211 is formed in the cylinder 521, the elastic member 62 and the fixing column 63 are located in the mounting groove 5211, and the cover member 61 is mounted on the top wall of the mounting groove 5211. Both ends of the elastic member 62 are respectively abutted against the cover member 61 and the fixing post 63. Preferably, the elastic member 62 is a spring. The bottom end of the fixed post 63 has a columnar abutment portion 64, the diameter of the abutment portion 64 is smaller than that of the fixed post 63, and the abutment portion 64 passes through the bottom wall of the mounting groove 5211 and abuts against the grinding body 51. The top wall of the grinding body 51 is provided with a plurality of positioning grooves 512 uniformly arranged along the circumferential direction of the grinding body 51, the abutting part 64 abuts in one of the positioning grooves 512, the outer circumferential wall of one end of the cylinder 521, which is close to the mounting part 522, is provided with a stop part 523 extending outwards along the radial direction of the cylinder 521, and the stop part 523 covers the upper part of the positioning groove 512. The lower end of the abutting portion 64 is hemispherical, the shape of the positioning groove 512 is matched with the shape of the lower end of the abutting portion 64, and the upper periphery of the positioning groove 512 is in arc transition with the top wall of the grinding body 51.
The motor 54 is arranged below the bean grinding cavity 511, a driving shaft 541 of the motor 54 extends into the bean grinding cavity 511, an upper bean grinding wheel 71, a lower bean grinding wheel 72 and a lower bean grinding wheel mounting frame 73 are positioned in the bean grinding cavity 511, the lower bean grinding wheel mounting frame 73 is detachably and fixedly connected with the driving shaft 541 through threads, a mounting groove 5221 is formed in the bottom of the mounting portion 522, the upper bean grinding wheel 71 is detachably fixed in the mounting groove 5221 through a plurality of first screws, the lower bean grinding wheel 72 is detachably fixed on the lower bean grinding wheel mounting frame 73 through a plurality of second screws, and the upper bean grinding wheel 71 and the lower bean grinding wheel 72 are arranged up and down oppositely. The coffee maker can adjust the size of the gap between the upper and lower grinding wheels 71, 72 by rotating the bean box 52, thereby achieving the adjustment of the thickness of the coffee powder.
The bean grinding cavity 511 is provided with a powder outlet 513 on one side close to the brewing unit 1, a powder feeding pipeline 55 is arranged at the powder outlet 513, the fixed end of the powder feeding pipeline 55 is arranged on the grinding body 51, and the free end of the powder feeding pipeline 55 is positioned between the opening of the coffee brewing box 3 and the pressing part. The pressing member in this embodiment is a sleeve pressing head 251 of the pressing device 25, and the structure thereof will be described in detail later. The fixed end of the powder feeding pipe 55 is located higher than the free end of the powder feeding pipe 55. Preferably, the powder feeding pipe 55 is made of a flexible material such as silicone rubber. The compacting member is able to move downwards and to drive the deformation of the free end of the powder feeding duct 55, when the bottom wall of the compacting member is in close fit with the peripheral wall of the coffee brewing cartridge 3, the compacting member abuts against the free end of the powder feeding duct 55 to seal the coffee powder outlet 552 of the free end of the powder feeding duct 55.
As shown in fig. 3, at least two fixing protrusions 514 are provided on the outer wall of the powder outlet 513, mounting holes 551 are provided on the powder feeding pipe 55 at positions corresponding to the fixing protrusions 514, and the fixing protrusions 514 are inserted into the mounting holes 551 to fix the powder feeding pipe 55 on the grinding body 51.
Referring to fig. 6 to 8, the brewing unit 1 comprises an exchange means of the coffee brewing cartridge comprising a base 21, a cartridge mount, the coffee brewing cartridge 3 and a compacting means 25.
The coffee brewing cartridge 3 in fig. 2 and 6-8 is used for containing coffee powder, the top periphery of the coffee brewing cartridge 3 is turned outwards to form a mounting part 31, the mounting part 31 is positioned at the top of the peripheral wall of the cartridge body accommodating cavity 221, and the pressing device 25 is abutted on the mounting part 31.
The base 21 has a top opening 211 and a side opening 212, the cartridge mount has a cartridge receiving chamber 221 and a coffee flow outlet 222, which are in communication, the cartridge receiving chamber 221 is a coffee brewing cartridge mounting position, the coffee brewing cartridge 3 is positioned in the cartridge receiving chamber 221, the cartridge receiving chamber 221 extends into the base 21 from the side opening 212, and the cartridge mount can horizontally move along the side opening 212. The top of the coffee brewing box 3 is provided with an opening for injecting high-pressure hot water into the coffee brewing box 3, the bottom of the coffee brewing box 3 is provided with a liquid outlet hole, and the liquid outlet hole is communicated with the box body accommodating cavity 221.
A yielding groove 213 is arranged between the base 21 and the coffee brewing box 3, the yielding groove 213 is positioned on one side of the base 21 close to the bean grinding unit 5, the pressing component presses the coffee brewing box 3 downwards, the free end of the powder feeding pipeline 55 is pressed and deformed, and the free end of the deformed powder feeding pipeline 55 is pressed by the pressing component into the yielding groove 213, so that the coffee powder outlet 552 of the powder feeding pipeline 55 is sealed.
The pressing device 25 includes a sleeve pressing head 251, a housing, and a motor 253. The housing includes a cylinder 2521 and an upper cover 2522 mounted on an upper end portion of the cylinder 2521, and the motor 253 is mounted on a motor mount 256, and the motor mount 256 is mounted under the upper cover 2522 and within the cylinder 2521. The upper cover 2522 is detachably mounted on the cylinder 2521, and the motor housing 256 is detachably mounted on the upper cover 2522, so that assembly and disassembly of the coffee maker are facilitated, and maintenance of the coffee maker is facilitated. The sleeve pressing head 251 is installed inside the cylinder 2521, and a driving shaft of the motor 253 extends into the cylinder 2521, and a first connecting piece is fixed on the driving shaft and is a screw head 2531.
The sleeve press 251 has a cylindrical shape with an open top, the screw head 2531 is screwed with the inner peripheral wall of the sleeve press 251, and the screw head 2531 is screwed with the sleeve press and drives the sleeve press 251 to reciprocate between the press position and the release position.
Referring to fig. 1, 9 and 10, three first guide columns 2513 and one second guide column 2514 are provided on the outer circumferential wall of the sleeve press 251, four guide columns extend outward in the radial direction of the sleeve press 251, and the four guide columns are arranged in two rows along the length direction of the sleeve press 251, one row includes two first guide columns 2513, the other row includes one first guide column 2513 and one second guide column 2514, the two rows of guide columns are symmetrically arranged with respect to the central axis of the sleeve press 251, two guide openings 2523 extending along the length direction of the cylinder 2521 are provided on the cylinder 2521, and the two rows of guide columns respectively move along the two guide openings 2523. In addition, due to the arrangement of the first and second guide columns 2513 and 2514, the sleeve press head 251 and the housing are relatively fixed in the circumferential direction of the housing, and the sleeve press head 251 is prevented from rotating in the circumferential direction when the first and second guide columns 2513 and 2514 move along the guide opening 2523.
The inner peripheral wall of the cylinder 2521 is provided with a first limit boss 2524 extending inwards from the inner peripheral wall of the cylinder 2521 in the radial direction, the outer peripheral wall of the sleeve pressing head 251 is provided with a stop portion 2511, and the stop portion 2511 is adjacent to the first limit boss 2524; a second limit boss 2512 is provided on the inner bottom wall of the sleeve press 251, the second limit boss 2512 being contiguous with the end of the screw head 2531. The provision of first limit boss 2524 and second limit boss 2512 facilitates limiting displacement of sleeve press head 251 in the vertical direction.
The bottom wall of the sleeve pressing head 251 is provided with an upper filter screen 26, the upper filter screen 26 is arranged in an outwards convex arc shape, a screw 28 penetrates through the center of the upper filter screen 26 to fix the upper filter screen 26 on the sleeve pressing head 251, and the periphery of the upper filter screen 26 is abutted on the bottom wall of the sleeve pressing head 251. The bottom of the sleeve pressing head 251 is abutted on the peripheral wall of the coffee brewing box 3, the periphery of the bottom wall of the sleeve pressing head 251 is provided with an annular sealing ring 27, and the annular sealing ring 27 is tightly matched with the peripheral wall of the coffee brewing box 3 to form a sealing part. Preferably, the seal ring 27 is made of an elastic material such as rubber.
The sleeve pressure head 251 is provided with a water channel, the outlet of the water channel is positioned between the sleeve pressure head 251 and the upper filter screen 26, the outlet of the water channel is positioned in the middle of the sealing part, and high-pressure hot water flows through the water channel to be sprayed into the coffee brewing box 3. The water channel includes a flow channel 254 and a plurality of flow channels 255 in communication, the plurality of flow channels 255 being arranged in a scattering pattern around the screw 28, the flow channel 254 being located within the second guide column 2514 and extending in the axial direction of the second guide column 2514 to approximately the central axis of the sleeve head 251. The screw 28 comprises a head 281 and a rod 282, the rod 282 is in threaded connection with the sleeve press head 251, the axial end of the rod 282 is provided with a blind hole 283 which extends in the axial direction, the first end of the flow channel 254 is communicated with the outside, namely, high-pressure hot water is introduced into the brewing unit 1 from the first end of the flow channel 254 in the second guide post 2514, the second end of the flow channel 254 is communicated with the blind hole 283, the rod 282 is further provided with a through hole 284 which penetrates the rod 282 in the radial direction, the through hole 284 is positioned at a position close to the bottom of the blind hole 283, the through hole 284 is communicated with the blind hole 283, the first end of the flow channel 255 is communicated with the through hole 284, and the second end of the flow channel 255 is communicated with small holes on the upper filter screen 26. After flowing into the sleeve head 251 from the first end of the flow passage 254, the high pressure hot water flows through the blind hole 283 and the through hole 284 in order, enters the flow passage 255 and is uniformly sprayed into the coffee brewing cartridge 3 from the small holes in the upper filter screen 26.
As shown in fig. 6, the cartridge mount includes the coffee flow head 23 and the housing 24 connected, the cartridge accommodating chamber 221 is provided on the housing 24, and the bottom wall of the cartridge accommodating chamber 221 is inclined toward the flow passage 241. The coffee liquid outlet 222 is arranged at the bottom of the coffee liquid outlet 23, a runner 231 communicated with the coffee liquid outlet 222 is arranged in the coffee liquid outlet 23, a runner 241 communicated with the runner 231 and the box accommodating cavity 221 is arranged in the base 24, the runner 241 is positioned at the bottom of the side wall of the box accommodating cavity 221, and the bottom wall of the runner 241 is obliquely arranged from one side of the box accommodating cavity 221 to one side of the coffee liquid outlet 23 from top to bottom. The bottom wall of the flow channel 241 and the bottom wall of the cartridge housing chamber 221 are inclined so that the coffee flowing out of the outlet hole is entirely flowing to the coffee flow outlet 222.
The coffee brewing box in fig. 11 and 12 is a coffee capsule brewing box 4 for containing a coffee capsule 10, the coffee capsule brewing box 4 comprises a box body 41 and a cover body 42, the cylindrical cover body 42 is reversely buckled in the cylindrical box body 41, a coffee capsule containing cavity is formed by enclosing the cover body 42 and the inside of the box body 41, a positioning part 43 is arranged on the peripheral wall of the cover body 42, the positioning part 43 is a protrusion extending outwards from the peripheral wall of the cover body 42 along the radial direction of the cover body 42, the positioning part 43 is positioned at the top of the peripheral wall of the containing cavity 221 of the box body 41, and the pressing device 25 is abutted on the positioning part 43. The outer surface of lid 42 roof is concave curved surface, the lowest position of curved surface is located the central point of lid 42 roof, the central point of lid 42 roof is equipped with high-pressure hot water filling port 44, lid 42 roof's internal surface installs puncture sword 45, after pushing into pedestal 24 with the box body mount pad, the casing pressure head 251 is moved downwards to motor 253, casing pressure head 251 is contacted with lid 42 back and is pushed lid 42 and move downwards together, thereby make puncture sword 45 puncture coffee capsule 10, so that the inside of high-pressure hot water entering coffee capsule 10.
The operation of the coffee maker of the present invention will be described as follows.
The working method of the coffee machine comprises the following steps:
the coffee beans are placed in the bean box 52, the coffee machine is started, and the grinding unit 5 grinds the coffee beans into coffee grounds.
From the grinding chamber 511, the coffee powder enters the coffee brewing chamber 3 through a powder feed conduit 55.
After delivering the coffee powder, the motor 253 drives the screw head 2531 to rotate, so that the sleeve pressing head 251 is driven to move downwards, the sleeve pressing head 251 moves downwards until the sleeve pressing head 251 is tightly matched with the coffee brewing box 3, the sleeve pressing head 251 applies pressure to the free end of the powder delivering pipeline 55, the free end of the powder delivering pipeline 55 is deformed, and the coffee powder outlet 552 is sealed.
The high-pressure hot water is fed into the brewing unit 1 from the outer port of the second guide column 2514, flows through the flow passage 254, the blind hole 283 on the screw 28, the through hole 284 on the screw 28 and the flow passage 255 in this order, and is then sprayed into the coffee brewing chamber 3 from the small holes of the upper filter screen 26.
The brewed coffee liquid flows out from the liquid outlet hole at the bottom of the coffee brewing box 3, flows through the box body accommodating cavity 221, the flow channel 241 and the flow channel 231 in sequence and flows out from the coffee liquid outlet 222 of the coffee liquid outlet 23, and a user can place a coffee cup below the coffee liquid outlet 222 to take coffee liquid drink.
In addition, the first connecting piece can also be a gear, correspondingly, the pressing device also comprises a second connecting piece, the second connecting piece is a rack, the rack is fixed on the inner peripheral wall of the sleeve pressing head and extends along the axial direction parallel to the sleeve pressing head, and the gear is meshed with the rack. The free end of the deformed powder feeding duct may also be clamped between the compacting member and the peripheral wall of the coffee brewing cartridge. In addition, the powder feeding pipeline can also be formed by connecting a hard pipe made of hard materials and a hose made of flexible materials, wherein the hard pipe is used as the fixed end of the powder feeding pipeline to be fixed on the grinding body, and the hose is used as the free end of the powder feeding pipeline to extend into the coffee brewing box. The above-mentioned scheme can also achieve the object of the present invention.
From the above, the drive shaft of motor and sleeve pipe pressure head threaded connection, drive sleeve pipe pressure head reciprocating motion about the drive shaft in corotation and reversal in-process to realize sleeve pipe pressure head and compress tightly the function of coffee brewing box downwards, this closing device compares with prior art, and its simple structure is convenient for realize the automation, and easy to maintain and use moreover.
After the coffee of packaging style is put into the coffee brewing box, the coffee brewing box is installed in the box accommodating cavity of the box body installation seat, the box body installation seat is pushed to be installed in the base from the side opening of the base, and the pressing device presses downwards and abuts against the peripheral wall of the coffee brewing box. When the coffee of other packaging styles needs to be replaced, the pressing device releases the coffee brewing box, the box body mounting seat is pulled out of the base, and the coffee brewing box types are replaced after the box body mounting seat is cleaned. The exchange device of the brewing box of the coffee machine can realize multiple functions, and can brew mellow and delicious coffee in one coffee machine no matter coffee powder or coffee capsules, thereby being suitable for the requirements of different packaging modes. In addition, the pressing device is abutted on the peripheral wall of the coffee brewing box so as to press the coffee brewing box, so that the stress of the coffee brewing box is more uniform, and the coffee brewing box is prevented from being damaged.
After the coffee powder is sent to the coffee brewing box by the bean grinding unit, the pressing part moves downwards and presses the powder sending pipeline, and a coffee powder outlet at the free end of the powder sending pipeline is sealed. When the coffee powder is required to be continuously sent into the coffee brewing box, the pressing part moves upwards to enable the powder sending pipeline to recover the shape under the action of elastic restoring force, and the coffee powder outlet is opened, so that the coffee powder is sent. The compacting component is matched with the powder feeding pipeline to prevent the pipeline and coffee powder in the bean grinding cavity from being wetted and adhered.
The bean box is detachably and fixedly connected with the grinding body, so that the recovery of coffee beans in the bean box and the cleaning of the bean box can be conveniently realized. The upper bean grinding wheel is detachably and fixedly connected with the bean box, the lower bean grinding wheel is detachably and fixedly connected with the lower bean grinding wheel mounting frame, and the upper bean grinding wheel and the lower bean grinding wheel are convenient to clean and assemble. The elastic clamping device is convenient for realizing the tight fit between the bean box and the grinding body. In addition, the thickness degree of the coffee powder can be adjusted by rotating the bean box.
Finally, it should be emphasized that the foregoing description is merely illustrative of the preferred embodiments of the invention, and that various changes and modifications can be made by those skilled in the art without departing from the spirit and principles of the invention, and any such modifications, equivalents, improvements, etc. are intended to be included within the scope of the invention.