Electric work machine
The electric working machine uses one-way valves to manage liquid flow based on its attitude, addressing the issue of liquid ingress and egress between spaces, thereby protecting electrical components by discharging liquid and preventing ingress.
Patent Information
- Application Number
- JP2022026616
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-02-24
- Publication Date
- 2025-09-22
- Estimated Expiration
- 2042-02-24
AI Technical Summary
Existing electric working machines face issues where liquid can enter the first space from a second space through a communication opening, leading to electrical components being exposed to liquid, and there is no effective mechanism to prevent liquid from infiltrating from the second space into the first space.
The electric working machine incorporates a first one-way valve in the communication opening to discharge liquid from the first space to the second space and a second one-way valve to prevent liquid from entering the first space, with the valves opening and closing based on the machine's attitude, allowing liquid to be discharged or prevented from entering based on the machine's position.
This configuration effectively discharges liquid from the first space to the second space and prevents liquid from entering the first space, protecting electrical components by utilizing the machine's attitude to control valve operation, ensuring efficient liquid management.
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Abstract
Description
[Technical Field]
[0001] The technology disclosed in this specification relates to an electric work machine. [Background technology]
[0002] Patent Document 1 discloses an electric working machine that includes an electric component, a first space in which the electric component is disposed, and a partition wall that separates the first space from a second space different from the first space and has a first communication opening that communicates between the first space and the second space. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] US Patent Application Publication No. 2012 / 66916 Summary of the Invention [Problem to be solved by the invention]
[0004] In the above-described electric operating machine, when liquid is present in the first space, the liquid can be discharged from the first space to the second space through the first communication opening. However, when liquid is present in the second space, the liquid will infiltrate from the second space into the first space through the first communication opening, causing electrical components to come into contact with the liquid. This specification provides a technology that can discharge liquid from the first space to the second space and prevent liquid from infiltrating from the second space into the first space. [Means for solving the problem]
[0005] This specification discloses an electric working machine including: an electric component; a first space in which the electric component is disposed; a partition wall that separates the first space from a second space different from the first space and has a first communication opening that connects the first space to the second space; and a first one-way valve disposed in the first communication opening.
[0006] According to the above configuration, by opening the first one-way valve when liquid is in the first space, the liquid can be discharged from the first space to the second space via the first one-way valve. Furthermore, by closing the first one-way valve when liquid is in the second space, the liquid can be prevented from entering the first space from the second space via the first one-way valve. [Brief explanation of the drawings]
[0007] [Figure 1] 1 is a perspective view of an electric working machine 2 according to an embodiment, as viewed from the front right side. [Figure 2] 1 is a perspective view of an electric working machine 2 according to an embodiment, as viewed from the rear left side. [Figure 3] 1 is a cross-sectional view of an electric operating machine 2 according to an embodiment of the present invention. [Figure 4] 2 is a cross-sectional view of the vicinity of a sprocket 54 of the electric working machine 2 of the embodiment. [Figure 5] 2 is an exploded perspective view of a lower portion near the rear end of a right wall 22e of a main body housing 22 in the electric working machine 2 of the embodiment. FIG. [Figure 6] 2 is an exploded perspective view of a lower portion near the rear end of a left wall 22d of a main body housing 22 in the electric working machine 2 of the embodiment. FIG. [Figure 7] 2 is a cross-sectional view of the electric operating machine 2 according to the embodiment, showing the vicinity of a one-way valve 90 in a state where a communication opening 78 is open. [Figure 8] 2 is a cross-sectional view of the electric operating machine 2 according to the embodiment, showing the vicinity of a one-way valve 90 in a state where a communication opening 78 is closed. [Figure 9] 2 is a cross-sectional view of the electric operating machine 2 of the embodiment in a first position. [Figure 10] 4 is a cross-sectional view of the electric operating machine 2 of the embodiment in a second position. FIG. DETAILED DESCRIPTION OF THE INVENTION
[0008] Representative, non-limiting embodiments of the present invention are described in detail below with reference to the drawings. This detailed description is intended simply to provide those skilled in the art with details for implementing preferred embodiments of the present invention, and is not intended to limit the scope of the present invention. Furthermore, the additional features and inventions disclosed can be used separately or in conjunction with other features and inventions to provide further improved electric power implements.
[0009] Furthermore, the combinations of features and steps disclosed in the following detailed description are not essential to practicing the invention in its broadest sense, but are described solely to specifically illustrate exemplary embodiments of the invention. Furthermore, the various features of the following exemplary embodiments and those described in the claims do not necessarily have to be combined in the exact embodiments described herein or in the exact order listed to provide additional and useful embodiments of the invention.
[0010] All features described in this specification and / or claims are intended to be disclosed individually and independently of one another as limitations to the specific features described in the original disclosure and claims, apart from the configuration of features described in the examples and / or claims. Furthermore, all numerical ranges and group or aggregate descriptions are intended to disclose intermediate configurations thereof as limitations to the specific features described in the original disclosure and claims.
[0011] In one or more embodiments, the first one-way valve may open or close depending on the attitude of the electric power tool.
[0012] According to the above configuration, a simple method of changing the attitude of the electric working machine can discharge liquid from the first space to the second space and prevent liquid from entering the first space from the second space.
[0013] In one or more embodiments, the partition wall separates the first space from a third space different from the first space, and may further include a second communication opening that communicates the first space with the third space. The electric working machine may further include a second one-way valve that is disposed in the second communication opening and opens and closes depending on the position of the electric working machine. When the electric working machine is in the first position, the first one-way valve may be open and the second one-way valve may be closed. When the electric working machine is in the second position, the first one-way valve may be closed and the second one-way valve may be open.
[0014] According to the above configuration, when the electric operating machine is in the first position, liquid can be discharged from the first space to the second space via the first one-way valve, and liquid can be prevented from entering the first space from the third space via the second one-way valve. Also, when the electric operating machine is in the second position, liquid can be discharged from the first space to the third space via the second one-way valve, and liquid can be prevented from entering the first space from the second space via the first one-way valve.
[0015] In one or more embodiments, when the electric operating machine is in the first position, the first one-way valve may be disposed lower than the second one-way valve in the direction of gravity. When the electric operating machine is in the second position, the second one-way valve may be disposed lower than the first one-way valve in the direction of gravity.
[0016] According to the above configuration, when the electric operating machine is in the first position, the liquid in the first space can be collected near the first one-way valve. The liquid can be discharged from the first space to the second space via the first one-way valve. Furthermore, when the electric operating machine is in the second position, the liquid in the first space can be collected near the second one-way valve. The liquid can be discharged from the first space to the third space via the second one-way valve.
[0017] In one or more embodiments, the second space and the third space may be the same space.
[0018] According to the above configuration, the liquid in the first space can be discharged into one space.
[0019] In one or more embodiments, the electric work machine may further include a handle that is gripped by a user's hand during operation.
[0020] According to the above configuration, the user can easily change the attitude of the electric working machine by gripping the handle.
[0021] In one or more embodiments, the first one-way valve may open and close by gravity.
[0022] According to the above configuration, the valve opening pressure required to open the first one-way valve can be lowered compared to when the first one-way valve is a one-way valve that opens and closes using a mechanism other than gravity, for example, a duckbill-type one-way valve or an umbrella-type one-way valve. Because the first one-way valve opens easily, liquid can be easily discharged from the first space to the second space.
[0023] In one or more embodiments, the electrical component may include an electrical connection member for electrically connecting to a power supply source. When the electric operating machine is in the first position, the first communication opening may be positioned below the electrical connection member in the direction of gravity.
[0024] According to the above configuration, when the electric operating machine is in the first position, it is possible to prevent the electrical connection member from being immersed in the liquid, and to allow the liquid to be discharged from the first space to the second space.
[0025] In one or more embodiments, the electric operating machine may further include a working unit. The electric component may include a control unit configured to control operation of the working unit. When the electric operating machine is in the first position, the first communication opening may be located below the control unit in the direction of gravity.
[0026] According to the above configuration, when the electric operating machine is in the first position, the control unit can be prevented from being immersed in the liquid, and the liquid can be discharged from the first space to the second space.
[0027] In one or more embodiments, the partition wall may further have an air opening for allowing air to flow into the first space. The opening area of the first communication opening may be smaller than the opening area of the air opening.
[0028] According to the above configuration, it is possible to allow a sufficient amount of air to flow into the first space through the air opening, while discharging liquid from the first space to the second space and preventing liquid from entering the first space from the second space.
[0029] In one or more embodiments, the second space may be an external space that is external to the electric power tool.
[0030] According to the above configuration, the liquid in the first space can be discharged to the outside of the electric operating machine.
[0031] (Example) As shown in FIG. 1, the electric work machine 2 is, for example, a handheld chainsaw. The electric work machine 2 includes a main body 4, a guide bar 6, and a saw chain 8. The guide bar 6 has a long, thin plate shape. The guide bar 6 is attached to the main body 4 so as to protrude from the main body 4. The saw chain 8 includes a plurality of interconnected cutters. The saw chain 8 is attached along the periphery of the guide bar 6. A battery pack B (see FIG. 2) is attached to the main body 4. The electric work machine 2 uses power supplied from the battery pack B to rotate the saw chain 8 along the periphery of the guide bar 6, thereby cutting a workpiece such as wood. In the following description, when the electric work machine 2 is placed on a surface P such as the ground as shown in FIG. 3, the direction perpendicular to the surface P will be referred to as the up-down direction, the direction in which the longitudinal direction of the guide bar 6 is projected onto the surface P will be referred to as the front-rear direction, and the direction perpendicular to the up-down direction and the front-rear direction will be referred to as the left-right direction.
[0032] As shown in FIGS. 1 and 2, the main body 4 includes a left housing 10, a right housing 12, a front handle 14, a side cover 16, and a battery cover 18. The left housing 10 and the right housing 12 form a main body housing 22 and a rear handle 24. The left housing 10 defines the outer shapes of the left half of the main body housing 22 and the rear handle 24, and the right housing 12 defines the outer shapes of the right half of the main body housing 22 and the rear handle 24. The main body housing 22 includes a front wall 22a, an upper wall 22b, a lower wall 22c, a left wall 22d, a right wall 22e, and a rear wall 22f. Hereinafter, the front wall 22a, the upper wall 22b, the lower wall 22c, the left wall 22d, the right wall 22e, and the rear wall 22f of the main body housing 22 may be referred to as a partition wall 23.
[0033] As shown in FIG. 2, the rear handle 24 is connected to the rear wall 22f of the main body housing 22. A main power switch 25 is disposed near the connection point between the rear wall 22f of the main body housing 22 and the rear handle 24. The main power switch 25 can be switched between an on state and an off state in response to a user's operation. A trigger 26 that can be operated by the user is also disposed on the rear handle 24. When the trigger 26 is pressed while the main power switch 25 is in the on state, the saw chain 8 is driven to rotate along the periphery of the guide bar 6. On the other hand, when the trigger 26 is pressed while the main power switch 25 is in the off state, the saw chain 8 is not driven to rotate along the periphery of the guide bar 6.
[0034] The front handle 14 extends upward from the front lower portion of the left wall 22d of the main body housing 22, then bends and extends toward the right side, and then bends and extends downward to connect to the right wall 22e (see FIG. 1) of the main body housing 22. The user can change the position of the electric working machine 2 by holding the front handle 14 with one hand and the rear handle 24 with the other hand.
[0035] The side cover 16 is removably attached to the front portion of the right wall 22e of the main body housing 22. A cover space 28 (see FIG. 4) is defined between the side cover 16 and the front portion of the right wall 22e of the main body housing 22.
[0036] The battery cover 18 is rotatably attached to the rear of the top wall 22b of the main body housing 22. The battery cover 18 opens and closes a battery opening 30 formed in the top wall 22b of the main body housing 22. The battery opening 30 is formed across the top wall of the left housing 10 and the top wall of the right housing 12. As shown in FIG. 1, when a user uses the electric work machine 2, the battery cover 18 closes the battery opening 30. As shown in FIG. 2, when a user presses the opening knob 32 of the battery cover 18, the battery cover 18 rotates to open the battery opening 30. In this state, the user can remove the battery pack B from the main body 4 and attach the battery pack B to the main body 4.
[0037] As shown in FIG. 3, the main body 4 defines an internal space 36 therein. Note that the guide bar 6 and the saw chain 8 are not shown in FIG. 3. The internal space 36 includes a main internal space 38 and a sub-internal space 40. The main internal space 38 is defined by the partition wall 23 of the main body housing 22 and the rear handle 24. The main internal space 38 communicates with an external space 46 outside the main body 4 via a front air opening 42 and a left air opening 44 (see FIG. 2). As shown in FIG. 1, the front air opening 42 is formed in the front wall 22a of the main body housing 22. The front air opening 42 is an elongated opening extending vertically. As shown in FIG. 2, the left air opening 44 is formed in the left wall 22d of the main body housing 22. The left air opening 44 is disposed around the connection point between the left wall 22d of the main body housing 22 and the front handle 14. The left air opening 44 is an elongated opening. As shown in FIG. 4, the right wall 22e of the main housing 22 separates the main interior space 38 from the cover space 28.
[0038] 3, the sub-internal space 40 is defined by the main housing 22 and the battery cover 18. The main housing 22 has an inner wall 48 that separates the main internal space 38 from the sub-internal space 40. The sub-internal space 40 communicates with the main internal space 38 via an opening 48a in the inner wall 48.
[0039] 3 and 4, the electric work machine 2 includes a motor 52, a sprocket 54, a control unit 56, a battery mounting unit 58, and a trigger switch 60. Hereinafter, the motor 52, the control unit 56, the battery mounting unit 58, and the trigger switch 60 may be referred to as electrical components 62.
[0040] As shown in FIG. 3, the motor 52 is disposed in the main interior space 38. The motor 52 is, for example, a brushless motor. A cooling fan (not shown) is fixed to the motor 52. The motor 52 is powered by power from a battery pack B (see FIG. 2). When the motor 52 is operating, the cooling fan rotates, causing air from the exterior space 46 to flow into the main interior space 38 through the left air opening 44 (see FIG. 2). The inflowing air flows through the main interior space 38 and then flows out from the main interior space 38 to the exterior space 46 through the front air opening 42. This cools the motor 52. A shaft 64 of the motor 52 extends in the left-right direction. As shown in FIG. 4, the right end of the shaft 64 is disposed in the cover space 28.
[0041] The sprocket 54 is fixed to the right end of the shaft 64. A saw chain 8 (see FIG. 1) is stretched over the sprocket 54 from the guide bar 6. When the motor 52 operates, the sprocket 54 rotates together with the shaft 64. This causes the saw chain 8 to rotate along the periphery of the guide bar 6.
[0042] As shown in FIG. 3, the control unit 56 is disposed in the main interior space 38. The control unit 56 is disposed closer to the top wall 22b of the main housing 22 than the motor 52 and the sprocket 54 (see FIG. 4). The control unit 56 is electrically connected to the motor 52. The control unit 56 controls the operation of the motor 52. The control unit 56 is cooled by air that flows into the main interior space 38 as the motor 52 operates (the cooling fan rotates).
[0043] The battery mounting unit 58 is disposed in the sub-internal space 40. The battery mounting unit 58 is disposed closer to the rear wall 22f of the main body housing 22 than the motor 52, the sprocket 54 (see FIG. 4), and the control unit 56. The battery mounting unit 58 is also disposed closer to the bottom wall 22c of the main body housing 22 than the control unit 56. When the battery pack B (see FIG. 2) is disposed in the sub-internal space 40 and attached to the main body 4, the battery mounting unit 58 is electrically connected to the battery pack B via a battery mounting terminal 66 of the battery mounting unit 58. The battery mounting unit 58 is also electrically connected to the control unit 56.
[0044] The trigger switch 60 is disposed in the main interior space 38. The trigger switch 60 is disposed closer to the rear wall 22f of the main body housing 22 than the battery mounting unit 58. The trigger switch 60 is also disposed closer to the bottom wall 22c of the main body housing 22 than the control unit 56. The trigger switch 60 is electrically connected to the control unit 56. When the trigger 26 is pressed, the trigger switch 60 is pressed by the trigger 26. When the trigger switch 60 is pressed, the control unit 56 detects that the trigger 26 has been pressed.
[0045] 5 and 6, a first front communication opening 70 and a first rear communication opening 72 are provided in a lower portion near the rear end of the right wall 22e of the main body housing 22, and a second front communication opening 74 and a second rear communication opening 76 are provided in a lower portion near the rear end of the left wall 22d of the main body housing 22. The first front communication opening 70, the first rear communication opening 72, the second front communication opening 74, and the second rear communication opening 76 are openings for discharging water from the internal space 36 (see FIG. 3) to the external space 46. The opening areas of the first front communication opening 70, the first rear communication opening 72, the second front communication opening 74, and the second rear communication opening 76 are each smaller than the opening areas of the front air opening 42 (see FIG. 1) and the left air opening 44 (see FIG. 2), respectively. The diameters of the first front communication opening 70, the first rear communication opening 72, the second front communication opening 74, and the second rear communication opening 76 are, for example, 0.5 mm or more and 15 mm or less. The first front communication opening 70, the first rear communication opening 72, the second front communication opening 74, and the second rear communication opening 76 have the same configuration. For this reason, hereinafter, the first front communication opening 70, the first rear communication opening 72, the second front communication opening 74, and the second rear communication opening 76 may each be simply referred to as the communication opening 78.
[0046] As shown in FIG. 5, the first front communication opening 70 and the first rear communication opening 72 are disposed near a connection between the right wall 22e and the bottom wall 22c of the main housing 22. The connection between the right wall 22e and the bottom wall 22c of the main housing 22 corresponds to a corner of the main housing 22. As shown in FIG. 3, the first front communication opening 70 is disposed closer to the front wall 22a of the main housing 22 than the first rear communication opening 72. The position of the first front communication opening 70 in the front-rear direction is substantially the same as the position of the battery mounting unit 58 in the front-rear direction. The first front communication opening 70 and the first rear communication opening 72 are disposed closer to the bottom wall 22c of the main housing 22 than the electrical component 62. The first rear communication opening 72 is disposed closer to the rear wall 22f of the main housing 22 than the battery mounting unit 58.
[0047] 6, the second front communication opening 74 and the second rear communication opening 76 are disposed near a connection point between the left wall 22d and the bottom wall 22c of the main body housing 22. The connection point between the left wall 22d and the bottom wall 22c of the main body housing 22 corresponds to a corner of the main body housing 22. The second front communication opening 74 is disposed closer to the front wall 22a (see FIG. 3) of the main body housing 22 than the second rear communication opening 76. Although not shown, the second front communication opening 74 is disposed at a position opposite the first front communication opening 70 in the left-right direction, and the second rear communication opening 76 is disposed at a position opposite the first rear communication opening 72 in the left-right direction. Therefore, the front-to-rear position of the second front communication opening 74 is approximately the same as the front-to-rear position of the battery mounting unit 58, and the second front communication opening 74 and the second rear communication opening 76 are positioned closer to the bottom wall 22c (see Figure 3) of the main housing 22 than the electrical component 62 (see Figure 3), and the second rear communication opening 76 is positioned closer to the rear wall 22f of the main housing 22 than the battery mounting unit 58 (see Figure 3).
[0048] As shown in FIGS. 5 and 6 , the electric working machine 2 further includes a first front one-way valve 80, a first rear one-way valve 82, a second front one-way valve 84, and a second rear one-way valve 86. As shown in FIG. 5 , the first front one-way valve 80 is disposed in the first front communication opening 70. The first front one-way valve 80 is fixed to the right wall 22 e of the main body housing 22. The first rear one-way valve 82 is disposed in the first rear communication opening 72. The first rear one-way valve 82 is fixed to the right wall 22 e of the main body housing 22. As shown in FIG. 6 , the second front one-way valve 84 is disposed in the second front communication opening 74. The second front one-way valve 84 is fixed to the left wall 22 d of the main body housing 22. The second rear one-way valve 86 is disposed in the second rear communication opening 76. The second rear one-way valve 86 is fixed to the left wall 22 d of the main body housing 22 .
[0049] 5 and 6 have the same configuration. For this reason, hereinafter, the first front-side one-way valve 80, the first rear-side one-way valve 82, the second front-side one-way valve 84, and the second rear-side one-way valve 86 may each be simply referred to as a one-way valve 90.
[0050] The one-way valve 90 is a ball-type one-way valve. The one-way valve 90 includes a fixed portion 92, a connecting portion 94, and a valve portion 96. The fixed portion 92 has a screw hole 92a that penetrates the fixed portion 92 in the thickness direction (the left-right direction in FIGS. 5 and 6 ). A screw 98 can be inserted into the screw hole 92a. With the screw 98 inserted into the screw hole 92a, the screw 98 threads into the main body housing 22, thereby fixing the one-way valve 90 to the main body housing 22.
[0051] The valve portion 96 is connected to the fixed portion 92 via a connecting portion 94. The valve portion 96 includes a base portion 100, a seal portion 102, and a ball portion 104 (see FIG. 7).
[0052] The base portion 100 has a generally cylindrical shape. A stopper portion 106 is formed at one end of the base portion 100. The stopper portion 106 closes a portion of the opening on the one end side of the base portion 100. The stopper portion 106 prevents the ball portion 104 from moving from the inside of the base portion 100 to the outside of the base portion 100, while allowing water to move from the inside of the base portion 100 to the outside of the base portion 100. As shown in FIG. 7 , the base portion 100 is disposed in the communication opening 78. The other end of the base portion 100 abuts against the main body housing 22.
[0053] The seal portion 102 is disposed in the communication opening 78. The seal portion 102 is sandwiched between the base portion 100 and the main body housing 22. The seal portion 102 is made of, for example, an elastic material. The seal portion 102 has an annular shape and is an O-ring in this embodiment.
[0054] The ball portion 104 is disposed inside the base portion 100. The ball portion 104 is movable between the stopper portion 106 and the seal portion 102. The ball portion 104 moves between the stopper portion 106 and the seal portion 102, for example, depending on the attitude of the electric work machine 2. The ball portion 104 also moves in the direction of gravity due to gravity acting on the ball portion 104. As shown in FIG. 8 , when the ball portion 104 abuts against the seal portion 102, the one-way valve 90 is closed, thereby closing the communication opening 78. This blocks communication between the main internal space 38 and the external space 46. At this time, water does not enter the internal space 36 from the external space 46 through the communication opening 78 and the one-way valve 90. As shown in FIG. 7 , when the ball portion 104 is not abutting against the seal portion 102, for example, when the ball portion 104 abuts against the stopper portion 106, the one-way valve 90 is open, thereby opening the communication opening 78. As a result, the main internal space 38 is in communication with the external space 46 via the communication opening 78. At this time, water in the internal space 36 is discharged into the external space 46 via the communication opening 78 and the one-way valve 90.
[0055] Next, the posture of the electric work machine 2 when it is used to cut an object to be cut will be described. The electric work machine 2 shown in FIG. 1 is often used for cutting wood. Because wood grows vertically upward from the ground, the electric work machine 2 is often used in the first posture or the second posture, rather than the placed posture shown in FIG. 3 (a posture in which the bottom wall 22c of the main body housing 22 faces the plane P). As shown in FIG. 9, when the electric work machine 2 is in the first posture, the right wall 22e of the main body housing 22 faces downward (in the direction of gravity), the left wall 22d of the main body housing 22 faces upward, the bottom wall 22c of the main body housing 22 faces left, the top wall 22b of the main body housing 22 faces right, the front wall 22a of the main body housing 22 (see FIG. 1) faces forward, and the rear wall 22f of the main body housing 22 (see FIG. 2) faces rearward. 10, when the electric operating machine 2 is in the second position, the left wall 22d of the main body housing 22 faces downward (in the direction of gravity), the right wall 22e of the main body housing 22 faces upward, the top wall 22b of the main body housing 22 faces left, the bottom wall 22c of the main body housing 22 faces right, the front wall 22a of the main body housing 22 faces forward, and the rear wall 22f of the main body housing 22 faces rearward. The second position is opposite to the first position.
[0056] 9 and 10, the positions of the first front one-way valve 80 and the second front one-way valve 84 are shown by dashed lines. In addition, the positions of the motor 52, the control unit 56, and the battery mounting terminal 66 are shown by dashed lines.
[0057] 9 , when the electric working machine 2 is in the first position, the first rear one-way valve 82 is disposed below the second rear one-way valve 86. Furthermore, the first front one-way valve 80 is disposed below the second front one-way valve 84. The first front one-way valve 80 and the first rear one-way valve 82 are disposed below the motor 52, the control unit 56, the trigger switch 60, and the battery mounting terminal 66. The second front one-way valve 84 and the second rear one-way valve 86 are disposed above the lower half of the control unit 56, the trigger switch 60, and the battery mounting terminal 66.
[0058] As shown in Fig. 7 , when the electric working machine 2 is in the first position, the ball portions 104 of the first front one-way valve 80 and the first rear one-way valve 82 abut against the stopper portions 106. Because the first front one-way valve 80 and the first rear one-way valve 82 are open, the internal space 36 is in communication with the external space 46 via the first front communicating opening 70 and the first rear communicating opening 72, respectively. Furthermore, as shown in Fig. 8 , the ball portions 104 of the second front one-way valve 84 and the second rear one-way valve 86 abut against the seal portions 102. Because the second front one-way valve 84 and the second rear one-way valve 86 are closed, the internal space 36 is not in communication with the external space 46 via the second front communicating opening 74 and the second rear communicating opening 76, respectively.
[0059] As shown in FIG. 9 , when wood cutting work is performed outdoors in the rain with the electric work machine 2 in the first position, rainwater enters the internal space 36 from the external space 46 through the front air opening 42 (see FIG. 1 ) and the left air opening 44. The rainwater collects due to gravity at the right wall 22 e of the main body housing 22, for example, at a corner where the right wall 22 e and the bottom wall 22 c of the main body housing 22 are connected. Because the first front one-way valve 80 and the first rear one-way valve 82 are open, the rainwater that has collected at the corner is discharged from the internal space 36 to the external space 46 through the first front communicating opening 70 and the first rear communicating opening 72, respectively. Furthermore, because the second front one-way valve 84 and the second rear one-way valve 86 are closed, the rainwater does not enter the internal space 36 from the external space 46 through the second front communicating opening 74 and the second rear communicating opening 76, respectively. This prevents the control unit 56, the trigger switch 60, and the battery mounting terminal 66 from coming into contact with rainwater.
[0060] 10 , when the electric working machine 2 is in the second position, the second rear one-way valve 86 is disposed below the first rear one-way valve 82. Furthermore, the second front one-way valve 84 is disposed below the first front one-way valve 80. The second front one-way valve 84 and the second rear one-way valve 86 are disposed below the upper half of the control unit 56, the trigger switch 60, and the battery mounting terminal 66. The first front one-way valve 80 and the first rear one-way valve 82 are disposed above the motor 52, the control unit 56, the trigger switch 60, and the battery mounting terminal 66.
[0061] As shown in Fig. 7 , when the electric working machine 2 is in the second posture, the ball portions 104 of the second front one-way valve 84 and the second rear one-way valve 86 abut against the stopper portions 106. Because the second front one-way valve 84 and the second rear one-way valve 86 are open, the internal space 36 is in communication with the external space 46 via the second front communicating opening 74 and the second rear communicating opening 76, respectively. Also, as shown in Fig. 8 , the ball portions 104 of the first front one-way valve 80 and the first rear one-way valve 82 abut against the seal portions 102. Because the first front one-way valve 80 and the first rear one-way valve 82 are closed, the internal space 36 is not in communication with the external space 46 via the first front communicating opening 70 and the first rear communicating opening 72, respectively.
[0062] As shown in FIG. 10 , when wood cutting work is performed outdoors in the rain while the electric work machine 2 is in the second position, rainwater enters the internal space 36 from the external space 46 through the front air opening 42 (see FIG. 1 ). The rainwater collects due to gravity at the left wall 22d of the main body housing 22, for example, at a corner where the left wall 22d and the bottom wall 22c of the main body housing 22 are connected. Because the second front one-way valve 84 and the second rear one-way valve 86 are open, the rainwater that has collected at the corner is discharged from the internal space 36 to the external space 46 through the second front communicating opening 74 and the second rear communicating opening 76, respectively. Furthermore, because the first front one-way valve 80 and the first rear one-way valve 82 are closed, the rainwater does not enter the internal space 36 from the external space 46 through the first front communicating opening 70 and the first rear communicating opening 72, respectively. This prevents the motor 52, the control unit 56, the trigger switch 60, and the battery mounting terminal 66 from coming into contact with rainwater.
[0063] (effect) The electric work machine 2 of this embodiment is equipped with a partition wall 23 which separates an electrical component 62, an internal space 36 (an example of a first space) in which the electrical component 62 is arranged, the internal space 36, and an external space 46 (an example of a second space) different from the internal space 36, and which has a first front communicating opening 70 (an example of a first communicating opening) which connects the internal space 36 and the external space 46, and a first front one-way valve 80 (an example of a first one-way valve) which is arranged in the first front communicating opening 70.
[0064] According to the above configuration, by opening the first front one-way valve 80 when liquid is present in the internal space 36, the liquid can be discharged from the internal space 36 to the external space 46 via the first front one-way valve 80. Furthermore, by closing the first front one-way valve 80 when liquid is present in the external space 46, the liquid can be prevented from entering the internal space 36 from the external space 46 via the first front one-way valve 80.
[0065] Furthermore, the first front one-way valve 80 opens and closes depending on the attitude of the electric working machine 2.
[0066] According to the above configuration, by using a simple method of changing the posture of the electric work machine 2, liquid can be discharged from the internal space 36 to the external space 46, and liquid can be prevented from entering the internal space 36 from the external space 46.
[0067] The partition wall 23 also separates the internal space 36 from an external space 46 (an example of a third space) that is different from the internal space 36, and further has a second front communication opening 74 (an example of a second communication opening) that connects the internal space 36 to the external space 46. The electric working machine 2 further has a second front one-way valve 84 (an example of a second one-way valve) that is disposed in the second front communication opening 74 and opens and closes depending on the posture of the electric working machine 2. When the electric working machine 2 is in the first posture, the first front one-way valve 80 is open and the second front one-way valve 84 is closed. When the electric working machine 2 is in the second posture, the first front one-way valve 80 is closed and the second front one-way valve 84 is open.
[0068] According to the above configuration, when the electric working machine 2 is in the first position, liquid can be discharged from the internal space 36 to the external space 46 via the first front one-way valve 80, and liquid can be prevented from entering the internal space 36 from the external space 46 via the second front one-way valve 84. Furthermore, when the electric working machine 2 is in the second position, liquid can be discharged from the internal space 36 to the external space 46 via the second front one-way valve 84, and liquid can be prevented from entering the internal space 36 from the external space 46 via the first front one-way valve 80.
[0069] Furthermore, when the electric working machine 2 is in the first position, the first front one-way valve 80 is disposed lower than the second front one-way valve 84 in the direction of gravity. When the electric working machine 2 is in the second position, the second front one-way valve 84 is disposed lower than the first front one-way valve 80 in the direction of gravity.
[0070] According to the above configuration, when the electric working machine 2 is in the first position, the liquid in the internal space 36 can be collected near the first front one-way valve 80. The liquid can be discharged from the internal space 36 to the external space 46 via the first front one-way valve 80. Furthermore, when the electric working machine 2 is in the second position, the liquid in the internal space 36 can be collected near the second front one-way valve 84. The liquid can be discharged from the internal space 36 to the external space 46 via the second front one-way valve 84.
[0071] Furthermore, the space that the internal space 36 communicates with via the first front communication opening 70 and the space that the internal space 36 communicates with via the second front communication opening 74 are the same external space 46 .
[0072] According to the above configuration, the liquid in the internal space 36 can be discharged into one space.
[0073] The electric work machine 2 further includes a front handle 14 and a rear handle 24 (an example of a handle) that are gripped by the user's hands during work.
[0074] According to the above configuration, the user can easily change the position of the electric working machine 2 by gripping the front handle 14 and the rear handle 24.
[0075] Furthermore, the first front one-way valve 80 opens and closes due to gravity.
[0076] According to the above configuration, the valve opening pressure required to open the first front one-way valve 80 can be lowered compared to when the first front one-way valve 80 is a one-way valve that opens and closes by a mechanism other than gravity, for example, a duckbill-type one-way valve or an umbrella-type one-way valve. Because the first front one-way valve 80 opens easily, liquid can be easily discharged from the internal space 36 to the external space 46.
[0077] The electrical component 62 also includes a battery mounting terminal 66 (an example of an electrical connection member) that electrically connects to a battery pack B (an example of a power supply source). When the electric operating machine 2 is in the first position, the first front communication opening 70 is positioned below the battery mounting terminal 66 in the direction of gravity.
[0078] According to the above configuration, when the electric work machine 2 is in the first position, the battery mounting terminal 66 can be prevented from being immersed in liquid, and the liquid can be discharged from the internal space 36 to the external space 46.
[0079] The electric work machine 2 further includes a saw chain 8 (an example of a working part). The electrical component 62 includes a control unit 56 configured to control the operation of the saw chain 8. When the electric work machine 2 is in the first posture, the first front communication opening 70 is disposed below the control unit 56 in the direction of gravity.
[0080] According to the above configuration, when the electric working machine 2 is in the first position, the control unit 56 can be prevented from being immersed in the liquid, and the liquid can be discharged from the internal space 36 to the external space 46.
[0081] The partition wall 23 further has a front air opening 42 (an example of an air opening) for allowing air to flow into the internal space 36. The opening area of the first front communication opening 70 is smaller than the opening area of the front air opening 42.
[0082] According to the above configuration, it is possible to allow a sufficient amount of air to flow into the internal space 36 through the front air opening 42 while discharging liquid from the internal space 36 to the external space 46, and it is also possible to prevent liquid from entering the internal space 36 from the external space 46.
[0083] The external space 46 is located outside the electric work machine 2.
[0084] According to the above configuration, the liquid in the internal space 36 can be discharged to the outside of the electric operating machine 2.
[0085] In the electric operating machine 2 according to one embodiment, the number of one-way valves 90 is not limited to four, but may be three or less, or may be five or more.
[0086] In the electric working machine 2 according to one embodiment, the one-way valve 90 is not limited to a ball-type one-way valve, and may be another type of one-way valve, for example, a duckbill-type one-way valve or an umbrella-type one-way valve.
[0087] In the electric operating machine 2 according to one embodiment, the space with which the internal space 36 communicates via the first front communication opening 70 may be different from the space with which the internal space 36 communicates via the second front communication opening 74. For example, the space with which the internal space 36 communicates via the first front communication opening 70 may be the cover space 28, and the space with which the internal space 36 communicates via the second front communication opening 74 may be the external space 46.
[0088] The electric working machine 2 according to one embodiment is not limited to a handheld chainsaw, but may be another handheld electric working machine, such as a pole saw, a blower, a grass cutter, a high-pressure washer, a sprayer, or a hedge trimmer. Also, the electric working machine 2 is not limited to a handheld electric working machine, but may be a push-type electric working machine or a riding-type electric working machine, such as a lawn mower, a scarifier, or a cultivator.
[0089] The electric work machine 2 according to one embodiment may include a built-in battery. Alternatively, the electric work machine 2 may be configured to supply power to the motor 52 from an external power source via a power cord. [Explanation of symbols]
[0090] 2: Electric work equipment 6: Guide bar 8: Saw chain 14: Side handle 16: Side cover 22: Main body housing 22a: Front wall 22b: Upper wall 22c: Bottom wall 22d: Left wall 22e: Right wall 22f: Back wall 23: Bulkhead 24: Rear handle 28: Cover space 36: Interior space 38: Main interior space 40: Sub-internal space 42: Front air opening 44: Left air opening 46: Exterior space 52: Motor 56: Control unit 58: Battery mounting unit 60: Trigger switch 62: Electrical parts 66: Battery mounting terminal 70: 1st front communication opening 72: 1st rear communication opening 74: 2nd front communication opening 76:Second rear communication opening 78:Communication opening 80: First front one-way valve 82: First rear one-way valve 84: Second front one-way valve 86: Second rear one-way valve 90: One-way valve 96: Valve section 100: Base 102: Seal part 104: Ball part 106: Stopper part B: Battery pack
Claims
1. A handheld electric work machine, Electrical parts and a first space in which the electrical components are placed; a partition wall that separates the first space from a second space different from the first space and has a first communication opening that communicates the first space with the second space; a first one-way valve disposed in the first communication opening, the first one-way valve opens and closes depending on the attitude of the electric working machine; the partition wall separates the first space from a third space different from the first space, and further includes a second communication opening that communicates the first space with the third space, the electric operating machine further includes a second one-way valve disposed in the second communication opening and adapted to open and close depending on the attitude of the electric operating machine, When the electric operating machine is in a first position, the first one-way valve is open and the second one-way valve is closed, When the electric working machine is in a second position, the first one-way valve is closed and the second one-way valve is open.
2. When the electric operating machine is in the first position, the first one-way valve is disposed lower than the second one-way valve in the direction of gravity, The electric operating machine according to claim 1 , wherein the second one-way valve is disposed lower than the first one-way valve in the direction of gravity when the electric operating machine is in the second posture.
3. The electric operating machine according to claim 1 or 2, wherein the second space and the third space are the same space.
4. The electric work machine according to claim 1 , further comprising a handle that is held by a user's hand during operation.
5. The electric operating machine according to claim 1 , wherein the first one-way valve opens and closes due to gravity.
6. The electrical component includes an electrical connection member that is electrically connected to a power supply source, The electric operating machine according to claim 1 , wherein when the electric operating machine is in the first position, the first communication opening is positioned lower than the electrical connection member in the direction of gravity.
7. Further comprising a working section, The electrical component includes a control unit configured to control the operation of the working unit; The electric operating machine according to claim 1 , wherein when the electric operating machine is in the first position, the first communication opening is positioned lower than the control unit in the direction of gravity.
8. the partition wall further has an air opening for allowing air to flow into the first space, The electric operating machine according to claim 1 , wherein an opening area of the first communication opening is smaller than an opening area of the air opening.
9. The electric operating machine according to claim 1 , wherein the second space is an external space located outside the electric operating machine.
Citation Information
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