TWI669470B - Rapid heating structure - Google Patents

Rapid heating structure Download PDF

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Publication number
TWI669470B
TWI669470B TW107116342A TW107116342A TWI669470B TW I669470 B TWI669470 B TW I669470B TW 107116342 A TW107116342 A TW 107116342A TW 107116342 A TW107116342 A TW 107116342A TW I669470 B TWI669470 B TW I669470B
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channel
water
magnetron
microwave
water pipe
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TW107116342A
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Chinese (zh)
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TW201947167A (en
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籃建國
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沛承節能科技有限公司
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Abstract

本發明係有關於一種快速加熱結構,其係為一種運用微波迅速將水加熱的結構,特別將微波順著水路通道傳遞,以提升加熱效能。其主要係由電源供應器、磁控管、通道及水路管所組成,將電源供應器連接磁控管,而該連接磁控管連結合一環狀通道,並將水路管置放在通道內,使發出的單模微波集中在通道內,能加速水路管內水的受熱,達到迅速將水升溫,而具有高效率及節能的加熱裝置,且不受低溫環境的影響,實為一獨創新穎的微波加熱結構。 The invention relates to a rapid heating structure, which is a structure for rapidly heating water by using microwaves, in particular to transmit microwaves along a water channel to improve heating performance. The utility model mainly comprises a power supply device, a magnetron, a channel and a water pipe, and the power supply device is connected to the magnetron, and the connecting magnetron is connected with an annular channel, and the water pipe is placed in the channel. The concentrated single-mode microwave is concentrated in the channel, which can accelerate the heating of the water in the water pipe, and quickly increase the temperature of the water, and has a high efficiency and energy-saving heating device, and is not affected by the low temperature environment, and is truly innovative. Microwave heating structure.

Description

快速加熱結構 Rapid heating structure

本發明係有關於一種快速加熱結構,其係將磁控管連結有通道,而能以單模微波發出在水路管上,以加速水的升溫。 The present invention relates to a rapid heating structure in which a magnetron is coupled to a passage and can be emitted as a single mode microwave on a water pipe to accelerate the temperature rise of the water.

按,微波運用在許多家電產品之使用,例如:微波爐,其係在腔體內發出微波,藉以將食物加熱;另有微波熱水器,如專利第M287923號微波熱水器、第164627號微波智慧型熱水器及第266778號微波熱水器,該3件熱水器皆使用微波來加熱冷水,其所採用的方式都是具有腔體,並在腔體內放有大量的冷水,且在腔體之一側設置微波產生器,以利用微波產生器對大量冷水加熱。 According to the microwave, it is used in many home appliances, such as microwave ovens, which emit microwaves in the cavity to heat the food. Another microwave water heater, such as the patent No. M287923 microwave water heater, No. 164627 microwave smart water heater and the first Microwave water heater No. 266778, the three water heaters all use microwave to heat the cold water. The method used is to have a cavity, and a large amount of cold water is placed in the cavity, and a microwave generator is arranged on one side of the cavity to A large amount of cold water is heated by a microwave generator.

然而,該微波產生器係呈散開式向腔體內發出微波,其微波的效能大為分散,且有部分消耗在腔體內,加上微波必須同時對大量的冷水加熱,導致加熱效率低且相當耗電,而不符合消費者需求,所以微波熱水器無法普遍被消費者接受,因此,該微波熱水器研發至今約有10多年,在市面上仍然很少見到微波熱水器的使用。 However, the microwave generator emits microwaves into the cavity in a diffused manner, and the performance of the microwave is largely dispersed, and is partially consumed in the cavity, and the microwave must simultaneously heat a large amount of cold water, resulting in low heating efficiency and considerable consumption. Electricity, but not in line with consumer demand, so microwave water heaters can not be generally accepted by consumers, therefore, the microwave water heater has been developed for about 10 years, and the use of microwave water heaters is still rarely seen in the market.

本發明特別開發一種以單模型態為主的電磁波,使發出的高頻微波能集中在通道內,通道內容置有水路管,達到快速將水路管內冷水升溫的效果,故將本加熱裝置運用於熱水器的使用,其使用效率高且節能省電,確實具有極佳之經濟效益,相信必能取代現有的電熱水器。 The invention particularly develops an electromagnetic wave mainly based on a single model state, so that the emitted high-frequency microwave energy is concentrated in the channel, and the channel content is provided with a water pipe, so as to quickly increase the temperature of the cold water in the water pipe, the heating device is used. Used in the use of water heaters, its high efficiency and energy saving, it has excellent economic benefits, and it is believed that it can replace the existing electric water heaters.

本發明係有關於一種快速加熱結構,其係為一種運用微波迅速將水加熱的裝置,特別將單模型態的微波順著水路通道傳遞,以提升加熱效能。其主要係由電源供應器、磁控管、通道及水路管所組成,該通道係為環形,並將水路管容置在通道內,且該通道尺寸係搭配WR340及WR975導波管規格的尺寸設置,藉以產生單模型態的電磁波。 The invention relates to a rapid heating structure, which is a device for rapidly heating water by using microwaves, in particular, a single model state microwave is transmitted along a water channel to improve heating performance. It is mainly composed of a power supply, a magnetron, a channel and a water pipe. The channel is a ring shape, and the water pipe is accommodated in the channel, and the channel size is matched with the size of the WR340 and WR975 waveguide specifications. Set to generate electromagnetic waves in a single model state.

本發明之重點在於,該磁控管連接一通道入口,使該磁控管產生的頻率為0.915GHz,其係搭配WR975導波管,或產生的頻率為2.45GHz,其係搭配WR340導波管,在這樣的結構設計下,能使該磁控管發 出為單模微波型態的電磁波,確實將通道內的水路管集中性的接收微波發射,以達到水的快速升溫。 The focus of the present invention is that the magnetron is connected to a channel inlet such that the magnetron generates a frequency of 0.915 GHz, which is coupled to the WR975 waveguide, or generates a frequency of 2.45 GHz, which is coupled to the WR340 waveguide. Under such a structural design, the magnetron can be made The electromagnetic wave of the single-mode microwave type does receive the concentrated microwave emission of the water pipe in the channel to achieve rapid temperature rise of the water.

本發明之通道,不限制為環狀,亦可為多邊形狀,同樣能達到單模微波型態電磁波的產生,能運用於對水的加熱。 The channel of the present invention is not limited to a ring shape, and may also be a polygonal shape, and can also generate electromagnetic waves of a single mode microwave type, and can be applied to heating water.

使用時,當該磁控管發出微波時,其產生的電磁波頻率為0.915GHz或2.45GHz,該高頻單模微波係在通道內傳遞,使其在水路管內的水分子產生振盪而能快速地升溫,達到低成本、高效率及環保節能的快速製熱。 In use, when the magnetron emits microwaves, the electromagnetic wave frequency generated by the magnetron is 0.915 GHz or 2.45 GHz, and the high-frequency single-mode microwave system transmits in the channel, causing the water molecules in the water pipe to oscillate and can be quickly The ground heats up to achieve low-cost, high-efficiency, environmentally-friendly and energy-saving rapid heating.

本發明係將用於化工常見的高頻微波與通道結合,該技術並未見於運用在家電或水的加熱中,本發明使射出的高頻微波能全部集中於通道內不會分散,即為一種運用微波加熱的新結構。 The invention combines the high-frequency microwaves and channels commonly used in the chemical industry, and the technology is not used in the heating of the home appliance or the water, and the invention enables the high-frequency microwave energy emitted in the whole to be concentrated in the channel without dispersing, that is, A new structure that uses microwave heating.

〔本發明〕 〔this invention〕

11‧‧‧磁控管 11‧‧‧Magnetron

12‧‧‧通道 12‧‧‧ channel

120‧‧‧通道接頭 120‧‧‧channel connector

121‧‧‧側蓋 121‧‧‧ side cover

13‧‧‧電源供應器 13‧‧‧Power supply

14‧‧‧水路管 14‧‧‧Water pipe

141‧‧‧進水管 141‧‧‧ water inlet

142‧‧‧出水管 142‧‧‧Outlet

2‧‧‧熱水器 2‧‧‧Water heater

21‧‧‧儲水桶 21‧‧ ‧ water bucket

211‧‧‧管線 211‧‧‧ pipeline

第1圖係本發明之立體分解圖。 Figure 1 is a perspective exploded view of the present invention.

第2圖係本發明組裝之示意圖。 Figure 2 is a schematic illustration of the assembly of the present invention.

第3圖係本發明之立體圖。 Figure 3 is a perspective view of the present invention.

第4圖係本發明作為熱水器使用之示意圖。 Figure 4 is a schematic illustration of the use of the invention as a water heater.

首先,請參閱第1圖所示,係本發明之立體分解圖,其主要係由電源供應器13、磁控管11、通道12及水路管14所組成,該通道12係為環狀,其通道接頭120與磁控管11連結,並將水路管14容置在通道12內,再利用側蓋121將通道12封閉,其中,該水路管14配合通道12以環狀置入,而不會有彎折處,不僅設置上甚為簡易,其水路流通更為順暢,再將磁控管11連接有電源供應器13,而該磁控管11產生的頻率為0.915GHz,其係搭配WR975導波管,或產生的頻率為2.45GHz,其係搭配WR340導波管,使該磁控管11發出為單模微波型態於通道12內傳遞。 First, referring to Fig. 1, a perspective exploded view of the present invention is mainly composed of a power supply 13, a magnetron 11, a channel 12, and a water pipe 14, which is annular. The channel connector 120 is coupled to the magnetron 11, and the water pipe 14 is received in the channel 12, and the channel 12 is closed by the side cover 121. The water pipe 14 is inserted into the channel 12 in a ring shape without There is a bend, which is not only easy to set up, but also the water circulation is smoother. The magnetron 11 is connected to the power supply 13 and the frequency of the magnetron 11 is 0.915 GHz, which is matched with the WR975 guide. The wave tube, or the generated frequency is 2.45 GHz, which is coupled to the WR340 waveguide so that the magnetron 11 is emitted as a single mode microwave pattern in the channel 12.

其次,請仍然參閱第2圖所示,為提升微波之效能,該通道12係適用於WR340或WR975導波管規格的尺寸,並將水路管14放置在通道12內,使微波在環狀通道12內持續微波震盪,而不會有殘留微波的問題,特別該微波發射時能貫穿整個水路管14,使水路管14能完全 集中的接收微波,以達到水的快速升溫,特別該通道12內只要保持在WR340或WR975導波管規格的尺寸,即可依據製作上的需求,設置成多邊形狀。 Secondly, please still refer to Figure 2, in order to improve the performance of the microwave, the channel 12 is suitable for the size of the WR340 or WR975 waveguide specification, and the water pipe 14 is placed in the channel 12, so that the microwave is in the annular channel. Continuous microwave oscillation in 12, without the problem of residual microwave, especially when the microwave is emitted, it can penetrate the entire water pipe 14 to make the water pipe 14 completely The microwave is collected intensively to achieve rapid temperature rise of the water. In particular, the channel 12 can be set to a polygonal shape according to the requirements of the WR340 or WR975 waveguide.

組裝時,請繼續參閱第3圖所示,係將磁控管11連結有電源供應器13,且該磁控管11發出端與通道接頭120相連接,而該通道12內裝設有水路管14,位於該水路管14之進水管口141及出水管142凸伸在通道12外,以便於連結管線211(圖中未顯示),供作為冷、熱水流通的管路,而能將加熱後的水釋出。 When assembling, please continue to refer to FIG. 3, the magnetron 11 is connected to the power supply 13 , and the output end of the magnetron 11 is connected to the channel connector 120 , and the channel 12 is provided with a water pipe 14. The inlet pipe 141 and the outlet pipe 142 of the water pipe 14 protrude outside the passage 12 to facilitate the connection of the pipeline 211 (not shown) for the circulation of cold and hot water, and can be heated. After the water is released.

使用時,請仍然參閱第3圖所示,當該磁控管11發出微波時,其產生的電磁波頻率為0.915GHz或2.45GHz,該高頻微波係在通道12內傳遞,使其在通道12內的水路管14直接進行微波吸收,並利用微波震動冷水分子產生熱量,而能將水路管14內的水升溫,達到低成本、高效率及環保節能之快速製熱的效果。 When in use, please still refer to FIG. 3, when the magnetron 11 emits microwaves, the electromagnetic wave frequency generated by the magnetron 11 is 0.915 GHz or 2.45 GHz, and the high frequency microwave system transmits in the channel 12 to make it in the channel 12. The water pipe 14 inside is directly subjected to microwave absorption, and the microwave is used to vibrate the cold water molecules to generate heat, and the water in the water pipe 14 can be heated to achieve a low-cost, high-efficiency, environmentally-friendly and energy-saving rapid heating effect.

實施時,請配合參閱第4圖所示,其係將本發明之微波加熱結構運用在熱水器2內,其係由電源供應器13、磁控管11、通道12、水路管14及儲水桶21組成熱水器2(請回顧第3圖所示),該儲水桶21係藉由管線211與水路管14相連通,而能將製熱完成的水儲備在儲水桶21內,即能作為熱水器2使用,其使用效能佳、耗電量低,特別在低溫環境中,仍可快速加熱,而能改善現有的電熱水器熱度不足的問題。 When implemented, please refer to FIG. 4, which uses the microwave heating structure of the present invention in the water heater 2, which is composed of a power supply 13, a magnetron 11, a channel 12, a water pipe 14, and a water storage tank 21. The water heater 2 is formed (reviewed in FIG. 3), and the water storage tank 21 is connected to the water pipe 14 through the pipeline 211, and the water that has been completely heated can be stored in the water storage tank 21, that is, can be used as the water heater 2. It has good performance and low power consumption, especially in low temperature environment, it can still be heated quickly, and can improve the problem of insufficient heat of the existing electric water heater.

綜上所述,本發明係將用於化工常見的高頻微波與通道結合,該技術並未見於運用在家電或水的加熱中,使射出的高頻微波能全部集中發射在通道內,不會分散,即能令發出的熱能產生最大效益,本發明所採用的結構看似簡單,發明人卻能突破傳統在腔體內對水加熱的方式,改採通道集中式對水路管加熱,不僅克服低溫環境中不易升溫加熱之困擾,更能以最低成本達到最佳的效益,當符合發明專利要件,爰依法提出專利申請。 In summary, the present invention is used for the combination of high-frequency microwaves and channels commonly used in chemical industry. The technology is not used in the heating of home appliances or water, so that the high-frequency microwave energy emitted is all concentrated in the channel, Will be dispersed, that is, can make the heat generated to produce the maximum benefit, the structure adopted by the invention seems simple, the inventor can break through the traditional way of heating the water in the cavity, and the centralized channel is heated to the water pipe, which not only overcomes In the low temperature environment, it is not easy to heat up and heat up, and it can achieve the best benefit at the lowest cost. When it meets the requirements of the invention patent, the patent application is filed according to law.

Claims (2)

一種快速加熱結構,其主要係由電源供應器、磁控管、通道及水路管所組成,該通道係為環狀並延伸一通道接頭,其適用於WR340及WR975導波管規格的尺寸,再將水路管容置在通道內,而該磁控管連接有電源供應器,並將其與通道接頭連結,該磁控管產生的頻率為0.915GHz,其係搭配WR975導波管,或產生的頻率為2.45GHz,其係搭配WR340導波管,使該磁控管發出為單模微波型態的電磁波於通道內傳遞,且該水路管之進水管及出水管係凸伸於通道外,供進行冷、熱水流通的管路。 A rapid heating structure mainly consists of a power supply, a magnetron, a channel and a water pipe, the channel being annular and extending a channel joint, which is suitable for the size of the WR340 and WR975 waveguide specifications, and then The water pipe is housed in the passage, and the magnetron is connected with a power supply and connected to the channel joint. The magnetron generates a frequency of 0.915 GHz, which is matched with the WR975 waveguide, or is generated. The frequency is 2.45 GHz, which is matched with the WR340 waveguide, so that the electromagnetic wave emitted by the magnetron as a single mode microwave type is transmitted in the channel, and the inlet pipe and the outlet pipe of the water pipe protrude out of the channel for Pipes for cold and hot water circulation. 如請求項1所述之快速加熱結構,其中,該通道係依製作上的需求能為多邊形狀。 The rapid heating structure of claim 1, wherein the channel is polygonal in shape according to the requirements of the fabrication.
TW107116342A 2018-05-14 2018-05-14 Rapid heating structure TWI669470B (en)

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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2232769Y (en) * 1995-06-14 1996-08-14 李中洪 Medical infusion microwave constant temp heater
TW200533393A (en) * 2004-04-01 2005-10-16 Steris Inc Heating apparatus for vaporizer
CN103587130A (en) * 2013-10-15 2014-02-19 南京航空航天大学 Method and device for curing fiber-reinforced resin-based composite material component by utilizing microwaves

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2232769Y (en) * 1995-06-14 1996-08-14 李中洪 Medical infusion microwave constant temp heater
TW200533393A (en) * 2004-04-01 2005-10-16 Steris Inc Heating apparatus for vaporizer
CN103587130A (en) * 2013-10-15 2014-02-19 南京航空航天大学 Method and device for curing fiber-reinforced resin-based composite material component by utilizing microwaves

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