TWM554128U - Eco-friendly energy-saving device - Google Patents

Eco-friendly energy-saving device Download PDF

Info

Publication number
TWM554128U
TWM554128U TW106209312U TW106209312U TWM554128U TW M554128 U TWM554128 U TW M554128U TW 106209312 U TW106209312 U TW 106209312U TW 106209312 U TW106209312 U TW 106209312U TW M554128 U TWM554128 U TW M554128U
Authority
TW
Taiwan
Prior art keywords
inner tube
tube
outer tube
accommodating chamber
hollow metal
Prior art date
Application number
TW106209312U
Other languages
Chinese (zh)
Inventor
Po-Hui Chen
Original Assignee
Hong Jie Sheng International Co Ltd
Nanoplus Ltd Cayman Taiwan Branch
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Family has litigation
First worldwide family litigation filed litigation Critical https://patents.darts-ip.com/?family=61423615&utm_source=google_patent&utm_medium=platform_link&utm_campaign=public_patent_search&patent=TWM554128(U) "Global patent litigation dataset” by Darts-ip is licensed under a Creative Commons Attribution 4.0 International License.
Application filed by Hong Jie Sheng International Co Ltd, Nanoplus Ltd Cayman Taiwan Branch filed Critical Hong Jie Sheng International Co Ltd
Priority to TW106209312U priority Critical patent/TWM554128U/en
Priority to CN201720868762.2U priority patent/CN207080300U/en
Publication of TWM554128U publication Critical patent/TWM554128U/en

Links

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02TCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
    • Y02T10/00Road transport of goods or passengers
    • Y02T10/10Internal combustion engine [ICE] based vehicles
    • Y02T10/12Improving ICE efficiencies

Landscapes

  • Physical Or Chemical Processes And Apparatus (AREA)
  • Cooling, Air Intake And Gas Exhaust, And Fuel Tank Arrangements In Propulsion Units (AREA)

Abstract

本創作係關於一種環保節能器,其係為一中空金屬之內管穿置在一中空金屬之外管,該內管具有一位於該外管內且與該內管形成一容置室的中間管部,二分別設於該中間管部兩端且穿出於該外管兩端的接合部、及一凹設於該中間管部且與該容置室相通的削薄凹槽,並且將遠紅外線粉末填充於該容置室與該削薄凹槽內並對該遠紅外線粉末加壓成塊體,封閉住該容置室之兩端;藉由將該內管的外管壁且連接該容置室的部位削薄,提升該環保節能器的節能效率。The present invention relates to an environmentally-friendly economizer in which an inner tube of a hollow metal is placed in a hollow metal outer tube, and the inner tube has a middle portion located in the outer tube and forming an accommodation chamber with the inner tube. a pipe portion, two respectively disposed at two ends of the intermediate pipe portion and passing through the joint portion of the outer pipe, and a thin groove recessed in the middle pipe portion and communicating with the receiving chamber, and Infrared powder is filled in the accommodating chamber and the thinned groove and pressurizes the far-infrared powder into a block to close both ends of the accommodating chamber; by connecting the outer tube wall of the inner tube The part of the accommodating chamber is thinned to improve the energy saving efficiency of the environmental protection and energy saving device.

Description

環保節能器Environmental protection energy saver

本新型係關於一種環保節能器。This new type is about an environmentally friendly energy saver.

如圖1所示,係中華民國專利第584168號所揭示一種「鈦金環保節能器」,該鈦金環保節能器100係為一中空之鍍鈦外管10中央穿出設有一中空之鍍鈦內管11,且於內管11、外管10間形成有一容置室13,於容置室內13填充有遠紅外線粉末131,而於外管10之兩端封閉容置室13,且供內管11兩端之接合部14穿出。藉由內管11之兩接合部14分別接合於油管間,汽油流至該內管11中時,遠紅外線粉末131能使汽油霧化,而該內管11、外管10表面鍍鈦以帶有正電離子及負電離子,而能將油路間亂流現象之油離子,以藉由離子化傾向,將油離子重組,同時配合鍍鈦之內管11及外管10能有效的導熱,使汽油能平均加熱及提高預熱汽化完全,再利用遠紅外線粉末131提高能量進行更佳的反應效果,且該遠紅外線粉131末填充於該內管11及外管10間之容置室13,以增加保溫之功效。As shown in Fig. 1, a "titanium environmental protection energy-saving device" disclosed in the Republic of China Patent No. 584168, the titanium environmental protection energy-saving device 100 is a hollow titanium-plated outer tube 10 with a hollow titanium plated through the center. The inner tube 11 is formed with an accommodating chamber 13 between the inner tube 11 and the outer tube 10, and the accommodating chamber 13 is filled with the far-infrared ray powder 131, and the accommodating chamber 13 is closed at both ends of the outer tube 10, and the inner portion is closed. The joint portion 14 at both ends of the tube 11 is pierced. When the two joint portions 14 of the inner tube 11 are respectively joined between the oil pipes, when the gasoline flows into the inner tube 11, the far-infrared ray powder 131 can atomize the gasoline, and the inner tube 11 and the outer tube 10 are plated with titanium to carry the belt. There are positively charged ions and negatively charged ions, and the oil ions which can turbulently flow between the oil passages can reorganize the oil ions by ionization tendency, and at the same time, the titanium-plated inner tube 11 and the outer tube 10 can effectively conduct heat. The gasoline can be heated on average and the preheating vaporization is completed completely, and the far infrared ray powder 131 is used to increase the energy to achieve a better reaction effect, and the far infrared ray powder 131 is filled in the accommodating chamber 13 between the inner tube 11 and the outer tube 10. To increase the effectiveness of insulation.

然而,一般在使用習知的鈦金環保節能器100時,該容置室13內之遠紅外線粉末131能發出穿透該內管11管壁的遠紅外線,使燃油道15的汽油分子鍵拉長,增加汽油表面張力,進而霧化。而由於該遠紅外線粉末131所產生的遠紅外線的穿透率與該內管11的管壁厚度有關,厚度越厚穿透率越低,反之則越高,因此,為了提升該鈦金環保節能器100的節能效率,可採取的方案為將該內管11的外管壁且連接該容置室13的部位削薄,但也因此產生一問題,當汽油流至該燃油道15時,由於燃油壓力高,特別是該鈦金環保節能器100使用於高壓共軌引擎時,其所產生的燃油壓力過高,使得削薄後的管壁無法承受此燃油壓力,可能有爆裂之虞,據此,如何提供一種可增加該遠紅外線的穿透率且不會有爆破之虞,以更能提升節能效率的鈦金環保節能器即是本案創作的動機。However, when the conventional titanium environmental protection energy saver 100 is used, the far infrared ray powder 131 in the accommodating chamber 13 can emit far infrared rays penetrating the wall of the inner tube 11, so that the gasoline molecules of the fuel passage 15 are pulled. Long, increase the surface tension of the gasoline, and then atomize. The penetration rate of the far-infrared rays generated by the far-infrared ray powder 131 is related to the thickness of the tube wall of the inner tube 11, and the thicker the thickness, the lower the penetration rate, and vice versa. Therefore, in order to improve the environmental protection and energy saving of the titanium The energy saving efficiency of the device 100 can be adopted to thin the outer tube wall of the inner tube 11 and the portion connecting the accommodation chamber 13, but also causes a problem. When the gasoline flows to the fuel passage 15, due to The fuel pressure is high. Especially when the titanium eco-energy-saving device 100 is used in a high-pressure common rail engine, the fuel pressure generated by the high-pressure common rail engine is too high, so that the thinned pipe wall cannot withstand the fuel pressure, and there may be a burst. Therefore, how to provide a titanium environmental protection energy-saving device that can increase the penetration rate of the far-infrared rays without blasting, thereby improving the energy-saving efficiency, is the motivation for the creation of the case.

鑒於上述習知技術的缺點,因此,本新型之目的是提升節能效率。In view of the above shortcomings of the prior art, the purpose of the present invention is to improve energy efficiency.

於是,本新型關於一種環保節能器包含一中空金屬之外管、一中空金屬之內管、一反應單元及兩封蓋。Therefore, the present invention relates to an environmentally-friendly economizer comprising a hollow metal outer tube, a hollow metal inner tube, a reaction unit and two covers.

該內管穿置在該外管,並具有一位於該外管內且與該內管形成一容置室的中間管部、二分別設於該中間管部兩端且穿出於該外管兩端的接合部、及一凹設於該中間管部且與該容置室相通的削薄凹槽。The inner tube is disposed in the outer tube, and has an intermediate tube portion located in the outer tube and forming an accommodation chamber with the inner tube, and two are respectively disposed at two ends of the intermediate tube portion and are worn out of the outer tube a joint portion at both ends, and a thin groove recessed in the intermediate tube portion and communicating with the receiving chamber.

該反應單元,係由遠紅外線粉末填充於該容置室與該削薄凹槽內並對該遠紅外線粉末加壓成塊體,並具有一位於該容置室的第一反應部、及一位於該削薄凹槽的第二反應部。The reaction unit is filled with the far infrared ray powder in the accommodating chamber and the thinned groove and pressurizes the far infrared ray powder into a block body, and has a first reaction portion located in the accommodating chamber, and a Located in the second reaction portion of the thinned groove.

該兩封蓋係分別設於該外管之兩端,且供該內管兩端之接合部穿出,使該封蓋能封閉住該容置室之兩端。The two caps are respectively disposed at two ends of the outer tube, and the joint portions at both ends of the inner tube are pierced so that the cover can close both ends of the accommodating chamber.

本新型之有益效果在於,該環保節能器在使用時,由於該內管之管壁厚度變薄,減輕該遠紅外線粉末發出之遠紅外線被削弱的阻礙,使得該遠紅外線穿透性變佳,汽油分子更能吸收到遠紅外線,因此節能效率提升。另外,特別將該遠紅外線粉末加壓形成具有該第一反應部與該第二反應部的塊體,用以支撐過薄的管壁,防止過薄的管壁無法承受燃油壓力而破裂。The utility model has the beneficial effects that when the environmental protection economizer is used, the thickness of the inner wall of the inner tube is thinned, the obstruction of the far infrared ray emitted by the far infrared ray powder is alleviated, and the penetration of the far infrared ray is improved. Gasoline molecules can absorb far infrared rays, so energy efficiency is improved. Further, in particular, the far-infrared ray powder is pressurized to form a block having the first reaction portion and the second reaction portion for supporting an excessively thin tube wall to prevent the excessively thin tube wall from being able to withstand fuel pressure and being broken.

有關於本新型之前述及其他技術內容、特點與功效,在以下配合參考圖式之較佳實施例的詳細說明中,將可清楚的呈現。The above and other technical contents, features and advantages of the present invention will be apparent from the following detailed description of the preferred embodiments.

如圖2、圖3、圖4、圖5所示,為本新型之環保節能器200,包含一中空金屬之外管20、一中空金屬之內管30、一反應單元40及兩封蓋50。As shown in FIG. 2, FIG. 3, FIG. 4 and FIG. 5, the environmental protection energy saver 200 of the present invention comprises a hollow metal outer tube 20, a hollow metal inner tube 30, a reaction unit 40 and two cover 50. .

該中空金屬之外管20,為無縫不鏽鋼管,本實施例係舉鍍鈦金屬管為例。The hollow metal outer tube 20 is a seamless stainless steel tube. This embodiment is exemplified by a titanium-plated metal tube.

該中空金屬之內管30的為無縫不鏽鋼管,本實施例係舉鍍鈦金屬管為例,該內管30穿置在該外管20,並具有一位於該外管20內且與該內管30形成一容置室60的中間管部31、二分別設於該中間管部31兩端且穿出於該外管20兩端的接合部32、及一凹設於該中間管部31且與該容置室60相通的削薄凹槽33,接合部32設呈環狀棘齒狀,且該削薄凹槽33之深度介於0.2毫米~0.5毫米,本創作實施例為0.2毫米,該內管30更具有一貫穿該二接合部32且供燃油通過的燃油道34。The inner tube 30 of the hollow metal is a seamless stainless steel tube. In this embodiment, a titanium-plated metal tube is taken as an example. The inner tube 30 is disposed in the outer tube 20 and has a portion located in the outer tube 20 and The inner tube 30 forms an intermediate tube portion 31 of the accommodating chamber 60, two joint portions 32 respectively disposed at opposite ends of the intermediate tube portion 31 and passing through the two ends of the outer tube 20, and a recessed portion of the intermediate tube portion 31. And the thinned groove 33 communicating with the accommodating chamber 60, the engaging portion 32 is formed in an annular ratchet shape, and the depth of the thinned groove 33 is between 0.2 mm and 0.5 mm, which is 0.2 mm in the present embodiment. The inner tube 30 further has a fuel passage 34 extending through the two joint portions 32 for fuel to pass therethrough.

該反應單元40係由遠紅外線粉末41填充於該容置室60與該削薄凹槽33內並對該遠紅外線粉末41加壓成塊體,並具有一位於該容置室60的第一反應部42、及一位於該削薄凹槽33的第二反應部43。The reaction unit 40 is filled in the accommodating chamber 60 and the thinned recess 33 by the far infrared ray powder 41 and pressurizes the far infrared ray powder 41 into a block, and has a first one located in the accommodating chamber 60. The reaction portion 42 and a second reaction portion 43 located in the thinned groove 33.

該兩封蓋50係分別設於該外管20之兩端,且供該內管30兩端之接合部32穿出,使該封蓋50能封閉住該容置室60之兩端,該封蓋50更具有一位於該容置室60且相鄰該外管20內形成的圓倒角51。The two caps 50 are respectively disposed at the two ends of the outer tube 20, and the joint portions 32 of the inner tube 30 are pierced, so that the cover 50 can close the two ends of the accommodating chamber 60. The cover 50 further has a round chamfer 51 formed in the accommodating chamber 60 adjacent to the outer tube 20.

如圖3、圖4、圖5所示,以下將進一步說明該環保節能器200的使用情形,當本創作應用於汽車時,使該汽油流至本創作之內管30的燃油道34時,該遠紅外線粉末41能使汽油霧化,且配合鍍鈦之內管30、外管20具有導熱性佳及將油離子重組的作用,使汽油均勻加熱,以達到環保節的功效屬於習知內容,本案將不在討論。As shown in FIG. 3, FIG. 4 and FIG. 5, the use situation of the eco-energy-saving device 200 will be further described below. When the present invention is applied to a car, when the gasoline is flown to the fuel passage 34 of the inner tube 30 of the present creation, The far-infrared powder 41 can atomize the gasoline, and the titanium-plated inner tube 30 and the outer tube 20 have good thermal conductivity and recombine the oil ions, so that the gasoline is uniformly heated to achieve the environmental protection effect. This case will not be discussed.

值得一提的是,本新型更具有下述功效:It is worth mentioning that this new model has the following effects:

其一,保溫效果更好。由於本新型的該反應單元40是由該遠紅外線粉末41經加壓所形成,因此,該反應單元40的密度大於習知環保節能器所填充的遠紅外線粉末131,也就是本新型該反應單元40的遠紅外線粉末41之間的間隙小於習知環保節能器所填充的遠紅外線粉末的間隙,據此,在同樣的受熱條件下,本新型的保溫效果更優於習知環保節能器。且該外管20、內管30表面鍍鈦,由於純鈦金屬有延展性,加熱後會增加強度,這是因為其具有維持固態、而持有組織變化之轉化點的緣故,再加上鈦金屬複合聚合物塗料的輻射熱吸收率達到99%以上,所以鍍鈦之內管30、外管20能有效的導熱,再配合該遠紅外線粉末41發出的遠紅外線提高能量達到更佳的效果反應。First, the insulation effect is better. Since the reaction unit 40 of the present invention is formed by pressurization of the far-infrared ray powder 41, the density of the reaction unit 40 is greater than that of the far-infrared ray powder 131 filled by the conventional environmentally-friendly economizer, that is, the reaction unit of the present invention. The gap between the far-infrared ray powders 41 of 40 is smaller than the gap of the far-infrared ray powder filled by the conventional environmentally-friendly energy-saving device, and accordingly, under the same heating conditions, the novel heat-insulating effect is superior to the conventional environmentally-friendly energy-saving device. Moreover, the outer tube 20 and the inner tube 30 are plated with titanium. Since the pure titanium metal has ductility, the strength is increased after heating because it has a transformation point which maintains the solid state and holds the change of the structure, plus titanium. The radiant heat absorption rate of the metal composite polymer coating is more than 99%, so the inner tube 30 and the outer tube 20 of the titanium plating can effectively conduct heat, and the far infrared rays emitted from the far infrared powder 41 can be used to increase the energy to achieve a better effect reaction.

其二,穿透性增加。由於該內管30之管壁厚度變薄,大大減輕該遠紅外線粉末41發出之遠紅外線被削弱的阻礙,使得該遠紅外線粉末41發出的遠紅外線更容易穿透至該燃油道34,使得汽油分子更能吸收到遠紅外線,促進燃油進入汽缸時與空氣充分混合進而趨近100%燃燒。Second, the penetration is increased. Since the thickness of the tube wall of the inner tube 30 is thinned, the obstruction of the far-infrared rays emitted from the far-infrared ray powder 41 is greatly alleviated, so that the far-infrared rays emitted from the far-infrared ray powder 41 are more easily penetrated to the fuel passage 34, so that the gasoline The molecules are more able to absorb far-infrared rays, which promotes the fuel to enter the cylinder and mix with the air to approach 100% combustion.

其三,防止內管30爆裂。當汽油流至該內管30的燃油道34時,燃油壓力會往該內管30的內壁推移,特別當本新型使用於高壓共軌引擎時,其所產生的燃油壓力過高,而由於本新型於該內管30的中間管部31形成有一內凹的削薄凹槽33,使得該內管30管壁厚度變薄,有可能有爆裂之虞,因此,本新型透過將該遠紅外線粉末41加壓形成具有該第一反應部42與該第二反應部43的塊體,且該第一反應部42靠抵該外管20內,該第二反應部43靠抵該第一反應部42,該內管30的管壁靠抵於該第二反應部43,這樣的狀態下形成一厚實的支撐壁,用以支撐過薄的管壁,防止過薄的管壁無法承受過高的燃油壓力而破裂。Third, the inner tube 30 is prevented from bursting. When the gasoline flows to the fuel passage 34 of the inner tube 30, the fuel pressure will be displaced to the inner wall of the inner tube 30, especially when the present invention is used in a high pressure common rail engine, the fuel pressure generated is too high due to The present invention is formed with a concave thin groove 33 in the middle tube portion 31 of the inner tube 30, so that the wall thickness of the inner tube 30 is thinned, and there is a possibility of bursting. Therefore, the present invention transmits the far infrared rays. The powder 41 is pressurized to form a block having the first reaction portion 42 and the second reaction portion 43, and the first reaction portion 42 abuts against the outer tube 20, and the second reaction portion 43 abuts the first reaction portion The portion 42 of the inner tube 30 abuts against the second reaction portion 43. In this state, a thick support wall is formed to support the thin tube wall to prevent the excessively thin tube wall from being over-stressed. The fuel pressure bursts.

其四,提升安全性。參閱圖4所示,由於本新型的該反應單元40是由該遠紅外線粉末41經加壓所形成,且一體成形有該第一反應部42及該第二反應部43,其中該第二反應部43位於該內管30的削薄凹槽33內,因此,當本新型作動時,該削薄凹槽33的兩端被呈塊狀的該反應單元40阻擋,該內管30不易脫離於該外管20,有效提升安全性。Fourth, improve security. Referring to FIG. 4, the reaction unit 40 of the present invention is formed by pressurizing the far infrared ray powder 41, and integrally forms the first reaction portion 42 and the second reaction portion 43, wherein the second reaction The portion 43 is located in the thinned groove 33 of the inner tube 30. Therefore, when the present invention is actuated, both ends of the thinned groove 33 are blocked by the reaction unit 40 in a block shape, and the inner tube 30 is not easily separated from the The outer tube 20 effectively improves safety.

上述實施型態僅例示性說明本新型之原理及功效,而非用於限制本新型。任何熟習此項技藝之人士均可在不違背新型之精神及範疇下,對上述實施形態進行修飾與改變。因此,本新型之權利保護範圍,應如述之申請專利範圍所列。The above embodiments are merely illustrative of the principles and effects of the present invention and are not intended to limit the present invention. Anyone who is familiar with the art may modify and change the above embodiments without departing from the spirit and scope of the novel. Therefore, the scope of protection of the present invention should be as set forth in the scope of the patent application.

〈習知〉
100‧‧‧鈦金環保節能器
10‧‧‧中空鍍鈦之外管
11‧‧‧中空鍍鈦之內管
12‧‧‧封蓋
13‧‧‧容置室
14‧‧‧接合部
15‧‧‧燃油道
131‧‧‧遠紅外線粉末
〈本創作〉
200‧‧‧環保節能器
20‧‧‧中空金屬之外管
30‧‧‧中空金屬之內管
31‧‧‧中間管部
32‧‧‧接合部
33‧‧‧削薄凹槽
34‧‧‧燃油道
40‧‧‧反應單元
41‧‧‧遠紅外線粉末
42‧‧‧第一反應部
43‧‧‧第二反應部
50‧‧‧封蓋
51‧‧‧圓倒角
60‧‧‧容置室
<知知〉
100‧‧‧Titanium environmental protection energy saver
10‧‧‧ hollow titanium plating tube
11‧‧‧ hollow titanium inner tube
12‧‧‧ Cover
13‧‧‧ housing room
14‧‧‧ joints
15‧‧‧ Fuelway
131‧‧‧Far Infrared Powder <This Creation>
200‧‧‧Environmental energy saver
20‧‧‧ hollow metal outer tube
30‧‧‧Inner tube of hollow metal
31‧‧‧Intermediate Department
32‧‧‧ joints
33‧‧‧Thin groove
34‧‧‧ Fuelway
40‧‧‧Reaction unit
41‧‧‧ far infrared powder
42‧‧‧First Reaction Department
43‧‧‧Second Reaction Department
50‧‧‧ Cover
51‧‧‧ Round chamfer
60‧‧‧ housing room

圖1為習知一剖面圖,說明一般環保節能器的結構與功能; 圖2為本創作實施例一立體分解圖,說明本新型環保節能器之較佳實施例;   圖3為本創作實施例一立體局部剖面圖,配合說明圖2中各個構件組合後的態樣; 圖4為本創作實施例一使用剖面圖,說明本新型環保節能器使用時,汽油流至該內管的燃油道,該反應單元的狀態;及   圖5為本創作實施例一局部剖面圖,說明該反應單元的第一反應部與第二反應部的態樣。1 is a cross-sectional view showing a structure and a function of a general environmentally-friendly energy-saving device; FIG. 2 is an exploded perspective view of a first embodiment of the present invention, illustrating a preferred embodiment of the present invention; FIG. A three-dimensional partial cross-sectional view, in conjunction with the description of each component in FIG. 2; FIG. 4 is a cross-sectional view showing the use of the eco-friendly energy-saving device, the gasoline flow to the fuel pipe of the inner pipe, The state of the reaction unit; and FIG. 5 is a partial cross-sectional view of the first embodiment of the present invention, illustrating the first reaction portion and the second reaction portion of the reaction unit.

200‧‧‧環保節能器 200‧‧‧Environmental energy saver

20‧‧‧中空金屬之外管 20‧‧‧ hollow metal outer tube

30‧‧‧中空金屬之內管 30‧‧‧Inner tube of hollow metal

31‧‧‧中間管部 31‧‧‧Intermediate Department

32‧‧‧接合部 32‧‧‧ joints

33‧‧‧削薄凹槽 33‧‧‧Thin groove

34‧‧‧燃油道 34‧‧‧ Fuelway

40‧‧‧反應單元 40‧‧‧Reaction unit

41‧‧‧遠紅外線粉末 41‧‧‧ far infrared powder

50‧‧‧封蓋 50‧‧‧ Cover

51‧‧‧圓倒角 51‧‧‧ Round chamfer

60‧‧‧容置室 60‧‧‧ housing room

Claims (6)

一種環保節能器,包含:   一中空金屬之外管;   一中空金屬之內管,該內管穿置在該外管,並具有一位於該外管內且與該內管形成一容置室的中間管部、二分別設於該中間管部兩端且穿出於該外管兩端的接合部、及一凹設於該中間管部且與該容置室相通的削薄凹槽; 一反應單元,係由遠紅外線粉末填充於該容置室與該削薄凹槽內並對該遠紅外線粉末加壓成塊體,並具有一位於該容置室的第一反應部、及一位於該削薄凹槽的第二反應部;以及   兩封蓋,該兩封蓋係分別設於該外管之兩端,且供該內管兩端之接合部穿出,使該封蓋能封閉住該容置室之兩端。An environmentally-friendly economizer comprising: a hollow metal outer tube; a hollow metal inner tube, the inner tube is disposed in the outer tube, and has an inner tube and a receiving chamber formed therein The intermediate tube portion and the second portion are respectively disposed at two ends of the intermediate tube portion and passing through the joint portion of the outer tube portion, and a thin groove recessed in the intermediate tube portion and communicating with the receiving chamber; The unit is filled with the far infrared ray powder in the accommodating chamber and the thinned groove and pressurizes the far infrared ray powder into a block body, and has a first reaction portion located in the accommodating chamber, and a a second reaction portion for thinning the groove; and two cover portions respectively disposed at two ends of the outer tube and for allowing the joint portion at both ends of the inner tube to pass out, so that the cover can be closed Both ends of the accommodation chamber. 如申請專利範圍第1項所述之環保節能器,其中該接合部設呈環狀棘齒狀。The environmentally-friendly economizer according to claim 1, wherein the joint portion is formed in an annular ratchet shape. 如申請專利範圍第1項所述之環保節能器,其中該封蓋更具有一位於該容置室且相鄰該外管內形成的圓倒角。The environmental protection economizer according to claim 1, wherein the cover further has a round chamfer formed in the accommodating chamber and adjacent to the outer tube. 如申請專利範圍第1項所述之環保節能器,其中該削薄凹槽之深度介於0.2毫米~0.5毫米。The environmental protection energy saver according to claim 1, wherein the thinned groove has a depth of 0.2 mm to 0.5 mm. 如申請專利範圍第1項所述之環保節能器,其中該中空金屬之外管與該中空金屬之內管為無縫管。The environmentally-friendly economizer according to claim 1, wherein the outer tube of the hollow metal and the inner tube of the hollow metal are seamless tubes. 如申請專利範圍第1項所述之環保節能器,其中該內管更具有一貫穿該二接合部且供燃油通過的燃油道。The environmentally-friendly economizer according to claim 1, wherein the inner tube further has a fuel passage penetrating the two joint portions and allowing fuel to pass therethrough.
TW106209312U 2017-06-27 2017-06-27 Eco-friendly energy-saving device TWM554128U (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
TW106209312U TWM554128U (en) 2017-06-27 2017-06-27 Eco-friendly energy-saving device
CN201720868762.2U CN207080300U (en) 2017-06-27 2017-07-18 Environment-friendly energy saver

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TW106209312U TWM554128U (en) 2017-06-27 2017-06-27 Eco-friendly energy-saving device

Publications (1)

Publication Number Publication Date
TWM554128U true TWM554128U (en) 2018-01-11

Family

ID=61423615

Family Applications (1)

Application Number Title Priority Date Filing Date
TW106209312U TWM554128U (en) 2017-06-27 2017-06-27 Eco-friendly energy-saving device

Country Status (2)

Country Link
CN (1) CN207080300U (en)
TW (1) TWM554128U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI642845B (en) * 2017-06-27 2018-12-01 鴻杰陞國際股份有限公司 Environmental protection energy-saving device
TWI644060B (en) * 2016-09-02 2018-12-11 台灣櫻花股份有限公司 Quick assembly intake structure and countertop stove

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI644060B (en) * 2016-09-02 2018-12-11 台灣櫻花股份有限公司 Quick assembly intake structure and countertop stove
TWI642845B (en) * 2017-06-27 2018-12-01 鴻杰陞國際股份有限公司 Environmental protection energy-saving device

Also Published As

Publication number Publication date
CN207080300U (en) 2018-03-09

Similar Documents

Publication Publication Date Title
TWM554128U (en) Eco-friendly energy-saving device
TWI642845B (en) Environmental protection energy-saving device
CN108159602B (en) An explosion suppression device for promoting pre-decomposition of powder explosion suppression medium
CN202083118U (en) Heat exchanger of gas water heater
TWM395138U (en) Structure of water-storage and rapid-heating type water heater
TWI656279B (en) Combination structure of environmental protection and energy saving device with large flow rate
TWM562338U (en) Combination structure of large-flow environmental protection and energy-saving device
CN203240136U (en) Novel copper-steel composite pipe
US10655573B2 (en) Environmentally friendly energy saving device
CN217601053U (en) Heating member assembly and steam ironing equipment with same
TWM460808U (en) Multipurpose energy-saving and carbon reduction device
CN207989184U (en) Combined structure of large-flow environment-friendly energy-saving device
CN110005874A (en) A kind of high-temperature and high-presure resistent wall-through sealing structure
CN106152832A (en) A kind of novel chlorine liquid carburetor
CN204128404U (en) Radiator integral head
CN209165355U (en) A kind of heater fuselage improving heat source utilization rate
CN105546503A (en) Combined heat pipe smoke steam generator
CN205784805U (en) A kind of steam warming machine of power station boiler
CN203810726U (en) Double-interlayer water heater liner
CN201691712U (en) A kind of insulation structure
CN202614023U (en) Radiator
CN213901153U (en) High-strength gas stove gas inlet pipe
US20150323223A1 (en) Heat exchanging device and water heater using the same
CN205684211U (en) Gondola water faucet water inlet end aperture structure and gondola water faucet
CN205423811U (en) Half spherical head of lock joint formula