JPS60244706A - Glentank auger in harvester - Google Patents
Glentank auger in harvesterInfo
- Publication number
- JPS60244706A JPS60244706A JP10127584A JP10127584A JPS60244706A JP S60244706 A JPS60244706 A JP S60244706A JP 10127584 A JP10127584 A JP 10127584A JP 10127584 A JP10127584 A JP 10127584A JP S60244706 A JPS60244706 A JP S60244706A
- Authority
- JP
- Japan
- Prior art keywords
- auger
- grain
- feeding
- shaft
- axis
- 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.)
- Granted
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65G—TRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
- B65G33/00—Screw or rotary spiral conveyors
- B65G33/24—Details
- B65G33/26—Screws
- B65G33/265—Screws with a continuous helical surface
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Threshing Machine Elements (AREA)
- Screw Conveyors (AREA)
Abstract
(57)【要約】本公報は電子出願前の出願データであるた
め要約のデータは記録されません。(57) [Summary] This bulletin contains application data before electronic filing, so abstract data is not recorded.
Description
【発明の詳細な説明】
本発明は、収穫機におけるグレンタンクオーガーについ
ての改良に関スる。DETAILED DESCRIPTION OF THE INVENTION The present invention relates to improvements to grain tank augers in harvesters.
収穫機におけるグレンタンクオーガーAは、第1図に示
している如く、収穫機(コンバイン)の機体aに装架せ
るグレンタンク(1)内に、収穫した穀粒が一杯になっ
たとき、そのグレンタンク(1)内に集めた穀粒を、圃
場内または圃場周囲の農道に入れた運搬車に積み換える
作業のために、グレンタンク(1)に装備せしめる穀粒
排出用の送穀装置であり、グレンタンク(1)の内腔底
部から穀粒を搬出するための横送りのオーガー(2)と
、それにより搬出されてきた穀粒を上方に搬送する竪送
りのオーガー(3)と、前記横送りオーカー(2)の終
端と竪送りオーガー(3)の下端とを接続する接続筒部
(4)とを具備するが、横送りオーカー(2)で接続筒
部(4)内に搬出されてきた穀粒を竪送りオーガー(3
)に受け渡す際の効率が悪いことから、送穀能力が上ら
ない問題があった。As shown in Fig. 1, the grain tank auger A in the harvester is used to open the grain tank (1) mounted on the body a of the harvester (combiner) when the grain tank (1) is full of harvested grains. This is a grain feeding device for discharging grains that is installed in the grain tank (1) in order to transfer the grains collected in the grain tank (1) to a transport vehicle that is placed in the field or on a farm road around the field. There is a horizontal feeding auger (2) for carrying out the grains from the bottom of the inner cavity of the grain tank (1), and a vertical feeding auger (3) for carrying the carried out grains upward. It is provided with a connecting cylinder part (4) that connects the terminal end of the horizontal feeding auger (2) and the lower end of the vertical feeding auger (3), and the horizontal feeding ocher (2) is carried out into the connecting cylinder part (4). Auger (3)
), there was a problem that the grain feeding capacity could not be improved due to the inefficiency of grain delivery.
この穀粒の受け渡しの効率を良くするには・接続筒部(
4)内に、竪送りオーガー(3)のオーガー軸(:3]
a )周面に設けた螺旋翼(31b)の揚穀能力より
大きい能力をもって穀粒を該竪送りオーガー(3)の揚
穀筒(30)内に送り上げていく揚穀手段を装設すれば
良いわけであるが、このような揚穀手段を、接続筒部(
4)内の狭い空間に、面倒な機構を要さずに装設するこ
とは至難であり、このことから従前にあっては、この問
題Qこ対応する適当な手段がなく、このため」二連の問
題を生じせしめているのが実情である。In order to improve the efficiency of this grain delivery, ・Connecting tube part (
4) Inside the auger shaft (:3) of the vertical feed auger (3)
a) A grain hoisting means is installed that sends grains up into the hoisting tube (30) of the vertical feed auger (3) with a capacity greater than the hoisting capacity of the spiral blades (31b) provided on the peripheral surface. However, such grain frying means should be connected to the connecting tube (
4) It is extremely difficult to install it in a narrow space without requiring a complicated mechanism, and for this reason, there was no suitable means to deal with this problem in the past. The reality is that this is causing a series of problems.
本発明における目的は、上述の問題を解消するために、
構造を簡単にしながら、大きな揚穀能力をもって、接続
筒部(4)内Gこ送り込まれてくる穀粒を竪送りオーガ
ー(3)の揚穀筒(30)内に送り上げ得る新たな手段
を提起することQこある。The purpose of the present invention is to solve the above-mentioned problems.
A new means has been developed that can feed the grains fed into the connecting cylinder (4) into the grain lifting tube (30) of the vertical feed auger (3) while simplifying the structure and having a large grain lifting capacity. I have a question to raise.
そして、この目的を達成するための本発明手段は、横送
りオーガーの終端と竪送りオーガーの下端とを接続する
接続筒部の内腔で、竪送りオーガーの螺旋翼の下方に、
円板状の送穀翼を、側面視において、それの軸心線が前
記竪送りオーガーのオーカー軸の軸心線に対し斜交する
斜めの姿勢で、平面視において該円板状の送穀翼の軸心
が前記オーガー軸の軸心に対し該円板状の送穀翼の傾斜
下降側Oこ偏心した状態に配位して、前記オーカー軸の
軸心線中心に回動するよう軸支したことを特徴とする。And, the means of the present invention for achieving this object is such that, in the inner cavity of the connecting cylinder portion that connects the terminal end of the horizontal feed auger and the lower end of the vertical feed auger, below the helical blade of the vertical feed auger,
The disk-shaped grain feeding blade is placed in an oblique position in which the axial center line thereof obliquely intersects with the axial center line of the ocher shaft of the vertical feeding auger when viewed from the side, and the disk-shaped grain feeding blade is placed in a plan view. The shaft is arranged such that the axis of the blade is eccentric to the axis of the auger shaft on the inclined downward side of the disk-shaped grain feeding blade, and rotates around the axis of the ocher shaft. Characterized by support.
次に実施の一例を図面に従い詳述する。なお、図面符号
は回し構成部材については、従前例と同一の符号を用い
るものとする。Next, an example of implementation will be described in detail with reference to the drawings. Note that the same reference numerals as in the previous example are used for the rotating components in the drawings.
第3図は本発明によるグレンタンクオーガーAの要部の
縦断した側面を示している。FIG. 3 shows a longitudinal side view of the main part of the Glentank Auger A according to the present invention.
同図Gこおいて、(])は収穫機の機体a(第1図)G
こ装架ぜるグレンタンクで、鎖線により一部を示してい
る。In the same figure G, (]) is the harvesting machine body a (Fig. 1) G
This is the installed Glen tank, a part of which is shown by the chain line.
(2)は該グレンタンク(1)内Gこ集積せる穀粒を搬
出する横送りオーガーで、それの搬送筒(社)の搬送方
向の終fM部は、グレンタンク(1)の機構から突出し
、またオーカー(21)は前記搬送筒(20)の終端か
らさらに突出している。(2) is a cross-feeding auger for carrying out the grains accumulated in the grain tank (1), and the end fM portion of the conveying cylinder (sha) in the conveying direction protrudes from the mechanism of the grain tank (1). , and the ocher (21) further protrudes from the terminal end of the conveying tube (20).
(4)は前記搬送筒(20)の終端に接続した接続筒部
でエルボ状Gこ形成してあり、それの内径は、前記搬送
筒(4)のそれよりも大径にしである。そして、該接続
筒部(4)の内部には、傾斜する底部にギヤボックス(
5)が装設され、そのギヤボックス(5)&こ前記オー
ガー(2υのオーガー軸(21a)の終端側の軸端部が
軸支してあり、またそのオーガー軸(21a)の該接続
筒部(4)内に臨む部位には、オーカー軸(21a)の
周面に巻付けた螺!翼(zlb)より大径に形成した螺
旋翼(21C)が堆付けである。(4) is a connecting tube connected to the terminal end of the conveying tube (20) and is formed into an elbow shape, and its inner diameter is larger than that of the conveying tube (4). Inside the connecting cylinder (4), there is a gear box (
5) is installed, and the gear box (5) & the auger shaft (21a) on the terminal side of the auger shaft (21a) are pivotally supported, and the connecting tube of the auger shaft (21a) is A helical blade (21C) formed with a larger diameter than the screw blade (zlb) wound around the circumferential surface of the ocher shaft (21a) is attached to a portion facing into the portion (4).
(3)は前記接続筒部(4)の上部開口部(4Gに下端
を接続した竪送りオーガーで、それのオーガー01)を
収容する揚穀筒(列は、内径が前記接続筒部4)の上部
開口部(40)の内径よりも小径に形成しである。そし
て、その揚穀筒□□□の下端部は、前記上部開口部(4
01に前述オーガー°(3υのオーガー軸゛(:つ1a
)の軸心線中心Gこ自在に旋回するよう嵌合し、また、
その揚穀筒(30)内の前記オーカーGυのオーカー軸
(31a)の下端側は、前述した接続筒部(4)内のギ
ヤボックス(5)Gこ軸支され、かつ、そのギヤボック
ス(5)内に装設せる伝導ギヤ(図示省略)を介して前
記横送りオーカー(2)ノオーガ−11](21a)の
軸端部と伝導せしめである。(3) is a grain lifting cylinder that accommodates the upper opening (a vertical feeding auger whose lower end is connected to 4G, and its auger 01) of the connecting cylinder part (4) (in the row, the inner diameter is the connecting cylinder part 4); The inner diameter of the upper opening (40) is smaller than that of the upper opening (40). The lower end of the grain barrel □□□ is connected to the upper opening (4).
01 is the auger ° (3υ auger shaft) (: 1a
) are fitted so that they can rotate freely, and
The lower end side of the ocher shaft (31a) of the ocher Gυ in the grain lifting cylinder (30) is supported by the gear box (5) G in the above-mentioned connecting cylinder part (4), and the gear box ( 5) The transverse feed auger (2) is connected to the shaft end of the auger 11 (21a) through a transmission gear (not shown) installed therein.
(6)は前記揚穀筒(30)の下端部に装設した案内筒
部で、それの内面は、下方に向い次第に内径が拡張して
いく逆向のロート状の案内面(6a)に形成しである。(6) is a guide cylinder installed at the lower end of the grain lifting cylinder (30), and its inner surface is formed into a reverse funnel-shaped guide surface (6a) whose inner diameter gradually expands downward. It is.
そして、その逆向のロート状の案内面(6a)は上端側
の内径が揚穀筒(至)の内径に略一致し、下端側が接続
筒部(4)の上部開口部(40の内径と略一致するよう
に形成してあって、それぞれ揚穀筒端の内面及び接続筒
部(4)の上部開口部(401の内面に接続させてあり
、これにより、大径に形成した接続筒部(4)の上部開
口部t40)がこの逆向のロート状をなす案内筒部(6
)の内面(6a)を介して揚穀筒C刈の下端と接続する
状態にしである。The inner diameter of the upper end of the funnel-shaped guide surface (6a) in the opposite direction is approximately the same as the inner diameter of the grain lifting cylinder (to), and the lower end thereof is approximately the same as the inner diameter of the upper opening (40) of the connecting cylinder (4). They are formed to match and are connected to the inner surface of the end of the grain lifting tube and the inner surface of the upper opening (401) of the connecting tube (4), respectively, so that the connecting tube (401) formed with a large diameter The upper opening t40) of 4) is in the shape of a funnel in the opposite direction.
) is in a state where it is connected to the lower end of the grain lifting cylinder C through the inner surface (6a) of the grain cylinder C.
なお、案内筒部(6)は、この実施列においては、揚穀
筒60)を接続局部(4)に対して旋回させて該揚穀筒
(至)の上端に装設せる放出fM 4321 (第1図
)の筒先の方向を変更さすために該揚穀筒00)に装着
する旋回駆動用のギヤ囮のボディを利用しているが、ギ
ヤσ0)と別に形成して揚穀筒(30)の下端に装着す
る場合、また、揚穀筒(廊の下端に該揚穀筒(30+と
一体に連続させて装設する場合等、適宜に形成してよい
ものである。In addition, in this implementation row, the guide tube part (6) is a discharge fM 4321 ( In order to change the direction of the tip of the grain lifting tube (Fig. 1), the body of a gear decoy for rotational drive attached to the grain lifting cylinder (00) is used, but it is formed separately from the gear σ0). It may be formed as appropriate, such as when it is installed at the lower end of the grain lifting cylinder (30+), or when it is installed integrally and continuously with the grain lifting cylinder (30+) at the lower end of the corridor.
(8)は、前述した接続筒部(4)の内腔で、竪送りオ
ーカー(3)のオーカー軸(31a)周面Gこ巻付けた
螺旋翼(alb )の下方に配位して接続筒部(4)に
軸支した円板状の送穀翼で、それの軸心線Wの方向から
見たときは、第4図に示すよう正円の円板である。(8) is the inner cavity of the above-mentioned connecting cylinder part (4), and is arranged and connected below the helical blade (alb) wrapped around the circumferential surface G of the ocher shaft (31a) of the vertical feeding ocher (3). It is a disc-shaped grain feeding blade that is pivotally supported on the cylindrical part (4), and when viewed from the direction of its axis W, it is a perfect circular disc as shown in FIG.
そして、該円板状の送穀@(8)は、それの軸心線Wが
オーカー軸(:318 )の軸心線yに対し第3図にあ
るよう側面視で斜交する斜めの姿勢として、オーガー軸
(31a)の下端部(8o)の周面に増付けであるが、
さらに該送穀翼(8)は、それの軸心0が第5図に示し
ている如く、平面視において、傾斜して取付けられた該
送穀翼(8)の傾斜下降側に寄るようにオーが一軸(3
1a)の軸心pに対し偏心せしめた状態に堆付けてあり
、これにより、傾斜下降側にあっては、オーカー軸(3
ta)の軸心線yから該送穀翼(8)の下端縁(8a)
までの距離の2倍の長さとなる大きな径Rで、また傾斜
上昇側にあっては前記軸心線yから該送穀翼(8)の上
端縁(8b)までの距離02倍の長さとなる小さな径r
で、それぞれオーカー軸(31a)の軸心線y中心に旋
回するようにしである。The disk-shaped grain feeding @ (8) is in an oblique position in which its axial line W intersects obliquely with the axial line y of the ocher shaft (318) as shown in Fig. 3. As, it is added to the circumferential surface of the lower end (8o) of the auger shaft (31a),
Further, the grain feeding blade (8) is arranged such that its axis 0 is located on the downward slope side of the grain feeding blade (8) which is installed at an angle in plan view, as shown in FIG. One shaft of O (3
1a) in an eccentric state with respect to the axis p of
From the axis y of ta) to the lower edge (8a) of the grain feeding blade (8)
It has a large diameter R that is twice the distance from The small diameter r
, so that they each turn around the axis y of the Ocher shaft (31a).
なお、上記円板状の送穀翼(8)は・図示する実施例に
おいては、オーガー軸(31a 、)の下端部(80)
と一体に連続させて形成しであるが、その下端部(80
)と別体に形成して該下端部嬢の周面に嵌着するように
する場合があり、また、さらに、オーカー軸(31a)
とは別に接続筒部(4)に対し軸支し、オーカー軸(3
1a)と別の伝導径路で駆動回転させる場合がある。In the illustrated embodiment, the disk-shaped grain feeding blade (8) is located at the lower end (80) of the auger shaft (31a).
It is formed integrally and continuously with the lower end (80
) may be formed separately from the ocher shaft (31a) and fitted onto the circumferential surface of the lower end portion.
Separately from the connecting cylinder part (4), the Ocher shaft (3
There are cases where the driving rotation is performed using a conduction path different from 1a).
また、図面において、(71)は前述の揚穀筒■旋回駆
動用のギヤ(70)を駆動回転させる伝導ギヤで、グレ
ンタンク(1)の機構に設けたブラケット(7急に軸支
した支軸σ3)の先端に装着してあり、その支軸(73
)の中間部Gこ嵌着したピニオン(I4)に噛合うラッ
クσ(ト)が油田シリンダ(76) (第2図)の作動
で上下に動くことで、前記ピニオンσ(イ)を介し駆動
回転して前述のギヤff0)を回転させるようになって
いる。In addition, in the drawing, (71) is a transmission gear that drives and rotates the gear (70) for driving the grain lifting cylinder mentioned above, and the bracket (7) is attached to the mechanism of the grain tank (1). It is attached to the tip of the shaft σ3), and its support shaft (73
) The rack σ (g) that meshes with the pinion (I4) fitted in the middle part G of It rotates to rotate the aforementioned gear ff0).
次に作用効果について説明すると、上述の如く構成しで
ある本発明による収穫機におけるグレンタンクオーカー
は、グレンタンク(1)から横送りオーカー(2)で搬
出されて接続筒、部(4)内に送り込まれてきた穀粒を
、竪送りオーカー(3)の螺旋翼(31b)に受け渡す
よう上方に送り上げる際に、その穀粒を、竪送りオーガ
ー(3)の螺旋翼(31b)の下方に配位されて、オー
ガー軸(31a)に対し斜めに傾斜した姿勢でオーガー
軸(31a)の軸心線y中心に回転する円板状の送穀翼
(8)が、それの回転方向の前面側により上方に押上げ
るようになるが、この円板状の送穀翼(8)が回転軸心
pに対し第5図に示す如く傾斜下降側に偏心しているこ
とから、第3図にあるように、その傾斜下降側を、竪送
りオーガー(3)の揚穀m (30)の内径よりも大径
で回転して広い範囲から穀粒を押上げていくようにしな
がら傾斜上昇側を揚穀筒(30)の内径に略対応する径
で回転するように出来るので、円板状の送穀翼(8)を
斜めに配設して回転さすという極めて簡単な構成によっ
て、大量の穀粒を竪送りオーガー(3)の揚穀筒(至)
内に送り上げられるようになって、竪送りオーカー(3
)の揚穀の効率を向上させ、グレンタンクオーガーAの
送穀性能を向上させ得るようになる。Next, to explain the function and effect, the grain tank ocher in the harvester according to the present invention configured as described above is carried out from the grain tank (1) by the cross-feeding ocher (2) and placed in the connecting tube, part (4). When sending the grains fed upward to be delivered to the spiral blades (31b) of the vertical feeding auger (3), the grains are transferred to the spiral blades (31b) of the vertical feeding auger (3). A disk-shaped grain feeding blade (8) that is arranged downward and rotates around the axis y of the auger shaft (31a) in an attitude obliquely inclined with respect to the auger shaft (31a) is rotated in the direction of rotation thereof. However, since this disc-shaped grain feeding blade (8) is eccentric to the rotational axis p on the downward slope side as shown in FIG. As shown in , the downward slope is rotated with a diameter larger than the inner diameter of the grain lifting m (30) of the vertical feeding auger (3), pushing up the grain from a wide range, while the upward slope is being rotated. can be rotated with a diameter that approximately corresponds to the inner diameter of the grain lifting cylinder (30), so a large amount of grain can be transported by an extremely simple configuration in which the disc-shaped grain feeding blade (8) is arranged diagonally and rotated. Auger (3) that feeds grain vertically
Now it is possible to send it up in the vertical direction, and the vertical feed ocher (3
), and the grain feeding performance of the grain tank auger A can be improved.
第1図は従前手段の全体の概要斜視図、第2図は同上の
要部の一部破断した側面図、第3図は本発明の実施例装
置の要部の縦断側面図、第4図は同上の送穀翼の組付前
の説明図、第5図は同上の要部の横断平面図である。
図面符号の説明
A・・・グレンタンクオーカー a・・・機体1・・・
グレンタンク 2パ・横送りオーガー加・・搬送筒 2
1・・・オーガー
21、a・・オーガー軸 21b・2]、C・・・螺旋
翼3・・・竪送りオーガー 30・・・揚穀筒31・・
・オーカー 31a・・・オーガー軸31b・・・螺旋
R32・・・放出筒
4・・・接続筒部 40・・・上部開口部5・・ギヤボ
ックス 6・・・案内筒部 6a・・・案内面70・・
・ギヤ 71・・・伝導ギヤ 72・・・ブラケット7
3・・支軸 74・・・ピニオン 75・・・ラック7
6・・・油圧シリンダ 8・・送穀翼8a・・・上端縁
8b・・・下端縁 80・・・下端部w−y・・・軸
心線 o−p・・・軸心R・・・大きな径 r・・・小
さな経
時 許 出願 人 井関農機株式会社Fig. 1 is an overall schematic perspective view of the conventional means, Fig. 2 is a partially cutaway side view of the main parts of the same, Fig. 3 is a longitudinal sectional side view of the main parts of the apparatus according to the embodiment of the present invention, and Fig. 4 5 is an explanatory view of the same grain feeding blade before assembly, and FIG. 5 is a cross-sectional plan view of the main part of the same. Explanation of drawing symbols A... Glentank Oaker a... Aircraft 1...
Glentank 2pa/lateral feed auger addition...transport tube 2
1... Auger 21, a... Auger shaft 21b, 2], C... Spiral blade 3... Vertical feed auger 30... Grain lifting cylinder 31...
・Ocher 31a...Auger shaft 31b...Spiral R32...Ejection tube 4...Connection tube part 40...Upper opening 5...Gear box 6...Guide tube part 6a...Guide Surface 70...
・Gear 71...Conduction gear 72...Bracket 7
3...Spindle 74...Pinion 75...Rack 7
6... Hydraulic cylinder 8... Grain feeding blade 8a... Upper edge 8b... Lower edge 80... Lower end w-y... Axis center line op... Axis center R...・Large diameter r...Small aging Applicant: Iseki Agricultural Machinery Co., Ltd.
Claims (1)
する接続筒部の内腔で、竪送りオーガーの螺旋翼の下方
に、円板状の送穀翼を、側面視において、それの軸心線
が前記竪送りオーガーのオーガー軸の軸心線に対し斜交
する斜めの姿勢で、平面視において該円板状の送穀翼の
軸心が前記オーガー軸の軸心に対し該円板状の送穀翼の
傾斜下降側に偏心した状態に配位して、前記オーガー軸
の軸心線中心に回動するよう軸支したことを特徴とする
収穫機におけるグレンタンクオーガー。In the inner cavity of the connecting cylinder that connects the end of the cross-feeding ocher and the lower end of the vertical-feeding auger, a disk-shaped grain-feeding blade is installed below the spiral blade of the vertical-feeding auger, and its axis is centered in the side view. In a diagonal posture in which the line obliquely intersects with the axis of the auger shaft of the vertical feeding auger, the axis of the disc-shaped grain feeding blade is aligned with the axis of the auger shaft in plan view. A grain tank auger for a harvester, characterized in that the grain tank auger is arranged eccentrically on the downwardly inclined side of the grain feeding blade and pivotally supported to rotate about the axis of the auger shaft.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP10127584A JPS60244706A (en) | 1984-05-19 | 1984-05-19 | Glentank auger in harvester |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP10127584A JPS60244706A (en) | 1984-05-19 | 1984-05-19 | Glentank auger in harvester |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| JPS60244706A true JPS60244706A (en) | 1985-12-04 |
| JPH0577568B2 JPH0577568B2 (en) | 1993-10-27 |
Family
ID=14296326
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| JP10127584A Granted JPS60244706A (en) | 1984-05-19 | 1984-05-19 | Glentank auger in harvester |
Country Status (1)
| Country | Link |
|---|---|
| JP (1) | JPS60244706A (en) |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPS6428843U (en) * | 1987-08-18 | 1989-02-21 | ||
| CN101344262B (en) | 2008-08-21 | 2010-06-02 | 江苏华粮机械有限公司 | Biomass direct combustion power generation furnace silo discharge auger |
| CN101344263B (en) | 2008-08-21 | 2010-06-09 | 江苏华粮机械有限公司 | Biomass direct-fired power generation furnace front silo discharger |
Citations (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPS579274U (en) * | 1980-06-19 | 1982-01-18 |
-
1984
- 1984-05-19 JP JP10127584A patent/JPS60244706A/en active Granted
Patent Citations (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPS579274U (en) * | 1980-06-19 | 1982-01-18 |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPS6428843U (en) * | 1987-08-18 | 1989-02-21 | ||
| CN101344262B (en) | 2008-08-21 | 2010-06-02 | 江苏华粮机械有限公司 | Biomass direct combustion power generation furnace silo discharge auger |
| CN101344263B (en) | 2008-08-21 | 2010-06-09 | 江苏华粮机械有限公司 | Biomass direct-fired power generation furnace front silo discharger |
Also Published As
| Publication number | Publication date |
|---|---|
| JPH0577568B2 (en) | 1993-10-27 |
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Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| LAPS | Cancellation because of no payment of annual fees |