CN1043541A - 流体的磁处理装置 - Google Patents

流体的磁处理装置 Download PDF

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CN1043541A
CN1043541A CN89109342A CN89109342A CN1043541A CN 1043541 A CN1043541 A CN 1043541A CN 89109342 A CN89109342 A CN 89109342A CN 89109342 A CN89109342 A CN 89109342A CN 1043541 A CN1043541 A CN 1043541A
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宋本希
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Song Shufang
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    • C10G32/02Refining of hydrocarbon oils by electric or magnetic means, by irradiation, or by using microorganisms by electric or magnetic means
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
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    • B01J2219/0862Processes employing the direct application of electric or wave energy, or particle radiation; Apparatus therefor employing electric or magnetic energy creating magnetic fields employing multiple (electro)magnets
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02BINTERNAL-COMBUSTION PISTON ENGINES; COMBUSTION ENGINES IN GENERAL
    • F02B3/00Engines characterised by air compression and subsequent fuel addition
    • F02B3/06Engines characterised by air compression and subsequent fuel addition with compression ignition

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Abstract

一种流体烃类燃料磁处理装置由于利用了扁平环形磁碟因而简单有效。该装置的结构使燃料只能通过磁碟的中心圆孔,因而受到环形磁碟中心的均匀、集中磁场的均匀处理。由于利用环形磁极板,其中心圆孔的直径小于环形磁碟的中心圆孔,因而上述磁场更为集中而强化。本发明一实施例是串列装置,流体只通过磁碟中心通道;另一实施例的环形磁碟和磁极板组中穿过一非磁性材料管子,流体从中流过并受到环形磁碟和磁极板中心通道中均匀、集中磁场的处理。

Description

本发明涉及烃类流体燃料的磁处理装置。
已有不少磁装置用于处理燃料以提高燃烧效率并减少污染。例如美国专利3,830,621号,4,188,296号,4569737号和4,716,024号等以及日本专利57/122216,58/71993和59/225189等。其它用于水处理的磁装置有美国专利4,265,746号,4,265,754号和4,265,755号等。以上文献所公开的技术内容在此提出作为参考。
上述专利中的装置各有不同的效果,但这些装置都过份复杂,制造和使用起来成本过高。因而很需要发明和制造一种磁处理装置,使其在结构和使用方面予以简化,同时也使其更有效果。本发明的目的是提供一种既简单实用又更有效果的磁处理装置。
本发明提供了一种价格低廉,更实用有效的流体燃料的磁处理装置。
本发明是一种流体的磁处理装置,它由一个带有流体入口和出口的非磁性材料制成的外壳构成,壳内安置一个环形磁体,磁体的中间有一个圆形的通道,使流体只能从入口经由圆形内径通道后由出口流出。
同时本发明也可以是一种磁处理装置,它的磁体是由许多扁平环形磁碟并排在一起而构成。
本发明也可以是一种装置,其磁体包括两个或两个以上的扁平环形磁极板,其结构是每个磁极板被夹于每两个磁碟之间,同时使流体只能由磁体的圆形内径通道通过。环形磁碟的外圆直径大小和环形磁极板的外圆直径大小相等。磁极板的内圆直径则略小于磁碟的内圆直径。
本发明也可以是一种装置,其磁体的两端各安置扁平环形磁极板,其结构使流体只能由磁体中间的圆形内径通道通过。磁极板的外圆直径和磁碟外圆直径相等,内圆直径则磁极板较小。
同时,本发明也可以是一种流体磁处理装置,它包括一个环形磁体,其中有圆形的通道,此通道用于通过一条由非磁性材料制成的管子,流体在此管子中通过。此磁体的两端可各放一个扁平环形磁极板。或者也可以是由多个扁平环形磁碟,每两个磁碟夹有一个扁平环形磁极板所构成的磁体。磁碟的外圆直径和磁极板外圆直径相等,内圆直径则磁极板略小。
本发明也可以是一种如前所述的流体磁处理装置,只是在制成时,已装有一条由非磁性材料制成的管子。
附图的简要说明:
图1为本发明的组成分解图,包括两端各放一个磁极板的磁体。
图2为侧视图,可见磁体中每两个环形磁碟中夹有一个环形磁极板。
图3为横截面图,可见扁平环形磁碟和扁平环形磁极板中心的圆形通道的相互尺寸关系。
图4为本发明装置的一个实施例。
本发明是基于对应用扁平环形磁碟的特性的发现,它能简单、便宜、有效地实现对液体或气体烃类燃料的处理。已经发现,采用扁平环形磁碟的本发明的装置可以有效地处理流体烃类燃料而又不象其它装置那么复杂和昂贵。
本发明是基于对扁平环形磁碟能在其圆形内径中心的通道中产生非常集中和均匀的磁场的认识。因此本发明的设计是使燃料只能流过环形磁碟的内圆的中心通道来达到最有效的处理。所以本发明的各式装置对于燃料能提供非常均匀的处理。一般来说,使流体流经扁平环形磁碟的***或其它部位是不必要也是不希望的,因为这样对燃料会产生不平均的处理。本发明人发现使流体流经扁平环形磁碟中心圆形通道中均匀和集中的磁场可以对燃料提供更均匀有效的处理。
基本来说,本发明的装置包括一个非磁性材料制成的外壳,壳内安装一个环形磁体使流体燃料只能由入口流经环形磁体内圆中心通道从出口流出。图1所示实施例画出了这种基本结构,图1所示实施例具有非磁性材料制成的外壳1,入口2,出口3和扁平环形磁碟4和5正好适于安装入外壳1。外壳1也有一个尾盖8,尾盖8适于盖合外壳1,同时把磁碟固定在适当的位置,以提供一个流体只能流经磁体内径中心的限制流道。尾盖8能用适当的方式如螺旋,粘合剂等密封在外壳1上。
当组装完成后,该实施例即成为一个装置,使流体只能从入口2经由磁碟4和5的内圆中心通道(9)后由出口3流出。图1同时也是一个推荐的实施例,它包括可以放在由磁碟4和5组成的磁体的各端的磁极板10。磁极板10是由磁性金属材料如铁制成的。当磁极板被放置在磁体的两端时,磁极板10能在其内径中心11中产生集中而强大的磁力以加强流体所流过的磁场。然而因为使用的是环形的磁碟和磁极板,所以磁场在每个内径中心是一致的,因此能对流体产生均匀的处理。磁体的这个推荐结构含有磁极板,能进一步提供简单便宜而有效的燃料处理。
如果需要的话,磁体也可以由多个磁碟构成,如图1所示,可有亦可无磁极板,在外壳中也可以只有一片环形磁碟。磁碟的选择和结构取决于所要处理流体的性质,流速和流量。
在制造时,可在磁碟和磁极板的设置中使用密封垫或O形环来实现磁碟,磁极板,外壳和尾盖间的理想密封以便提供流过环形磁碟和存在的任何磁极板内径中心的理想的限定的流道。显然,按照本发明也可以使用其它的外壳结构和设计,图示实施例只是举例说明如何使流体只能流过环形磁体内径中心的通道。
本说明书中所用术语“磁碟”是指能够产生合适磁场的永久磁铁或电磁铁。术语“非磁性材料”是指不被磁铁所吸引或不受磁场影响的材料如塑料、铝、橡胶、一定种类的不锈钢、铜等。术语“磁性材料”是指能被磁体产生的磁场吸引和影响的材料,如铁磁金属。
在图2所示本发明的另一种实施例中,磁体是由多个各有内圆22的环形磁碟21及每两个磁碟夹有的一个磁极板23所组成的。虽然图2中只画有三个磁碟和两个磁极板,但是显然,本发明的装置可以利用增大环形磁碟和/或磁极板的体积和/或数目来增强磁力或磁场强度。
图3也示出本发明有关磁极板的另一种推荐的特征,其中,每个磁极板内圆直径略小于环形磁碟的内圆直径。在磁极板中心孔超出磁碟的延伸部分的作用是进一步在磁极板中心圆孔中加强和集中磁场。
由于中心具有圆孔的环形磁碟的集中磁场的均匀性使本发明装置的有效度很高。而且,由于设置了具有与磁碟相同环形结构的磁极板,而且,磁极板的表面向内超出磁碟表面向着中心延伸,这就进一步提高了本发明装置的有效度。
图3所示横截面图画出了环形磁碟21和磁极板23的细节,如图所示,磁碟的圆孔22的直径大于磁极板23的圆孔24的直径。
图4是本发明的另一种型式,该装置包括磁体40和一条非磁性材料制成的,能使流体通过的管子41。流体流经该管子就如同流经环形磁体的内径中心通道而达到良好的处理效果。图4所示磁体的结构包括环形磁碟42和环形磁极板43,具有磁极板的磁体效果更好,但不一定必要,这些部件由固定装置44固定在适当的位置上。非磁性材料制成的管子用于使燃料流过磁体中心圆孔,因而也流过磁体中心开口中的集中磁场,该磁场不受此非磁性材料制成的管子所干扰。
如图1所示,当磁碟并排放置在一起构成磁体,无论有无磁极板设置在磁体的两端,磁碟排列的方向如何并不影响处理的效果。但是最好相反的磁极即南北极相邻设置。
但是,如图2所示,当磁体的结构是由每两个磁碟中间夹有一个磁极板的排列方式组成时,则必须同极相邻,即南极对南极或北极对北极才会有效果。流体的流向对效果无影响,不论由南向北或由北向南都有效果。磁碟的强度对被处理的燃料都会有些效果,但是较好的是要有100至300高斯的磁场强度,500高斯的磁场强度能达到更好的效果。
图1所示的装置是本发明的很有效的实例,其磁体有3个环形磁碟,其外径为1 1/8 英寸,中心圆孔直径为 3/8 英寸。每个环形磁碟的厚度为 1/4 英寸。如图2所示,在磁碟间设置两磁极板,其厚度为1/8英寸,其外径为1 1/8 英寸,而其中心圆孔直径为5/16英寸。这3个磁碟和2个磁极板组装在一个铝制成的外壳中,因而这个结构使燃料由入口2流经3个磁碟和2个磁极板的内径中心通道后由出口3流出。该装置曾安装在一部装有D/8V-92柴油发动机的MACK牌大卡车上。该卡车在测功计上进行了对比试验,结果使用本磁处理器的效果是马力增大19%,黑烟排放量则减少51.5%。

Claims (12)

1、一种对流体进行磁处理的装置,它包括:具有流体入口和出口的非磁性材料制成的一个外壳,一个中心具有圆形通道,设置在该外壳内的环形磁体,因而使流体只能从入口流经磁体中心圆形通道而由出口流出。
2、按照权利要求1所述的装置,其特征在于:所述磁体是由多个扁平环形磁碟并置而成,从而使流体只能流过其中心的通道。
3、按照权利要求2所述的装置,其特征在于:所述磁体具有两个或两个以上扁平环形磁极板,每个磁极板中心都有圆孔而且设置在两个相邻磁碟之间,从而使流体只能流过其中心的通道。
4、按照权利要求3所述的装置,其特征在于:所述环形磁极板的外圆直径和环形磁碟的外圆直径相等,而磁极板中心圆孔的直径则小于相邻磁碟中心圆孔的直径。
5、按照权利要求1所述的装置,其特征在于:所述磁体每端具有一扁平环形磁极板,从而使流体只能流过其中心通道。
6、按照权利要求5所述的装置,其特征在于:所述环形磁极板的外圆直径与所述环形磁碟的外圆直径相等,而所述磁极板中心圆孔的直径则小于相邻磁碟中心圆孔的直径。
7、按照权利要求2所述的装置,其特征在于:所述磁体每端都具有一扁平环形磁极板,从而使流体只能流过其中心通道。
8、按照权利要求7所述的装置,其特征在于:所述环形磁极板的外圆直径与所述环形磁碟的外圆直径相等,而磁极板中心圆孔直径则小于相邻磁碟中心圆孔的直径。
9、一种对流体进行磁处理的装置,它包括一环形磁体,该磁体中心具有一圆形通道,其中适于放置一条非磁性材料制成的供流体通过的管子,其中,所述磁体的每端具有一扁平的环形磁极板,或者所述磁体具有多个扁平的环形磁极板,每个磁极板都夹在两相邻的磁碟中,而且其中,环形磁极板的外圆直径与磁碟外圆直径相等,而磁极板中心圆孔的直径则小于相邻磁碟中心圆孔的直径。
10、一种对流体进行磁处理的组件,它包括一环形磁体,该磁体中心具有一圆形通道,在该圆形通道中穿过一条非磁性材料制成的管子,使流体在此管子中流过环形磁体中心的圆形通道。
11、按照权利要求10所述的组件,其特征在于:所述磁体在其两端各具有一扁平环形磁极板,或者所述磁体具有多个环形磁碟以及多个磁极板,每个磁极板都夹在两相邻磁碟之间。
12、按照权利要求11所述的组件,其特征在于:所述扁平的环形磁极板的外圆直径与环形磁碟的外圆直径相等,而磁极板中心圆孔的直径则小于磁碟中心圆孔的直径。
CN89109342A 1988-12-16 1989-12-16 流体的磁处理装置 Expired - Fee Related CN1022058C (zh)

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Application Number Priority Date Filing Date Title
US07/285,148 1988-12-16
US07/285,148 US4933151A (en) 1988-12-16 1988-12-16 Device for magnetically treating hydrocarbon fuels

Publications (2)

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CN1043541A true CN1043541A (zh) 1990-07-04
CN1022058C CN1022058C (zh) 1993-09-08

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US (1) US4933151A (zh)
EP (1) EP0448640A4 (zh)
JP (1) JPH04503684A (zh)
CN (1) CN1022058C (zh)
WO (1) WO1990006809A1 (zh)

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CN112443431A (zh) * 2019-09-02 2021-03-05 电子设计天地贸易责任有限公司 促进燃质粒子燃烧的永磁装置

Also Published As

Publication number Publication date
JPH04503684A (ja) 1992-07-02
EP0448640A4 (en) 1991-12-18
US4933151A (en) 1990-06-12
EP0448640A1 (en) 1991-10-02
CN1022058C (zh) 1993-09-08
WO1990006809A1 (en) 1990-06-28

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