JP2002346443A - Work rotating apparatus and work painting device - Google Patents

Work rotating apparatus and work painting device

Info

Publication number
JP2002346443A
JP2002346443A JP2001154343A JP2001154343A JP2002346443A JP 2002346443 A JP2002346443 A JP 2002346443A JP 2001154343 A JP2001154343 A JP 2001154343A JP 2001154343 A JP2001154343 A JP 2001154343A JP 2002346443 A JP2002346443 A JP 2002346443A
Authority
JP
Japan
Prior art keywords
work
rotating
pole
rotating body
coating
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.)
Withdrawn
Application number
JP2001154343A
Other languages
Japanese (ja)
Inventor
Kenji Hisada
賢治 久田
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.)
NANBU SEISAKUSHO KK
Original Assignee
NANBU SEISAKUSHO KK
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 NANBU SEISAKUSHO KK filed Critical NANBU SEISAKUSHO KK
Priority to JP2001154343A priority Critical patent/JP2002346443A/en
Publication of JP2002346443A publication Critical patent/JP2002346443A/en
Withdrawn legal-status Critical Current

Links

Landscapes

  • Application Of Or Painting With Fluid Materials (AREA)
  • Spray Control Apparatus (AREA)
  • Coating Apparatus (AREA)

Abstract

PROBLEM TO BE SOLVED: To efficiently transmit rotation. SOLUTION: Magnets M3 are arranged by alternating the north pole and the south pole on the surface of a movement board 23 which is moved by a drive 22. Rotation bodies 14, 15 supported by bearings 8A, 9A, 10A are arranged closely to the surface of the board 23. Magnets M1 , M1 are arranged by alternating the north pole and the south pole on the periphery surfaces of the rotation bodies 14, 15 facing the surface of the movement board 23. A work W is connected to the rotation bodies 14, 15. When the movement board 23 is moved, the rotation bodies 14, 15 are rotated, without contact, by the interaction of the magnet M3 of the movement board 23 with the north pole and the south pole of the magnets M1 , M1 of the rotation bodies 14, 15.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明はワーク回転機構およ
び該ワーク回転機構を利用したワーク塗工装置に関する
ものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a work rotating mechanism and a work coating apparatus using the work rotating mechanism.

【0002】[0002]

【従来の技術】従来、ワークを回転せしめるには、モー
ターの回転力をワークに歯車、プーリー、ベルト等の伝
達機構によって伝えているか、あるいはワークがねじS
の場合には図10に示すように2本のワーク搬送ベルト
1,2 の間にねじSの頭Hを懸架し、上記ベルトB1,
2 の速度をかえたり、あるいは逆行させたり、あるい
は一方を停止させたりして頭Hを介してねじSに回転力
を与えられている。
2. Description of the Related Art Conventionally, in order to rotate a work, the rotational force of a motor is transmitted to the work by a transmission mechanism such as a gear, a pulley, a belt or the like.
Of suspended head H of the screw S during the work transfer of two as shown in FIG. 10 the belt B 1, B 2 in the case, the belt B 1,
The rotational force is applied to the screw S via the head H by changing the speed of B 2 , reversing it, or stopping one.

【0003】[0003]

【発明が解決しようとする課題】このような従来方法で
は、歯車、プーリー、ベルト等の摩耗、あるいはプーリ
ーとベルト間、あるいはねじSの頭HとベルトB1,2
の間のすべり等による回転がコントロールし難く、不規
則になり易い等の問題点があった。
BRIEF Problem to be Solved] In the conventional method, gears, pulleys, head H and the belt B 1 wear such as a belt, or pulley and belt between, or screws S, B 2
There is a problem in that rotation due to slippage during the rotation is difficult to control, and irregularity is likely to occur.

【0004】[0004]

【課題を解決するための手段】本発明は上記従来の課題
を解決するための手段として、駆動源(22)によって移動
せしめられる移動盤(23)の表面にN極とS極とを交互に
して磁石M3 を配設し、該表面に接近して軸受け(8A,9
A,10A) に支持されている回転体(14,15) を配置し、該
回転体(14,15) の該移動盤(23)表面に相対する周面にN
極とS極とを交互にして磁石M1 を配置し、該回転体(1
4,15) にワークWを接続したワーク回転機構を提供する
ものである。該回転体(14,15) 先端にはワークWを磁着
する磁石M2 が配置されていることが望ましく、また該
移動盤はモーター(22)軸に取付けられている円盤(23)で
あることが望ましい。更に該回転体(14,15) の複数個は
回転輪(1) の周縁に設けられている複数個の軸受け(8A,
9A,10A) に支持されていることが望ましい。更に本発明
では、該回転輪(1) の周囲にはワーク供給装置(17)、ワ
ーク加熱位置、およびワーク塗工位置が配置され、該ワ
ーク加熱位置にはワーク加熱手段(21)が配置され、該ワ
ーク塗工位置にはモーター(22)軸に取付けられている該
円盤(23)が配置され、更に該回転軸(14B,15B) 先端に磁
着されているワークWに粉体塗料を吹付けるノズル(24)
が配置され、該塗工位置において該ワークWは該回転軸
(14B,15B) を介して回転しつゝノズル(24)から粉体塗料
が吹付けられるワーク塗工装置が提供される。
According to the present invention, as a means for solving the above-mentioned conventional problems, an N pole and an S pole are alternately provided on the surface of a moving plate (23) moved by a driving source (22). the magnet M 3 disposed Te, bearing close to the surface (8A, 9
A, 10A), and a rotating body (14, 15) supported on the moving body (23) of the rotating body (14, 15).
The magnet M 1 and arranged alternately with poles and S poles, the rotating body (1
4, 15) to provide a work rotating mechanism to which a work W is connected. The rotating body (14, 15) it is desirable to magnet M 2 that magnetically attached to the workpiece W is disposed at the distal end, also the movable platen is a disc (23) attached to the motor (22) axis It is desirable. Further, a plurality of the rotating bodies (14, 15) are provided with a plurality of bearings (8A,
9A, 10A). Further, in the present invention, a work supply device (17), a work heating position, and a work coating position are arranged around the rotating wheel (1), and a work heating means (21) is arranged at the work heating position. The disc (23) attached to the motor (22) shaft is arranged at the work coating position, and further, the powder coating is applied to the work W magnetically attached to the tip of the rotating shafts (14B, 15B). Spraying nozzle (24)
Is arranged, and at the coating position, the work W
There is provided a work coating apparatus to which a powder coating is sprayed from a rotating nozzle (24) via (14B, 15B).

【0005】[0005]

【作用】駆動源(22)によって移動盤(23)を移動させる
と、回転体(14,15) の周面の磁石M1 のN極またはS極
に該移動盤(23)の表面の複数個の磁石M3 のN極または
S極が逐次接近する。そしてN極にN極またはS極にS
極が接近した時は回転体(14,15) 側のN極またはS極は
移動する移動盤(23)側のN極またはS極に排斥され、ま
たN極にS極またはS極にN極が接近した時は回転体(1
4,15) 側のN極またはS極は移動する移動盤(23)側のS
極またはN極に吸引される。その結果該回転体(14,15)
は該移動盤(23)の移動方向へ回転する。
[Action] is moved movable platen (23) by a drive source (22), a plurality of surfaces of the movable platen to the N pole or S pole of the circumferential surface of the magnet M 1 rotator (14, 15) (23) N or S pole of the number of magnets M 3 is sequentially approaches. And N pole to N pole or S pole to S pole
When the poles approach, the N pole or S pole on the rotating body (14, 15) side is rejected by the N pole or S pole on the moving moving plate (23) side, and the N pole is S pole or N pole on the S pole. When the poles approach, the rotating body (1
The N-pole or S-pole on the (4,15) side is the moving plate (23)
It is attracted to the pole or N pole. As a result, the rotating body (14, 15)
Rotates in the moving direction of the moving board (23).

【0006】[0006]

【発明の実施の形態】本発明を図1〜図8に示す一実施
例によって説明すれば、(1) は回転輪であってその軸
(2) は機台(3) 上の軸受け(4,4) に軸支され、速度可変
モーター(5) 、ベルト(6) 、プーリー(7) を介して所定
速度で回転せしめられる。該回転輪(1) の周縁部内側に
は、図3および図4に示すように外側、中間、内側の3
つの輪状フランジ(8,9,10)を設けた輪板体(11)が複数個
のボルト(12)によって取付けられ、該輪状フランジ(8,
9,10)には所定間隔をおいて軸受け孔(8A,9A,10A) が設
けられ、該軸受け孔(8A,9A,10A) には長短二種類の回転
体(14,15) が回転自在に軸支されている。該回転体(14,
15) はそれぞれ頭部(14A,15A) と軸部(14B,15B) とから
なり、図5および図6に示すように該頭部(14A,15A) に
はそれぞれ磁石M1,M1 がN極とS極とを対向させて2
個取付けられている。更に該回転体(14,15) の軸部(14
B,15B) 先端には図7に示すようにワーク磁着用の磁石
2,M2 がN極とS極とを対向させて2個取付けられて
いる。該回転体(14,15) は長短二種類取付けられている
ので間隔を密にしても頭部(14A,15A) が相互干渉しな
い。
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS One embodiment of the present invention is shown in FIGS.
To explain by example, (1) is a rotating wheel whose shaft is
(2) is supported by bearings (4,4) on the machine base (3), and the speed is variable.
Prescribed via motor (5), belt (6) and pulley (7)
Rotated at speed. Inside the periphery of the rotating wheel (1)
Are the outer, middle, and inner three as shown in FIGS.
Wheel plate (11) with two ring flanges (8, 9, 10)
Of the annular flange (8,
(9, 10) are provided with bearing holes (8A, 9A, 10A) at predetermined intervals.
The bearing holes (8A, 9A, 10A) have two types of rotation, long and short.
The bodies (14, 15) are rotatably supported. The rotating body (14,
15) from the head (14A, 15A) and the shaft (14B, 15B)
As shown in FIGS. 5 and 6, the head (14A, 15A)
Is a magnet M1, M1With the north and south poles facing each other
Individually installed. Further, the shaft portion (14) of the rotating body (14, 15)
B, 15B) At the tip, as shown in Fig.
M Two, MTwoAre mounted with the N and S poles facing each other.
I have. The rotating bodies (14, 15) are installed in two types, long and short
Therefore, the heads (14A, 15A) do not interfere
No.

【0007】上記回転輪(1) の所定個所には図1および
図2に示すようにワーク供給位置としてワーク供給ディ
スク(16)を有するワーク供給装置(17)が配置され、該デ
ィスク(16)は該回転輪(1) のモーター(5) の回転力をプ
ーリー(18)、ベルト(19)、プーリー(20)を介しワーク供
給装置(17)内で水平回転に変換することによって、回転
せしめられる。
As shown in FIGS. 1 and 2, a work supply device (17) having a work supply disk (16) as a work supply position is disposed at a predetermined position of the rotating wheel (1). The rotation of the motor (5) of the rotating wheel (1) is converted into horizontal rotation in a work supply device (17) via a pulley (18), a belt (19), and a pulley (20). Can be

【0008】更に上記回転輪(1) の所定個所(ワーク供
給位置よりも下流)にはワーク加熱位置として例えば遠
赤外線、電磁波誘導式、高周波誘導式等の加熱手段(21)
が配置される。高周波誘導式の場合は、該加熱手段(21)
は図8に示すように回転体(14,15) の両側に設けられて
いるが、遠赤外線の場合には片側に設けられる。
Further, at a predetermined position (downstream from the work supply position) of the rotating wheel (1), a heating means (21) such as a far infrared ray, an electromagnetic wave induction type, a high frequency induction type, etc.
Is arranged. In the case of a high-frequency induction type, the heating means (21)
Are provided on both sides of the rotating body (14, 15) as shown in FIG. 8, but are provided on one side in the case of far infrared rays.

【0009】更に上記回転輪(1) の所定個所(ワーク供
給位置の下流)には、図3に示すように塗工位置におい
てワーク回転機構が配置されている。該ワーク回転機構
は回転数可変モーター(22)と、該モーター軸に取付けら
れている移動盤である円盤(23)とからなり、該円盤(23)
の周面には所定間隔をおいて二列に磁石M3 が取付けら
れており、該磁石M3 は各列N極とS極とを交互にして
配置されている。更に該回転機構に対向する側には、図
9に示すように粉体塗料を吹付けるノズル(24)が配置さ
れている。
Further, a work rotating mechanism is arranged at a predetermined position (downstream of the work supply position) of the rotating wheel (1) at a coating position as shown in FIG. The work rotating mechanism includes a variable rotation speed motor (22) and a disk (23) which is a moving disk attached to the motor shaft, and the disk (23)
The peripheral surface of which the magnet M 3 are attached in two rows at predetermined intervals, the magnet M 3 are are arranged alternately with each row N and S poles. Further, on the side facing the rotation mechanism, a nozzle (24) for spraying powder paint is arranged as shown in FIG.

【0010】上記構成において、モーター(5) を駆動さ
せ回転輪(1) を所定速度で図1矢印方向に回転させる
と、該ワーク供給装置(17)のディスク(16)も回転し、該
ディスク(16)上のワークW(リベット)は該回転輪(1)
の回転体(14,15) の磁石M2,M 2 に逐次磁着されて行
く。この場合、図4に示すようにリベットの頭を磁石側
に配置して磁着されるが、前記したように該回転体(14,
15) の磁石M2,2 は相互N極とS極とを対向させて配
置されているから、該リベットは双方の磁石M2, 2
磁気吸引力によって回転体(14,15) の中心位置に配向さ
れる。
In the above configuration, the motor (5) is driven.
Rotate the rotating wheel (1) at a predetermined speed in the direction of the arrow in FIG.
The disk (16) of the work supply device (17) also rotates,
The work W (rivet) on the disc (16) is
Of rotating body (14,15) of magnet MTwo, M TwoMagnetically
Good. In this case, as shown in FIG.
Are arranged and magnetized, but as described above, the rotating body (14,
15) Magnet M2,MTwoIs arranged with the north and south poles facing each other.
The rivet is positioned on both magnets M2,M Twoof
Orientation at the center of the rotating body (14, 15) by magnetic attraction
It is.

【0011】ワークWは該回転輪(1) の回転しつゝ加熱
手段(21)によって加熱される。この場合の加熱温度は吹
付けられる粉体塗料の融点以上とする。上記ワークWは
加熱された上で塗工位置に送られる。塗工位置ではモー
ター(22)によって円盤(23)を所定速度で回転させると、
図5および図6に示すように該円盤(23)の周面の磁石M
3 と回転体(14)または(15)の磁石M1 のN極同志または
S極同志が相対すれば相互反発し合い、N極とS極とが
相対すれば相互引合う。このような磁力により、円盤(2
3)の回転は非接触で回転体(14)または(15)に伝達され、
円盤(23)と接近している範囲で該回転体(14,15) は円盤
(23)の回転方向(磁石M3 の進行方向)に回転する。そ
して加熱状態のワークWは回転体(14,15) と共に回転
し、該ワークWは回転しつゝノズル(24)から粉体塗料を
吹付けられ塗装される。この粉体塗料の吹付け域で該ワ
ークWを少くとも1回転するように設定しておけば、該
ワークWの全周にわたって塗装が施されることになる。
またノズル(24)を2個並列あるいは対向して配置した場
合には、該ワークWを少くとも1/2回転するように設
定しておけば、該ワークWの全周にわたって塗装が施さ
れることになる。
The work W is heated by the heating means (21) of the rotating wheel (1). The heating temperature in this case is higher than the melting point of the powder coating to be sprayed. The work W is heated and sent to a coating position. In the coating position, when the disk (23) is rotated at a predetermined speed by the motor (22),
As shown in FIGS. 5 and 6, the magnet M on the peripheral surface of the disk (23)
3 and the rotating body (14) or (15) mutually mutual repulsion when N pole comrades or S pole comrades magnet M 1 relative to, attract each other if the relative N and S poles. By such magnetic force, the disk (2
The rotation of 3) is transmitted to the rotating body (14) or (15) without contact,
The rotating body (14, 15) is in a range close to the disk (23)
Rotates in the direction of rotation of (23) (the traveling direction of the magnet M 3). The work W in the heated state rotates together with the rotating bodies (14, 15), and the work W is sprayed with powder paint from the rotating nozzle (24) to be coated. If the work W is set so as to make at least one rotation in the spraying area of the powder coating, the coating is performed over the entire circumference of the work W.
When two nozzles (24) are arranged in parallel or opposed to each other, if the work W is set to rotate at least half a turn, the coating is applied over the entire circumference of the work W. Will be.

【0012】上記実施例以外移動盤は円盤でなく摺動す
る帯体であってもよい。また本発明のワーク回転機構
は、ワークの塗装以外にワークのマーキング、ワークの
瑕疵あるいは表面処理の検査、無頭ワークの選別、不良
品の選別、ワークの加熱あるいは冷却等の種々な処理に
適用出来る。
In addition to the above embodiment, the moving plate may be a sliding band instead of a disk. In addition, the work rotating mechanism of the present invention is applicable to various processes such as work marking, inspection of work defects or surface treatment, sorting of headless works, sorting of defective products, heating or cooling of works, in addition to painting of works. I can do it.

【0013】[0013]

【発明の効果】本発明ではワークを非接触で回転させる
ことが出来、回転を確実にしかも円滑に伝達することが
出来、また機構の摩耗、損傷等も殆んどなく、設備面の
簡素化も出来る。
According to the present invention, the work can be rotated in a non-contact manner, the rotation can be transmitted reliably and smoothly, and there is almost no wear or damage of the mechanism, and the equipment can be simplified. You can also.

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

図1〜図9は本発明の一実施例を示すものである。 1 to 9 show an embodiment of the present invention.

【図1】側面図FIG. 1 is a side view

【図2】正面図FIG. 2 is a front view

【図3】回転輪の塗工位置における説明図FIG. 3 is an explanatory view at a coating position of a rotating wheel.

【図4】回転輪の周縁部分説明図FIG. 4 is an explanatory view of a peripheral portion of a rotating wheel.

【図5】回転機構説明図FIG. 5 is an explanatory view of a rotation mechanism.

【図6】回転機構説明図FIG. 6 is an explanatory view of a rotation mechanism.

【図7】回転体の軸部先端面図FIG. 7 is a front view of a shaft portion of a rotating body.

【図8】加熱位置説明図FIG. 8 is an explanatory view of a heating position.

【図9】ノズル配置図FIG. 9 is a nozzle arrangement diagram.

【図10】従来例の説明図FIG. 10 is an explanatory view of a conventional example.

【符号の説明】[Explanation of symbols]

1 回転輪 4 軸受け 5 モーター 8A,9A,10A 軸受け孔 14,15 回転体 14B,15B 軸部 17 ワーク供給装置 21 加熱手段 22 可変モーター(駆動源) 23 円盤(移動盤) 24 ノズル M1,2,3 磁石 W ワーク1 rotating wheel 4 bearing 5 motor 8A, 9A, 10A bearing hole 14,15 rotating body 14B, 15B shaft part 17 work supply device 21 heating means 22 variable motor (drive source) 23 disk (moving plate) 24 nozzle M1 , M 2, M 3 magnet W work

───────────────────────────────────────────────────── フロントページの続き (51)Int.Cl.7 識別記号 FI テーマコート゛(参考) B05D 3/02 B05D 3/02 B 7/24 301 7/24 301A Fターム(参考) 4D075 AA01 AA51 AA63 AA67 AA68 BB14Y BB23X BB32Y BB35Y BB37Y DA11 DB01 DC16 EA02 4F035 AA03 CA01 CB01 CB04 CC04 4F042 AA01 AA13 AA15 AB03 DF03 DF09 DF15 DF28 DF29 DF32 EC03 EC09 ──────────────────────────────────────────────────続 き Continued on the front page (51) Int.Cl. 7 Identification symbol FI Theme coat ゛ (Reference) B05D 3/02 B05D 3/02 B 7/24 301 7/24 301A F-term (Reference) 4D075 AA01 AA51 AA63 AA67 AA68 BB14Y BB23X BB32Y BB35Y BB37Y DA11 DB11 DC16 EA02 4F035 AA03 CA01 CB01 CB04 CC04 4F042 AA01 AA13 AA15 AB03 DF03 DF09 DF15 DF28 DF29 DF32 EC03 EC09

Claims (5)

【特許請求の範囲】[Claims] 【請求項1】駆動源によって移動せしめられる移動盤の
表面にN極とS極とを交互にして磁石を配設し、該表面
に接近して軸受けに支持されている回転体を配置し、該
回転体の該移動盤表面に相対する周面にN極とS極とを
交互にして磁石を配置し、該回転体にワークを接続した
ことを特徴とするワーク回転機構
A magnet disposed alternately on the surface of a moving plate moved by a driving source; a north body and a south pole; and a rotating body supported by a bearing disposed close to the surface. A work rotating mechanism characterized in that magnets are alternately arranged on the peripheral surface of the rotating body facing the moving plate surface with N poles and S poles, and a work is connected to the rotating body.
【請求項2】該回転体先端にはワークを磁着する磁石が
配置されている請求項1に記載のワーク回転機構
2. The work rotating mechanism according to claim 1, wherein a magnet for magnetically attaching the work is disposed at the tip of the rotating body.
【請求項3】該移動盤はモーター軸に取付けられている
円盤である請求項1または2に記載のワーク回転機構
3. The work rotating mechanism according to claim 1, wherein the moving plate is a disk attached to a motor shaft.
【請求項4】該回転体の複数個は回転輪の周縁に設けら
れている複数個の軸受けに支持されている請求項2また
は3に記載のワーク回転機構
4. The work rotating mechanism according to claim 2, wherein a plurality of said rotating bodies are supported by a plurality of bearings provided on a peripheral edge of a rotating wheel.
【請求項5】該回転輪の周囲にはワーク供給装置、ワー
ク加熱位置、およびワーク塗工位置が配置され、該ワー
ク加熱位置にはワーク加熱手段が配置され、該ワーク塗
工位置にはモーター軸に取付けられている該円盤が配置
され、更に該回転軸先端に磁着されているワークに粉体
塗料を吹付けるノズルが配置され、該塗工位置において
該ワークは該回転軸を介して回転しつゝノズルから粉体
塗料が吹付けられることを特徴とするワーク塗工装置
5. A work supply device, a work heating position, and a work coating position are arranged around the rotating wheel, a work heating means is arranged at the work heating position, and a motor is arranged at the work coating position. The disk attached to the shaft is arranged, and a nozzle for spraying powder paint on the work magnetically attached to the tip of the rotating shaft is further arranged. At the coating position, the work is moved through the rotating shaft. Work coating apparatus characterized in that powder coating is sprayed from a rotating nozzle
JP2001154343A 2001-05-23 2001-05-23 Work rotating apparatus and work painting device Withdrawn JP2002346443A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2001154343A JP2002346443A (en) 2001-05-23 2001-05-23 Work rotating apparatus and work painting device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2001154343A JP2002346443A (en) 2001-05-23 2001-05-23 Work rotating apparatus and work painting device

Publications (1)

Publication Number Publication Date
JP2002346443A true JP2002346443A (en) 2002-12-03

Family

ID=18998698

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2001154343A Withdrawn JP2002346443A (en) 2001-05-23 2001-05-23 Work rotating apparatus and work painting device

Country Status (1)

Country Link
JP (1) JP2002346443A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008043877A (en) * 2006-08-16 2008-02-28 Nissei Technica:Kk Apparatus for applying locking agent onto screw member
WO2015006345A3 (en) * 2013-07-09 2015-03-19 Nd Industries, Inc. Multi-row magnetic dial for the conveyance of workpieces and related method
CN113523835A (en) * 2021-09-15 2021-10-22 徐州市贾汪区御尚机动车配件有限公司 Compensation assistance type medium movable automobile seat pressure lifting platform
CN118023024A (en) * 2024-04-12 2024-05-14 江苏圣欣不锈钢制品有限公司 Stainless steel pipeline continuous spraying device

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008043877A (en) * 2006-08-16 2008-02-28 Nissei Technica:Kk Apparatus for applying locking agent onto screw member
WO2015006345A3 (en) * 2013-07-09 2015-03-19 Nd Industries, Inc. Multi-row magnetic dial for the conveyance of workpieces and related method
US9260251B2 (en) 2013-07-09 2016-02-16 Nd Industries, Inc. Multi-row magnetic dial for the conveyance of workpieces and related method
CN113523835A (en) * 2021-09-15 2021-10-22 徐州市贾汪区御尚机动车配件有限公司 Compensation assistance type medium movable automobile seat pressure lifting platform
CN118023024A (en) * 2024-04-12 2024-05-14 江苏圣欣不锈钢制品有限公司 Stainless steel pipeline continuous spraying device

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Effective date: 20080805