JPH0838922A - Vertical pulverizer - Google Patents

Vertical pulverizer

Info

Publication number
JPH0838922A
JPH0838922A JP6181342A JP18134294A JPH0838922A JP H0838922 A JPH0838922 A JP H0838922A JP 6181342 A JP6181342 A JP 6181342A JP 18134294 A JP18134294 A JP 18134294A JP H0838922 A JPH0838922 A JP H0838922A
Authority
JP
Japan
Prior art keywords
rotary table
flat plate
crushing
vertical
static pressure
Prior art date
Legal status (The legal status 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 status listed.)
Pending
Application number
JP6181342A
Other languages
Japanese (ja)
Inventor
Shinsuke Tanaka
信介 田中
Hajime Asakawa
肇 浅川
Katsuhide Fujita
活秀 藤田
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Ube Corp
Original Assignee
Ube Industries Ltd
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
Application filed by Ube Industries Ltd filed Critical Ube Industries Ltd
Priority to JP6181342A priority Critical patent/JPH0838922A/en
Priority to CN95108966A priority patent/CN1034914C/en
Priority to KR1019950021764A priority patent/KR0167396B1/en
Publication of JPH0838922A publication Critical patent/JPH0838922A/en
Pending legal-status Critical Current

Links

Abstract

PURPOSE:To provide a vertical pulverizer in which the damage of a reduction gear and a static pressure bearing due to heat effect is prevented and the long life of equipment and the improvement of maintainability are attained. CONSTITUTION:A static pressure bearing 30a for bearing vertical load put on a turntable 3A is arranged at the lower end of the outer periphery of the turntable 3A, and also a reduction gear 2 for driving and rotating the turntable 3A is arranged just below the central part. The turntable 3A is made to be in the form having a flat plate 3X on which a pulverizing roller 4 is mounted, an outer peripheral cylinder part 3Y extending downward to the outer periphery of the flat plate part 3X and borne by the static pressure bearing 30 at the lower end, and an inner peripheral cylinder part 3Z extending downward to the central part of the flat plate part 3X and engaged with an output shaft 2a of the reduction gear 2 at the lower end.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】本発明は、回転テーブルと粉砕ロ
ーラとの協働により、セメント原料、スラグ、クリンカ
やセラミックス、化学品などの原料を粉砕する竪型粉砕
機に係り、特に回転テーブルに負荷される鉛直荷重は回
転テーブルに回転力を付与する減速機でなく別個に回転
テーブル外周部下方に設置した静圧軸受に支承させ、か
つ、回転テーブルの形状に配慮を加えて静圧軸受や減速
機へ熱伝達による悪影響をできるだけ少なくした竪型粉
砕機に関するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a vertical crusher for crushing raw materials such as cement raw materials, slag, clinker, ceramics and chemicals by cooperation of a rotary table and a pulverizing roller, and more particularly to a rotary table. The vertical load applied is not supported by a reduction gear that applies rotational force to the rotary table, but is supported separately by a static pressure bearing installed below the outer circumference of the rotary table. The present invention relates to a vertical crusher that minimizes the adverse effects of heat transfer to a speed reducer.

【0002】[0002]

【従来の技術】石灰石やスラグ、セメント原料などの原
料を細かく粉砕し粉体とする粉砕機の一種として、図7
に示すように、回転テーブルと粉砕ローラとを備えた竪
型粉砕機1が広く用いられている。この種の粉砕機は、
円筒状ケーシング15の下部において電動機2Bにより
減速機2で駆動されて低速回転する円盤状の回転テーブ
ル3Aと、その上面外周部を円周方向へ等分する箇所に
油圧などで圧接されて従動回転する複数個の粉砕ローラ
4とを備えている。
2. Description of the Related Art FIG. 7 is a kind of crusher for pulverizing raw materials such as limestone, slag, and cement raw materials into fine powder.
As shown in (1), a vertical crusher 1 having a rotary table and a crushing roller is widely used. This kind of crusher
At the lower part of the cylindrical casing 15, a disk-shaped rotary table 3A that is driven by the speed reducer 2 by the electric motor 2B and rotates at a low speed, and is driven by being pressed by hydraulic pressure or the like to a portion that equally divides the outer peripheral portion of the upper surface in the circumferential direction. And a plurality of crushing rollers 4.

【0003】粉砕ローラ4はケーシング15に軸6によ
って揺動自在に軸支されたアーム5とアーム7A、7B
を介して油圧シリンダ9のピストンロッド10に連結さ
れており、油圧シリンダ9を作動させることにより、粉
砕ローラ4を回転テーブル3A上に押圧して原料への粉
砕圧力を与えている。3Sは回転テーブル3Aの外周縁
に設けられ原料層厚を調整するダムリング、14は回転
テーブル3Aをオーバフローした粉砕産物の環状空間通
路、17は原料投入シュート、18は環状空間通路内に
落下した粉砕産物を掻き寄せるスクレーパである。スク
レーパ18で掻き寄せられた粉砕産物は図示しない排出
シュートを介して機外へ排出される。また、17Aは原
料投入シュート17に接続する複数(本実施例では4
本)の分岐管、17Bは分岐管17A内下面に設けた堰
板である。
The crushing roller 4 has an arm 5 and an arm 7A, 7B pivotally supported by a shaft 6 on a casing 15.
It is connected to the piston rod 10 of the hydraulic cylinder 9 via the, and by operating the hydraulic cylinder 9, the crushing roller 4 is pressed onto the rotary table 3A to apply crushing pressure to the raw material. 3S is a dam ring provided on the outer peripheral edge of the rotary table 3A for adjusting the raw material layer thickness, 14 is an annular space passage of the crushed product that overflows the rotary table 3A, 17 is a raw material charging chute, and 18 is dropped into the annular space passage. It is a scraper that scrapes crushed products. The crushed product scraped up by the scraper 18 is discharged to the outside of the machine through a discharge chute (not shown). In addition, 17A is a plurality (4 in this embodiment) connected to the raw material charging chute 17.
The main branch pipe 17B is a weir plate provided on the lower surface inside the branch pipe 17A.

【0004】このような竪型粉砕機において、回転テー
ブルの中央部へ原料投入シュート17および分岐管17
Aで供給された原料は、回転テーブル3Aの回転により
テーブル半径方向の遠心力を受けて回転テーブル3A上
を滑る時に回転テーブル3Aにより回転方向の力を受
け、回転テーブル3Aとの間で滑って回転テーブル3A
の回転数よりいくらか遅い回転を行う。以上2つの力、
すなわち、半径方向と回転方向の力とが合成され、原料
は回転テーブル3A上を渦巻状の軌跡を描いて回転テー
ブル3Aの外周部へ移動する。この外周部には、ローラ
が圧接されて回転しているので、渦巻線を描いた原料は
粉砕ローラ4と回転テーブル3Aとの間へローラ軸方向
とある角度をなす方向から進入して噛込まれて粉砕され
る。
In such a vertical crusher, the raw material feeding chute 17 and the branch pipe 17 are inserted into the central portion of the rotary table.
The raw material supplied in A receives a centrifugal force in the radial direction of the table due to the rotation of the rotary table 3A and slides on the rotary table 3A. Rotating table 3A
Rotate somewhat slower than the number of revolutions of. The above two forces,
That is, the radial and rotational forces are combined, and the raw material moves on the rotary table 3A to the outer peripheral portion of the rotary table 3A in a spiral trajectory. Since the roller is pressed against the outer peripheral portion and is rotating, the raw material in which the spiral is drawn enters between the crushing roller 4 and the rotary table 3A from a direction forming an angle with the roller axial direction and is bitten therein. It is crushed and crushed.

【0005】一方、回転テーブル3Aの直下に配設され
た遊星減速機2は、頂部に突出した出力軸の回りに配設
された静圧軸受によって回転テーブルに伝達される全荷
重を支承し減速機のケーシングを経由して基礎へ伝える
とともに、中心の出力軸で回転テーブルを回転駆動する
ようになっている。
On the other hand, the planetary speed reducer 2 arranged immediately below the rotary table 3A bears the entire load transmitted to the rotary table by means of a static pressure bearing arranged around the output shaft projecting at the top and decelerates. Not only is it transmitted to the foundation via the machine casing, but the rotary table is driven to rotate by the central output shaft.

【0006】[0006]

【発明が解決しようとする課題】上に述べたように、従
来の竪型粉砕機1は、回転テーブル3Aが回転テーブル
3Aの直下に同芯状に配設された減速機2に静圧軸受を
介して積載され、回転テーブル3Aや粉砕ローラ4の自
重ばかりでなく、油圧シリンダ9に付勢された粉砕力を
も常時減速機2が支承するばかりでなく、例えば高温ク
リンカ(常温80℃〜150℃、最大200℃)などの
高温度原料に粉砕熱が加わって回転テーブル3Aは温度
上昇し、苛酷な使用状態の静圧軸受にさらに熱負荷が加
わって、寿命が短くなったりあるいは損傷したりする問
題があった。
As described above, in the conventional vertical crusher 1, the rotary table 3A has the hydrostatic bearing on the speed reducer 2 arranged concentrically immediately below the rotary table 3A. Not only the reduction gear 2 always supports not only the own weight of the rotary table 3A and the crushing roller 4 but also the crushing force urged by the hydraulic cylinder 9, and the high-speed clinker (normal temperature 80 ° C. 150 ° C, maximum 200 ° C, etc.) The rotary table 3A rises in temperature due to the crushing heat applied to the high temperature raw material, and the static pressure bearing in severe operating conditions is further subjected to heat load, resulting in shortened life or damage. There was a problem with.

【0007】[0007]

【課題を解決するための手段】以上の課題を解決するた
めに、本発明においては、回転テーブルの外周部上面に
複数個の回転自在な粉砕ローラを配設し、回転テーブル
上に供給された原料を粉砕ローラに所定の圧力を与えて
回転テーブルと粉砕ローラ周面との間で粉砕する竪型粉
砕機において、該回転テーブルに負荷される自重ならび
に粉砕力などの鉛直荷重を支承する静圧軸受を該回転テ
ーブル外周部下端に配設するとともに、該回転テーブル
を回転駆動する減速機を該回転テーブル中心部下方に配
設し、かつ、該回転テーブルは粉砕ローラが載置される
平板部と該平板部の外周下方へ延在し前記静圧軸受に下
端が支承される外周円筒部と該平板部の中心部下方へ延
在し前記減速機の出力軸と下端が係合される内周円筒部
を有する形状とした。
In order to solve the above problems, in the present invention, a plurality of rotatable crushing rollers are provided on the upper surface of the outer peripheral portion of a rotary table, and the rotary table is supplied onto the rotary table. In a vertical crusher that crushes the raw material between the rotary table and the peripheral surface of the crushing roller by applying a predetermined pressure to the crushing roller, the static pressure that bears the vertical load such as the self-weight and the crushing force applied to the rotary table. A bearing is arranged at the lower end of the outer periphery of the rotary table, a speed reducer for rotationally driving the rotary table is arranged below the center of the rotary table, and the rotary table is a flat plate portion on which a crushing roller is mounted. And an outer peripheral cylindrical portion that extends below the outer periphery of the flat plate portion and whose lower end is supported by the hydrostatic bearing, and an inner peripheral portion that extends below the central portion of the flat plate portion and that engages with the output shaft of the speed reducer and the lower end. With a shape that has a peripheral cylindrical portion .

【0008】[0008]

【作用】本発明においては、回転テーブルに負荷される
鉛直荷重を支承する静圧軸受を回転テーブルの外周部下
端に配設し、回転テーブルの自重や回転テーブル外周で
粉砕テーブルによって押圧された粉砕力などの鉛直荷重
は外周円筒部をほぼ垂直に伝わって静圧軸受で支承さ
れ、一方回転力は減速機の出力軸に係合された内周円筒
部によって回転テーブルへ伝達される。したがって、回
転テーブルの鉛直荷重による変形が少なく、かつ、平板
部に与えられる高温原料や粉砕熱による熱伝達による内
周円筒部下端や外周円筒部下端の熱歪も従来構造の竪型
粉砕機などに採用される略平板状の回転テーブルに比べ
て極めて小さいので、静圧軸受や減速機に負荷変形なら
びに熱歪による悪影響が少なく、機器の損傷の低減と長
寿命化が図られる。
According to the present invention, the hydrostatic bearing for supporting the vertical load applied to the rotary table is arranged at the lower end of the outer peripheral portion of the rotary table, and the crushing force pressed by the crushing table by the dead weight of the rotary table or the outer periphery of the rotary table. A vertical load such as a force is transmitted almost vertically through the outer peripheral cylindrical portion and is supported by the hydrostatic bearing, while the rotational force is transmitted to the rotary table by the inner peripheral cylindrical portion engaged with the output shaft of the speed reducer. Therefore, there is little deformation of the rotary table due to vertical load, and the thermal strain at the lower end of the inner cylinder and the lower end of the outer cylinder due to the heat transfer by the high temperature raw material and the crushing heat applied to the flat plate part also causes the vertical crusher of the conventional structure. Since it is extremely small compared to the substantially flat plate-shaped rotary table used in, the static pressure bearing and the speed reducer are less affected by load deformation and thermal strain, and damage to the equipment and a longer life can be achieved.

【0009】[0009]

【実施例】以下図面に基づいて本発明の実施例の詳細に
ついて説明する。図1〜図3は本発明の実施例に係り、
図1は竪型粉砕機の全体縦断面図、図2は竪型粉砕機の
要部縦断面図、図3は図1のA−A視の断面平面図であ
る。図1〜図3に示すように、本発明の竪型粉砕機1に
おいては、直立円筒状のケーシング15の内部にケーシ
ング15と同軸状に回転テーブル3Aが竪軸回りに回転
自在に配設され、回転テーブル3Aの外周直上には複数
個(図1〜図3の実施例では4個)の粉砕ローラ4が載
置され、二重円筒で形成されるスタンド40の頂上に設
置される軸受6Aの回転軸6回りに揺動自在なアーム5
およびアーム7A、7Bを介して油圧シリンダ9により
回転テーブル3A上に押圧され従動される。回転テーブ
ル3Aの形状は、図に示すように、縦断面が上部の水平
な平板部3Xと平板部3Xの外周下方へ接続する略円筒
形状の外周円筒部3Yと平板部3Xの中心部透孔の周り
の下方へ接続する円筒形状の内周円筒部3Zとが一体と
なった構造とされる。回転テーブル3Aの外周円筒部3
Yの下側にはドーナツ円板状のフランジシュー3Bが固
設されるとともに、スタンド40の内側に配設された柱
脚30の頂部に取り付けられたスラストパッド30a上
に積載され、回転テーブル3Aの回転中フランジシュー
3Bの下面とスラストパッド30aの上面とは摺動しつ
つ回転テーブル3Aの受ける鉛直荷重はスラストパッド
30aおよび柱脚30へ伝達される。また、回転テーブ
ル3Aの内周円筒部3Zの下側には頂部にフランジを有
する円筒状の回転筒3Cが回転テーブル3Aと一体的に
突設され、柱脚30より斜め上方内側に延在する円周複
数本のステー30Aによって支持された円筒状の固定リ
ング30Bの中に固設された支持環30bに嵌装され、
回転筒3Cと支持環30bの間の摺動面には、スラスト
パッド30a上面と同様に潤滑給油される。これら2つ
の摺動面を形成するスラストパッド30a上面と支持環
30b内面の役割は、スラストパッド30a上面が主と
して鉛直荷重を支持するのに対して、支持環30b内面
は回転テーブル3Aに負荷される偏心荷重により回転テ
ーブル3Aが傾斜したり、あるいは水平移動するのを防
止し、鉛直荷重を円周均等化することである。なお、ス
ラストパッド30aはドーナツ円板状に形成してもよい
が、通常は各粉砕ローラ4の直下に局部的に配設するよ
うにしている。スラストパッド30aは、静圧軸受とも
呼ばれ、材質はホワイトメタル(WJ2)やりん青銅、
鉛青銅、カドミウム合金などを採用し得る。
Embodiments of the present invention will be described below in detail with reference to the drawings. 1 to 3 relate to an embodiment of the present invention,
1 is an overall vertical cross-sectional view of the vertical crusher, FIG. 2 is a vertical cross-sectional view of a main part of the vertical crusher, and FIG. 3 is a cross-sectional plan view taken along line AA of FIG. As shown in FIGS. 1 to 3, in the vertical crusher 1 of the present invention, a rotary table 3A is disposed inside an upright cylindrical casing 15 coaxially with the casing 15 so as to be rotatable around a vertical axis. A plurality of (four in the embodiment of FIGS. 1 to 3) crushing rollers 4 are mounted on the outer periphery of the rotary table 3A, and a bearing 6A is installed on the top of a stand 40 formed of a double cylinder. Arm 5 that can swing around the rotation axis 6 of
And it is pressed and driven by the hydraulic cylinder 9 on the rotary table 3A via the arms 7A and 7B. As shown in the figure, the rotary table 3A has a horizontal flat plate portion 3X having a vertical cross-section, and a substantially cylindrical outer peripheral cylindrical portion 3Y connected to the lower outer periphery of the flat plate portion 3X and a central portion through hole of the flat plate portion 3X. The inner peripheral cylindrical portion 3Z having a cylindrical shape that is connected to the lower side around the is integrated with the structure. Peripheral cylindrical portion 3 of rotary table 3A
A donut disk-shaped flange shoe 3B is fixedly installed on the lower side of Y, and is loaded on a thrust pad 30a attached to the top of the column base 30 arranged inside the stand 40. The vertical load received by the rotary table 3A is transmitted to the thrust pad 30a and the column base 30 while sliding on the lower surface of the flange shoe 3B and the upper surface of the thrust pad 30a during rotation. In addition, a cylindrical rotary cylinder 3C having a flange at the top is integrally projectingly provided on the lower side of the inner peripheral cylindrical portion 3Z of the rotary table 3A together with the rotary table 3A, and extends obliquely upward and inward from the column base 30. It is fitted to a support ring 30b fixed in a cylindrical fixing ring 30B supported by a plurality of circumferential stays 30A,
The sliding surface between the rotary cylinder 3C and the support ring 30b is lubricated similarly to the upper surface of the thrust pad 30a. The role of the upper surface of the thrust pad 30a and the inner surface of the support ring 30b forming these two sliding surfaces is that the upper surface of the thrust pad 30a mainly supports the vertical load, while the inner surface of the support ring 30b is loaded on the rotary table 3A. This is to prevent the rotary table 3A from tilting or moving horizontally due to the eccentric load, and to make the vertical load equal to the circumference. The thrust pad 30a may be formed in the shape of a donut disk, but normally it is locally arranged immediately below each crushing roller 4. The thrust pad 30a is also called a hydrostatic bearing, and the material is white metal (WJ2), phosphor bronze,
Lead bronze, cadmium alloy, etc. can be adopted.

【0010】一方、回転テーブル3Aの回転駆動は、回
転テーブル3Aの中心直下に配設した減速機(本実施例
では遊星減速機)2の出力軸2aの頂部外周に螺設した
平歯車と回転筒3Cの内周面に取り付けた内歯歯車との
噛合により実施され、減速機2には回転テーブル3Aに
負荷される鉛直荷重が伝達されることはない。以上のよ
うに構成された本発明の竪型粉砕機1では、回転テーブ
ル3Aは寸動電動機2A、電動機2Bおよび遊星減速機
2を介して回転駆動され、原料は原料投入シュート17
および分岐管17Aを経由して各粉砕ローラ4の直前に
落下され、回転テーブル3Aと粉砕ローラ4との間で粉
砕され、回転テーブル3Aをオーバフローして環状空間
通路14へ落下し、スクレーパ18によって掻き寄せら
れ図示しない原料排出口より機外へ排出される。なお、
分岐管17Aはクリンカなど摩耗性の強い原料に対する
摩耗防止のため、下半分に堰板17Bを複数個配設して
原料を貯め、マテリアル・クッションを形成する。
On the other hand, the rotary drive of the rotary table 3A is performed by rotating a spur gear which is screwed on the outer periphery of the output shaft 2a of a speed reducer (a planetary speed reducer in this embodiment) 2 disposed directly below the center of the rotary table 3A. It is performed by meshing with the internal gear mounted on the inner peripheral surface of the cylinder 3C, and the vertical load applied to the rotary table 3A is not transmitted to the reduction gear 2. In the vertical crusher 1 of the present invention configured as described above, the rotary table 3A is rotationally driven via the inching motor 2A, the motor 2B, and the planetary speed reducer 2, and the raw material is charged into the raw material chute 17
And, it is dropped just before each crushing roller 4 via the branch pipe 17A, crushed between the rotary table 3A and the crushing roller 4, overflows the rotary table 3A and drops into the annular space passage 14, and is scraped by the scraper 18. It is scraped and discharged from the machine through a raw material discharge port (not shown). In addition,
The branch pipe 17A is provided with a plurality of weir plates 17B in the lower half to store the raw material and form a material cushion in order to prevent abrasion of the raw material having a strong abrasion property such as a clinker.

【0011】次に、回転テーブルの熱変形について述べ
る。本出願人は、高温原料、例えば、常用80℃〜15
0℃、最大200℃のクリンカを粉砕する場合における
回転テーブルの熱変形について、実操業状態の負荷条件
と温度条件を考慮して有限要素法(NASTRAN)に
よる解析を試みた。回転テーブル3Aについて、10数
種類のタイプについて、それぞれ同じ境界条件を与えて
その熱変形状態を観察すると、形状によって熱変形に大
きな差異があることが判明した。ここでは、従来タイプ
のシンプルな平板状の回転テーブル3A(TYPE
A)と最も熱変形の少ない回転テーブル3A(TYPE
B)および熱変形が中間程度の回転テーブル3A(T
YPE C)の解析結果を示す。図4〜図6に、各々T
YPE A、TYPE B、TYPE Cの回転テーブ
ル3Aの解析結果を示したもので、その結果は、静圧軸
受30a近傍の熱歪がTYPE Aでは1100μmも
あったものが、TYPE Bでは300μmに激減した
(TYPE Cでは約600μm)。以上の結果より判
断すると、従来構造の平板状のTYPE Aでなく、平
板部3Xにそれぞれ外周円筒部3Yと内周円筒部3Zが
接続し、ある程度の高さを保有した形状の回転テーブル
3A(本発明)が熱影響を排除する観点から望ましいこ
とがわかった。また、TYPE Bにおいては外周円筒
部3Yの肉厚を剛性の許す範囲でかなり薄くしても熱歪
を小さく保つことができることがわかったので、重量軽
減によるコストダウンを図ることができる。このよう
に、本発明における竪型粉砕機1においては、従来構造
のように減速機2に鉛直荷重を与えることなく、遊星減
速機2とは別途に回転テーブル3Aの自重や油圧シリン
ダ9によって付与される粉砕力などの鉛直荷重を支持す
る機構としている。したがって、遊星減速機2は回転駆
動のための回転トルクの伝達だけの機能があればよく、
それだけ小型化できるとともに、粉砕仕事中の負荷変動
に伴う振動現象の影響を受けることが少なく、振動トラ
ブルによる損傷が軽減され長寿命が達成される。また、
回転テーブルの形状を熱変形の小さいものに形成したの
で、静圧軸受や減速機の熱影響によるトラブルが防止さ
れる。
Next, thermal deformation of the rotary table will be described. Applicants have found that high temperature raw materials, such as 80 ° C. to 15 ° C.
Regarding the thermal deformation of the rotary table when clinker was crushed at 0 ° C and 200 ° C at maximum, an analysis by the finite element method (NASTRAN) was attempted in consideration of the load condition and the temperature condition of the actual operating condition. When the same boundary condition was given to the rotary table 3A for each of a dozen types and the thermal deformation state was observed, it was found that there was a large difference in thermal deformation depending on the shape. Here, a conventional flat plate type rotary table 3A (TYPE)
Rotating table 3A (TYPE) with the least thermal deformation (TYPE)
B) and the rotary table 3A (T
The analysis result of YPE C) is shown. 4 to 6 each show T
The analysis results of the rotary table 3A of YPE A, TYPE B, and TYPE C are shown. The result shows that the thermal strain in the vicinity of the hydrostatic bearing 30a was 1100 μm in TYPE A, but was drastically reduced to 300 μm in TYPE B. (About 600 μm for TYPE C). Judging from the above results, not the conventional flat plate type TYPE A, but the rotary table 3A having a shape in which the outer peripheral cylindrical portion 3Y and the inner peripheral cylindrical portion 3Z are respectively connected to the flat plate portion 3X and which has a certain height ( It has been found that the present invention) is desirable from the standpoint of eliminating thermal effects. Further, in TYPE B, it has been found that the thermal strain can be kept small even if the thickness of the outer peripheral cylindrical portion 3Y is made considerably thin within the range that the rigidity allows, so that the cost can be reduced by reducing the weight. As described above, in the vertical crusher 1 according to the present invention, the vertical weight is not applied to the speed reducer 2 unlike the conventional structure, and the weight is applied by the own weight of the rotary table 3A and the hydraulic cylinder 9 separately from the planetary speed reducer 2. It has a mechanism to support vertical load such as crushing force. Therefore, the planetary speed reducer 2 need only have a function of transmitting rotational torque for rotational drive,
The size can be reduced by that much, and it is less affected by the vibration phenomenon due to the load change during the crushing work, damage due to vibration trouble is reduced, and a long life is achieved. Also,
Since the rotary table is formed to have a small thermal deformation, troubles due to the thermal influence of the hydrostatic bearing and the speed reducer can be prevented.

【0012】[0012]

【発明の効果】以上説明したように、本発明によれば減
速機の小型軽量化が実現され、設備費が低減されるとと
もに、粉砕中の異常振動に伴う減速機トラブルが回避さ
れ、メンテナンス性が向上する。また、本発明の竪型粉
砕機は静圧軸受や減速機に及ぼす熱影響を最小限に留
め、減速機トラブルや軸受トラブルを未然防止できるか
ら、メンテナンス性が向上し、連続安定運転を維持して
生産性が向上する。
As described above, according to the present invention, the reduction gear can be reduced in size and weight, the facility cost can be reduced, and the reduction gear trouble due to the abnormal vibration during crushing can be avoided, and the maintainability can be improved. Is improved. Further, the vertical crusher of the present invention can minimize the thermal influence on the hydrostatic bearings and the speed reducer and prevent the speed reducer trouble and the bearing trouble from occurring, so that the maintainability is improved and continuous stable operation is maintained. Productivity is improved.

【図面の簡単な説明】[Brief description of drawings]

【図1】本発明の実施例に係る竪型粉砕機の全体縦断面
図である。
FIG. 1 is an overall vertical sectional view of a vertical crusher according to an embodiment of the present invention.

【図2】本発明の実施例に係る竪型粉砕機の要部縦断面
図である。
FIG. 2 is a longitudinal sectional view of a main part of a vertical crusher according to an embodiment of the present invention.

【図3】図1のA−A視の断面平面図である。3 is a cross-sectional plan view taken along the line AA of FIG.

【図4】本発明の実施例に係る回転テーブルの熱歪解析
状態図である。
FIG. 4 is a thermal strain analysis state diagram of the rotary table according to the embodiment of the present invention.

【図5】本発明の実施例に係る回転テーブルの熱歪解析
状態図である。
FIG. 5 is a thermal strain analysis state diagram of the rotary table according to the embodiment of the present invention.

【図6】本発明の実施例に係る回転テーブルの熱歪解析
状態図である。
FIG. 6 is a thermal strain analysis state diagram of the rotary table according to the embodiment of the present invention.

【図7】従来の竪型粉砕機の全体縦断面図である。FIG. 7 is an overall vertical cross-sectional view of a conventional vertical crusher.

【符号の説明】[Explanation of symbols]

1 竪型粉砕機 2 減速機(遊星減速機) 2A 寸動電動機 2B 電動機 2a 出力軸 3A 回転テーブル 3B フランジシュー 3C 回転筒 3S ダムリング 3X 平板部 3Y 外周円筒部 3Z 内周円筒部 4 粉砕ローラ 5 アーム 6 軸(回転軸) 7 アーム 7A アーム 7B アーム 9 油圧シリンダ 14 環状空間通路 15 ケーシング 16 排出口 17 原料投入シュート 17A 分岐管 17B 堰板 18 スクレーパ 30 柱脚 30A ステー 30B 固定リング 30a スラストパッド(静圧軸受) 30b 支持環 40 スタンド 1 Vertical grinding machine 2 Reduction gear (planetary reduction gear) 2A Jig motor 2B Electric motor 2a Output shaft 3A Rotary table 3B Flange shoe 3C Rotating cylinder 3S Dam ring 3X Flat plate part 3Y Outer peripheral cylinder part 3Z Inner peripheral cylinder part 4 Grinding roller 5 Arm 6 axis (rotary shaft) 7 Arm 7A Arm 7B Arm 9 Hydraulic cylinder 14 Annular space passage 15 Casing 16 Discharge port 17 Raw material charging chute 17A Branch pipe 17B Weir plate 18 Scraper 30 Pillar 30A Stay 30B Fixing ring 30a Thrust pad (static) Pressure bearing) 30b Support ring 40 Stand

Claims (1)

【特許請求の範囲】[Claims] 【請求項1】 回転テーブルの外周部上面に複数個の回
転自在な粉砕ローラを配設し、回転テーブル上に供給さ
れた原料を粉砕ローラに所定の圧力を与えて回転テーブ
ルと粉砕ローラ周面との間で粉砕する竪型粉砕機におい
て、該回転テーブルに負荷される自重ならびに粉砕力な
どの鉛直荷重を支承する静圧軸受を該回転テーブル外周
部下端に配設するとともに、該回転テーブルを回転駆動
する減速機を該回転テーブル中心部下方に配設し、か
つ、該回転テーブルは粉砕ローラが載置される平板部と
該平板部の外周下方へ延在し前記静圧軸受に下端が支承
される外周円筒部と該平板部の中心部下方へ延在し前記
減速機の出力軸と下端が係合される内周円筒部を有する
形状とした竪型粉砕機。
1. A plurality of rotatable crushing rollers are provided on the upper surface of the outer peripheral portion of the rotary table, and the raw material supplied onto the rotary table is applied with a predetermined pressure to the rotary table and the peripheral surface of the crush roller. In a vertical crusher for crushing between the rotary table and the rotary table, a static pressure bearing that bears a vertical load such as a self-weight and a crushing force applied to the rotary table is arranged at the lower end of the outer periphery of the rotary table, and the rotary table is A decelerator that is rotationally driven is disposed below the center of the rotary table, and the rotary table extends below the flat plate portion on which the crushing roller is mounted and the outer periphery of the flat plate portion, and the lower end of the static pressure bearing is provided. A vertical crusher having a shape including an outer peripheral cylindrical portion supported and an inner peripheral cylindrical portion extending below the central portion of the flat plate portion and engaging the output shaft of the reduction gear with the lower end.
JP6181342A 1994-07-22 1994-08-02 Vertical pulverizer Pending JPH0838922A (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
JP6181342A JPH0838922A (en) 1994-08-02 1994-08-02 Vertical pulverizer
CN95108966A CN1034914C (en) 1994-07-22 1995-07-21 A vertical type roller mill
KR1019950021764A KR0167396B1 (en) 1994-07-22 1995-07-22 A vertical type roller mill

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP6181342A JPH0838922A (en) 1994-08-02 1994-08-02 Vertical pulverizer

Publications (1)

Publication Number Publication Date
JPH0838922A true JPH0838922A (en) 1996-02-13

Family

ID=16099027

Family Applications (1)

Application Number Title Priority Date Filing Date
JP6181342A Pending JPH0838922A (en) 1994-07-22 1994-08-02 Vertical pulverizer

Country Status (1)

Country Link
JP (1) JPH0838922A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2015523207A (en) * 2012-08-01 2015-08-13 ティッセンクルップ インダストリアル ソリューションズ アクツィエンゲゼルシャフトThyssenKrupp Industrial Solutions AG Roller mill and method for grinding material to be ground with roller mill

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2015523207A (en) * 2012-08-01 2015-08-13 ティッセンクルップ インダストリアル ソリューションズ アクツィエンゲゼルシャフトThyssenKrupp Industrial Solutions AG Roller mill and method for grinding material to be ground with roller mill

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