JP2006095431A - Drum type magnetic sorting device - Google Patents

Drum type magnetic sorting device Download PDF

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JP2006095431A
JP2006095431A JP2004284694A JP2004284694A JP2006095431A JP 2006095431 A JP2006095431 A JP 2006095431A JP 2004284694 A JP2004284694 A JP 2004284694A JP 2004284694 A JP2004284694 A JP 2004284694A JP 2006095431 A JP2006095431 A JP 2006095431A
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magnetic
drum
sorting rotary
rotary drum
sorting
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JP4243236B2 (en
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Nobuaki Oniki
信章 鬼木
Koichi Kunisada
浩一 国貞
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Nippon Magnetic Dressing Co
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Nippon Magnetic Dressing Co
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a drum type magnetic sorting device which is drastically improved in the efficiency in separation of magnetized materials in raw materials to be treated. <P>SOLUTION: This device is provided with a first magnetic sorting rotary-drum 11 in which the magnetized materials M in the raw materials to be treated conveyed from a conveyor 13 are attracted on one side of magnetic surfaces arranged with a group of permanent magnets 21 in close contact with the inside and are gradually conveyed to the other side of non-magnetic surfaces, a second magnetic sorting rotary-drum 12 which is arranged adjacently to the first magnetic sorting rotary-drum 11 with a gap in between and in which the magnetized materials M conveyed to the non-magnetic surfaces by the first magnetic sorting rotary-drum 11 are attracted on one side of magnetic surfaces arranged with a group of permanent magnets 21 in close contact with the inside and are gradually conveyed to the other side of the non-magnetic surfaces, and a frame 14 supporting these drums. <P>COPYRIGHT: (C)2006,JPO&NCIPI

Description

本発明は、ドラム型磁力選別装置に係り、特に、2つのドラム型の磁力選別手段を備え、磁着物と非磁性物が混合した処理原料中から磁着物(例えば、鉄)を選別する効率を向上させたドラム型磁力選別装置に関する。 The present invention relates to a drum-type magnetic separation device, and in particular, has two drum-type magnetic separation means, and has an efficiency of sorting magnetic deposits (for example, iron) from processing raw materials in which magnetic deposits and non-magnetic deposits are mixed. The present invention relates to an improved drum type magnetic separator.

例えば、特許文献1に記載のように、回転する非磁性体からなる円筒体(ドラム)の内側に永久磁石を配置し、徐々に搬送される原料中の鉄等の磁着物を分離することは広く行われている。
図5に従来型の磁力選別機の一例を示すが、この磁力選別機70は磁着物を含む原料70aを搬送するコンベア71の上方に跨がって配置されて、主ローラ72、73及び従ローラ74、75にかけ渡された無端ベルト76と、無端ベルト76の直上側に配置された磁気発生手段77と、主ローラ72を回転駆動するモータ78と、これらを支持するフレーム79を有している。そして、コンベア71によって搬送される原料70a中の磁着物を磁気発生手段77によって無端ベルト76に吸着し、コンベア71外に搬送している。
For example, as described in Patent Document 1, a permanent magnet is disposed inside a rotating cylindrical body (drum) made of a nonmagnetic material, and magnetic materials such as iron in a raw material that is gradually conveyed are separated. Widely done.
FIG. 5 shows an example of a conventional magnetic separator. The magnetic separator 70 is disposed over a conveyor 71 that conveys a raw material 70a containing magnetic deposits, and includes main rollers 72 and 73 and a slave roller. It has an endless belt 76 laid over rollers 74, 75, magnetism generating means 77 disposed immediately above the endless belt 76, a motor 78 for driving the main roller 72 to rotate, and a frame 79 for supporting them. Yes. The magnetized material in the raw material 70 a conveyed by the conveyor 71 is attracted to the endless belt 76 by the magnetism generating means 77 and conveyed outside the conveyor 71.

特開平8−1039号公報(図2)JP-A-8-1039 (FIG. 2)

しかしながら、原料70a中に薄い鉄板や鋼材が混入していた場合、これらの鉄板や鋼材(以下、単に「平鉄板」という)は一般にコンベア71上に平らな面を下にして載っている。そして、平鉄板の上に非磁性体からなる必要な原料が載っている場合、これらの原料は平鉄板の上に載った状態で、無端ベルト76に吸着される。従って、従来のこのような磁力選別機70においては、原料と磁着物の分離効率が悪いという問題があった。 However, when a thin iron plate or steel material is mixed in the raw material 70a, these iron plates or steel materials (hereinafter simply referred to as “flat iron plates”) are generally placed on the conveyor 71 with a flat surface down. When necessary raw materials made of a non-magnetic material are placed on the flat iron plate, these raw materials are adsorbed to the endless belt 76 while being placed on the flat iron plate. Therefore, the conventional magnetic separator 70 has a problem that the separation efficiency between the raw material and the magnetic deposit is poor.

本発明はかかる事情に鑑みてなされたもので、処理原料中の磁着物の分離効率が格段に向上したドラム型磁力選別装置を提供することを目的とする。 The present invention has been made in view of such circumstances, and an object of the present invention is to provide a drum-type magnetic separation device in which the separation efficiency of magnetic deposits in the processing raw material is remarkably improved.

前記目的に沿う本発明に係るドラム型磁力選別装置は、処理原料を徐々に搬送するコンベアと、
前記コンベアから搬送される処理原料中の磁着物を、内側に近接して永久磁石群が配置されている一側の磁気表面側で吸着して、他側の無磁気表面側に徐々に搬送する第1の磁力選別回転ドラムと、
前記第1の磁力選別回転ドラムに隙間を有して隣接して設けられ、前記第1の磁力選別回転ドラムによってその無磁気表面側に搬送された前記磁着物を、内側に近接して永久磁石群が配置される一側の磁気表面側で吸着して、徐々に他側の無磁気表面側に搬送する第2の磁力選別回転ドラムと、
これらを支持する架台を備える。
これによって、磁着物の上に非磁性物が載った状態で第1の磁力選別回転ドラムに吸着された処理原料を、第2の磁力選別回転ドラムで吸着する際には、まず磁着物が吸着され、非磁性物は磁着物による巻き込みから解放されるので、非磁性物は容易に落下し、磁着物から分離される。
The drum type magnetic separation apparatus according to the present invention that meets the above-mentioned object is a conveyor that gradually conveys a processing raw material,
The magnetized material in the processing raw material conveyed from the conveyor is adsorbed on the magnetic surface side on one side where the permanent magnet group is arranged close to the inside, and gradually conveyed to the non-magnetic surface side on the other side. A first magnetic sorting rotary drum;
The magnetized material, which is provided adjacent to the first magnetic sorting rotary drum with a gap and is transported to the non-magnetic surface side by the first magnetic sorting rotary drum, is brought close to the inside to be a permanent magnet. A second magnetic sorting rotary drum that is attracted on one magnetic surface side where the group is arranged and gradually conveyed to the other non-magnetic surface side;
A stand for supporting these is provided.
As a result, when the processing raw material adsorbed on the first magnetic sorting rotary drum with the non-magnetic material placed on the magnetic deposit is adsorbed by the second magnetic sorting rotary drum, the magnetic deposit is first adsorbed. Since the non-magnetic material is released from the entrainment by the magnetic material, the non-magnetic material easily falls and is separated from the magnetic material.

本発明に係るドラム型磁力選別装置において、前記第1、第2の磁力選別回転ドラムは、前記架台に軸受を介して固定される固定軸と、該固定軸に同心上に回転可能に取付けられる非磁性体からなる回転筒と、前記回転筒の一側内部で前記固定軸に固着される前記永久磁石群とをそれぞれ有し、
しかも、前記それぞれの第1、第2の磁力選別回転ドラムにおいて、前記永久磁石群による前記回転筒の表面に発生する磁気は、前記回転筒の回転によって前記磁着物を吸着しながら回転搬送する搬送位置より、前記磁着物を吸引する位置の方が大きくなっているのが好ましい。これによって、磁着物の吸引とその搬送が円滑に行われる。そして、第1の磁力選別回転ドラムで磁着物が吸着される場合は、非磁性物を巻き込んで、即ち非磁性物の上に磁着物が被さった状態で、第1の磁力選別回転ドラムに吸着されることになり、この磁着物が第2の磁力選別回転ドラムに吸着される場合は、この被さった磁着物が先に第2の磁力選別回転ドラムに吸着されるので、第1の磁力選別回転ドラムから磁着物が剥がれた状態になり、非磁性物は第2の磁力選別回転ドラムに吸着されることなく、分離落下する。
In the drum type magnetic sorting apparatus according to the present invention, the first and second magnetic sorting rotary drums are fixedly attached to the mount via a bearing, and are rotatably attached to the fixed shaft concentrically. A rotating cylinder made of a non-magnetic material, and the permanent magnet group fixed to the fixed shaft inside one side of the rotating cylinder,
In addition, in each of the first and second magnetic force sorting rotary drums, the magnetism generated on the surface of the rotating cylinder by the permanent magnet group is rotated and conveyed while adsorbing the magnetic deposit by the rotation of the rotating cylinder. It is preferable that the position for attracting the magnetic deposit is larger than the position. As a result, the suction and transfer of the magnetic deposits are performed smoothly. When the magnetic material is adsorbed by the first magnetic sorting rotary drum, the non-magnetic material is entrained, that is, the magnetic material is covered on the non-magnetic material, and is attracted to the first magnetic sorting rotary drum. When this magnetic attachment is attracted to the second magnetic sorting rotary drum, the covered magnetic attachment is first attracted to the second magnetic sorting rotary drum, so that the first magnetic sorting is performed. The magnetized material is peeled off from the rotating drum, and the non-magnetic material is separated and dropped without being adsorbed by the second magnetic sorting rotating drum.

本発明に係るドラム型磁力選別装置において、前記コンベアは振動フィーダであるのがよい。これによって処理原料を一定量ずつ搬送することができると共に、振動によって処理原料の整列や磁着物と非磁性物との分離が促進される。 In the drum type magnetic separation apparatus according to the present invention, the conveyor may be a vibration feeder. As a result, the processing raw material can be conveyed by a certain amount, and the alignment of the processing raw material and the separation of the magnetized material and the non-magnetic material are promoted by vibration.

そして、本発明に係るドラム型磁力選別装置において、前記第1、第2の磁力選別回転ドラムの周囲には、それぞれ前記磁着物を円滑に搬送する突出物(例えば、線状の)が設けられているのがよい。
突出物の高さは、例えば、5〜50mm程度でよく、この突出物の高さが過度に大きいと、コンベアと第1の磁力選別回転ドラムとの距離、第1、第2の磁力選別回転ドラム間の距離が大きくなり、磁気吸引力が低下する。また、突出物の高さが過度に低いと、磁着物を強制的に搬送する力が弱くなる。
In the drum type magnetic separation apparatus according to the present invention, a protrusion (for example, a linear shape) that smoothly conveys the magnetic deposit is provided around the first and second magnetic separation rotary drums. It is good to have.
The height of the protrusion may be, for example, about 5 to 50 mm. If the height of the protrusion is excessively large, the distance between the conveyor and the first magnetic sorting rotary drum, the first and second magnetic sorting rotations. The distance between the drums increases and the magnetic attractive force decreases. On the other hand, if the height of the protrusion is excessively low, the force for forcibly conveying the magnetic deposit is weakened.

請求項1〜4記載のドラム型磁力選別装置は、第1の磁力選別回転ドラムと第2の磁力選別回転ドラムとを直列に使用しているので、第1の磁力選別回転ドラムによって巻き込まれた非磁性物も、円滑に第2の磁力選別回転ドラムに磁着物が吸着されるときに除去できる。従って、処理原料から効率的に磁着物を分離できる。 The drum-type magnetic separation device according to claims 1 to 4 uses the first magnetic separation rotary drum and the second magnetic separation rotary drum in series, and is therefore caught by the first magnetic separation rotary drum. The non-magnetic material can also be removed smoothly when the magnetized material is attracted to the second magnetic force sorting rotary drum. Therefore, the magnetic deposit can be efficiently separated from the processing raw material.

続いて、添付した図面を参照しつつ、本発明を具体化した実施の形態につき説明し、本発明の理解に供する。
ここに、図1は本発明の一実施の形態に係るドラム型磁力選別装置の側面図、図2は同ドラム型磁力選別装置の平面図、図3は同ドラム型磁力選別装置の第1の(第2の)磁力選別回転ドラムの縦断面図、図4は同第1、第2の磁力選別回転ドラムの横断面図である。
Next, embodiments of the present invention will be described with reference to the accompanying drawings for understanding of the present invention.
Here, FIG. 1 is a side view of a drum type magnetic sorting apparatus according to an embodiment of the present invention, FIG. 2 is a plan view of the drum type magnetic sorting apparatus, and FIG. 3 is a first view of the drum type magnetic sorting apparatus. FIG. 4 is a cross-sectional view of the first and second magnetic force sorting rotary drums.

図1に示すように、本発明の一実施の形態に係るドラム型磁力選別装置10は、所定間隔で平行に配置された第1、第2の磁力選別回転ドラム11、12と、下位置に配置された第1の磁力選別回転ドラム11に向けて処理原料(この実施の形態では、プレス屑)を供給するコンベアの一例である振動フィーダ13と、これらを搭載する鋼製の架台14とを有している。以下、これらについて詳しく説明する。 As shown in FIG. 1, a drum type magnetic separation device 10 according to an embodiment of the present invention includes first and second magnetic separation rotary drums 11 and 12 arranged in parallel at predetermined intervals, and a lower position. A vibration feeder 13 that is an example of a conveyor that supplies processing raw materials (press scraps in this embodiment) toward the arranged first magnetic sorting rotary drum 11 and a steel mount 14 on which these are mounted. Have. These will be described in detail below.

まず、図3、図4に示す第1の磁力選別回転ドラム11(第2の磁力選別回転ドラム12も同様)について説明する。
第1の磁力選別回転ドラム11は、軸受15、16によって両端を支持され、常時所定角度位置に保持される中央の固定軸17と、固定軸17に同心上にベアリング18、19を介して回転自由に取付けられている回転筒20と、回転筒20の内壁に隙間を有して近接し、固定軸17の片側半分に固定して取付けられている永久磁石群21とを有している。
軸受15、16は架台14に固定され、軸受16の一方から固定軸17が突出し、突出した固定軸17の端部にはウォームホイル22が設けられている。ウォームホイル22はウォーム23が噛合し、このウォーム23の両端は軸受16(又は架台14)に固定して取付けられた補助軸受24、24aによって回転可能に支持され、ウォーム23を回転することによって、固定軸17の取付け角度を徐々に変更でき、更にウォーム23を回転しない場合にはウォーム23がウォームホイル22に噛合して、固定軸17をロックする構造となっている。
First, the first magnetic sorting rotary drum 11 shown in FIGS. 3 and 4 (the same applies to the second magnetic sorting rotary drum 12) will be described.
The first magnetic force sorting rotary drum 11 is supported by bearings 15 and 16 at both ends, and is rotated through bearings 18 and 19 concentrically with the fixed shaft 17 and a central fixed shaft 17 that is always held at a predetermined angular position. A rotating cylinder 20 that is freely attached and a permanent magnet group 21 that is adjacent to the inner wall of the rotating cylinder 20 with a gap and is fixedly attached to one half of the fixed shaft 17 are provided.
The bearings 15 and 16 are fixed to the gantry 14, a fixed shaft 17 protrudes from one of the bearings 16, and a worm wheel 22 is provided at an end portion of the protruding fixed shaft 17. The worm wheel 22 meshes with the worm 23, and both ends of the worm 23 are rotatably supported by auxiliary bearings 24 and 24 a fixedly attached to the bearing 16 (or the gantry 14), and by rotating the worm 23, The mounting angle of the fixed shaft 17 can be gradually changed, and when the worm 23 is not rotated, the worm 23 is engaged with the worm wheel 22 to lock the fixed shaft 17.

固定軸17の軸受15、16の内側位置にはベアリング18、19を介してリング状のハウジング25、26が設けられ、このハウジング25、26には周囲に縁板27、28を有する側板部材29、30がそれぞれ複数のボルト31でねじ止めされている。側板部材29、30の短円筒状の縁板27、28に回転筒20が複数のボルト32でねじ止めされている。
そして、側板部材30の外側には筒形支持材33の一端が複数のボルト34によってねじ止めされ、筒形支持材33の他端にはスプロケット35が複数のボルト36によってねじ止めされている。また側板部材29の外側にはカバー部材33aがボルト34aによってねじ止めされている。
なお、回転筒20は非磁性材料、例えばオーステナイト系のステンレス等からなって、内部の永久磁石群21から発生する磁気が円滑に回転筒20を通過できるようになっている。側板部材はオーステナイト系のステンレスとするのがよいが、鉄板でもよい。
Ring-shaped housings 25 and 26 are provided inside the bearings 15 and 16 of the fixed shaft 17 via bearings 18 and 19, and side plates 29 having peripheral plates 27 and 28 around the housings 25 and 26. 30 are respectively screwed with a plurality of bolts 31. The rotating cylinder 20 is screwed to the short cylindrical edge plates 27 and 28 of the side plate members 29 and 30 with a plurality of bolts 32.
One end of a cylindrical support member 33 is screwed to the outside of the side plate member 30 by a plurality of bolts 34, and a sprocket 35 is screwed to the other end of the cylindrical support member 33 by a plurality of bolts 36. Further, a cover member 33a is screwed to the outside of the side plate member 29 by a bolt 34a.
The rotating cylinder 20 is made of a nonmagnetic material, such as austenitic stainless steel, so that magnetism generated from the internal permanent magnet group 21 can smoothly pass through the rotating cylinder 20. The side plate member is preferably austenitic stainless steel, but may be an iron plate.

図4に示すように、第1、第2の磁力選別回転ドラム11、12の永久磁石群21は主磁石群37と、3つの補助磁石群38〜40を有し、これらが鉄製の支持部材41を介して固定軸17に固定されている。主磁石群37は固定軸17を軸心にして半径方向外側に向けて、板状の複数枚の永久磁石42が直列に配置されている。永久磁石42の最外側には幅狭の永久磁石43が載置され、最内側には取付け座を形成する鉄板44が設けられている。主磁石群37の位置は、第1、第2の磁力選別回転ドラム11、12において、その断面角度が200〜260度位置(頂上部を0度として回転方向に対する角度位置で表す、以下同じ)となっている。また、補助磁石群38〜40は複数枚の板状の永久磁石45がそれぞれ直列に配置され、最内側には取付け座を形成する鉄板46が設けられている。この補助磁石群38〜40の取付けの断面角度位置は、270〜360度(より好ましくは、280〜340度)位置がよい。
これらの主磁石群37並びに補助磁石群38〜40の半径方向先部と、回転筒20との内側面との隙間は2〜5mm程度となって、円滑に回転筒20が回転するようになっている。
As shown in FIG. 4, the permanent magnet group 21 of the first and second magnetic force sorting rotary drums 11 and 12 has a main magnet group 37 and three auxiliary magnet groups 38 to 40, which are iron support members. It is fixed to the fixed shaft 17 via 41. In the main magnet group 37, a plurality of plate-like permanent magnets 42 are arranged in series with the fixed shaft 17 as an axis and facing outward in the radial direction. A narrow permanent magnet 43 is placed on the outermost side of the permanent magnet 42, and an iron plate 44 forming a mounting seat is provided on the innermost side. The position of the main magnet group 37 in the first and second magnetic force sorting rotary drums 11 and 12 has a cross-sectional angle of 200 to 260 degrees (expressed as an angular position with respect to the rotation direction with the top being 0 degrees, the same applies hereinafter) It has become. The auxiliary magnet groups 38 to 40 each have a plurality of plate-like permanent magnets 45 arranged in series, and an iron plate 46 that forms a mounting seat is provided on the innermost side. The cross-sectional angle position for attaching the auxiliary magnet groups 38 to 40 is preferably 270 to 360 degrees (more preferably, 280 to 340 degrees).
The clearance between the radial front portions of the main magnet group 37 and the auxiliary magnet groups 38 to 40 and the inner surface of the rotary cylinder 20 is about 2 to 5 mm, so that the rotary cylinder 20 rotates smoothly. ing.

この実施の形態においては、主磁石群37及び補助磁石群38〜40にはフェライト系の永久磁石を使用し、主磁石群37が位置する回転筒20の外側表面で2500〜4000ガウス程度となって、補助磁石群38〜40が位置する回転筒20の外側表面で1000〜2000ガウスとなって、主磁石群37が位置する回転筒20の外側表面の方が、補助磁石群38〜40の位置する回転筒20の外側表面より磁束密度が大きくなっている。
このようにして、図4に示すように、第1、第2の磁力選別回転ドラム11、12の左半分(即ち、一側)に磁気表面側を形成し、第1、第2の磁力選別回転ドラム11、12の右半分(即ち、他側)に無磁気表面側を形成している。
In this embodiment, ferrite-based permanent magnets are used for the main magnet group 37 and the auxiliary magnet groups 38 to 40, and the outer surface of the rotary cylinder 20 where the main magnet group 37 is located is about 2500 to 4000 Gauss. Thus, the outer surface of the rotating cylinder 20 where the auxiliary magnet groups 38 to 40 are located becomes 1000 to 2000 Gauss, and the outer surface of the rotating cylinder 20 where the main magnet group 37 is positioned is closer to the auxiliary magnet groups 38 to 40. The magnetic flux density is larger than the outer surface of the rotary cylinder 20 positioned.
In this way, as shown in FIG. 4, the magnetic surface side is formed in the left half (that is, one side) of the first and second magnetic force sorting rotary drums 11 and 12, and the first and second magnetic force sorting is performed. A non-magnetic surface side is formed on the right half (that is, the other side) of the rotating drums 11 and 12.

図1、図2に示すように、第1、第2の磁力選別回転ドラム11、12は水平位置及びその高さ位置を変えて設けられ、第1の磁力選別回転ドラム11は、振動フィーダ13によって徐々に搬送されて振動フィーダ13から排出直前の処理原料に第1の磁力選別回転ドラム11の主磁石群37からの強力な磁場が作用する位置に配置されている。
また、第2の磁力選別回転ドラム12は、第1の磁力選別回転ドラム11によって吸着された磁着物が無磁気表面側に達して、回転筒20の表面から滑り落ちようとする位置(即ち、その接線が磁着物の安息角近傍にある)に、第2の磁力選別回転ドラム12の主磁石群37からの強力な磁場が作用する位置に配置されている。
この実施の形態では、第1、第2の磁力選別回転ドラム11、12の直径が約500〜1500mm程度で、第1、第2の磁力選別回転ドラム11、12の隙間は、調整可能で100〜500mm程度に設定されている。また、図1の二点鎖線で示す第2の磁力選別回転ドラム12のように、第1、第2の磁力選別回転ドラム11、12は水平方向にその取付け位置を調整可能に取付けられ、第1の磁力選別回転ドラム11と振動フィーダ13との先端間の距離、第1、第2の磁力選別回転ドラム11、12の間隔が調整できる構造となっている。
As shown in FIGS. 1 and 2, the first and second magnetic sorting rotary drums 11, 12 are provided by changing the horizontal position and the height position thereof, and the first magnetic sorting rotary drum 11 is provided with a vibration feeder 13. Is arranged at a position where a strong magnetic field from the main magnet group 37 of the first magnetic sorting rotary drum 11 acts on the raw material immediately before being discharged from the vibration feeder 13.
Further, the second magnetic sorting rotary drum 12 has a position where the magnetic deposit attracted by the first magnetic sorting rotary drum 11 reaches the non-magnetic surface side and tries to slide down from the surface of the rotary cylinder 20 (that is, The tangent is in the vicinity of the angle of repose of the magnetic deposit), and is disposed at a position where a strong magnetic field from the main magnet group 37 of the second magnetic sorting rotary drum 12 acts.
In this embodiment, the diameters of the first and second magnetic force sorting rotary drums 11 and 12 are about 500 to 1500 mm, and the gap between the first and second magnetic force sorting rotary drums 11 and 12 is adjustable and 100. It is set to about ~ 500 mm. Moreover, like the 2nd magnetic sorting rotary drum 12 shown with the dashed-two dotted line of FIG. 1, the 1st, 2nd magnetic sorting rotary drums 11 and 12 are attached so that the attachment position can be adjusted in the horizontal direction, The distance between the tips of the first magnetic sorting rotary drum 11 and the vibration feeder 13 and the distance between the first and second magnetic sorting rotary drums 11 and 12 can be adjusted.

架台14には、モータ49、50が設けられ、図示しないチェーンによって連結され、第1、第2の磁力選別回転ドラム11、12を約8〜32rpmで回転している。これは磁力選別回転ドラム11、12の回転を速くすると遠心力によって磁着物等が飛散し、低速であると処理効率が下がるからである。
そして、架台14には振動フィーダ13から排出する処理原料及び第1の磁力選別回転ドラム11から下方に排出される処理原料中の非磁性物を受けるホッパー51と、第2の磁力選別回転ドラム12から回収された磁着物を受けるホッパー52が設けられている。また、第1、第2の磁力選別回転ドラム11、12の周囲には発生した塵埃が周囲に飛散するのを防止するカバー53が設けられていると共に、カバー53には図示しない点検孔が設けられている。
この実施の形態においては、振動フィーダ13より上位置に第1の磁力選別回転ドラム11があって、更にその上位置に第2の磁力選別回転ドラム12があり、これらを点検するための作業台54、55が架台14の側部に設けられ、作業台54、55には階段56、57が設けられている。なお、図4においてHLは水平線を、図1において61は振動モータを示す。また、図1の59、60は、それぞれホッパー51、52から回収された処理原料を貯留する容器である。
Motors 49 and 50 are provided on the gantry 14 and are connected by a chain (not shown) to rotate the first and second magnetic force sorting rotary drums 11 and 12 at about 8 to 32 rpm. This is because if the rotation of the magnetic sorting rotary drums 11 and 12 is accelerated, the magnetic deposits and the like are scattered by centrifugal force, and if the rotation speed is low, the processing efficiency decreases.
The gantry 14 has a hopper 51 that receives the processing raw material discharged from the vibration feeder 13 and a non-magnetic material in the processing raw material discharged downward from the first magnetic sorting rotary drum 11, and the second magnetic sorting rotary drum 12. A hopper 52 is provided to receive the magnetic deposits collected from the hopper. In addition, a cover 53 is provided around the first and second magnetic force sorting rotary drums 11 and 12 to prevent the generated dust from being scattered around, and the cover 53 is provided with an inspection hole (not shown). It has been.
In this embodiment, there is a first magnetic sorting rotary drum 11 at a position above the vibration feeder 13 and a second magnetic sorting rotary drum 12 at an upper position, and a work table for checking these. 54 and 55 are provided on the side of the gantry 14, and the work tables 54 and 55 are provided with stairs 56 and 57, respectively. In FIG. 4, HL indicates a horizontal line, and in FIG. 1, 61 indicates a vibration motor. Further, 59 and 60 in FIG. 1 are containers for storing processing raw materials recovered from the hoppers 51 and 52, respectively.

続いて、本実施の形態に係るドラム型磁力選別装置10の動作について説明する。第1、第2の磁力選別回転ドラム11、12を回転させた状態で、振動フィーダ13を駆動し、処理原料を振動フィーダ13内に投入すると、振動フィーダ13で処理原料中の粒や片がより個別化されて、振動フィーダ13のトラフ先端方向に向かって徐々に移動する。振動フィーダ13の先端側でその上部位置には、第1の磁力選別回転ドラム11が設けられている。
第1の磁力選別回転ドラム11を形成する外側円筒である回転筒20はモータ49によって回転駆動されているが、内部の永久磁石群21は固定配置されている。そして、この永久磁石群21は比較的磁力の強い主磁石群37と、主磁石群37より磁気の弱い補助磁石群38〜40によって構成され、主磁石群37は図4における頂上部位置(即ち、0時位置)を基準にして、時計方向200〜260度角度位置に設けられているので、処理原料中の磁着物Mは、主磁石群37によって吸着される。一方、処理原料中の非磁性物Nはそのまま、振動フィーダ13の先端から下方に重力落下する。
Next, the operation of the drum type magnetic sorting apparatus 10 according to the present embodiment will be described. When the vibration feeder 13 is driven in a state where the first and second magnetic force sorting rotary drums 11 and 12 are rotated and the processing raw material is put into the vibration feeder 13, the particles and pieces in the processing raw material are removed by the vibration feeder 13. It is further individualized and gradually moves toward the trough tip direction of the vibration feeder 13. A first magnetic force sorting rotary drum 11 is provided at the upper position on the tip side of the vibration feeder 13.
The rotary cylinder 20 that is an outer cylinder forming the first magnetic sorting rotary drum 11 is rotationally driven by a motor 49, but the internal permanent magnet group 21 is fixedly arranged. The permanent magnet group 21 includes a main magnet group 37 having a relatively strong magnetic force, and auxiliary magnet groups 38 to 40 having a weaker magnetic force than the main magnet group 37. The main magnet group 37 is located at the top position in FIG. , 0 o'clock position) as a reference, it is provided at an angle position of 200 to 260 degrees in the clockwise direction, so that the magnetized material M in the processing raw material is adsorbed by the main magnet group 37. On the other hand, the non-magnetic material N in the processing raw material is gravity dropped downward from the tip of the vibration feeder 13 as it is.

一方、回転筒20の周囲には突出物の一例である線状突起20aが設けられているので、これによって磁着物Mは時計方向、即ち回転筒20上を上方に円滑に搬送される。主磁石群37の下流側には補助磁石群38〜40が設けられ、しかも、この補助磁石群38〜40は主磁石群37の磁気力が小さくなった位置から、頂上部の手前位置(例えば、320〜350度位置)まで設けられているので、磁着物Mは回転筒20の表面から脱落することなく、回転筒20の頂上部位置を超えて下り勾配角度位置に搬送できる。
この下り勾配角度位置(10〜50度角度位置)には、少しの隙間(例えば、50〜200mm)を有して、第2の磁力選別回転ドラム12が配置されているので、第1の磁力選別回転ドラム11で搬送された磁着物Mは更に、第2の磁力選別回転ドラム12によって吸着される。第2の磁力選別回転ドラム12の構造は第1の磁力選別回転ドラム11と実質同一となっているので、第1の磁力選別回転ドラム11が磁着物Mを吸着する原理で、第2の磁力選別回転ドラム12は磁着物Mを吸着することになる。
On the other hand, since the linear protrusion 20a which is an example of a protrusion is provided around the rotary cylinder 20, the magnetic article M is smoothly conveyed in the clockwise direction, that is, on the rotary cylinder 20. Auxiliary magnet groups 38 to 40 are provided on the downstream side of the main magnet group 37, and the auxiliary magnet groups 38 to 40 are located at positions near the top (for example, from the position where the magnetic force of the main magnet group 37 is reduced). , 320 to 350 degrees position), the magnetic material M can be transported to the downward gradient angle position beyond the top position of the rotating cylinder 20 without falling off the surface of the rotating cylinder 20.
Since the second magnetic force sorting rotary drum 12 is disposed at the downward gradient angle position (10 to 50 degree angle position) with a slight gap (for example, 50 to 200 mm), the first magnetic force The magnetic deposit M conveyed by the sorting rotary drum 11 is further adsorbed by the second magnetic sorting rotary drum 12. Since the structure of the second magnetic sorting rotary drum 12 is substantially the same as that of the first magnetic sorting rotary drum 11, the second magnetic sorting rotary drum 11 is based on the principle that the first magnetic sorting rotary drum 11 adsorbs the magnetic deposit M. The sorting rotary drum 12 adsorbs the magnetic deposit M.

なお、第2の磁力選別回転ドラム12を設けることによって、更に磁着物Mの選別効率が向上する。その理由は、例えば、処理原料中に図4の一部拡大図に示すような平鉄板等からなる磁着物Mが存在すると、振動フィーダ13から第1の磁力選別回転ドラム11に吸着される際に、非磁性物Nを掬い込んでしまい、そのまま、第2の磁力選別回転ドラム12の吸着位置まで搬送される。この場合、第2の磁力選別回転ドラム12では回転筒20の上に載っている磁着物Mを吸着するが、非磁性物Nは磁着物Mに対して下位置にあるので、第2の磁力選別回転ドラム12の磁着物Mの吸着時に、非磁性物Nを吸着することはない。第2の磁力選別回転ドラム12に吸着されなかった非磁性物Nは第1の磁力選別回転ドラム11からそのまま落下し、ホッパー51内に落下する。
一方、第2の磁力選別回転ドラム12に吸着された磁着物Mは、第2の磁力選別回転ドラム12の回転によって搬送され、ホッパー52内に落下する。
In addition, the selection efficiency of the magnetic deposit M is further improved by providing the second magnetic force sorting rotary drum 12. The reason is that, for example, when a magnetic material M made of a flat iron plate or the like as shown in the partially enlarged view of FIG. In addition, the non-magnetic material N is squeezed into the second magnetic sorting rotary drum 12 as it is. In this case, the second magnetic sorting rotary drum 12 adsorbs the magnetic material M placed on the rotating cylinder 20, but the non-magnetic material N is in a lower position with respect to the magnetic material M. The non-magnetic material N is not adsorbed when the magnetic material M of the sorting rotary drum 12 is adsorbed. The non-magnetic material N that has not been attracted to the second magnetic sorting rotary drum 12 falls from the first magnetic sorting rotary drum 11 as it is, and falls into the hopper 51.
On the other hand, the magnetic deposit M attracted to the second magnetic sorting rotary drum 12 is conveyed by the rotation of the second magnetic sorting rotary drum 12 and falls into the hopper 52.

前記実施の形態においては、具体的な数字を用いて説明したが、本発明はこれらの数字に限定されるものではなく、本発明の要旨を変更しない範囲での数値変更、形態変更であっても本発明は適用される。例えば、第1、第2の磁力選別回転ドラム11、12の回転速度は8〜32rpmとしたが、更に遅くても速くてもよい。なお、速くする場合には、磁着物Mが遠心力で飛散しないことを条件とする。
また、この実施の形態においては、2段の磁力選別回転ドラムを用いているが、更に多段の磁力選別回転ドラムを用いることもできる。
更には、この実施の形態においては主磁石群37を永久磁石によって構成したが、電磁石とすることもできる。
Although the embodiment has been described using specific numbers, the present invention is not limited to these numbers, and is a numerical change and a form change within a range that does not change the gist of the present invention. The present invention also applies. For example, the rotational speed of the first and second magnetic force sorting rotary drums 11 and 12 is 8 to 32 rpm, but may be slower or faster. In order to increase the speed, it is a condition that the magnetic deposit M does not scatter due to centrifugal force.
Further, in this embodiment, a two-stage magnetic sorting rotary drum is used, but a multi-stage magnetic sorting rotary drum can also be used.
Furthermore, in this embodiment, the main magnet group 37 is composed of permanent magnets, but may be an electromagnet.

本発明の一実施の形態に係るドラム型磁力選別装置の側面図である。It is a side view of the drum type magnetic sorting apparatus concerning one embodiment of the present invention. 同ドラム型磁力選別装置の平面図である。It is a top view of the drum type magnetic separation apparatus. 同ドラム型磁力選別装置の第1の(第2の)磁力選別回転ドラムの縦断面図である。It is a longitudinal cross-sectional view of the 1st (2nd) magnetic selection rotary drum of the drum type magnetic selection apparatus. 同第1、第2の磁力選別回転ドラムの横断面図である。It is a cross-sectional view of the first and second magnetic force sorting rotary drum. 従来の磁力選別機の説明図である。It is explanatory drawing of the conventional magnetic separator.

符号の説明Explanation of symbols

10:ドラム型磁力選別装置、11:第1の磁力選別回転ドラム、12:第2の磁力選別回転ドラム、13:振動フィーダ、14:架台、15、16:軸受、17:固定軸、18、19:ベアリング、20:回転筒、20a:線状突起、21:永久磁石群、22:ウォームホイル、23:ウォーム、24、24a:補助軸受、25、26:ハウジング、27、28:縁板、29、30:側板部材、31、32:ボルト、33:筒形支持材、33a:カバー部材、34、34a:ボルト、35:スプロケット、36:ボルト、37:主磁石群、38〜40:補助磁石群、41:支持部材、42、43:永久磁石、44:鉄板、45:永久磁石、46:鉄板、49、50:モータ、51、52:ホッパー、53:カバー、54、55:作業台、56、57:階段、59、60:容器、61:振動モータ DESCRIPTION OF SYMBOLS 10: Drum-type magnetic sorting apparatus, 11: 1st magnetic sorting rotary drum, 12: 2nd magnetic sorting rotary drum, 13: Vibrating feeder, 14: Mount, 15, 16: Bearing, 17: Fixed shaft, 18, 19: bearing, 20: rotating cylinder, 20a: linear projection, 21: permanent magnet group, 22: worm wheel, 23: worm, 24, 24a: auxiliary bearing, 25, 26: housing, 27, 28: edge plate, 29, 30: Side plate member, 31, 32: Bolt, 33: Cylindrical support member, 33a: Cover member, 34, 34a: Bolt, 35: Sprocket, 36: Bolt, 37: Main magnet group, 38-40: Auxiliary Magnet group, 41: support member, 42, 43: permanent magnet, 44: iron plate, 45: permanent magnet, 46: iron plate, 49, 50: motor, 51, 52: hopper, 53: cover, 54, 55: workbench 5 , 57: Stairs, 59, 60: container, 61: vibration motor

Claims (4)

処理原料を徐々に搬送するコンベアと、
前記コンベアから搬送される処理原料中の磁着物を、内側に近接して永久磁石群が配置されている一側の磁気表面側で吸着して、他側の無磁気表面側に徐々に搬送する第1の磁力選別回転ドラムと、
前記第1の磁力選別回転ドラムに隙間を有して隣接して設けられ、前記第1の磁力選別回転ドラムによってその無磁気表面側に搬送された前記磁着物を、内側に近接して永久磁石群が配置される一側の磁気表面側で吸着して、徐々に他側の無磁気表面側に搬送する第2の磁力選別回転ドラムと、
これらを支持する架台を備えることを特徴とするドラム型磁力選別装置。
A conveyor that gradually conveys the processing raw material;
The magnetized material in the processing raw material conveyed from the conveyor is adsorbed on the magnetic surface side on one side where the permanent magnet group is arranged close to the inside, and gradually conveyed to the non-magnetic surface side on the other side. A first magnetic sorting rotary drum;
The magnetized material, which is provided adjacent to the first magnetic sorting rotary drum with a gap and is transported to the non-magnetic surface side by the first magnetic sorting rotary drum, is brought close to the inside to be a permanent magnet. A second magnetic sorting rotary drum that is attracted on one magnetic surface side where the group is arranged and gradually conveyed to the other non-magnetic surface side;
A drum type magnetic separation device comprising a gantry for supporting them.
請求項1記載のドラム型磁力選別装置において、前記第1、第2の磁力選別回転ドラムは、前記架台に軸受を介して固定される固定軸と、該固定軸に同心上に回転可能に取付けられる非磁性体からなる回転筒と、前記回転筒の一側内部で前記固定軸に固着される前記永久磁石群とをそれぞれ有し、
しかも、前記それぞれの第1、第2の磁力選別回転ドラムにおいて、前記永久磁石群による前記回転筒の表面に発生する磁気は、前記回転筒の回転によって前記磁着物を吸着しながら回転搬送する搬送位置より、前記磁着物を吸引する位置の方が大きくなっていることを特徴とするドラム型磁力選別装置。
2. The drum type magnetic sorting apparatus according to claim 1, wherein the first and second magnetic sorting rotary drums are fixed to the mount via a bearing, and are attached to the fixed shaft so as to be concentrically rotatable. A rotating cylinder made of a non-magnetic material, and the permanent magnet group fixed to the fixed shaft inside one side of the rotating cylinder,
In addition, in each of the first and second magnetic force sorting rotary drums, the magnetism generated on the surface of the rotating cylinder by the permanent magnet group is rotated and conveyed while adsorbing the magnetic deposit by the rotation of the rotating cylinder. A drum-type magnetic separation device characterized in that a position for attracting the magnetic deposit is larger than a position.
請求項1及び2のいずれか1項に記載のドラム型磁力選別装置において、前記コンベアは振動フィーダであることを特徴とするドラム型磁力選別装置。 3. The drum type magnetic sorting apparatus according to claim 1, wherein the conveyor is a vibration feeder. 請求項1〜3のいずれか1項に記載のドラム型磁力選別装置において、前記第1、第2の磁力選別回転ドラムの周囲には、それぞれ前記磁着物を円滑に搬送する突出物が設けられていることを特徴とするドラム型磁力選別装置。 The drum type magnetic separation apparatus according to any one of claims 1 to 3, wherein a protrusion that smoothly conveys the magnetic attachment is provided around each of the first and second magnetic separation rotary drums. A drum-type magnetic separation device characterized by that.
JP2004284694A 2004-09-29 2004-09-29 Drum type magnetic separator Expired - Fee Related JP4243236B2 (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101726289B1 (en) * 2016-03-07 2017-04-12 노명국 Hermetic type magnetic separator
KR101826884B1 (en) * 2016-05-10 2018-02-08 (주)미광산업기계 Hermetic type magnetic separator
CN114749272A (en) * 2022-04-18 2022-07-15 湖南中科电气股份有限公司 Scrap steel magnetic separation system and method

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101726289B1 (en) * 2016-03-07 2017-04-12 노명국 Hermetic type magnetic separator
KR101826884B1 (en) * 2016-05-10 2018-02-08 (주)미광산업기계 Hermetic type magnetic separator
CN114749272A (en) * 2022-04-18 2022-07-15 湖南中科电气股份有限公司 Scrap steel magnetic separation system and method
CN114749272B (en) * 2022-04-18 2022-12-13 湖南中科电气股份有限公司 Scrap steel magnetic separation system and method

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