JP3222248U - Antistatic vacuum cleaner - Google Patents
Antistatic vacuum cleaner Download PDFInfo
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- JP3222248U JP3222248U JP2019001634U JP2019001634U JP3222248U JP 3222248 U JP3222248 U JP 3222248U JP 2019001634 U JP2019001634 U JP 2019001634U JP 2019001634 U JP2019001634 U JP 2019001634U JP 3222248 U JP3222248 U JP 3222248U
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- 230000003068 static effect Effects 0.000 claims abstract description 40
- 230000005611 electricity Effects 0.000 claims abstract description 39
- 239000000428 dust Substances 0.000 claims abstract description 30
- 239000002184 metal Substances 0.000 claims abstract description 22
- 229910052751 metal Inorganic materials 0.000 claims abstract description 22
- 239000004020 conductor Substances 0.000 claims abstract description 19
- 229910000831 Steel Inorganic materials 0.000 claims description 8
- 239000010959 steel Substances 0.000 claims description 8
- 239000004433 Thermoplastic polyurethane Substances 0.000 claims description 7
- 229920002803 thermoplastic polyurethane Polymers 0.000 claims description 7
- 229920001971 elastomer Polymers 0.000 claims description 3
- 239000000806 elastomer Substances 0.000 claims description 3
- 239000012535 impurity Substances 0.000 claims description 3
- 238000004891 communication Methods 0.000 claims description 2
- 238000004519 manufacturing process Methods 0.000 abstract description 2
- WABPQHHGFIMREM-UHFFFAOYSA-N lead(0) Chemical compound [Pb] WABPQHHGFIMREM-UHFFFAOYSA-N 0.000 description 3
- 238000000034 method Methods 0.000 description 2
- 102220485745 Protein CIP2A_K75A_mutation Human genes 0.000 description 1
- 230000002411 adverse Effects 0.000 description 1
- 238000002788 crimping Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- PCHJSUWPFVWCPO-UHFFFAOYSA-N gold Chemical compound [Au] PCHJSUWPFVWCPO-UHFFFAOYSA-N 0.000 description 1
- 239000010931 gold Substances 0.000 description 1
- 229910052737 gold Inorganic materials 0.000 description 1
- 239000007787 solid Substances 0.000 description 1
- 238000003466 welding Methods 0.000 description 1
Landscapes
- Electric Vacuum Cleaner (AREA)
- Elimination Of Static Electricity (AREA)
Abstract
【課題】非金属導電性材料でハンドルを製作することにより、握り心地、製品の見た目と安全性に影響を与えることなくハンドルと人体の接触面積を増加し、静電気の伝導効率を確保した静電気防止掃除機を提供する。【解決手段】本体100を含み、本体に吸塵部と、モータ500と、集塵ケースとのパーツが設けられ、吸塵部はモータに設けられる集塵ケースと連通し、モータにハンドル110が設けられ、本体におけるパーツは少なくとも1つの静電気発生部を形成している。ハンドルは少なくとも一部非金属導電性材料からなり、且つ電気伝導部材を介して少なくとも1つの静電気発生部と接続される。ハンドルは、ハンドル本体と、ハンドル本体の内側及び/または外側を被覆し、且つ非金属導電性材料からなる導電層とを含む。吸塵部は、金属延長管300と床ブラシ200とを含む。【選択図】図1[PROBLEMS] To increase the contact area between the handle and the human body without affecting the grip comfort, the appearance and safety of the product by manufacturing the handle with a non-metallic conductive material, and preventing static electricity that ensures the efficiency of static electricity conduction. Provide a vacuum cleaner. A part including a main body, a main part is provided with a dust collecting part, a motor, and a dust collecting case. The dust sucking part communicates with a dust collecting case provided on the motor, and a handle is provided on the motor. The parts in the body form at least one static electricity generator. The handle is made of at least a part of a non-metallic conductive material, and is connected to at least one static electricity generator through an electrically conductive member. The handle includes a handle body and a conductive layer covering the inside and / or the outside of the handle body and made of a nonmetallic conductive material. The dust suction unit includes a metal extension pipe 300 and a floor brush 200. [Selected figure] Figure 1
Description
本願実用新案は、静電気防止掃除機に関し、家庭電化製品の製造技術分野に属する。 The present utility model relates to an antistatic vacuum cleaner and belongs to the field of manufacturing technology of home appliances.
従来、掃除機を使用する間に静電気が発生する問題があり、静電気は掃除機内部の電気回路に悪影響を与えるだけでなく、静電気が蓄積すると、使用者が手で触れたら痺れて痛みを感じることもある。市場には現在、静電気対策として、掃除機の金属管とハンドルの間に別途リード線を設けることで、発生した静電気を、リード線を介してハンドル上の金属リングに伝導し、そして金属リングと人体との接触により静電気を地球へ誘導するという方法がある。これに関しては、中国実用新案第203000811号が挙げられる。それは、少なくとも一部露出しており、且つ金属延長管ともワイヤホースとも電気的に接続された鋼片を含む掃除機用静電気防止風路を開示した。これによって理論的には静電気の解消を実現できるが、鋼片と人体との接触面積が小さいので、使用者が実際に使うときに、鋼片と人体との接触効果が満足できず、静電気現象が解消されていないままである。 Conventionally, there is a problem that static electricity is generated during use of the vacuum cleaner, and the static electricity not only adversely affects the electric circuit inside the vacuum cleaner, but when static electricity is accumulated, the user feels numb and feel pain when touched by the hand Sometimes. At present, as a measure against static electricity, by providing a separate lead wire between the metal tube and the handle of the vacuum cleaner, the generated static electricity is conducted to the metal ring on the handle through the lead wire, and with the metal ring There is a method of introducing static electricity to the earth by contact with the human body. In this regard, Chinese Utility Model No. 203000811 can be mentioned. It disclosed a vacuum cleaner antistatic air path comprising a steel strip at least partially exposed and electrically connected to both the metal extension tube and the wire hose. Although this theoretically makes it possible to eliminate static electricity, the contact area between the steel billet and the human body is small, so when the user actually uses it, the contact effect between the steel billet and the human body can not be satisfied, and the electrostatic phenomenon Remains unresolved.
本願実用新案は、上記の従来技術の欠点を解消するために、静電気防止掃除機を提供することを目的としてなされるものである。非金属導電性材料でハンドルを製作することにより、握り心地、製品の見た目と安全性に影響を与えることなくハンドルと人体の接触面積を増加し、静電気の伝導効率を確保し、従来技術における金属リングよりも効果的に静電気を伝導できる。 The present utility model is made for the purpose of providing an antistatic vacuum cleaner in order to eliminate the above-mentioned drawbacks of the prior art. By making the handle out of non-metallic conductive material, the contact area between the handle and the human body can be increased without affecting the grip comfort, the appearance and safety of the product, and the conductive efficiency of static electricity can be secured. It can conduct static electricity more effectively than a ring.
本願実用新案が、上記の目的を達成するために採用する技術的解決手段は以下のとおりである。 The technical solutions adopted by the present utility model to achieve the above-mentioned purpose are as follows.
本願実用新案は、静電気防止掃除機を提供する。本体を含み、前記本体に吸塵部と、モータと、集塵ケースとのパーツが設けられ、前記吸塵部はモータに設けられる集塵ケースと連通し、前記モータにハンドルが設けられる。前記本体におけるパーツは少なくとも1つの静電気発生部を形成し、前記ハンドルは少なくとも一部非金属導電性材料からなり、且つ電気伝導部材を介して少なくとも1つの静電気発生部と接続される。 The present utility model provides an antistatic vacuum cleaner. It includes a main body, and the main body is provided with parts of a dust collecting part, a motor and a dust collecting case, the dust collecting part is in communication with the dust collecting case provided in the motor, and a handle is provided on the motor. The parts in the body form at least one static electricity generator, and the handle is at least partially made of a nonmetallic conductive material and is connected to the at least one static electricity generator via an electrically conductive member.
好ましくは、前記ハンドルは、ハンドル本体と、前記ハンドル本体の内側及び/または外側を被覆し、且つ前記非金属導電性材料からなる導電層とを含む。 Preferably, the handle includes a handle body, and a conductive layer covering the inside and / or the outside of the handle body and made of the nonmetallic conductive material.
好ましくは、前記非金属導電性材料は、金属屑など導電性不純物を加えた熱可塑性ポリウレタンエラストマーである。 Preferably, the non-metallic conductive material is a thermoplastic polyurethane elastomer to which conductive impurities such as metal scraps have been added.
好ましくは、前記電気伝導部材は、ワイヤ、鋼バーまたは鋼片である。 Preferably, the electrically conductive member is a wire, a steel bar or a billet.
コストを節約するために、前記本体内にバッテリパックを設け、前記バッテリパックは給電回路を介して静電気防止掃除機に給電し、上記電気伝導部材は給電回路である。 In order to save costs, a battery pack is provided in the main body, the battery pack supplies power to the antistatic cleaner through a power supply circuit, and the electrically conductive member is a power supply circuit.
コストの追加を避けるために、前記給電回路と少なくとも1つの静電気発生部は第1のワイヤを介して電気的に接続され、前記給電回路とハンドルは第2のワイヤを介して電気的に接続される。 In order to avoid additional costs, the feed circuit and the at least one static electricity generator are electrically connected via the first wire, and the feed circuit and the handle are electrically connected via the second wire. Ru.
取付けやすくするために、前記第1のワイヤの両端を環状に折り曲げて給電回路に嵌設し、第1のワイヤの中間部を折り曲げて突起部を形成し、前記突起部は少なくとも1つの静電気発生部と接触する。前記第2のワイヤの一端が給電回路と接続され、他端が接続端で、ねじでハンドル内に固定される。 In order to facilitate attachment, both ends of the first wire are bent in an annular shape and fitted into the feed circuit, and the middle portion of the first wire is bent to form a protrusion, and the protrusion generates at least one static electricity Contact with the department. One end of the second wire is connected to the feed circuit and the other end is fixed at the connection end with a screw in the handle.
好ましくは、前記吸塵部は、金属延長管と、床ブラシとを含み、前記金属延長管の一端がホースを介して床ブラシと接続される。 Preferably, the dust collecting unit includes a metal extension pipe and a floor brush, and one end of the metal extension pipe is connected to the floor brush via a hose.
上記から明らかなように、本願実用新案は、非金属導電性材料でハンドルを製作することにより、握り心地、製品の見た目と安全性に影響を与えることなくハンドルと人体の接触面積を増加し、静電気の伝導効率を確保し、従来技術における金属リングよりも効果的に静電気を伝導できる。 As apparent from the above, the utility model of the present invention increases the contact area between the handle and the human body without affecting the grip feeling, the appearance and the safety of the product, by producing the handle with a nonmetallic conductive material. The electrostatic conduction efficiency is ensured, and the electrostatic can be conducted more effectively than the metal ring in the prior art.
次に、図面と具体的な実施例を踏まえて、本願実用新案の技術的解決手段について詳しく説明する。
図1は、本願実用新案の静電気防止掃除機の構造を示している。同図によると、本願実用新案の静電気防止掃除機は本体100と、ハンドル110とを含み、静電気防止掃除機の動作時は、使用者がハンドル110を握りながら操作し、吸塵動作を行わせる。本体100には吸塵部と、モータ500と、集塵ケースとのパーツが設けられ、前記吸塵部はモータに設けられる集塵ケースと連通し、ハンドル110がモータ500に設けられる。モータ500にはさらに真空モータが設けられ、前記吸塵部に回転ブラシの回転を駆動する回転ブラシモータが設けられる。本願実用新案の静電気防止掃除機は動作時に、電源が給電回路400を介して回転ブラシモータ及び真空モータなどの装置に給電し、ホコリなどを含む気流が吸塵部から吸い込まれたら、集塵ケースに入って気体と固体を分離する。前記吸塵部は従来技術によるもので、例えば、吸塵部は床ブラシ200と、金属延長管300とを含んでもよい。金伸管300の一端がホースを介して床ブラシ200と接続されるか、あるいは吸塵部をホースとしてもよいが、本願実用新案は、吸塵部の構造について具体的に限定しない。 FIG. 1 shows the structure of the antistatic vacuum cleaner of the present invention's utility model. According to the figure, the antistatic vacuum cleaner of the present invention includes a main body 100 and a handle 110. When the antistatic vacuum cleaner is in operation, the user holds the handle 110 and operates it to perform a dust collecting operation. The main body 100 is provided with parts of a dust collecting part, a motor 500 and a dust collecting case, and the dust collecting part communicates with the dust collecting case provided in the motor, and a handle 110 is provided on the motor 500. The motor 500 is further provided with a vacuum motor, and the dust collecting unit is provided with a rotating brush motor for driving the rotation of the rotating brush. In operation, the electrostatic vacuum cleaner according to the present invention uses the power supply circuit 400 to supply power to devices such as a rotating brush motor and a vacuum motor via the power supply circuit 400, and if an air flow including dust etc. is absorbed from the dust collection unit Enter to separate gas and solid. The dust collecting unit may be a conventional one. For example, the dust collecting unit may include a floor brush 200 and a metal extension tube 300. One end of the gold extension tube 300 may be connected to the floor brush 200 via a hose, or the dust suction unit may be a hose, but the present invention does not specifically limit the structure of the dust suction unit.
静電気防止掃除機は、動作中にホコリの吸い込みなどにより複数の場所において静電気を生じて蓄積される可能性がある。本願実用新案では、本体100における静電気を生じやすいパーツを静電気発生部として定義し、吸塵部、モータ500及び集塵ケースなどを含んでもよい。静電気の当該掃除機に対する影響を軽減するために、本願実用新案においては、前記静電気発生部とハンドル110は電気伝導部材を介して接続される構成とする。なお、上述した電気伝導部材は、様々な形態を有する。例えば、前記静電気発生部とハンドル110の間にワイヤ、鋼バーや鋼片などを溶接するか、あるいは直接ワイヤの一端を静電気発生部に巻きつけ、他端をハンドル110に巻きつけてもよい。進歩性の発想がない限り、従来技術における電気的接続方法は、いずれも本願実用新案に適用できる。 Antistatic cleaners can generate and accumulate static electricity at multiple locations during operation, such as by dust suction. In the utility model of the present application, a part that easily generates static electricity in the main body 100 may be defined as a static electricity generation unit, and may include a dust collection unit, a motor 500, a dust collection case, and the like. In order to reduce the influence of static electricity on the vacuum cleaner, in the present invention, the static electricity generator and the handle 110 are connected via an electrically conductive member. In addition, the electrically-conductive member mentioned above has various forms. For example, a wire, a steel bar, a steel piece or the like may be welded between the static electricity generating portion and the handle 110, or one end of the wire may be directly wound around the static electricity generating portion and the other end may be wound around the handle 110. Any of the electrical connection methods in the prior art can be applied to the utility model of the present invention unless there is an idea of inventive step.
ハンドル110は、少なくとも一部導電性材料からなり、前記導電性材料は、金属導電性材料でもよければ、非金属導電性材料でもよい。好ましくは、前記非金属導電性材料は、金属屑などの導電性不純物を加えた熱可塑性ポリウレタンエラストマー(導電性TPU)で、その抵抗率は104〜109Ωである。本実施例では、型番TPU(K75A)の導電性TPUを導電性材料とする。導電性TPUは、従来技術における導電金属片に比べて、握り心地、製品の見た目と安全性に影響を与えることなく導電性材料と人体の接触面積を増加し、静電気の伝導効率を確保できる。具体的には、ハンドル110は、ハンドル本体と、前記ハンドル本体の内側及び/または外側を被覆し、且つ前記非金属導電性材料からなる導電層とを含むか、あるいはハンドル110全体は非金属導電性材料からなる。 The handle 110 is at least partially made of a conductive material, which may be a metallic conductive material or a non-metallic conductive material. Preferably, the nonmetallic conductive material is a thermoplastic polyurethane elastomer (conductive TPU) to which conductive impurities such as metal scraps are added, and the resistivity is 10 4 to 10 9 Ω. In this embodiment, a conductive TPU of model number TPU (K75A) is used as a conductive material. The conductive TPU can increase the contact area between the conductive material and the human body without affecting the grip feeling, the appearance and the safety of the product, as compared with the conductive metal piece in the prior art, and can ensure the electrostatic conduction efficiency. Specifically, the handle 110 includes a handle body and a conductive layer covering the inside and / or the outside of the handle body and made of the nonmetallic conductive material, or the entire handle 110 is nonmetallic conductive. Consisting of
コストを節約するために、上記電気伝導部材は給電回路400としてもよい。具体的には、本願実用新案の静電気防止掃除機はポータブル式の手持ち掃除機など、バッテリで駆動する掃除機で、すなわちモータ500にはバッテリパック120が設けられ、バッテリパック120は給電回路400を介して静電気防止掃除機に給電する。静電気防止掃除機の動作電圧は安全電圧に設定される。例えば、本実施例では22.2Vの電圧を動作電圧としてもよい。すなわち静電気防止掃除機は、6本の3.7Vバッテリによって給電される。給電回路の人体に対する影響及び静電気の当該掃除機内の電子素子に対する影響を解消するために、前記静電気発生部及びハンドル110の給電回路400における接点の間に負荷を設けない。つまり、前記静電気発生部及びハンドル110の給電回路400における接点は、同一のリード線に配置されている。 The electrically conductive member may be a feed circuit 400 to save cost. Specifically, the antistatic vacuum cleaner of the present invention is a battery-operated vacuum cleaner such as a portable hand-held cleaner, that is, the motor 500 is provided with the battery pack 120, and the battery pack 120 is connected to the power supply circuit 400. Power is supplied to the antistatic vacuum cleaner via The operating voltage of the antistatic vacuum cleaner is set to a safe voltage. For example, in the present embodiment, a voltage of 22.2 V may be used as the operating voltage. That is, the antistatic cleaner is powered by six 3.7 V batteries. In order to eliminate the influence of the feeding circuit on the human body and the influence of static electricity on the electronic elements in the vacuum cleaner, no load is provided between the static electricity generator and the contacts in the feeding circuit 400 of the handle 110. That is, the static electricity generating portion and the contacts in the power supply circuit 400 of the handle 110 are disposed on the same lead wire.
続いて金属延長管300とハンドル110が給電回路400を介して電気的に接続されることを例に説明する。無論、その他の静電気発生部も同様にハンドル110と電気的に接続されてもよい。本願実用新案では、ハンドル110と電気的に接続される静電気発生部のタイプについて特に限定せず、当業者は、静電気発生部のうち少なくとも一つがハンドル110と電気的に接続されているという前提において、実際のニーズに応じて設計すればよい。 Subsequently, it will be described by way of example that the metal extension pipe 300 and the handle 110 are electrically connected via the feed circuit 400. Of course, other static electricity generating parts may be electrically connected to the handle 110 as well. The utility model of the present invention does not particularly limit the type of the static electricity generation unit electrically connected to the handle 110, and those skilled in the art presuppose that at least one of the static electricity generation units is electrically connected to the handle 110. Design according to your actual needs.
配線を行いやすくするために、静電気防止掃除機に給電回路400を固定する凹溝310、あるいは係止具などの固定パーツを設ける。給電回路400は、凹溝310や係止具などで静電気防止掃除機内に固定される。係止具を用いる場合、まず係止具を給電回路400の配線経路に取り付け、そして配線時に給電回路400を対応する係止具内に係入させる。図2は、図1の箇所Aの拡大図で、図3は、同箇所Bの拡大図である。図1、図2及び図3に示すように、本実施例では、金属延長管300内に凹溝310が設けられており、モータ500のバッテリパック120と電気的に接続された給電回路400が、凹溝310を介して床ブラシ200上の回転ブラシモータと電気的に接続されている。 In order to facilitate the wiring, a fixing groove such as a concave groove 310 for fixing the power supply circuit 400 to the antistatic vacuum cleaner or a fixing part is provided. The feed circuit 400 is fixed in the anti-static vacuum cleaner by the recessed groove 310 or a locking tool. When the fastener is used, the fastener is first attached to the wiring path of the feed circuit 400, and at the time of wiring, the feed circuit 400 is engaged in the corresponding fastener. FIG. 2 is an enlarged view of a point A in FIG. 1 and FIG. 3 is an enlarged view of the point B in FIG. As shown in FIGS. 1, 2 and 3, in the present embodiment, the metal extension pipe 300 is provided with the concave groove 310, and the feeder circuit 400 electrically connected to the battery pack 120 of the motor 500 is provided. , And is electrically connected to the rotating brush motor on the floor brush 200 via the recessed groove 310.
本実施例では、給電回路400及び金属延長管300は、いずれも単独のパーツとして製造されているため、コストの追加を避けるために、金属延長管300と給電回路400は第1のワイヤ410を介して電気的に接続され、給電回路400とハンドル110は第2のワイヤ420を介して電気的に接続されており、上述したワイヤは、圧着や溶接などにより上記パーツを接続させてもよい。 In the present embodiment, since the feed circuit 400 and the metal extension tube 300 are both manufactured as a single part, the metal extension tube 300 and the feed circuit 400 are connected to the first wire 410 in order to avoid additional cost. The feed circuit 400 and the handle 110 are electrically connected via the second wire 420, and the above-described wire may connect the parts by crimping, welding, or the like.
具体的には、第1のワイヤ410の両端を環状に折り曲げ、給電回路400に嵌設し、第1のワイヤ410の中間部を折り曲げて突起部を形成し、前記突起部が金属延長管300と接触する。第2のワイヤ420の一端が給電回路400と接続し、他端が接続端(例えば、ワイヤエンドなど)で、ねじでハンドル110内に固定され、上記ワイヤの構造及その接続形態は、柔軟性が高く取り付けやすい。 Specifically, both ends of the first wire 410 are bent in an annular shape and fitted in the feeding circuit 400, and the middle portion of the first wire 410 is bent to form a protrusion, and the protrusion is a metal extension tube 300 Contact with One end of the second wire 420 is connected to the feed circuit 400, and the other end is fixed by a screw at the connection end (for example, wire end etc.) with a screw in the handle 110, and the structure of the wire and its connection form are flexible Is high and easy to attach.
本実施例では、静電気防止掃除機の動作時に金属延長管300に静電気が生じる。金属延長管300とハンドル110は電気的に接続されているため、前記静電気が給電回路400に沿ってハンドル110に伝導されて、そして人体を経由して地球に誘導される。 In the present embodiment, static electricity is generated in the metal extension tube 300 during operation of the antistatic vacuum cleaner. Since the metal extension tube 300 and the handle 110 are electrically connected, the static electricity is conducted along the feeding circuit 400 to the handle 110 and is induced to the earth via the human body.
上記から明らかなように、本願実用新案の静電気防止掃除機では、静電気の解消という目的を達成するために、非金属導電性材料でハンドルを製作することにより、握り心地、製品の見た目と安全性に影響を与えることなくハンドルと人体の接触面積を増加し、静電気の伝導効率を確保し、従来技術における金属リングよりも効果的に静電気を伝導できる。
As apparent from the above, in the antistatic vacuum cleaner of the present invention utility model, the handle is made of a nonmetallic conductive material in order to achieve the purpose of eliminating static electricity, so that the grip comfort, the appearance and the safety of the product The contact area between the handle and the human body can be increased without affecting the static electricity conduction efficiency, and static electricity can be conducted more effectively than the metal ring in the prior art.
Claims (8)
前記ハンドルは少なくとも一部非金属導電性材料からなり、且つ電気伝導部材を介して少なくとも1つの静電気発生部と接続されることを特徴とする静電気防止掃除機。 Including a main body (100), the main body is provided with parts of a dust collecting part, a motor (500) and a dust collecting case, the dust collecting part is in communication with the dust collecting case provided on the motor, and a handle ( 110), in which parts in said body form at least one static electricity generator, in an antistatic vacuum cleaner,
The electrostatic vacuum cleaner according to claim 1, wherein the handle is at least partially made of a nonmetallic conductive material and is connected to at least one static electricity generator via an electrically conductive member.
The dust collecting unit includes a metal extension pipe (300) and a floor brush (200), wherein one end of the metal extension pipe is connected to the floor brush through a hose. Antistatic vacuum cleaner.
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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WO2022148343A1 (en) * | 2021-01-06 | 2022-07-14 | Globe (jiangsu) Co., Ltd. | Handheld vacuum cleaner and vacuum cleaner brush assembly |
JP2022144047A (en) * | 2021-03-18 | 2022-10-03 | 三菱電機株式会社 | Vacuum cleaner and rotary brush |
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Cited By (2)
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WO2022148343A1 (en) * | 2021-01-06 | 2022-07-14 | Globe (jiangsu) Co., Ltd. | Handheld vacuum cleaner and vacuum cleaner brush assembly |
JP2022144047A (en) * | 2021-03-18 | 2022-10-03 | 三菱電機株式会社 | Vacuum cleaner and rotary brush |
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