KR101291139B1 - Red peper pulverizer - Google Patents

Red peper pulverizer Download PDF

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KR101291139B1
KR101291139B1 KR1020100118136A KR20100118136A KR101291139B1 KR 101291139 B1 KR101291139 B1 KR 101291139B1 KR 1020100118136 A KR1020100118136 A KR 1020100118136A KR 20100118136 A KR20100118136 A KR 20100118136A KR 101291139 B1 KR101291139 B1 KR 101291139B1
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South Korea
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chamber
grinding
blowing
collector
powder
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KR1020100118136A
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Korean (ko)
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KR20120056547A (en
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이병태
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이병태
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Abstract

The present invention relates to a pepper mill that can grind peppers more quickly and efficiently,
A pulverization chamber in which a hood having a supply path connected to the input hopper and an inlet for intake of outside air is installed to be opened and closed, and a rotary pulverizing cutter is installed inside the pulverizing chamber; A blowing chamber which is formed outside the grinding chamber and connected to the collector and blows the powder in the grinding chamber by a blowing force blown by the collector to discharge into the collector; A discharge pipe connecting the blower chamber and the collector; The gist of the present invention consists of a collector connected to the blowing chamber and a discharge pipe to collect the powder.

Figure R1020100118136

Description

RED PEPER PULVERIZER}

The present invention relates to a pepper mill, a feature of the present invention relates to a pepper mill that enables to grind peppers more quickly and efficiently.

Pepper grinder for manufacturing red pepper powder has been developed in a variety of configurations, such as a grinder consisting of a plurality of grinding rollers and a grinder to form a grinding cutter inside the grinding chamber to grind.

Looking at some examples for the pepper mill consisting of a plurality of grinding rollers is performed as follows.

Korean Utility Model Publication No. 20-0195935 discloses a pulverizing device portion consisting of a first crushing portion and a second crushing portion under an input hopper, a supply portion having a blower and a conveying pipe installed therein, a receiving hopper, a supply hopper, a conveying supply portion, and a discharge. The pepper grinder, which is composed of a control unit and a control unit, automatically removes iron components contained in the pulverized product while automatically pulverizing to a particle size requiring the pulverized product that has been subjected to a single feeding process.

Republic of Korea Patent Publication No. 10-2005-0119622 has a pepper injection rotary bar that rotates on the lower opening of the pepper injection hopper and pressurized, put the loaded pepper so that the pepper in the pepper injection hopper smoothly introduced into the grinding roller There is a chili grinder that makes grinding work smooth.

Korean Patent Laid-Open Publication No. 10-2000-001375 discloses a primary grinding unit having a grinding shaft formed with a grinding blade at the lower side of an input hopper, a secondary grinding unit including a secondary grinding roller, a primary grinding unit and a primary Secondary feed hopper which moves to both sides of the grinding roller in the longitudinal direction between the grinding parts, the storage container, a pair of secondary injection roller and the discharge screw of the secondary grinding part bottom in order to perform the pulverization There is a red pepper powder manufacturing apparatus for producing red pepper powder with a single red pepper.

Looking at the pulverizer is a grinding operation is performed in the grinding chamber in which the grinding cutter is formed as follows.

In Korean Invention Patent No. 10-0591778, the pulverization object is stored in the hopper and moved by a set amount, and the pulverization object remaining in the guide space by the wind power of air supplied by filtering foreign matters from the blower is forced to the pulverization part. There is a grain crusher that moves and pulverizes and evaporates a small amount of moisture contained in the pulverized object pulverized in the pulverization unit to minimize the content of moisture to increase the pulverized product recovery rate.

In Korean Utility Model Publication No. 20-1998-059229, the air inlet and the pulverized particle outlet are configured in the rotational direction of the impeller, the intake volume control valve and the silencer are configured at the air inlet, and the crushing protrusion is formed on the inner circumferential wall of the top casing. And a center ring gear and a center rotor blade are disposed inside the first rotor blade of the impeller to adjust the amount of air sucked in, to reduce noise, and to grind the object to be ground in a particulate state.

In addition, the Republic of Korea Patent Publication No. 10-2003-065613 is provided between the grinding cylinder and the grinding roller by installing a grinding roller composed of an eccentric body and a rotary presser on the shaft of the grinding cylinder to rotate in contact with the inner surface of the grinding cylinder. There is disclosed a pepper mill configured to be pressurized so that pepper is milled under pressure.

In addition, the Republic of Korea Utility Model Publication No. 20-0427529 discloses a collecting device of a grain crusher that is effectively separated and collected while forming a swirl flow and the air that is introduced into the collecting unit.

In addition, the Republic of Korea Patent Publication No. 10-2006-0097697 is a pepper mill so that the pepper powder pulverized in one pepper mill is transported by the air spraying force, the centrifugal hopper is provided on one side of the input portion into which the pepper powder to be transferred is introduced There is further provided a cyclone device in which a red pepper crusher equipped with a cyclone device is provided so that the red pepper powder introduced by the cyclone effect can fall to the crushing unit side.

The pulverizer composed of the existing pulverization chamber is pulverized by a pulverization cutter in the pulverization chamber, thereby providing an advantage such that there is no foreign matter generation and a pulverization operation can be performed in a finer form compared to the pulverizer by the conventional pulverization roller.

However, the existing pulverizer was to be crushed by a rotating crushing cutter by feeding the crushed object from the input hopper or by blowing air to feed the crushed object into the pulverization chamber.

Therefore, the existing pulverizer depends only on the rotational force of the crushing cutter, and the crushing particles collide with the inner wall of the pulverizing chamber by the centrifugal force of the rotating pulverizing cutter in the pulverizing chamber or pulverize mainly in the lower portion by the self-weight. The efficiency was low, such as unevenness and time consuming grinding.

Accordingly, in the present invention, the grinding operation inside the grinding chamber is not dependent only on the rotational force of the grinding cutter, and is induced evenly in the grinding chamber by the chain action by the suction force generated during the forced discharge of the pulverized powder. It is intended to make grinding work possible.

That is, the present invention enables to collect and collect the pulverized powder in the pulverization chamber by a forced blower to the collector, and to distribute the pulverized object evenly within the pulverization chamber by a chain action by the suction force to suck the powder. It is intended to achieve the efficiency and speed of the red pepper grinding work by efficiently pulverizing and transporting the collected powder to a collector to recover the desired particle size.

According to an aspect of the present invention,

According to the invention described in [claim 1]; A pulverization chamber in which a hood having a supply path connected to the input hopper and an inlet for intake of outside air is installed to be opened and closed, and a rotary pulverizing cutter is installed inside the pulverizing operation; A blowing chamber which sucks the powder in the grinding chamber and discharges it to the collector through the discharge pipe; In the pepper mill comprising a collector connected to the blowing chamber and the discharge pipe to recover the powder, the blowing chamber is formed outside the grinding chamber, the blowing fan and the exhaust port is installed in the discharge pipe connected to the air in the blower chamber exhaust It is possible to exhaust to the collector through the pulverization chamber, and the sieving net is installed on the exhaust port side of the blowing chamber so that the powder in the pulverizing chamber is sucked into the blowing chamber is discharged to the collector through the exhaust port, the hood by the forced suction force of the blowing chamber It is characterized in that the outside air is sucked into the grinding chamber through the exhaust port of.

According to the invention described in [claim 2]; According to claim 1, wherein the rotary grinding cutter is spaced on the inner wall of the grinding chamber is installed so as to be engaged with the fixed grinding cutter of the hood, characterized in that the rotating plate is formed before and after the rotating shaft with the grinding blade and the through-hole.

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According to the present invention, the grinding object can be pulverized evenly and efficiently by dispersing the object to be crushed evenly in the pulverization chamber with suction force for sucking and discharging the powder, and the pulverization can be performed with more uniform and fine fine powder. In addition to the shortening of the working time to provide a high quality and excellent red pepper powder can be provided.

1 is a perspective view showing an embodiment of the present invention.
2 and 3 are cross-sectional views of the present invention.
Figure 4 is an enlarged cross-sectional view of the main portion excerpt of the present invention.
5 is a perspective view of some excerpts of the present invention.

The present invention is to form a blowing chamber outside the grinding chamber so that the powder pulverized in the grinding chamber is sucked from the inside of the grinding chamber by the forced blowing force exhausted through the exhaust port of the blowing chamber to be discharged to the collector.

Pulverized red pepper crushed and crushed red pepper fed from the input hopper is put into the grinding chamber to be pulverized by the rotating grinding cutter, the powder pulverized in the grinding chamber is forcedly blown in the blowing chamber outside the grinding chamber The wind is forced to the collector to recover.

The grinding chamber is provided with a rotary grinding cutter rotating therein, and a hood for opening and closing the grinding chamber outside the grinding chamber so as to be opened and closed about one hinge axis, and a locking handle on the opposite side.

In addition, a hood for closing the pulverization chamber is formed in the center and the supply passage is in communication with the upper input hopper and the crusher feeder so that the pepper fed from the hopper is crushed in the crusher feeder can be fed into the pulverization chamber.

A blowing chamber is formed outside the grinding chamber to surround the grinding chamber, and a blowing fan is installed at one side of the blowing chamber so that the air blown into the blowing chamber is exhausted to the collector side through the exhaust port.

When the air blown from the blowing chamber outside the grinding chamber is exhausted to the collector through the exhaust port, the powder in the grinding chamber is forcibly sucked into the blowing chamber and discharged and recovered through the exhaust port to the collector through the strainer network communicating with the grinding chamber. do.

The powder in the grinding chamber is often driven to the inner wall or lower part of the grinding chamber by a chain action (suction force of the outside air sucked through the suction port by the suction force of the exhaust port) by the suction force of the air discharged through the exhaust port from the outer blowing chamber. It is evenly distributed throughout, so that grinding works are performed quickly.

Looking at the specific embodiments of the present invention below.

1 is a perspective view showing an embodiment of the present invention, Figures 2 and 3 are cross-sectional views of the present invention, Figure 4 is an enlarged cross-sectional view of the main portion excerpt of the present invention, Figure 5 is a partial perspective view of the present invention.

The present invention forms a blowing chamber (4) outside the grinding chamber (2) of the crusher (1) to grind the red pepper milled in the grinding chamber (2) by the blowing force of the blowing chamber (4) from the grinding chamber (2) It is configured to be sucked and discharged and collected by the collector 6.

The grinder 1 and the grinding chamber (2). It consists of a blowing chamber 4 formed in a structure surrounding the grinding chamber 2, the outer blowing chamber 4 of the grinding chamber 2 is provided with a blowing fan 41 on one side and the exhaust port 42 on the opposite side ) So that the air supplied from the blowing fan 41 is exhausted at a high flow rate through the exhaust port 42, and the exhaust port 42 is connected to the collector 6 through the discharge pipe 5.

The rotary grinding cutter 7 is installed inside the grinding chamber 2, and the hood 3 is coupled to the front surface so as to be openable and closed. The hood 3 is installed to be opened and closed about the hinge shaft 34 on one side and the locking handle 35 is installed on the opposite side, and the hood 3 is located on the opposite side of the rotary grinding cutter 7. Together with the rotary grinding cutter 7 to form a fixed grinding cutter 31 for performing a grinding operation.

In the hood 3 closing the grinding chamber 2, a supply path 32 for supplying red pepper into the grinding chamber 2 is connected to the crushing injection unit 12 of the upper input hopper 11. The pepper injected from the hopper 11 is crushed in the crushing input portion 12 to be supplied into the grinding chamber 2.

In addition, an intake port 33 is formed in the hood 3 closing the grinding chamber 2 so that outside air is sucked into the grinding chamber 2.

The air inlet 33 is configured to blow air into the blowing chamber 4 formed outside the grinding chamber 2 to the collector 6 through the exhaust port 5. Intake is described in more detail below.

The grinding chamber 2 has a grinding chamber 2 through a strainer 22 in communication with the grinding chamber 2 in the process of exhausting the air in the outer blowing chamber 4 to the collector 6 through the exhaust port 5. The powder in) is forcibly drawn into the blowing chamber 4 and discharged to the collector 6 through the discharge pipe 5 to be recovered.

The pulverization chamber 2 is provided with a strainer 22 in the direction of the exhaust port 42 connected to the delivery pipe 5 to filter the powder to a desired particle size through the strainer 22 and the pulverization chamber 2 and Blowing chamber 4 is communicated.

The strainer 22 is formed to have a size (size) equal to or smaller than the size (size) of the exhaust port 5 so that a strong suction force is acted upon by a blowing force exhausted at a high flow rate through the exhaust port 5 to be crushed. The powder in the chamber 2 is attracted to the strainer 22 side.

In addition, the strainer 22 filters the pulverized powder object in the process of forcibly discharging the powder pulverized in the pulverization chamber 2 by the blowing force of the blowing chamber 4 to continue to remain in the pulverization chamber 2. To be crushed will be described in detail later.

In the grinding chamber 2, a rotary grinding cutter 7 is provided to be spaced apart from the inner wall 21 of the grinding chamber 2, in which grinding protrusions or the like are formed to protrude, and the grinding rotary cutter 7 Is spaced and engaged with the fixed grinding cutter 31 of the opposing side hood 3 so that the inner wall 21 of the grinding chamber 2, the rotary grinding cutter 7, the fixed grinding cutter 31 and between Grinding takes place in the space.

The rotary grinding cutter 7 is provided with the rotary plate (71) (72) before and after the rotary shaft, the rotary plate (71) (72) forms a plurality of grinding blades (71a) (72a), the rotary plate (71) (72) ), Several through holes 71b and 72b are formed in the grinding chamber 2 so that the powder in the grinding process flows freely between the rotating plates 71 and 72 and rotates with the inner wall 21 of the grinding chamber 2. It collides with the grinding cutter 7 or the like and rubs to make grinding.

The pulverized powder is discharged to the collector 6 through the discharge pipe 5 by the blowing force of the blower chamber 4, and the discharge pipe 5 is collected by the connecting pipe 51 that becomes smaller in size. The air blown from the blower chamber 4 is exhausted to the collector 6 side at a high flow rate.

The collector 6 is formed in a cyclone structure so that the powder is discharged to the lower discharge port 61 and the air is discharged to the exhaust 62. The lower outlet 61 of the collector 6 is preferably installed in the collecting chamber 63 to facilitate the collection and recovery of the powder.

In the drawings, reference numeral 13 denotes a conveying screw of the crushing input part 12, and 36 is a transparent window which is formed in the supply path 32 so that the operation state of the crushing input part 12 can be checked from the outside.

In the present invention having the above-described configuration, the red pepper introduced from the input hopper 11 is supplied into the grinding chamber 2 through the feed passage 32 of the hood 3 through the crushing feeder 11 and then inside the grinding chamber 2. Grinding at

The grinding chamber 2 is pulverized by the rotary grinding cutter 7 and the fixed grinding cutter 31 of the hood 3 and pulverized and passed through the strainer 22 to the pulverization chamber 4. It is discharged to the discharge pipe 5 through and collected by the collector 6.

The blowing chamber 4 is blown through the blowing chamber 4 formed by wrapping the grinding chamber 2 from one blowing fan 41 and is discharged at a high flow rate through the discharge pipe 5 of the other exhaust port 42. do.

Therefore, when the air is discharged through the exhaust port 42 at a high flow rate, the pressure on the exhaust port 42 side drops, and at this time, the powder inside the blowing chamber 2 having a relatively high pressure is blown through the strainer 22 through the blowing net 22. The exhaust port 42 of (4) is forcibly sucked and discharged. The strainer 22 is discharged to the collector 6 connected to the discharge pipe 5 through the exhaust port 42 of the blower chamber 4 to collect the powder pulverized to a desired particle size.

In addition, as the outside air is rapidly sucked into the grinding chamber 2 through the intake port 33 of the hood 3 closing the grinding chamber 2 by the chain action by the forced suction force from the blowing chamber 4 in the above process. The object to be crushed inside the pulverizing chamber 2 is uniformly dispersed in the pulverizing chamber 2 of the powder object together with the centrifugal force by the rotational force of the rotary pulverizing cutter 7 which is stirred and rotated. The dispersed and pulverized powder object is pulverized while colliding and rubbing against the rotary plates 71 and 72 of the rotary grinding cutter 7, and at the same time to the rotary plates 71 and 72 through the through holes 71b and 72b. As it flows back and forth, the grinding is performed while colliding with the inner wall 21 of the grinding chamber 2 and rubbing.

In the pulverization chamber 2 in which the pulverization is performed, suction force is continuously applied through the strainer 22 under the pressure of the exhaust port 42 due to the blowing of the blower chamber 4, and the pulverized powder is discharged. The pulverized object not remaining remains in the pulverization chamber 2 while being uniformly dispersed in the pulverization chamber 2 by the rotational force of the rotary grinding plate 7 and the suction force of the outside air through the inlet 33.

Therefore, by the suction force generated in the process of forcibly discharging the pulverized powder and its chain action and the rotational force of the rotary grinding cutter (7) continuously and evenly pulverized throughout the grinding chamber (2) of fine and fine powder Grinding operation is achieved, the powder conveyed to the cyclone collector 6 is discharged to the lower outlet 61 and the air is discharged to the upper exhaust 62, through the lower outlet 61 of the collector 6 The pulverized powder will be recovered.

In order to explain the embodiments of the present invention in detail, reference numerals used in the accompanying drawings will be described as follows.
1: Grinder 11: Feed Hopper
12: crushing feeder 2: grinding chamber
21: Inner Wall 22: Strainer
3: hood (HOOD) 31: fixed grinding cutter
32: supply path 33: intake port
34: hinge axis 35: locking handle
4: blowing chamber 41: blowing fan
42: exhaust port
5: discharge pipe 51: connector
6: collector 61: outlet
62: exhaust 63: collection chamber
7: rotary grinding cutter 71, 72: rotating plate
71a, 72a: grinding blade 71b, 72b: through hole
The terminology described in the detailed description and claims of the present invention, including the description of the above signs, is used to best describe the present invention, and thus, the description and claims, as well as the technical description through the entire description including the drawings. The meaning and concept of the terminology used should not be construed unambiguously by limiting it only to dictionary meanings.

Claims (3)

A pulverization chamber in which a feeding path 32 connected to the input hopper 11 and a hood 3 formed with an intake port 33 for intake of outside air are formed to be opened and closed, and a rotary grinding cutter 7 is installed therein to grind work. (2); A blowing chamber (4) which sucks the powder in the grinding chamber (2) and discharges it to the collector (6) through the delivery pipe (5); In the pepper mill consisting of a collector (6) which is connected to the blowing chamber (4) and the discharge pipe (5) to collect the powder,
The blowing chamber 4 is formed outside the pulverization chamber 2, the blowing fan 41 and the exhaust port 42 is installed to connect the air in the blowing chamber 4 to the exhaust pipe (42) Through the collector (6),
The grinding chamber 2 is provided with a strainer 22 toward the exhaust port 42 side of the blowing chamber 4 so that the powder in the grinding chamber 2 is sucked into the blowing chamber 4 to collect the collector 6 through the exhaust port 42. Red pepper grinder, characterized in that the outside air is sucked into the grinding chamber (2) through the exhaust port 33 of the hood (3) by the forced suction force of the blowing chamber (4).
The method of claim 1,
The rotary grinding cutter 7 is installed to be spaced apart from the inner wall of the grinding chamber 2 and engaged with the fixed grinding cutter 31 of the hood 3, and the grinding blades 71a and 72a and the through hole 71b ( Red pepper mill, characterized in that the rotating plate (71) (72) formed is formed before and after the rotation axis.
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KR1020100118136A 2010-11-25 2010-11-25 Red peper pulverizer KR101291139B1 (en)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR102063424B1 (en) 2019-10-11 2020-01-07 지성배 Powder collection device
CN111085324B (en) * 2020-01-19 2021-07-27 广州利何机械科技有限公司 Dustless ore organism of convenient use

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR200427529Y1 (en) 2006-07-13 2006-09-27 몽 필 김 gathering device for grain grinder

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR200427529Y1 (en) 2006-07-13 2006-09-27 몽 필 김 gathering device for grain grinder

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