TWI643561B - Bean heat sink - Google Patents
Bean heat sink Download PDFInfo
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- TWI643561B TWI643561B TW106139054A TW106139054A TWI643561B TW I643561 B TWI643561 B TW I643561B TW 106139054 A TW106139054 A TW 106139054A TW 106139054 A TW106139054 A TW 106139054A TW I643561 B TWI643561 B TW I643561B
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Abstract
本發明係提供一種豆類散熱裝置,主要係藉由包含一散熱本體、一進料盒、一風向導引座及一進風源所相對構成;藉此創新獨特設計,使本發明藉由該進風源進風於該風向導引座內部之風向導引空間的徑向切邊處後形成一渦形旋風,令風向經由該進料盒之篩網進入該散熱本體之該散熱空間,且藉由進風為徑向切邊位置而使進入該散熱空間之風向為由下而上之渦形旋風形態,進而可大幅增進該豆類之散熱效果者。 The invention provides a bean heat dissipating device, which mainly comprises a heat dissipating body, a feeding box, a wind direction guiding seat and an air inlet source; thereby, the innovative and unique design enables the invention to be The wind source enters the radial cutting edge of the wind direction guiding space inside the wind guiding guide to form a spiral cyclone, so that the wind direction enters the heat dissipating space of the heat dissipating body through the screen of the feeding box, and borrows The wind entering the heat-dissipating space from the air inlet is a radial trimming position, and the wind direction is from the bottom to the top, and the heat dissipation effect of the beans can be greatly improved.
Description
本發明係有關一種豆類散熱裝置,尤其是一種豆類之較佳散熱裝置創新發明者。 The invention relates to a bean heat sink, in particular to a novel inventor of a preferred heat sink for beans.
按,習知咖啡機之烘豆方式主要有手動烘焙及自動烘焙兩種方式,其中手動烘焙係藉由手動方式粗調瓦斯流量閥之開度,以達到烘豆溫度控制之目的,然而對於咖啡烘焙機所產生高溫現象,及其所造成散熱問題影響品質問題,則至今尚未有任何專利前案能針對該等問題缺點而提出創新改良,是以,為本於精益求精之研發精神,本案創作人則據以潛心研究改良該等習知專利前案之上述缺點,進而首創完成本發明;是以,針對上述習知結構所存在之問題點,如何開發一種更具理想實用性之創新結構,實使用消費者所殷切企盼,亦係相關業者須努力研發突破之目標及方向。有鑑於此,創作人本於多年從事相關產品之製造開發與設計經驗,針對上述之目標,詳加設計與審慎評估後,終得一確具實用性之本發明。 According to the conventional coffee machine, there are two methods of manual baking and automatic baking. The manual baking is to manually adjust the opening of the gas flow valve to achieve the purpose of controlling the temperature of the baked beans, but for coffee. The high temperature phenomenon generated by the roaster and the heat dissipation problem caused by it affects the quality problem. So far, no patents have been proposed to innovate and improve the shortcomings of these problems. Therefore, the creator of this case is the spirit of research and development. Based on the above-mentioned shortcomings of the prior patents, the invention is firstly completed to complete the present invention; therefore, in view of the problems existing in the above-mentioned conventional structures, how to develop an innovative structure with more ideal practicability The use of consumers is eagerly awaited, and the relevant industry players must strive to develop breakthrough goals and directions. In view of this, the creator has been engaged in the manufacturing development and design experience of related products for many years. After detailed design and careful evaluation of the above objectives, the present invention has finally become practical.
即,本發明之主要目的,係在提供一種豆類散熱裝置;其所欲解決之問題點,係針對習知結構所存在之對於咖啡研磨機於高速 研磨時所產生高溫現象,及其所造成高溫研磨機構之散熱問題和高溫研磨咖啡粉之影響品質問題點加以改良突破;而其解決問題之技術特點,主要係藉由包括一散熱本體,其係內部具有一散熱空間,該散熱本體頂部設有一上座,該上座頂部預定位置為貫穿狀並佈設一網體,該散熱本體底部開設一中空部,該中空部外緣環置一下座;一進料盒,其係內部設有一進料空間,該進料盒頂緣係導組於該散熱本體之下座,使該進料空間連通該散熱本體之散熱空間,該進料盒底部為中空狀並佈設一篩網,且該進料盒底部設一底端部;一風向導引座,頂部開設一頂端口,該頂端口係連結該進料盒之底端部,該風向導引座內部之徑向切邊處開設一連結口,該連結口係連結於一進風源,據以藉由該進風源進風於該風向導引座之內部徑向切邊處後,令風向經由該進料盒之篩網進入該散熱本體之該散熱空間,藉由進風為徑向切邊位置而使進入該散熱空間之風向為由下而上之渦形旋風形態;藉此創新獨特設計,使本發明藉由該進風源進風於該風向導引座內部風向導引空間之徑向切邊處後形成一渦形旋風,令渦形旋風經由該進料盒之篩網進入該散熱本體之該散熱空間,藉由進風為徑向切邊位置而使進入該散熱空間之風向為由下而上之渦形旋風形態,進而可大幅增進該豆類之散熱效果者。 That is, the main object of the present invention is to provide a bean heat sink; the problem to be solved is that the coffee grinder is at a high speed for the conventional structure. The high temperature phenomenon caused by grinding, the heat dissipation problem caused by the high temperature grinding mechanism and the quality problem of the high temperature ground coffee powder are improved, and the technical characteristics of the problem solving mainly include a heat dissipation body, The inside of the heat dissipating body has a space for the top of the heat dissipating body. The top of the upper part of the heat dissipating body is arranged in a penetrating manner and is arranged with a net body. The bottom of the heat dissipating body has a hollow portion, and the outer edge of the hollow portion is looped to the lower seat; a feeding space is arranged inside the box, the top edge of the feeding box is guided by the lower part of the heat dissipating body, so that the feeding space communicates with the heat dissipating space of the heat dissipating body, and the bottom of the feeding box is hollow and A screen is arranged, and a bottom end portion is arranged at the bottom of the feeding box; a wind direction guiding seat has a top port at the top, the top port is connected to the bottom end of the feeding box, and the wind direction guiding seat is inside a connecting port is formed at the radial cutting edge, and the connecting port is connected to an air inlet source, and the wind direction is passed through the air inlet to the inner radial cutting edge of the wind guiding seat Feed box The screen enters the heat dissipating space of the heat dissipating body, and the wind direction entering the heat dissipating space is a bottom-up scroll shape by the wind entering the radial trimming position; thereby, the innovative and unique design enables the invention to borrow A swirling vortex is formed by the air inlet into the radial cutting edge of the wind guiding space inside the wind guiding guide, and the vortex cyclone enters the heat dissipating body through the screen of the feeding box. In the space, the wind entering the heat dissipating space by the air inlet is a radial vortex form from bottom to top, and the heat dissipation effect of the beans can be greatly improved.
〔本發明〕 〔this invention〕
10‧‧‧散熱本體 10‧‧‧Solution body
11‧‧‧散熱空間 11‧‧‧heating space
12‧‧‧網體 12‧‧‧ net body
13‧‧‧中空部 13‧‧‧ Hollow
14‧‧‧上座 14‧‧‧上上
15‧‧‧下座 15‧‧‧The lower seat
20‧‧‧轉接頭 20‧‧‧Adapter
21‧‧‧接端 21‧‧‧Connected
30‧‧‧抽風裝置 30‧‧‧Exhaust device
31‧‧‧接設端 31‧‧‧Connected end
32‧‧‧風管 32‧‧‧ duct
40‧‧‧進料盒 40‧‧‧ Feeding box
41‧‧‧篩網 41‧‧‧ screen
42‧‧‧進料空間 42‧‧‧Feed space
43‧‧‧底端部 43‧‧‧Bottom
50‧‧‧風向導引座 50‧‧‧Wind guide
51‧‧‧頂端口 51‧‧‧ top port
52‧‧‧連結口 52‧‧‧ link
53‧‧‧進風源 53‧‧‧Intake air source
54‧‧‧風向導引空間 54‧‧‧Wind guidance space
60‧‧‧直線軸承 60‧‧‧Linear bearings
61‧‧‧伸縮導引圓柱 61‧‧‧ Telescopic guide cylinder
70‧‧‧定位勾 70‧‧‧ Positioning hook
71‧‧‧連結端 71‧‧‧Link end
72‧‧‧勾端 72‧‧‧Check
80‧‧‧座架 80‧‧‧Rack
81‧‧‧拉桿 81‧‧‧ lever
82‧‧‧樞部 82‧‧‧Band
90‧‧‧中央控制開關 90‧‧‧Central control switch
C‧‧‧豆類 C‧‧‧Beans
S‧‧‧渦形旋風 S‧‧‧Spiral whirlwind
T‧‧‧徑向切邊 T‧‧‧ Radial trimming
A‧‧‧空氣濾清器 A‧‧‧Air filter
A1‧‧‧連通部 A1‧‧‧Connecting Department
A2‧‧‧進氣過濾網 A2‧‧‧Air intake filter
B‧‧‧輔助進氣機座 B‧‧‧Auxiliary intake base
B1‧‧‧輔助進氣孔 B1‧‧‧Auxiliary air intake
B2‧‧‧輔助進氣馬達 B2‧‧‧Auxiliary intake motor
第1圖:係本發明豆類散熱裝置之立體圖。 Fig. 1 is a perspective view showing a bean heat sink of the present invention.
第2圖:係本發明豆類散熱裝置之取出進料盒狀態立體圖。 Fig. 2 is a perspective view showing the state of the take-out cartridge of the bean heat sink of the present invention.
第3圖:係本發明豆類散熱裝置之局部立體圖。 Fig. 3 is a partial perspective view of the bean heat sink of the present invention.
第4圖:係本發明豆類散熱裝置之局部分解立體圖。 Fig. 4 is a partially exploded perspective view showing the bean heat sink of the present invention.
第5圖:係本發明豆類散熱裝置之實施例圖。 Fig. 5 is a view showing an embodiment of the bean heat sink of the present invention.
請參閱第1~5圖所示,係本發明豆類散熱裝置之較佳實施例,惟此等實施例僅供說明之用,在專利申請上並不受此結構之限制。 1 to 5 are preferred embodiments of the bean heat sink of the present invention, but the embodiments are for illustrative purposes only and are not limited by the structure.
一散熱本體(10),其係內部具有一散熱空間(11),該散熱本體(10)頂部設有一上座(14),該上座(14)頂部預定位置為貫穿狀並佈設一網體(12),該散熱本體(10)底部開設一中空部(13),該中空部(13)外緣環置一下座(15);其中該散熱本體(10)為透明材質製成,以便利目視該散熱空間(11);一進料盒(40),其係內部設有一進料空間(42),該進料盒(40)頂緣係導組於該散熱本體(10)之下座(15),使該進料空間(42)連通該散熱本體(10)之散熱空間(11),該進料盒(40)底部為中空狀並佈設一篩網(41),且該進料盒(40)底部設一底端部(43);一風向導引座(50),該風向導引座(50)內部形成一與頂端口(51)連通之風向導引空間(54),該風向導引空間(54)之徑向切邊(T)處開設一連結口(52),該連結口(52)係連結於一進風源(53),其中該進風源(53)可為鼓風機形態,據以藉由該進風源(53)進風於該風向導引空間(54)之徑向切邊(T) 處後,令風向經由該進料盒(40)之篩網(41)進入該散熱本體(10)之該散熱空間(11),藉由進風為徑向切邊(T)位置而使進入該散熱空間(11)之風向為由下而上之渦形旋風(S)形態者。 A heat dissipating body (10) has a heat dissipating space (11) therein. The top of the heat dissipating body (10) is provided with a top seat (14). The top of the upper seat (14) has a predetermined position and is arranged with a mesh body (12). a hollow portion (13) is formed at the bottom of the heat dissipation body (10), and the outer edge of the hollow portion (13) is disposed at a lower seat (15); wherein the heat dissipation body (10) is made of a transparent material to facilitate visual inspection. a heat-dissipating space (11); a feeding box (40), which is internally provided with a feeding space (42), and a top edge guiding group of the feeding box (40) is disposed under the heat-dissipating body (10) (15) The feeding space (42) is connected to the heat dissipating space (11) of the heat dissipating body (10), the bottom of the feeding box (40) is hollow and a screen (41) is arranged, and the feeding box ( 40) a bottom end portion (43) is provided at the bottom; a wind direction guiding seat (50), and a wind direction guiding space (54) communicating with the top port (51) is formed inside the wind direction guiding seat (50), the wind direction A connecting port (52) is defined at a radial cutting edge (T) of the guiding space (54). The connecting port (52) is coupled to an air inlet source (53), wherein the air inlet source (53) can be a blower shape, according to which the wind source (53) enters the wind direction guiding space (54) Radial trimming (T) After that, the wind direction enters the heat dissipation space (11) of the heat dissipation body (10) via the screen (41) of the feed box (40), and enters by the radial cut edge (T) position of the inlet air. The wind direction of the heat dissipation space (11) is a shape of a spiral vortex (S) from bottom to top.
其中該散熱本體(10)頂部之網體(12)進一步設一轉接頭(20),該轉接頭(20)具一接端(21),該接端(21)接設一風管(32)一端,令該風管(32)另端接設一抽風裝置(30)之一接設端(31),據以增強該散熱空間(11)內部之抽風散熱效果者。 The net body (12) at the top of the heat dissipating body (10) is further provided with a adapter (20), the adapter (20) has a connecting end (21), and the connecting end (21) is connected with a duct (32) One end, the air duct (32) is connected to one end of the air extracting device (30), and the connecting end (31) is connected to the air duct (32), thereby enhancing the air-dissipating heat dissipation effect inside the heat dissipating space (11).
較佳地,該散熱本體(10)、該進料盒(40)及該風向導引座(50)可為置設一座架(80),該座架(80)相對該散熱本體(10)設有複數提供上、下位移之直線軸承(60),該散熱本體(10)外側對應各該直線軸承(60)設有伸縮導引圓柱(61),且該散熱本體(10)之下座(15)底緣樞設有一拉桿(81),該拉桿(81)為ㄇ狀令兩端分別設一樞部(82)於該座架(80)相對位置,藉以撐起該散熱本體(10)後活動取置該進料盒(40)作豆類(C)進料使用,所述豆類(C)之較佳實施係為咖啡豆形態,而該座架(80)相對該拉桿(81)之朝上撐起處設一提供勾狀定位之定位勾(70),該定位勾(70)頂端設一連結端(71),以供設置於該座架(80),底端設置一勾端(72),以供勾狀定位該拉桿(81)者。 Preferably, the heat dissipation body (10), the feed box (40) and the wind direction guide seat (50) may be provided with a frame (80) opposite to the heat dissipation body (10). A linear bearing (60) for providing upper and lower displacements is provided, and the outer side of the heat radiating body (10) is provided with a telescopic guiding cylinder (61) corresponding to each of the linear bearings (60), and the heat radiating body (10) is seated below (15) The bottom edge is pivotally provided with a pull rod (81), and the pull rod (81) is formed in a shape such that a pivot portion (82) is respectively disposed at a position opposite to the mount frame (80), thereby supporting the heat dissipation body (10). After the activity, the feed box (40) is taken for feeding the beans (C), and the preferred embodiment of the beans (C) is in the form of coffee beans, and the frame (80) is opposite to the rod (81) A positioning hook (70) for providing a hook-shaped positioning is provided at the upper support portion, and a connecting end (71) is provided at the top end of the positioning hook (70) for being disposed on the mounting frame (80), and a hook is arranged at the bottom end. End (72) for positioning the pull rod (81) in a hook shape.
較佳地,該座架(80)設有一中央控制開關(90),用以控制該進風源(53)之作動啟閉者。 Preferably, the frame (80) is provided with a central control switch (90) for controlling the actuating and closing of the air inlet (53).
較佳地,該進風源(53)底部設有一空氣濾清器(A),其中該空氣濾清器(A)與該進風源(53)間連通設置有一連通部(A1),且該空氣濾清器(A)之周側分別設有複數進氣過濾網(A2),據以令進氣之氣流由該進氣過濾網(A2)過濾後進入該空氣濾清器(A)內部,進而可令空氣之氣流獲得淨化,進而可 提高其清淨品質,減少旋浮粒子混雜其中者。 Preferably, an air cleaner (A) is disposed at the bottom of the air inlet source (53), wherein a communication portion (A1) is disposed between the air cleaner (A) and the air inlet source (53). And a plurality of intake air filters (A2) are respectively disposed on the circumferential sides of the air cleaner (A), so that the airflow of the intake air is filtered by the air intake filter (A2) and enters the air filter (A) ) inside, which in turn allows the air stream to be purified Improve its clean quality and reduce the mixing of swirling particles.
較佳地,該風向導引座(50)底端部係連結有一輔助進氣機座(B),該風向導引座(50)與該輔助進氣機座(B)之相對連通處設有一輔助進氣孔(B1),且該輔助進氣機座(B)底端部設有一輔助進氣馬達(B2),據以藉由該進風源(53)進風於該風向導引空間(54)之內部徑向切邊(T)處後形成一渦形旋風(S)後,再藉由輔助進氣機座(B)供應向上之中央氣流,令渦形旋風(S)藉該向上氣流之導引以使經由該進料盒(40)之篩網(41)後再進入該散熱本體(10)之該散熱空間(11),藉由進風為徑向切邊(T)位置而使進入該散熱空間(11)之風向為由下而上之渦形旋風(S)形態者。 Preferably, the bottom end portion of the wind direction guiding seat (50) is coupled with an auxiliary air intake base (B), and the air guiding guide seat (50) is opposite to the auxiliary air intake base (B). An auxiliary air inlet hole (B1) is provided, and an auxiliary air intake motor (B2) is disposed at a bottom end portion of the auxiliary air intake base (B), so that the wind is guided by the air inlet source (53) After the internal radial trim (T) of the space (54) forms a spiral cyclone (S), the auxiliary air intake (B) supplies the upward central airflow, so that the spiral cyclone (S) The upward airflow is guided to pass through the screen (41) of the feeding box (40) and then enter the heat dissipating space (11) of the heat dissipating body (10), and the air is radially trimmed (T) The position is such that the wind direction entering the heat dissipation space (11) is a form of a spiral whirlwind (S) from bottom to top.
藉此,本發明藉由該進風源(53)進風於該風向導引座(50)之內部風向導引空間(54)的徑向切邊(T)處後形成一渦形旋風(S),令渦形旋風(S)經由該進料盒(40)之篩網(41)進入該散熱本體(10)之該散熱空間(11),藉由進風為徑向切邊(T)位置而使進入該散熱空間(11)之風向為由下而上之渦形旋風(S)形態,進而可大幅增進該豆類(C)之散熱效果者。 Thereby, the present invention forms a scroll cyclone by the air inlet source (53) entering the radial cutting edge (T) of the inner wind direction guiding space (54) of the wind direction guiding seat (50). S), causing the spiral cyclone (S) to enter the heat dissipation space (11) of the heat dissipation body (10) via the screen (41) of the feed box (40), and the radial cut edge by the inlet air (T) The position is such that the wind direction entering the heat dissipation space (11) is in the form of a spiral vortex (S) from bottom to top, and the heat dissipation effect of the beans (C) can be greatly enhanced.
歸納上述的說明,藉由本發明上述結構的設計,可有效克服習式發明所面臨的缺失,進一步具有上述眾多的優點及實用價值,因此本發明為一創意極佳之發明創作,且在相同的技術領域中未見相同或近似的產品創作或公開使用,故本發明已符合發明專利有關『新穎性』與『進步性』的要件,乃依法提出申請。 By summarizing the above description, the design of the above structure of the present invention can effectively overcome the shortcomings faced by the conventional invention, and further has the above-mentioned numerous advantages and practical values. Therefore, the present invention is an innovative invention and is identical in the same No identical or similar product creation or public use has been found in the technical field. Therefore, the present invention has met the requirements for "novelty" and "progressiveness" of the invention patent, and is applied according to law.
Claims (10)
Priority Applications (1)
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TW106139054A TWI643561B (en) | 2017-11-10 | 2017-11-10 | Bean heat sink |
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TW106139054A TWI643561B (en) | 2017-11-10 | 2017-11-10 | Bean heat sink |
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TWI643561B true TWI643561B (en) | 2018-12-11 |
TW201918175A TW201918175A (en) | 2019-05-16 |
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TW106139054A TWI643561B (en) | 2017-11-10 | 2017-11-10 | Bean heat sink |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113729248A (en) * | 2021-09-06 | 2021-12-03 | 湖南皇爷食品有限公司 | Continuous smoked betel nut baking production line |
Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3821450A (en) * | 1968-02-29 | 1974-06-28 | Osswald E F | Method for roasting and cooling granular matter such as coffee |
TW574904U (en) * | 2002-12-30 | 2004-02-01 | Yang Chia Machine Works Co Ltd | Diversion heat sink for coffee grinder |
WO2005058073A1 (en) * | 2003-12-17 | 2005-06-30 | Kraft Foods Holdings, Inc. | Process for single-stage heat treatment and grinding of coffee beans, and products thereof |
CN106509186A (en) * | 2016-12-26 | 2017-03-22 | 临海市羊岩茶厂 | Tea cooling device |
-
2017
- 2017-11-10 TW TW106139054A patent/TWI643561B/en not_active IP Right Cessation
Patent Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3821450A (en) * | 1968-02-29 | 1974-06-28 | Osswald E F | Method for roasting and cooling granular matter such as coffee |
TW574904U (en) * | 2002-12-30 | 2004-02-01 | Yang Chia Machine Works Co Ltd | Diversion heat sink for coffee grinder |
WO2005058073A1 (en) * | 2003-12-17 | 2005-06-30 | Kraft Foods Holdings, Inc. | Process for single-stage heat treatment and grinding of coffee beans, and products thereof |
CN106509186A (en) * | 2016-12-26 | 2017-03-22 | 临海市羊岩茶厂 | Tea cooling device |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113729248A (en) * | 2021-09-06 | 2021-12-03 | 湖南皇爷食品有限公司 | Continuous smoked betel nut baking production line |
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TW201918175A (en) | 2019-05-16 |
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