vacuum cleaner

By arranging the vacuum cleaner components in a straight line and angling the suction port, the vacuum cleaner achieves miniaturization while maintaining stability and suction power, enhancing usability and cleaning efficiency.

JP7846577B2Active Publication Date: 2026-04-15HITACHI GLOBAL LIFE SOLUTIONS INC
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2022-07-05
Publication Date
2026-04-15

AI Technical Summary

Technical Problem

The existing electric vacuum cleaners are not designed to minimize their size in the short side direction due to the non-linear arrangement of components, which hinders miniaturization.

Method used

The vacuum cleaner components, including the dust collector, motor, and battery, are arranged in a straight line along the longitudinal direction, with the battery unit supported on horizontal legs and the suction port angled upwards, allowing for a compact design.

Benefits of technology

This configuration enables a smaller vacuum cleaner that is stable and maintains high suction power, with improved usability and maneuverability in various cleaning modes.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

To provide a vacuum cleaner that can be made smaller. [Solution] The electric vacuum cleaner 100 of the present invention comprises a vacuum cleaner body 1 having a main body case, an electric blower 40 housed in the main body case, a dust collecting device 2 connected to the suction side of the electric blower 40, a battery section 3 detachably attached to the main body case and storing the power consumed to drive the electric blower 40, and three legs 2d, 3n, 19a.
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Description

Technical Field

[0005] , ,

[0001] The present invention relates to an electric vacuum cleaner.

Background Art

[0002] As the background art of this technical field, there is Japanese Patent Application Laid-Open No. 2016-131795 (Patent Document 1). This publication describes that "an electric vacuum cleaner includes a vacuum cleaner body having a main body connection port, a storage stand for supporting and storing the vacuum cleaner body, and a charging path provided in the storage stand for charging the secondary battery of the vacuum cleaner body in a state where the vacuum cleaner body is stored in the storage stand. The storage stand includes a support portion for supporting the vacuum cleaner body with the main body connection port facing downward, a recess having a bottom plate facing the main body connection port in a state where the vacuum cleaner body is supported by the support portion, and a side wall portion having a notch for opening the recess to the side of the storage stand to ensure visibility." (See the abstract).

Prior Art Documents

Patent Documents

[0003] s

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0004] In the electric vacuum cleaner disclosed in the above Patent Document 1, the electric blower, the dust separation and collection unit, and the secondary battery are not arranged in a straight line in the longitudinal direction. Therefore, there is a problem that the size of the electric vacuum cleaner in the short side direction becomes large, and the miniaturization of the electric vacuum cleaner cannot be achieved. Therefore, an object of the present invention is to provide an electric vacuum cleaner that can be miniaturized.

Means for Solving the Problems

[0005] To solve the above problems, the present invention provides a vacuum cleaner body, an electric blower housed in the vacuum cleaner body, a cylindrical dust collector connected to the suction side of the electric blower, and a battery unit detachably attached to the vacuum cleaner body for storing the power consumed to drive the electric blower. Having , the battery unit and the vacuum cleaner body teeth, At the bottom edge of each Legs The dust collector, the motor of the electric blower, and the battery unit are provided. The vacuum cleaner body When the two legs are arranged in a straight line along the longitudinal direction and protrude downward, and the battery unit is attached to the vacuum cleaner body In a state in which the battery unit is supported on a horizontal surface by the legs of the vacuum cleaner body, the vacuum cleaner body The tip of the suction port is characterized by being angled upwards. [Effects of the Invention]

[0006] According to the present invention, it is possible to provide a vacuum cleaner that can be made smaller. Other issues, configurations, and effects not mentioned above will be clarified by the following description of the embodiments. [Brief explanation of the drawing]

[0007] [Figure 1] This is a perspective view showing an electric vacuum cleaner according to one embodiment of the present invention, stored in a support stand. [Figure 2] This is an exploded view of an electric vacuum cleaner according to one embodiment of the present invention. [Figure 3] Figure 2 is a side view of the vacuum cleaner as seen from the left. [Figure 4] This is a perspective view of a vacuum cleaner according to one embodiment of the present invention. [Figure 5] This is a plan view of an electric vacuum cleaner according to one embodiment of the present invention. [Figure 6] This is a cross-sectional view taken along the line VI-VI in Figure 5. [Figure 7] This is an enlarged cross-sectional view of the area around the release button of an electric vacuum cleaner according to one embodiment of the present invention. [Figure 8] This is an enlarged cross-sectional view of the area around the release button of an electric vacuum cleaner according to one embodiment of the present invention. [Figure 9]This is a side view of an electric vacuum cleaner according to one embodiment of the present invention, seen from the right side. [Figure 10] This is a side view of a vacuum cleaner according to one embodiment of the present invention, seen from the left side. [Figure 11] Figure 10 shows a cross-sectional view taken along the line XI-XI. [Figure 12] This is a cross-sectional view taken along line XII-XII in Figure 10. [Figure 13] This is a plan view of an electric vacuum cleaner according to one embodiment of the present invention with accessories connected. [Figure 14] This is a perspective view showing a support stand for an electric vacuum cleaner according to one embodiment of the present invention. [Figure 15] This is a side view showing an electric vacuum cleaner and support stand according to one embodiment of the present invention. [Figure 16] This is a diagram illustrating the usage of a vacuum cleaner according to one embodiment of the present invention, when cleaning a floor surface with the vacuum cleaner in a stick configuration. [Figure 17] This is a diagram illustrating the usage of a vacuum cleaner according to one embodiment of the present invention, specifically when cleaning high places with the stick-type vacuum cleaner. [Modes for carrying out the invention]

[0008] Hereinafter, embodiments for carrying out the present invention (hereinafter referred to as "embodiments") will be described in detail with reference to the drawings as appropriate. Figure 1 is a perspective view showing the vacuum cleaner of this embodiment stored in its support base. As shown in Fig. 1, the vacuum cleaner 100 can be used in various forms such as a handy state and a stick state for cleaning. The support base 70 for storing the vacuum cleaner 100 stores it in a stick state with an extension tube 300 (accessory) and a standard suction nozzle 400 (accessory) connected to the vacuum cleaner 100, and is composed of a base portion 71 and a stand portion 72. Further, the vacuum cleaner 100 can be used by connecting various accessories such as a small suction nozzle (accessory), a broom-shaped suction nozzle (accessory), and an extension hose (accessory) (not shown in any figure). The standard suction nozzle 400 is of a power brush type in which a brush rotates by a motor.

[0009] Fig. 2 is an exploded view of the vacuum cleaner of the present embodiment. In the drawings below Fig. 2, the front, rear, left, right, up, and down directions as viewed from the cleaner main body 1 are appropriately shown. As shown in Fig. 2, the vacuum cleaner 100 is composed of a cleaner main body 1, a dust case 2 (dust collection device), a storage battery 3, and an airtight holding member 90.

[0010] The cleaner main body 1 is composed of a main body portion 10, a motor case portion 11, and a handle portion 12.

[0011] The main body portion 10 is formed with a connection port 10a (suction port) to which an extension tube 300, a standard suction nozzle 400 (see Fig. 1), etc. are connected. This connection port 10a is molded with the same resin as the main body portion 10, the motor case portion 11, the handle portion 12, etc. Further, the connection port 10a has a substantially circular opening and is formed facing forward. Also, various accessories such as the above-mentioned extension tube 300, standard suction nozzle 400, small suction nozzle (not shown), broom-shaped suction nozzle (not shown), etc. (hereinafter sometimes collectively referred to as attachments) can be connected to the connection port 10a. The connection port 10a incorporates terminals (not shown) that are electrically connected to a circuit board 50 (see Fig. 6). When an accessory driven by a motor such as the standard suction nozzle 400 is connected, the brush rotates by the electrically connected motor.

[0012] Furthermore, the main body 10 is equipped with a detachable dust case 2 and an inlet pipe 14 (see Figure 3) that sends air containing dust and debris, sucked in from the connection port 10a, into the dust case 2.

[0013] The motor case section 11 contains an electric blower 40 (see Figure 6) and a circuit board 50 (see Figure 6). Furthermore, a circular intake port (not shown) is formed on the front of the motor case section 11, into which clean air, after dust collection by the dust case 2, is drawn in.

[0014] The handle portion 12 is provided on the rear side of the main body portion 10 and has a grip portion 12a that is formed in a substantially L shape. This grip portion 12a has a first grip portion 12a1 that extends linearly so as to the rear in the front-rear direction, and a second grip portion 12a2 that extends linearly in a substantially vertical direction. The second grip portion 12a2 extends substantially downward from the rear end of the first grip portion 12a1. The first grip portion 12a1 is located in front of the second grip portion 12a2. The second grip portion 12a2 is slightly inclined so that its upper part faces forward in the vertical direction. The first grip portion 12a1 and the second grip portion 12a2 are formed in a substantially rod shape and are continuous. By configuring both the first grip portion 12a1 and the second grip portion 12a2 in a linear shape in this way, it becomes easier for the user to recognize the position of the grip. Furthermore, since the first gripping part 12a1 and the second gripping part 12a2 are connected in such a way that they bend at an angle close to a right angle, it is difficult for the hand to slip towards the second gripping part 12a2 when gripping the first gripping part 12a1, and conversely, it is difficult for the hand to slip towards the first gripping part 12a1 when gripping the second gripping part 12a2. The first gripping portion 12a1 extends in a manner that gradually increases in height towards the rear in the front-rear direction. This makes it easier to insert a hand into the gap 12c (see Figure 6).

[0015] Furthermore, an operation button 12b is provided on the upper surface of the first gripping portion 12a1 of the handle portion 12. The operation button 12b consists of three buttons, for example, "Strong," "Standard," and "Off."

[0016] The front and rear upper ends of the main body 10 are provided with release buttons 18a and 18b, which are operated when removing accessories such as the extension tube 300. By pressing these release buttons 18a and 18b, the lock between the main body 10 and the accessories is released, allowing the accessories to be removed from the main body 10. The mechanism of the release buttons 18a and 18b will be described later.

[0017] Furthermore, an airtight sealing member 90 can be attached to the front end of the main body 10. This airtight sealing member 90 has a substantially circular cylindrical body 91. This cylindrical body 91 has an elastic part 91a formed in an annular shape from a soft resin at its tip end. The cylindrical body 91 has a connecting part 91b at its base end, which is made of a harder material than the elastic part 91a and can be connected to the main body 10. The cylindrical body 91 is constructed by integrally molding two different members, the elastic part 91a and the connecting part 91b. The elastic part 91a is made of an elastically deformable (flexible) material such as an elastomer. By attaching such an airtight sealing member 90 to the connection port 10a of the vacuum cleaner body 1, the entire tip 90s of the airtight sealing member 90 can be brought into close contact with the floor surface, improving the suction power compared to when it is not in close contact. In addition, by forming the connecting part 91b from a hard material, the airtight sealing member 90 can be attached to the main body 10 in a stable state without falling off.

[0018] In this embodiment, the case in which the elastic part 91a is formed of an elastic material such as an elastomer has been described as an example, but the invention is not limited to this. For example, the entire cylindrical body 91 may be formed of the same material as the connecting part 91b, and the tip of the cylindrical body 91 may be provided with short, electrostatically flocked bristles arranged in an annular shape. Even with such electrostatic flocking, it is possible to bring the tip of the airtight-holding member 90 into close contact with the floor surface, similar to the case with an elastomer, thereby improving the suction force.

[0019] A vertically elongated fitting groove 10b is formed on the outer surface of the connection port 10a of the main body portion 10. One fitting groove 10b is formed on each of the left and right sides. A projection (not shown) is formed at the base end of the connecting portion 91b, which engages with the fitting groove 10b through a recessed and concave fitting to lock it in place.

[0020] Furthermore, the main body 10 may be provided with a light-emitting element above the connection port 10a.

[0021] The battery 3 supplies power to the motor 40a (see Figure 6) of the electric blower 40 that generates suction force, and is composed of a secondary battery such as a lithium-ion or nickel-metal hydride battery. The battery 3 also has a roughly semi-cylindrical case 3a made of synthetic resin, and can be attached to and detached from the main body 10 by sliding the case 3a in the front-to-back direction.

[0022] Figure 3 is a side view of the vacuum cleaner 100 in the state shown in Figure 2, viewed from the left side. As shown in Figure 3, the dust case 2 is a cyclone type and has the function of separating the dust-containing air sucked in from the inlet pipe 14 into dust and air, and collecting the dust. The dust case 2 is positioned in front of the motor case section 11 with its axial direction in the front-to-back direction and has a substantially cylindrical storage section 2a. A substantially rectangular inlet 2b (see Figure 2) connected to the inlet pipe 14 is formed on the top surface (side) of the dust case 2. The dust-containing air flowing into this inlet 2b becomes a swirling flow, centrifugal force acts on the dust, and after being separated into dust and air within the dust case 2, the air with the dust separated is discharged from the rear (back) of the dust case 2.

[0023] Furthermore, a lid 2c, which is opened and closed when disposing of dust accumulated inside the dust case 2, is rotatably supported on the front of the dust case 2 via a hinge portion 2d. In addition, a lid locking mechanism 2e for releasing the lock on the lid 2c is provided on the upper part of the lid 2c. The internal mechanism of the dust case 2 can be constructed based on Japanese Patent Application Publication No. 2016-137165.

[0024] Figure 4 is a perspective view of the vacuum cleaner according to this embodiment. As shown in Figure 4, the vacuum cleaner 100 has a dust case 2 mounted below the main body 10 and in front of the motor case 11. In this case, when the dust case 2 is attached to the vacuum cleaner body 1, the lid lock mechanism 2e is hidden on the side of the vacuum cleaner body 1. This is because if the lid lock mechanism 2e were located on the opposite side (outside), there is a risk that the lid lock mechanism 2e may be released during cleaning. However, by hiding the lid lock mechanism 2e on the side of the vacuum cleaner body 1, malfunctions can be prevented. For example, when cleaning under a sofa or bed in stick mode, the vacuum cleaner body 1 may be brought close to the floor surface horizontally. In this case, if the lid lock mechanism 2e were located on the front side, there is a possibility that it may come into contact with the floor surface and release. The position of the lid lock mechanism 2e and the hinge part 2d is not limited to this, and they may be located on the left or right side of the vacuum cleaner body 1.

[0025] Furthermore, the dust case 2 is equipped with a detachable cleaning brush 2s (see Figures 2 and 3). This cleaning brush 2s is positioned in a location that is difficult to see from the outside when the dust case 2 is attached to the vacuum cleaner body 1. Therefore, it is unlikely to come off during operation, and there is no need to store the cleaning brush 2s separately from the vacuum cleaner 100.

[0026] Figure 5 is a plan view of the vacuum cleaner according to this embodiment. As shown in Figure 5, the connection portion 91b of the airtight sealing member 90 has extension portions 91b1, 91b1 that extend rearward on both the left and right sides. A concave portion 91b2 is formed between the left extension portion 91b1 and the right extension portion 91b1 in a plan view. This concave portion 91b2 fits with the front end portion 10d1 of the projection portion 10d formed on the upper tip surface of the main body portion 10. This allows the airtight sealing member 90 to be positioned in the front-rear and left-right directions relative to the connection port 10a (see Figure 2).

[0027] The inlet pipe 14 formed in the main body 10 extends diagonally to the right and rear, and then extends downwards, connecting to the inlet 2b (see Figure 2) of the dust case 2. This allows a swirling flow to be generated within the containment section 2a of the dust case 2, enabling effective separation of dust by centrifugal force.

[0028] Figure 6 is a cross-sectional view taken along the line VI-VI in Figure 5. As shown in Figure 6, the motor case 11 of the main body 10 houses the electric blower 40. The electric blower 40 is driven by a motor 40a. Also, a circuit board 50 (circuit board) that controls the vacuum cleaner body 1 is housed inside the motor case 11, above the electric blower 40.

[0029] Furthermore, the electric blower 40 and the circuit board 50 are arranged to overlap in the vertical direction. This allows the dimensions of the vacuum cleaner body 1 in the front-to-back direction to be shortened. In addition, the motor case portion 11 of the electric blower 40 is formed to bulge out towards the handle portion 12, which also shortens the dimensions of the main body portion 10 in the front-to-back direction (overall length).

[0030] Furthermore, the electric blower 40 and the circuit board 50 are located below the first gripping portion 12a1 of the handle portion 12. As a result, when the user operates the vacuum cleaner 100 by gripping the first gripping portion 12a1, the center of gravity of the vacuum cleaner 100 is near the bottom of the first gripping portion 12a1. Therefore, when using the vacuum cleaner 100 with the tip facing upwards, the vacuum cleaner 100 can be held stably.

[0031] Furthermore, a gap 12c for inserting a hand is formed between the first gripping portion 12a1 and the upper surface 11c of the motor case portion 11. Also, a gap 12d is formed between the second gripping portion 12a2 and the back surface 11d of the motor case portion 11.

[0032] Furthermore, the thickness T1 of the first gripping portion 12a1 is formed to be thin, while the thickness T2 of the second gripping portion 12a2 is formed to be thicker than the thickness T1. In other words, the first gripping portion 12a1 is thin, and the second gripping portion 12a2 is thick. In this way, when cleaning by gripping the second gripping portion 12a2, increasing the thickness T2 of the second gripping portion 12a2 makes it easier to grip it deeply, and also increases the strength of the second gripping portion 12a2.

[0033] The battery 3 can be made of, for example, a highly energy-efficient lithium-ion battery. The battery 3 is positioned below the second gripping portion 12a2 of the handle portion 12. By placing the battery 3 at the rear end of the vacuum cleaner 100 in this way, the center of gravity of the handle portion 12 is brought closer to the second gripping portion 12a2, making it easier to operate the vacuum cleaner 100 when using it with the tip facing upwards.

[0034] Inside the dust case 2, a filter 5 is housed at the axial rear end of the housing section 2a. This filter 5 is constructed by folding it into a pleated shape, which allows for a larger filter area and reduces pressure loss due to the filter 5.

[0035] Furthermore, filter 5 is composed of, for example, a high-density HEPA filter (High Efficiency Particulate Air Filter). A HEPA filter is an air filter that has a particle collection efficiency of 99.97% or more for particles with a diameter of 0.3 μm at the rated airflow rate, and an initial pressure loss of 245 Pa or less.

[0036] As shown in Figure 6, the dust case 2, motor 40a, and battery 3 are arranged in a straight line along the longitudinal direction (front-to-back direction) of the vacuum cleaner body 1. In particular, the dust case 2 and motor 40a are arranged coaxially along the longitudinal direction (front-to-back direction) of the electric vacuum cleaner 100. The motor 40a and battery 3 require a large space for installation. However, by arranging the motor 40a and battery 3 in a straight line with the dust case 2, the vertical width of the vacuum cleaner 100 can be narrowed, making the vacuum cleaner 100 more compact.

[0037] In Figure 6, arrow F indicates the flow of air drawn into the vacuum cleaner 100. The air drawn into the dust case 2 enters the electric blower 40. This air passes around the motor 40a, cooling it. A portion of the air that has passed through the motor 40a flows through the battery 3, cooling it. The remaining portion of the air that has passed around the motor 40a and the air that has passed through the battery 3 merge at the circuit board 50, cooling the circuit board 50, and is then discharged outside the vacuum cleaner 100 system. In this case, since the battery 3 is positioned directly behind the motor 40a, it is easy to circulate cooling air into the battery 3. This makes it easier to efficiently cool the battery 3.

[0038] Behind the intake pipe 14, a circuit board housing space 50a is provided inside the housing above the motor 40a for housing the circuit board 50. The front of the vacuum cleaner 100 has a certain vertical thickness because the intake pipe 14 must be formed to generate a swirling flow inside the dust case 2. Therefore, even if the housing of the vacuum cleaner 100 is made somewhat vertically thicker to form the circuit board housing space 50a behind it, the overall vertical thickness of the vacuum cleaner 100 will not increase. Thus, by housing the circuit board 50 in the circuit board housing space 50a, there is no need to provide a separate space for housing the circuit board 50, and the increase in the vertical thickness of the vacuum cleaner 100 can be suppressed.

[0039] Furthermore, in this case, the placement position of the circuit board 50 is higher, so the wiring between the circuit board 50 and the connection port 10a and operation button 12b, which are equipped with connection terminals for accessories, can be shortened. As a result, the manufacturing cost of the vacuum cleaner 100 can be reduced by shortening the wiring and improving workability during manufacturing.

[0040] Figures 7 and 8 are enlarged cross-sectional views of the area around the release buttons 18a and 18b. Pressing either release button 18a or 18b will release the attachments such as the extension tube 300 and standard suction nozzle 400 from the vacuum cleaner body 1. Figure 7 shows the state when neither release button 18a nor 18b is pressed. In this state, when release button 18a is pressed, the release button 18a and its base end 18a1 tilt forward and downward. This releases the predetermined locking mechanism, allowing the attachments to be removed from the vacuum cleaner body 1.

[0041] On the other hand, as shown in Figure 8, when the release button 18b is pressed, the release button 18b and its base end 18b1 tilt forward and downward. A long shaft-shaped member 18c is positioned between the base end 18a1 of the release button 18a and the base end 18b1 of the release button 18b. When the base end 18b1 of the release button 18b tilts forward and downward, the base end 18b1 pushes one end of the shaft-shaped member 18c forward. As a result, the shaft-shaped member 18c moves forward, and its other end presses against the base end 18a1 of the release button 18a, causing the release button 18a and its base end 18a1 to tilt forward and downward. As a result, as shown in Figure 8, the predetermined locking mechanism is released, and the airtight retaining member 90 can be removed from the vacuum cleaner body 1.

[0042] By providing a release button 18b in addition to the release button 18a, the user of the vacuum cleaner 100 can remove the accessories from the vacuum cleaner body 1 by operating the release button 18b while holding the first gripping part 12a1.

[0043] Figure 9 is a side view of the vacuum cleaner, seen from the right side. Detachable mechanisms 2g and 19 for attaching and detaching the dust case 2 to the vacuum cleaner body 1 are provided at the lower rear end of the dust case 2 and the lower front end of the vacuum cleaner body 1. That is, when the dust case 2 is attached to the vacuum cleaner body 1, the detachable mechanism 2g and the detachable mechanism 19 are connected by a predetermined mechanism. These detachable mechanisms 2g and 19 extend to the lowest part of the electric vacuum cleaner 100, with the lower end of the detachable mechanism 19 being the lowest part of the electric vacuum cleaner 100, and a leg portion 19a is provided below this detachable mechanism 19. A leg portion 3n is also provided at the rearmost lower end of the storage battery 3.

[0044] When the vacuum cleaner 100 is placed on a horizontal plane F with its underside facing down, heavy components such as the motor 40a and the battery 3 are located at the rear lower part of the vacuum cleaner 100, and the vacuum cleaner 100 is supported on the horizontal plane F by its legs 19a and 3n. At this time, the leg 19a is located at the lowest end of the vacuum cleaner 100, and also at the midpoint of the longitudinal direction of the vacuum cleaner 100, so when the vacuum cleaner 100 is placed on a horizontal plane F, its front faces diagonally upward, as shown in Figure 9. Therefore, the tip of the connection port 10a, which serves as the suction port, also faces diagonally upward. Therefore, the tip 90s of the airtight sealing member 90 also faces diagonally upward. As a result, when the vacuum cleaner 100 is supported on a horizontal plane F, dust remaining inside the connection port 10a and the airtight sealing member 90 is less likely to spill out.

[0045] As shown in Figure 9, the battery 3 can be charged by connecting an AC adapter (not shown) to a terminal t located on the right side of the vacuum cleaner body 1.

[0046] Figure 10 is a side view of the vacuum cleaner of this embodiment, seen from the left side. Figure 11 is a cross-sectional view taken along line XI-XI in Figure 10. In the housing structure of the vacuum cleaner 100, the housing 20 covering the motor 40a and circuit board 50 is a single flame-retardant case. Because the motor 40a and circuit board 50 are not covered by a double or triple housing structure, the vacuum cleaner 100 can be made lighter.

[0047] Figure 12 is a cross-sectional view taken along line XII-XII in Figure 10. As shown in Figure 12, the storage battery 3 is a battery pack in which five single cells 3h are arranged in the case 3a, two at the top and two at the bottom, and one in the center. By orienting the axial direction of the single cells 3h in the front-to-back direction, the width of the storage battery 3 can be made narrower than if the axial direction of the single cells 3h were oriented in the left-to-right direction.

[0048] Furthermore, the case 3a houses the single cell 3h, which is held in place by a holding member 3j made of synthetic resin. This holding member 3j is configured such that a gap 3k is formed between the upper single cell 3h and the lower single cell 3h.

[0049] By forming such a gap 3k, air can flow around each cell 3h, allowing each cell 3h to be effectively cooled.

[0050] Figure 13 is a plan view of the vacuum cleaner with its accessories connected. As shown in Figure 13, the electric vacuum cleaner 100 is configured so that the extension pipe 300 can be connected while the airtight sealing member 90 is connected to the vacuum cleaner body 1. In this way, even with the airtight sealing member 90 connected to the vacuum cleaner body 1, the position of the connection port 10a for connecting the extension pipe 300 does not change. Therefore, the total length L of the vacuum cleaner body 1, extension pipe 300 and standard suction nozzle 400 can be kept short. As a result, the position of the standard suction nozzle 400 is closer to the user's hand, improving maneuverability and ease of use.

[0051] In the electric vacuum cleaner 100 shown in Figure 13, even when the extension tube 300 to which the standard suction nozzle 400 is connected is removed from the stick configuration to convert it to a handheld configuration, the airtight sealing member 90 remains attached to the vacuum cleaner body 1. Therefore, cleaning can be performed with increased suction power.

[0052] In the embodiment shown in Figure 13, the example described is when the extension tube 300 and the standard suction nozzle 400 are connected to the vacuum cleaner 100, but the invention is not limited to this embodiment. For example, the standard suction nozzle 400 can be directly connected to the connection port 10a, allowing the vacuum cleaner 100 to be used as a handheld vacuum cleaner. This improves the airtightness with the floor surface by the airtight sealing member 90, thereby increasing the suction power.

[0053] Thus, with the vacuum cleaner 100, various accessories (attachments) can be attached and detached while the airtight sealing member 90 remains attached to the vacuum cleaner body 1, allowing for quick switching of cleaning modes. Furthermore, since the airtight sealing member 90 can remain attached to the vacuum cleaner body 1, high suction power can be ensured when the vacuum cleaner 100 is in handheld mode with the airtight sealing member 90 attached.

[0054] Figure 14 is a perspective view showing the support stand for the vacuum cleaner. Note that the support stand 70 shown in Figure 14 is in a state with the vacuum cleaner 100 and all accessories (attachments) removed. As shown in Figure 14, the support stand 70 is composed of a base portion 71 and a stand portion 72.

[0055] The base portion 71 has a substantially rectangular mounting surface 71a on which the standard suction nozzle 400 (see Figure 1) is placed. This mounting surface 71a is provided with a locking portion 71a1 that prevents the standard suction nozzle 400 from sliding forward.

[0056] The stand portion 72 extends vertically upward from the stand portion support portion 71b, which is located behind the mounting surface 71a. An engaging portion 72a is provided on the upper front part of the stand portion support portion 71b.

[0057] Figure 15 is a side view showing the vacuum cleaner and its support stand. As shown in Figure 15, the vacuum cleaner 100 is supported on the support base 70 with the extension tube 300 and standard nozzle 400 still connected to the vacuum cleaner body 1. Specifically, a roughly L-shaped hook 301 with its tip facing downwards is provided at the end of the extension tube 300. This hook 301 is then engaged with an engaging portion 72a (Figure 14) provided on the stand portion 72 of the support base 70. The standard nozzle 400 is also locked to a locking portion 71a1 on the mounting surface 71a. In this way, the entire vacuum cleaner 100 can be supported on the support base 70 with the vacuum cleaner body 1 side facing upwards and the standard nozzle 400 side facing downwards.

[0058] In this way, the vacuum cleaner 100 can be placed on the support stand 70 while remaining in its stick configuration, so the next time you want to clean, you can immediately use the vacuum cleaner 100 in its stick configuration.

[0059] Furthermore, the mounting surface 71a of the base portion 71 is formed to extend forward of the extension tube 300. This allows the standard suction nozzle 400 to be supported on the mounting surface 71a when the standard suction nozzle 400 is connected to the extension tube 300, that is, when the extension tube 300 and the standard suction nozzle 400 are connected to the vacuum cleaner body 1 (stick configuration). Thus, the electric vacuum cleaner 100 can be stably supported on the support base 70.

[0060] Figure 16 shows the usage configuration of a stick-type vacuum cleaner when cleaning a floor surface. Figure 16 shows a case where the vacuum cleaner 100 (with the airtight sealing member 90 attached) is connected to the extension tube 300 and the standard suction nozzle 400 to form a stick, and the vacuum cleaner 100 is extended in front of the user to clean the floor. In this case, the user can clean by moving the vacuum cleaner 100 back and forth while gripping the second gripping part 12a2 of the handle part 12. Although not shown, when cleaning the floor with the vacuum cleaner 100 positioned to the left or right of the user, the user can move the vacuum cleaner 100 back and forth while gripping the first gripping part 12a1 of the handle part 12. In this way, the user can change the position of the handle part 12 when cleaning the floor.

[0061] Figure 17 shows how to use a stick-type vacuum cleaner when cleaning high places. By the way, in the case of a vacuum cleaner where the center of gravity is towards the tip when it is in stick form (see Japanese Patent Publication No. 2016-137165), when cleaning a place higher than the floor surface, the user needs to lift the tip of the vacuum cleaner upwards, which can easily put a strain on the wrist.

[0062] Therefore, in this embodiment, as shown in Figure 17, the heavy components of the vacuum cleaner 100, the electric blower 40 (see Figure 6) and the storage battery 3, are located close to the handle 12 (close to the user's hand), so the center of gravity G of the vacuum cleaner 100 is closer to the user's hand. This makes it easier to clean even when the vacuum cleaner 100 is in stick mode and cleaning places higher than the floor surface, improving usability. Although Figure 17 illustrates the example of cleaning stairs, this is also effective when lifting the vacuum cleaner 100 to clean the panel of an air conditioner's indoor unit, etc.

[0063] Furthermore, when using the vacuum cleaner 100 in stick mode, to remove dust remaining in the corners of stairs, the extension tube 300 and standard nozzle 400 are removed from the vacuum cleaner 100 to convert it into a handheld unit. In this case, since the airtight sealing member 90 remains attached to the vacuum cleaner 100, cleaning can be performed with increased suction power, preventing any dust from being left behind. It should be noted that the present invention is not limited to the embodiments described above, and various modifications are included. For example, the embodiments described above are explained in detail to make the present invention easier to understand, and are not necessarily limited to those having all the configurations described. [Explanation of Symbols]

[0064] 1. Vacuum cleaner body 2. Dust case (dust collector) ) 3. Storage battery (battery unit) 3n legs 19a Legs 40 Electric blower 40A motor 100 Electric Vacuum Cleaners F Horizontal plane (horizontal plane)

Claims

[Claim 1] The vacuum cleaner body and The electric blower housed in the vacuum cleaner body, A cylindrical dust collector connected to the suction side of the electric blower, The vacuum cleaner body has a battery unit that is detachably attached to the lower rear part and stores the power consumed to drive the electric blower, The battery unit and the vacuum cleaner body each have legs at their lower ends. The dust collector, the motor of the electric blower, and the battery unit are arranged in a straight line along the longitudinal direction of the vacuum cleaner body. The two legs mentioned above have a shape that protrudes downwards. When the battery unit is attached to the vacuum cleaner body, and is supported horizontally by the legs of the battery unit and the legs of the vacuum cleaner body, the tip of the suction port of the vacuum cleaner body faces diagonally upward. A vacuum cleaner characterized by the following features.

Citation Information

Patent Citations

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