序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
21 콩나물 정렬 공급 장치 KR1020090028058 2009-04-01 KR1020090040277A 2009-04-23 스즈키도모사부로; 이시카와노보루; 가와카미산지
A bean sprouts aligning apparatus is provided to align bean sprouts in a longitudinal direction in order to facilitate a cutting process for the bean sprouts. A bean sprouts aligning apparatus comprises a hopper(43) whose one side is flat, a vibrator(46) for vibrating the hopper and a conveyor(50). A bean sprout scrapped by a scrapping conveyor(41) is supplied from a lower part of the hopper to the conveyor. The conveyor is equipped with an endless chain conveyor having a plurality of partitions(52) and an endless belt conveyor(58). The aligned bean sprouts are supplied to a cutting unit(60).
22 콩나물의 양단부 제거 방법 및 콩나물의 양단부 제거 장치 KR1020070070425 2007-07-13 KR1020080007142A 2008-01-17 스즈키도모사부로; 이시카와노보루; 가와카미산지
A method for removing the both terminal parts of kongnamul (bean sprouts), and an apparatus for screening kongnamul, an apparatus for aligning kongnamul, an apparatus for supplying kongnamul, and an apparatus for cutting both terminal parts of kongnamul are provided to allow the root part and sprout part of kongnamul to be removed completely before package and circulation. A method for removing the both terminal parts of kongnamul comprises the steps of separating the incompletely grown kongnamul and the short kongnamul from the harvested kongnamul to remove them; arranging the screened kongnamul in the longitudinal direction; and cutting the both terminal parts of kongnamul comprising a root part and a sprout part mechanically. Preferably kongnamul is fed on a lattice conveyer having a plurality of lattice space, the lattice conveyer is traveled with a belt conveyer and the short kongnamul is separated from a belt conveyor.
23 색센서와 기어물림방식을 이용한 전자동 단일 모터 커피 로스터기 KR1020140165195 2014-11-25 KR1020160062450A 2016-06-02 유준혁; 조현우; 김선지; 김영태; 김상균; 송재영
본발명은색센서와기어물림방식을이용한전자동단일모터커피로스터기에관한것으로, 더욱상세하게는로스팅중인원두의색깔을색센서로인지하여최적의로스팅단계가되었을때자동으로로스팅이완료될수 있도록하며, 기어물림방식을이용하여하나의모터로여러기능이수행하도록하는색센서와기어물림방식을이용한전자동단일모터커피로스터기에관한것이다. 로스팅이전자동으로이루어지기때문에초기설정후 동작만시키면로스팅이완료될때까지다른작업을할 수있으므로사용자의편리성이증대되며, 시간이나온도에따른자동화가아니라원두의색깔을기준으로자동화가진행되기때문에기존의자동로스터기에비해고른로스팅결과물을얻을수 있어상당히효율적이다. 또한기어물림방식을이용하여많게는모터가 4개나필요하던것을 1개의모터로모든기능을수행할수 있으므로로스터기의부피와제작비용을줄일수 있기때문에좁은공간에설치하기용이하고경제적이라할 수있다.
24 콩나물 선별 장치 KR1020090028060 2009-04-01 KR101220569B1 2013-01-10 스즈키도모사부로; 이시카와노보루; 가와카미산지
콩나물의 뿌리 부분과 싹 부분을 기계적으로 절단하여 제거하기 위한 콩나물의 양단부 제거 방법을 제공한다. 상기 방법은 수확된 콩나물로부터 미생육 콩나물을 콩나물 선별 장치(1) 등에 의해 선별하여 제거하는 콩나물 선별 공정과, 병렬로 배열된 종방향 홈(33)이 형성되고 상하방향 성분을 가지는 진동이 부여되는 홈 판(grooved plate)(31, 32)을 포함하여, 이 홈 판(31, 32)상에 공급된 콩나물을 종방향 홈(33)내로 이동시켜서 콩나물의 길이방향을 가지런히 하는 콩나물 정렬 장치에 의해 콩나물의 길이방향을 가지런히 하는 콩나물 정렬 공정과, 블레이드부가 서로 마주하여 배열된 복수의 커터(63)가 제공되고, 컨베이어 이송 방향으로의 이동 및 정지를 반복하는 절단 컨베이어(62), 및 이 절단 컨베이어(62) 위에 배치되고 절단 컨베이어(62)의 속도보다 느린 속도로 연속적으로 이동되는 이송 바아(67)가 제공된 반송 컨베이어(68)를 포함하는 콩나물의 양단부 절제 장치� � 의해 콩나물의 양단부를 절단하여 제거하는 콩나물의 양단부 절제 공정을 포함한다. 상기 양쪽 컨베이어(62, 68) 사이의 상대 이동에 의해, 콩나물은 뿌리 부분과 싹 부분을 커터로 절단한다. 콩나물, 선별 장치, 정렬 장치, 양단부 절제 장치
25 Manufacturing method and different meaning sterilization system of powdered red pepper etc. powder product KR20090046487 2009-05-27 KR20100128052A 2010-12-07 CHOE CHOEON IL; SHIN JUNG CHUL
PURPOSE: A method for preparing powder products such as red pepper powder using automation system is provided to produce powder products through an automation system. CONSTITUTION: A method for preparing powder products such as red pepper powder using automation system comprises: a raw material measuring and pouring process; a foreign material sorting process by a conveyor; a grinding process of dried red pepper; an air washing process for seed separation; a u-shaped screw transfer process; a seed grinding process; a first red pepper pericarp grinding process; a multistage pulverizing process; a roller press grinder and color adjusting process; an powder integration and particle sorting process; a drying and quenching process; an iron powder detecting process; a sterilization process; and a packing process.
26 콩나물의 양단부 제거 방법 및 콩나물의 양단부 제거 장치 KR1020070070425 2007-07-13 KR100947413B1 2010-03-12 스즈키도모사부로; 이시카와노보루; 가와카미산지
콩나물의 뿌리 부분과 싹 부분을 기계적으로 절단하여 제거하기 위한 콩나물의 양단부 제거 방법을 제공한다. 상기 방법은 수확된 콩나물로부터 미생육 콩나물을 콩나물 선별 장치(1) 등에 의해 선별하여 제거하는 콩나물 선별 공정과, 병렬로 배열된 종방향 홈(33)이 형성되고 상하방향 성분을 가지는 진동이 부여되는 홈 판(grooved plate)(31, 32)을 포함하여, 이 홈 판(31, 32)상에 공급된 콩나물을 종방향 홈(33)내로 이동시켜서 콩나물의 길이방향을 가지런히 하는 콩나물 정렬 장치에 의해 콩나물의 길이방향을 가지런히 하는 콩나물 정렬 공정과, 블레이드부가 서로 마주하여 배열된 복수의 커터(63)가 제공되고, 컨베이어 이송 방향으로의 이동 및 정지를 반복하는 절단 컨베이어(62), 및 이 절단 컨베이어(62) 위에 배치되고 절단 컨베이어(62)의 속도보다 느린 속도로 연속적으로 이동되는 이송 바아(67)가 제공된 반송 컨베이어(68)를 포함하는 콩나물의 양단부 절제 장치에 의해 콩나물의 양단부를 절단하여 제거하는 콩나물의 양단부 절제 공정을 포함한다. 상기 양쪽 컨베이어(62, 68) 사이의 상대 이동에 의해, 콩나물은 뿌리 부분과 싹 부분을 커터로 절단한다. 콩나물, 선별 장치, 정렬 장치, 양단부 절제 장치
27 콩나물 선별 장치 KR1020090028060 2009-04-01 KR1020090040278A 2009-04-23 스즈키도모사부로; 이시카와노보루; 가와카미산지
A bean sprouts sorting apparatus is provided to promote alignment of bean sprouts and allow end parts of the bean sprouts to be smoothly cut by freely falling undergrown bean sprouts and bean sprouts having less than a predetermined length on a belt conveyor through a running speed difference between the belt conveyor and a bar conveyor. A bean sprouts sorting apparatus(1) comprises a lattice conveyor transferred while forming a plurality of lattice spaces and a belt conveyor arranged below the lattice conveyor. The lattice conveyor contains an endless bar conveyor(6). The endless bar conveyor includes a plurality of longitudinal bars(2) arranged along a traveling direction of the conveyor and a plurality of transverse bars(5) installed on an endless chain. The lattice spaces of the lattice conveyor are formed by round or circular bars.
28 MACHINES AND METHODS FOR CUTTING PRODUCTS TO PRODUCE REDUCED-SIZE PRODUCTS THEREFROM US15142969 2016-04-29 US20160318201A1 2016-11-03 Nicholas Alan Underwood; Shawn Christopher Boylstein; Mark Allen Martin; Luc Van Buynder; James A. Fant
Machines and methods suitable for performing cutting operations on a product to yield a reduced-size product, for example, slicing and strip-cutting elongate food products. Such a method includes introducing a product into an impeller, rotating the impeller to form at least a first longitudinal cut through the product with a slicing knife and produce therefrom a sliced product, and producing strip-cut products from the sliced product by forming at least a second longitudinal cut that is substantially perpendicular to the first longitudinal cut made with the slicing knife.
29 Plant Trimmer US15176507 2016-06-08 US20160278299A1 2016-09-29 Russell Elbridge Holcomb
A leafy plant trimmer that is operable by a single person has a basket that is rotated in relation to a stationary sling in order to trim plants placed within the basket. The basket and the sling are housed within a trimmer body that is pivotally connected to a pivot stand. The trimmer body can be rotated between a product loading position for filling the basket and an in-use position for trimming the plants within the basket. A motor housed in the trimmer body spins the basket through a drive shaft. The motor is electrically connected to a timer such that the trimmer can be operated at designated time intervals. Trimmings are expelled from the trimmer body through a debris hole and collected below. A first receptacle attachment and a second receptacle attachment are positioned below the trimmer body and allow a receptacle to be positioned for collecting the trimmings.
30 Bean sprouts-like articles loosening supply device US11984293 2007-11-15 US07810631B2 2010-10-12 Sanji Kawakami
A bean sprouts-like articles loosening supply device can exhibit a sufficient dispersing function even for fine and light weight bean sprouts-like articles liable to be entangled with each other, such as alfalfa sprouts. The loosening supply device includes two conveyors having both of their end portions constructed to turn so as to run endlessly, having their outer surfaces provided with needle members, and running at velocities different from each other. The conveyors are arranged to have their running paths opposed to each other so that their running directions are both downward and so that at least one portion of the needle members of the two conveyors mesh into each other. Alfalfa sprouts are supplied into the running paths from above and encounter the needle members of the two conveyors running at velocities different from each other and intersecting with each other. Each time the needle members intersect with each other, the alfalfa sprouts are separated upward and downward and dispersed.
31 Bean sprouts-like articles loosening supply device US11984293 2007-11-15 US20080302708A1 2008-12-11 Sanji Kawakami
Provided is a bean sprouts-like articles loosening supply device that can exhibit a sufficient dispersing function even for fine and light weight bean sprouts-like articles liable to be entangled with each other, such as alfalfa sprouts. The loosening supply device comprises two conveyors (1, 10) having their both end portions constructed to turn so as to run endlessly, having their outer surfaces provided with needle members (6, 16) and running at velocities different from each other. The conveyors (1, 10) are arranged having their running paths opposed to each other so that their running directions there are both downward and the needle members (6, 16) of the two conveyors (1, 10) at least at one portion thereof get into each other. Alfalfa sprouts are supplied into the running paths from above and encounter the needle members (6, 16) of the two conveyors (1, 10) running at velocities different from each other and intersecting with each other. On each time of the needle members (6, 16) intersecting with each other, the alfalfa sprouts are separated upward and downward and dispersed.
32 SNIPPER KNIFE STEM US12138220 2008-06-12 US20080264273A1 2008-10-30 Glenn W. Stousland
A snipping apparatus includes a frame having an inlet end and an outlet end, a rotatable drum mounted in the frame, and a plurality of mounting rods fixed relative to the frame. The mounting rods extend between the inlet end and the outlet end and are aligned generally parallel to a longitudinal axis of the drum. The snipping apparatus also includes a plurality of resilient rods, each resilient rod having a first end, a second end and a curved portion positioned between the first end and the second end, and a plurality of snipper knives, such that each of the knives is coupled to a free end of one of the resilient rods.
33 Vegatable cutting machine and cutting method obtained with said machine US10362659 2003-02-26 US20030177879A1 2003-09-25 Jose Maria Urtasun Abarzuza
The invention relates to a vegetable cutting machine and cutting method obtained with said machine, such as those used in trimming and/or chopping of vegetables, the vegetables being moved forward longitudinally aligned on tracks of conveyor belts (3 and 5) of said machine. A group of cutting heads (1) using a high pressure water jet is disposed on the conveyor (3). Each track has its won cutting head (1). A linear TV camera (6) is paced in front of said group of cutting heads (1), said camera scanning the width and length of the vegetables and the separation between them. By means of the corresponding electronic devices, it commands the motors (1.8) of the cutting heads and a motor (3.1) pertaining to the conveyor (3) so that the high pressure water jet of each cutting head (1) trims the vegetable, if required, and cuts the vegetable into a whole number of equal pieces, the size of said pieces being the closest possible to a target size.
34 Snipper knife assembly holder US09966910 2001-09-28 US06463846B2 2002-10-15 Robert C. Winkley
A holder for mounting a knife assembly, e.g., as used in a bean snipper or similar device, to a mounting rod or similar structure. The holder includes first and second plate members which are moveably joined together at first ends thereof (e.g., in a hinged relation), and which are sized and shaped to contact the mounting rod at a plurality of points when closed together around the mounting rod such that the second ends of the plate members are brought together. A knife assembly, including a knife head and a knife rod, is attached to the knife holder by extending an end of the knife rod through knife rod apertures formed in one of the plate members until the end of the knife rod contacts a knife rod stop. The knife rod apertures position a portion of the knife rod adjacent to the mounting rod at a contact point. A tightening structure, such as a hand rotatable knob, is mounted on the second ends of the plate members, to bring the second ends together when the tightening structure is tightened, thereby pinching the mounting rod between the plate members while simultaneously pinching the knife rod between the plate member and the mounting rod, thereby to secure the knife assembly to the mounting rod.
35 SNIPPER KNIFE ASSEMBLY HOLDER US09966910 2001-09-28 US20020134251A1 2002-09-26 Robert C. Winkley
A holder for mounting a knife assembly, e.g., as used in a bean snipper or similar device, to a mounting rod or similar structure. The holder includes first and second plate members which are moveably joined together at first ends thereof (e.g., in a hinged relation), and which are sized and shaped to contact the mounting rod at a plurality of points when closed together around the mounting rod such that the second ends of the plate members are brought together. A knife assembly, including a knife head and a knife rod, is attached to the knife holder by extending an end of the knife rod through knife rod apertures formed in one of the plate members until the end of the knife rod contacts a knife rod stop. The knife rod apertures position a portion of the knife rod adjacent to the mounting rod at a contact point. A tightening structure, such as a hand rotatable knob, is mounted on the second ends of the plate members, to bring the second ends together when the tightening structure is tightened, thereby pinching the mounting rod between the plate members while simultaneously pinching the knife rod between the plate member and the mounting rod, thereby to secure the knife assembly to the mounting rod.
36 Method and apparatus for severing root of bean sprout US09754237 2001-01-03 US06346288B1 2002-02-12 Masahiro Nakada
A method and apparatus for severing roots of bean sprouts are disclosed. Bean sprouts are supplied onto a severing table having a number of severing slits each of which has such a width that a root of a bean sprout falls into each severing slit. Water is sprinkled over the severing table so that the roots of the bean sprouts on the severing table flow into the severing slits. The roots of the bean sprouts fallen in the severing slits are severed by a cutter blade.
37 Snipper knife assembly holder US09813554 2001-03-21 US06318249B1 2001-11-20 Robert C. Winkley
A holder for mounting a knife assembly, e.g., as used in a bean snipper or similar device, to a mounting rod or similar structure. The holder includes first and second plate members which are moveably joined together at first ends thereof (e.g., in a hinged relation), and which are sized and shaped to contact the mounting rod at a plurality of points when closed together around the mounting rod such that the second ends of the plate members are brought together. A knife assembly, including a knife head and a knife rod, is attached to the knife holder by extending an end of the knife rod through knife rod apertures formed in one of the plate members until the end of the knife rod contacts a knife rod stop. The knife rod apertures position a portion of the knife rod adjacent to the mounting rod at a contact point. A tightening structure, such as a hand rotatable knob, is mounted on the second ends of the plate members, to bring the second ends together when the tightening structure is tightened, thereby pinching the mounting rod between the plate members while simultaneously pinching the knife rod between the plate member and the mounting rod, thereby to secure the knife assembly to the mounting rod.
38 Automatic mungbean sprout hulling and root cutting apparatus US375422 1995-01-18 US5452651A 1995-09-26 Lin Pao-Seng
An automatic mungbean sprout hulling and root-cutting apparatus includes a case which has a bean sprout inlet chute to receive bean sprouts transmitted by a conveyer of a transmission means. Bean sprouts then fall upon an inclined screen and are discharged out through a bean exhaust chute. An air ventilation means is disposed at the bottom of the case to send forced air pass through the reclined screen and to blow away light-weight bean hull from bean sprout. Bean hulls are discharged out through a bean hull exhaust exit. Bean sprouts fall on the screen by gravity force. The apertures on the screen can facilitate root-cutting function. Thus to serve the purpose of bean sprout hulling and root-cutting purpose. A screen vibration means can also be employed to further enhance the hulling and root-cutting effect.
39 Cutting apparatus for processing elongated vegetable products and the like US388529 1989-08-02 US4981073A 1991-01-01 David R. Zittel
A cluster cutter apparatus and a snipping apparatus are similarly formed to increase the snipping efficiency of a bean processing line. Each apparatus includes a rotating drum having a circumferential slotted surface in combination with an internally elongated inclined orienting plate unit for orienting of the beans onto the lower interior periphery of the rotating drum. The plate unit may be an inclined fixed plate or a rotating paddle wheel and includes a plurality of plates which is located in the lower leading quadrant of the drum. The paddle wheel is rotated at an appropriate speed relative to the drum and contributes to a highly cost effective high volume bean processing system. The plate(s) supports the beans and provides gradual and controlled vertical transfer to the drum slots. The cluster cutter includes separating disc units to separate the clusters. A plurality of separate bean severing knife units are spaced circumferentially over the complete lower half of the drum between the two o'clock and nine o'clock positions on the drum.
40 Tandem drum cluster separator US178424 1988-04-06 US4784057A 1988-11-15 Dennis O. Mietzel; R. Kevin Wells
A cluster seprator for engaging and separating clusters of pod vegetables joined together by stem sections from a large quantity of individual pod vegetables, includes two tandem substantially horizontally spaced drums which each have a cylindrical surface such that the two drums form a restricted zone between the cylindrical surfaces. The drums are rottable in opposite directions so that the cylindrical surfaces move in the same direction at the restricted zone. On each drum are hooked rods which extend generally radially outwardly from the cylindrical surface so that a hook portion of each rod faces generally upwardly within the restricted zone. The hooked rods on each drum form an array of rods of selected density. The hooked rods pass juxtaposedly through the restricted zone at the combined densities of the arrays of both drums to optimize engagement of the clusters of pod vegetables falling through the restricted zone while permitting individual pod vegetables to fall freely between the rods. As the drums rotate, the hooked rods pass outwardly and away from the restricted zone at the respective single array density of each drum so that the clusters may be cut apart or otherwise processed more efficiently. A drive system is connected to the drums to rotate them.
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