Saddle-type vehicle
The saddle-type vehicle integrates a cover member with a restricting portion to secure electrical components, addressing theft risks without additional parts, ensuring secure attachment and easy maintenance access.
Patent Information
- Application Number
- JP2022153053
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-09-26
- Publication Date
- 2026-01-29
- Estimated Expiration
- 2042-09-26
AI Technical Summary
Existing straddle-type vehicles, such as motorcycles, face the risk of electrical components being stolen due to the harness being pulled, leading to the equipment coming off, and existing solutions increase the number of parts.
A saddle-type vehicle design with a cover member that integrates a restricting portion to prevent electrical components from moving, using a cover member that supports the electrical equipment, with a harness connection direction in the front-rear direction, and a restricting portion formed integrally with the cover member to prevent movement without adding extra parts.
The design effectively prevents electrical components from coming off without increasing the number of parts, ensuring secure attachment and easy access for maintenance while maintaining a streamlined part count.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to a saddle-ride type vehicle. [Background technology]
[0002] Conventionally, straddle-type vehicles such as motorcycles have been equipped with electrical equipment such as ECUs (Electronic Control Units). Since electrical equipment such as ECUs is generally connected to electric wires such as harnesses, if the harness is pulled, the electrical equipment may be pulled along with the harness and come off the straddle-type vehicle, raising the risk of the electrical equipment being stolen by a third party.
[0003] To prevent electrical equipment from being stolen by a third party, for example, Patent Document 1 describes a motorcycle that includes a rear fender disposed above the rear wheel, a rear frame above the rear fender, an ECU supported by the rear fender, a coupler connected to the ECU so that it can be removed forward, a holding portion provided on the rear fender to support the ECU, and a guard body provided on the rear frame to prevent the ECU from moving forward together with the coupler.The motorcycle described in Patent Document 1 can prevent the ECU from moving forward together with the coupler by the guard body even if the harness is pulled, so that the ECU, which is an electrical equipment, can be prevented from coming off the motorcycle. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Japanese Patent Application Laid-Open No. 2011-046245 Summary of the Invention [Problem to be solved by the invention]
[0005] However, in the motorcycle of Patent Document 1, the guard body and the rear fender are separate bodies, which increases the number of parts.
[0006] The present invention provides a straddle-type vehicle that can prevent electrical components from coming off even when a harness is pulled, without increasing the number of parts. [Means for solving the problem]
[0007] The present invention provides A seat on which the driver can sit; a cover member that covers the vehicle body from below; an electrical component supported by the cover member; The electrical equipment is disposed between the seat and the cover member in the vertical direction, a harness that is removably connected to the electrical equipment, an electrical equipment-side connector is provided on a first surface of the electrical equipment facing the insertion / removal direction of the harness; a harness-side connector that is removably connected to the electrical equipment-side connector is provided at one end of the harness; the insertion / removal direction is a front-rear direction of the saddle-ride type vehicle, The cover member has a restricting portion formed integrally with the cover member at a position facing the first surface of the electrical component in the insertion / removal direction, the restricting portion restricting movement of the electrical component in the insertion / removal direction. And, the restricting portion has a pair of left and right side wall portions extending in the up-down direction and the front-rear direction, and an upper wall portion extending in the left-right direction and the front-rear direction and connecting upper ends of the pair of left and right side wall portions, The pair of left and right side wall portions are arranged so that the distance between them in the left-right direction is smaller than the left-right dimension of the electrical equipment. . [Effects of the Invention]
[0008] According to the present invention, the restricting portion that restricts the movement of the electrical equipment in the insertion / removal direction of the harness is formed by integral molding with the cover member, so that the electrical equipment can be prevented from coming off the saddle-type vehicle without increasing the number of parts. [Brief explanation of the drawings]
[0009] [Figure 1] 1 is a side view of a motorcycle as an embodiment of a saddle-ride type vehicle of the present invention, viewed from the left. [Figure 2]2 is a cross-sectional view of a main part of the motorcycle of FIG. 1 as seen from the left. [Figure 3] FIG. 3 is an enlarged view of the vicinity of the air cleaner in FIG. 2. [Figure 4] 2 is a side view of the motorcycle of FIG. 1 with the main cowl removed, as seen from the right. [Figure 5] 5 is a cross-sectional view taken along the line AA in FIG. 4. [Figure 6] 5 is a cross-sectional view of FIG. 4 taken along line B-B. [Figure 7] 5 is a cross-sectional view taken along CC in FIG. 4. [Figure 8] FIG. 2 is a perspective view of the vicinity of a restricting portion of the motorcycle of FIG. 1. [Figure 9] 2 is a view of the restricting portion of the motorcycle of FIG. 1 as seen from the front. FIG. DETAILED DESCRIPTION OF THE INVENTION
[0010] A motorcycle as one embodiment of a saddle-ride type vehicle of the present invention will be described below with reference to the accompanying drawings. The drawings are to be viewed in accordance with the directions of the reference numerals. For simplicity and clarity of explanation, the front-rear, left-right, and up-down directions in this specification are described according to the direction as seen by a rider of the motorcycle. In the drawings, the front of the motorcycle is indicated as Fr, the rear as Rr, the left as L, the right as R, the top as U, and the bottom as D.
[0011] As shown in Figures 1 to 4, the motorcycle 1 of this embodiment includes a front wheel FW and a rear wheel RW, a body frame 10, a cowl member 20 attached to the body frame 10 and covering at least a portion of the outer surface of the motorcycle 1, and a power unit 30 mounted on the body frame 10.
[0012] The body frame 10 includes a head pipe 11, a main frame 12, a pair of left and right pivot frames 13, a pair of left and right seat frames 14, and a pair of left and right rear frames 15.
[0013] The head pipe 11 is a pipe-shaped member that is provided at the front end of the body frame 10 and extends downward and forward. A stem shaft 522 of a steering unit 52, which will be described later, is inserted into the head pipe 11.
[0014] The main frame 12 has a front end connected to the head pipe 11 and extends obliquely downward and rearward from the head pipe 11.
[0015] The pair of left and right pivot frames 13 each have their upper ends connected to the vicinity of the rear end of the main frame 12 and extend downward. The left pivot frame 13 curves to the left from the vicinity of the rear end of the main frame 12 and extends downward. The right pivot frame 13 curves to the right from the vicinity of the rear end of the main frame 12 and extends downward. Each of the pair of left and right pivot frames 13 is formed with a swing arm pivot 13a that rotatably supports the front ends of a pair of left and right swing arms 16, which will be described later. Therefore, the body frame 10 is provided with a pair of left and right swing arm pivots 13a.
[0016] The front ends of the pair of left and right seat frames 14 are both connected to approximately the center in the fore-aft direction of the main frame 12. Each of the pair of left and right seat frames 14 extends obliquely upward and rearward from approximately the center in the fore-aft direction of the main frame 12, curving outward in the vehicle width direction, then bending rearward midway and extending obliquely upward and rearward again.
[0017] The pair of left and right rear frames 15 have their front ends connected to the vicinity of the rear ends of the main frames 12, extend rearward and upward from the vicinity of the rear ends of the main frames 12 while inclining outward in the vehicle width direction, and their rear ends connected to the respective left and right seat frames 14. The left rear frame 15 has its front end connected to the left pivot frame 13, extends rearward and upward from the left pivot frame 13, and its rear end connected to the left seat frame 14. The right rear frame 15 has its front end connected to the right pivot frame 13, extends rearward and upward from the right pivot frame 13, and its rear end connected to the right seat frame 14. The pair of left and right rear frames 15 have their front ends connected to the vicinity of the rear ends of the main frames 12, and each has a generally V-shape that extends rearward while inclining outward in the vehicle width direction.
[0018] The motorcycle 1 is provided with a pair of left and right swing arms 16 disposed on both the left and right sides of the rear wheel RW and extending in the front-to-rear direction. The pair of left and right swing arms 16 support the rear wheel RW at their rear ends. The front end of the left swing arm 16 is journaled on a swing arm pivot 13a formed on the left pivot frame 13. The front end of the right swing arm 16 is journaled on a swing arm pivot 13a formed on the right pivot frame 13. Each of the pair of left and right swing arms 16 is capable of rotating up and down around the swing arm pivot 13a as a fulcrum axis. The pair of left and right swing arms 16 function as a framework for connecting the rear wheel RW to the body frame 10, and also function as part of a shock absorber that absorbs impacts input to the rear wheel RW.
[0019] The motorcycle 1 is equipped with a pair of left and right rear suspensions 17 that function as part of a shock absorber that absorbs impacts input to the rear wheel RW. The left rear suspension 17 has an upper end connected to the left rear frame 15 and a lower end connected to the left swing arm 16. The right rear suspension 17 has an upper end connected to the right rear frame 15 and a lower end connected to the right swing arm 16. Each of the pair of left and right rear suspensions 17 is equipped with, for example, a cylindrical damper unit and a coil spring wound to surround the damper unit. Impacts input to the rear wheel RW are attenuated by the rear suspensions 17 via the swing arm 16.
[0020] The motorcycle 1 is equipped with a rider seat 18 on which a rider can sit. The rider seat 18 is disposed above the pair of left and right seat frames 14 so as to straddle the pair of left and right seat frames 14. The rider seat 18 is fixed to the pair of left and right seat frames 14. Note that the rider seat 18 may also be configured to allow a passenger to sit behind the rider in addition to the rider.
[0021] The power unit 30 is disposed approximately in the center in the vehicle width direction and below the main frame 12 when viewed from the left and right direction. The power unit 30 has an upper portion fixed to the main frame 12 by fastening members such as bolts and nuts, either directly or via an elastic member such as rubber, and a rear portion fixed to the main frame 12 and / or the pivot frame 13.
[0022] The power unit 30 includes an engine 31, a clutch unit 32 equipped with a friction clutch (not shown), and a speed change mechanism (not shown). When the friction clutch is engaged, the power unit 30 outputs the power of the engine 31 from the output shaft via the speed change mechanism. When the friction clutch is disengaged, the power of the engine 31 is not output from the output shaft of the power unit 30. In this way, the motorcycle 1 of this embodiment is a motorcycle in which the rear wheel RW is rotationally driven by the power of the engine 31 of the power unit 30 mounted on the body frame 10, that is, a motorcycle in which the engine 31 of the power unit 30 is used as a power source and the rear wheel RW is used as a drive wheel.
[0023] The engine 31 of the power unit 30 includes a crankcase 311 that houses a crankshaft (not shown), a cylinder block 312 that has a cylinder axis that extends in the front-to-rear direction and slopes upward from the crankcase 311, a cylinder head 313 that is connected to the front end of the cylinder block 312 and supports a valve mechanism, a head cover 314 that is connected to the front end of the cylinder head 313 and covers the valve mechanism on the cylinder head 313, and an intake pipe 315 that extends from the cylinder head 313.
[0024] The clutch unit 32 of the power unit 30 is attached to the right side surface of the crankcase 311.
[0025] A transmission mechanism (not shown) of the power unit 30 is housed inside the crankcase 311 .
[0026] The power unit 30 further includes an ACG starter 33 (ACG: Alternating Current Generator) that is connected to a crankshaft (not shown) of the engine 31 and has at least the functions of a generator for the motorcycle 1 and a starter for the engine 31. The ACG starter 33 is attached to the left side surface of the crankcase 311. The ACG starter 33 includes a rotor (not shown) that rotates integrally with the crankshaft of the engine 31, and a stator (not shown) that is fixed to the crankcase 311 of the engine 31. The detailed function of the ACG starter 33 in the power unit 30 is that when the crankshaft of the engine 31 rotates, the rotor of the ACG starter 33 rotates, and the ACG starter 33 generates electricity. Conversely, when a current is passed through a coil provided in the stator of the ACG starter 33, the rotor rotates, forcing the crankshaft of the engine 31 to rotate. Therefore, by passing a current through a coil provided in the stator of the ACG starter 33, the crankshaft of the engine 31 is forcibly rotated, and the engine 31 can be started.
[0027] The power unit 30 includes an intake device 34 that supplies an air-fuel mixture to the engine 31, an exhaust device 35 that discharges exhaust gas from the engine 31 rearward, a fuel tank 36 that stores fuel to be supplied to the engine 31, a canister 37 that adsorbs evaporative gas from the fuel stored in the fuel tank 36, an evaporative gas recovery pipe 381 that connects the fuel tank 36 and the canister 37 and forms an evaporative gas recovery flow path 381a that recovers evaporative gas from the fuel stored in the fuel tank 36 from the fuel tank 36 and introduces it into the canister 37, an evaporative gas supply pipe 382 that connects the canister 37 and the engine 31 and forms an evaporative gas supply flow path 382a that supplies the evaporative gas introduced into the canister 37 to the engine 31, and a purge control valve 39 that is provided in the evaporative gas supply pipe 382 and opens and closes the evaporative gas supply flow path 382a (see Figure 6).
[0028] The intake device 34 is connected to an intake pipe 315 extending from a cylinder head 313 of the engine 31 of the power unit 30 and includes a throttle body 341 having a throttle valve (not shown) therein, an air cleaner box 342 that purifies the outside air to be supplied to the engine 31 of the power unit 30, and a connecting tube 343 that connects the throttle body 341 and the air cleaner box 342. Air that is introduced from outside the motorcycle 1 into the air cleaner box 342 and purified is guided to the throttle body 341 through the connecting tube 343, and the air flow rate is adjusted by operating a throttle valve in the throttle body 341 before being supplied from the intake pipe 315 to the cylinder head 313 of the engine 31.
[0029] A fuel injection device (not shown) is attached to the throttle body 341 of the intake system 34, and injects fuel from the fuel tank 36 into the throttle body 341. The fuel injection device is connected to a fuel pump by a fuel pipe. Fuel is discharged from the fuel pump at a desired pressure toward the fuel injection device.
[0030] Then, in the throttle body 341, a mixture of air and fuel with an appropriate air-fuel ratio is generated by the air that has been introduced into the air cleaner box 342 and purified, and the fuel that has been injected from the fuel injection device. The throttle valve operates, and the mixture of an appropriate flow rate is supplied from the throttle body 341 to the cylinder head 313 of the engine 31 of the power unit 30.
[0031] In this embodiment, the air cleaner box 342 is disposed below the main frame 12 and has an upper portion connected to the main frame 12 .
[0032] The exhaust device 35 includes an exhaust pipe 351 whose front end extends downward from the underside of the cylinder head 313 of the engine 31, bends rearward, and extends rearward, passing under the power unit 30. The exhaust pipe 351 is provided with a catalyst 352 that purifies the exhaust gas from the engine 31, and a muffler 353 that has a noise-reduction function for the engine 31 and releases the exhaust gas from the engine 31 into the atmosphere. The exhaust gas from the engine 31 passes through the exhaust pipe 351, is purified by the catalyst 352, passes through the muffler 353, and is then released rearward into the atmosphere.
[0033] The fuel tank 36 is provided between the rear regions of the pair of left and right seat frames 14 of the vehicle body frame 10 .
[0034] 6, the canister 37 is disposed in front of the fuel tank 36. The canister 37 is, for example, a container filled with activated carbon. The canister 37 has an outside air inlet 371 that can take outside air into the container.
[0035] Evaporative gases generated when fuel evaporates in the fuel tank 36 while the engine 31 is stopped are introduced into the canister 37 via an evaporative gas recovery passage 381a of the evaporative gas recovery pipe 381, where they are adsorbed by activated carbon packed inside the container of the canister 37 and are not released into the atmosphere. When the engine 31 is running, outside air is drawn into the canister 37 from an outside air introduction section 371 due to negative pressure generated in the intake pipe 315 of the engine 31. As the outside air passes through the activated carbon packed inside the container of the canister 37, the evaporative gases adsorbed on the activated carbon are desorbed from the activated carbon and supplied from the intake pipe 315 to the cylinder head 313 of the engine 31 through an evaporative gas supply passage 382a of the evaporative gas supply pipe 382.
[0036] The purge control valve 39 provided in the evaporated gas supply pipe 382 is, for example, an electromagnetic valve whose opening and closing is controlled by an electronic control unit 70 (described later). The purge control valve 39 may also be a check valve, a diaphragm valve, or the like.
[0037] The purge control valve 39 is disposed in front of the canister 37. Therefore, the fuel tank 36 is disposed behind the canister 37, and the purge control valve 39 is disposed in front of the canister 37.
[0038] This allows the lengths of the evaporated gas recovery pipe 381 and the evaporated gas supply pipe 382 to be shortened.
[0039] Returning to FIG. 1 and FIG. 4, the motorcycle 1 includes a power transmission unit 40 that transmits power generated by an engine 31 of a power unit 30, which is a power source, to a rear wheel RW.
[0040] The power transmission unit 40 is connected to the output shaft of the power unit 30 and includes a drive sprocket 41 that rotates integrally with the output shaft of the power unit 30, a driven sprocket 42 that rotates integrally with the rear wheel RW, and a chain 43 that is wound around the drive sprocket 41 and the driven sprocket 42. The rotational power output from the power unit 30 is transmitted to the driven sprocket 42 via the drive sprocket 41 and the chain 43, and the rear wheel RW is driven to rotate by the rotational power of the power unit 30 transmitted to the driven sprocket 42. In this way, the drive sprocket 41, the driven sprocket 42, and the chain 43 are each one of the transmission components that transmit the power generated by the engine 31 of the power unit 30, which is the power source of the motorcycle 1.
[0041] The motorcycle 1 is equipped with a pair of left and right front forks 51, which are arranged on both the left and right sides of the front wheel FW and have a cylindrical shape that extends in the vertical direction and slopes forward as it approaches downward. The pair of left and right front forks 51 support the front wheel FW at their lower ends. The pair of left and right front forks 51 function as a framework for connecting the front wheel FW to the body frame 10, and also function as shock absorbers that absorb impacts input to the front wheel FW.
[0042] The motorcycle 1 is rotatably supported on the body frame 10 and includes a steering unit 52 that supports a pair of left and right front forks 51 .
[0043] The steering unit 52 includes a rotatable bar-shaped handle 521 that extends in the vehicle width direction and steers the front wheel FW, a stem shaft 522 that is inserted into the head pipe 11 of the body frame 10, and an under bracket 524 that is provided at the lower end of the stem shaft 522 and connects and fixes the upper ends of the left and right front forks 51 together.
[0044] Handlebar 521 is fixed to the upper end of stem shaft 522. When the rider of motorcycle 1 turns handlebar 521, which extends in the vehicle width direction, steering unit 52 turns integrally with steering unit 52 about stem shaft 522 (head pipe 11 of body frame 10) as its axis. At this time, left and right front forks 51 fixed to under brackets 524 and front wheels FW supported on lower ends of left and right front forks 51 also turn integrally with steering unit 52 about stem shaft 522 (head pipe 11 of body frame 10) as their axis. In this way, by turning handlebar 521, front wheel FW can be turned.
[0045] The cowl member 20 covers various parts of the body frame 10 and guides wind coming from the front of the motorcycle 1. The cowl member 20 is divided into multiple parts. In this embodiment, the cowl member 20 has a front cowl 21, a main cowl 22, and a pair of left and right rear cowls 23.
[0046] The front cowl 21 covers the front of the head pipe 11 .
[0047] The main cowl 22 has an upper wall portion 22a that covers an upper portion of the front region of the main frame 12 and an upper portion of the front ends of the pair of left and right seat frames 14 and is connected to the front end of the rider seat 18, and a pair of left and right side wall portions 22b that cover the left and right sides of the head pipe 11, the left and right sides of the front region of the main frame 12, and the left and right sides of the front region of the pair of left and right seat frames 14. The upper wall portion 22a and the pair of left and right side wall portions 22b are molded integrally. Therefore, in this embodiment, the main cowl 22 has a shape that is open downward.
[0048] The rear cowl 23 extends rearward from the rear ends of the pair of left and right side wall portions 22b of the main cowl 22 and covers the sides of the rear regions of the pair of left and right seat frames 14 and the rear of the pair of left and right seat frames 14.
[0049] In a side view, a cover member 24 that covers the body of the motorcycle 1 from below is provided in an area surrounded by the main frame 12, the pair of left and right seat frames 14, and the pair of left and right rear frames 15. The cover member 24 curves downward and extends in the front-rear and left-right directions from the lower end of the rear region of the left side wall portion 22b of the main cowl 22 to the lower end of the rear region of the right side wall portion 22b.
[0050] 5 to 7, the rear end of the cover member 24 is fastened by bolts or the like to a connecting frame 15a that connects the pair of left and right rear frames 15. The left and right ends of the cover member 24 are engaged with the lower ends of the left and right side wall portions 22b of the main cowl 22, respectively.
[0051] The canister 37, the purge control valve 39, and the air cleaner box 342 are arranged so as to be covered by the cover member 24 from below.
[0052] This allows the canister 37, purge control valve 39, and air cleaner box 342 to be covered from below with the cover member 24, thereby protecting the canister 37, purge control valve 39, and air cleaner box 342 while allowing the canister 37, purge control valve 39, and air cleaner box 342 to be positioned together, thereby shortening the piping of the evaporative gas recovery pipe 381, evaporative gas supply pipe 382, etc.
[0053] The motorcycle 1 includes a battery unit 60. The battery unit 60 has a secondary battery, such as a lithium-ion battery or a lead battery. The battery unit 60 supplies power stored in the secondary battery via a harness 80 to each of a plurality of electrical components mounted on the motorcycle 1, including an electronic control unit 70 (described below). The harness 80 bundles together a plurality of power lines and signal lines, and is covered by an outer sheath member made of an insulating material. Therefore, the multiple power lines and signal lines forming the harness 80 are physically and electrically protected from the outside by the outer sheath member.
[0054] The battery unit 60 is disposed in front of the air cleaner box 342 and is disposed adjacent to the air cleaner box 342 in the front-rear direction.
[0055] The battery unit 60 is fixed to the front end of the cover member 24. More specifically, the lower surface of the battery unit 60 is fastened to the upper surface of the front end of the cover member 24 with fastening members such as bolts, thereby fixing the battery unit 60 to the front end of the cover member 24. Therefore, the battery unit 60 is disposed in front of the air cleaner box 342 and in a position where it is covered by the cover member 24 from below.
[0056] The motorcycle 1 is equipped with an electronic control unit (ECU) 70. The electronic control unit 70 is one of the electrical components mounted on the motorcycle 1. The electronic control unit 70 is a device that controls multiple electronically controlled electrical components mounted on the motorcycle 1, including the ACG starter 33, a fuel injection device attached to the throttle body 341 of the intake system 34, the purge control valve 39, etc.
[0057] 7 to 9, the electronic control unit 70 is fixed to the cover member 24. More specifically, an ECU fixing portion 241 is formed in the right region of the front end portion of the cover member 24, and the electronic control unit 70 is fixed to the ECU fixing portion 241 of the cover member 24.
[0058] The electronic control unit 70 has a substantially rectangular parallelepiped shape and has an upper surface, a lower surface, a front surface, a rear surface, a left surface, and a right surface. In this embodiment, the upper surface and the lower surface are surfaces that are substantially perpendicular to the up-down direction, the front surface and the rear surface are surfaces that are substantially perpendicular to the front-to-rear direction, and the left surface and the right surface are surfaces that are substantially perpendicular to the left-to-right direction. In this embodiment, the electronic control unit 70 has a flattened, substantially rectangular parallelepiped shape with a vertical dimension that is smaller than its front-to-rear dimension.
[0059] The electronic control unit 70 is disposed between the passenger seat 18 and the cover member 24 in the vertical direction, and its lower surface is covered by the cover member 24.
[0060] The battery unit 60, the electronic control unit 70, and the connecting tube 343 are arranged so as to intersect with a predetermined imaginary line extending in the vertical direction, which is a first imaginary line VL1 in this embodiment, in a side view. Furthermore, the electronic control unit 70 and the connecting tube 343 are arranged below the battery unit 60.
[0061] This allows the battery unit 60, the electronic control unit 70, and the connecting tube 343 to be arranged together, thereby reducing the number of parts in the motorcycle 1 and saving space.
[0062] An ECU-side connector 71 is provided on a front surface 70a of the electronic control unit 70. The ECU-side connector 71 protrudes from the front surface 70a of the electronic control unit 70 in a substantially rectangular parallelepiped shape.
[0063] The harness 80 includes an ECU harness 81 that connects the battery unit 60 and the electronic control unit 70. The ECU harness 81 is connected to the electronic control unit 70 in a removably insertable manner.
[0064] One end of the ECU harness 81 is provided with a harness-side connector 811 that is removably fitted into and connected to the ECU-side connector 71 of the electronic control unit 70. One end of the ECU harness 81 is connected to the electronic control unit 70 via the harness-side connector 811 and the ECU-side connector 71, and the other end of the ECU harness 81 is connected to the battery unit 60. The battery unit 60 supplies power to the electronic control unit 70 via the ECU harness 81.
[0065] The ECU harness 81 can be inserted into and removed from the electronic control unit 70 in the front-rear direction. That is, in this embodiment, the insertion and removal direction of the ECU harness 81 into and from the electronic control unit 70 is the front-rear direction.
[0066] In this embodiment, a harness-side connector 811 is fitted into the ECU-side connector 71 of the electronic control unit 70 near one end of the ECU harness 81, and the ECU harness 81 extends forward and upward from the harness-side connector 811. Since the electronic control unit 70 is disposed below the battery unit 60, the ECU harness 81 extends upward from the electronic control unit 70 toward the battery unit 60.
[0067] In this embodiment, the motorcycle 1 has access to the space surrounded by the main cowl 22 from the front, and the ECU harness 81 is accessible from the front. Therefore, the motorcycle 1 has access to the ECU harness 81 from the front, and the ECU harness 81 can be inserted into and removed from the electronic control unit 70 without removing the cowl member 20.
[0068] The ECU fixing portion 241 of the cover member 24 has an ECU mounting portion 241a that extends approximately flat in the front-to-back and left-to-right directions, and a pair of left and right side wall portions 241b that bend upward from both the left and right ends of the ECU mounting portion 241a and extend in the up-down and front-to-back directions.
[0069] The electronic control unit 70 is fixed to the ECU fixing portion 241 of the cover member 24 in a state in which it is placed on the upper surface of the ECU mounting portion 241a.
[0070] The ECU mounting portion 241a of the ECU fixing portion 241 extends forward of the front surface 70a of the electronic control unit 70. In this embodiment, the ECU mounting portion 241a extends forward of the harness-side connector 811 of the ECU harness 81 when the ECU harness 81 is connected to the electronic control unit 70.
[0071] Similar to the ECU mounting portion 241a, the pair of left and right side wall portions 241b of the ECU fixing portion 241 also extend forward of the front surface of the electronic control unit 70. In the present embodiment, the pair of left and right side wall portions 241b of the ECU fixing portion 241 extend to the front end of the ECU mounting portion 241a. Therefore, when the ECU harness 81 is connected to the electronic control unit 70, the pair of left and right side wall portions 241b of the ECU fixing portion 241 extend forward of the harness-side connector 811 of the ECU harness 81.
[0072] A buckle member 242 that can rotate around a rotation axis in the front-rear direction is provided on the upper end of the left side wall portion 241b of the ECU fixing portion 241, i.e., the side wall portion 241b on the vehicle width center side. The buckle member 242 has a substantially rectangular ring shape when viewed from the top-bottom direction, with both left and right ends inclined downward toward the outside in the left-right direction. The left edge of the buckle member 242 functions as a rotation axis extending in the front-rear direction. The buckle member 242 is provided at a position that overlaps with the top surface of the electronic control unit 70 when viewed from above.
[0073] A buckle locking portion 241c that can lock onto the right edge of the buckle member 242 is formed on the upper end of the right side wall portion 241b of the ECU fixing portion 241, i.e., the side wall portion 241b on the outer side in the vehicle width direction. The buckle locking portion 241c is formed by integral molding with the right side wall portion 241b of the ECU fixing portion 241, i.e., the cover member 24.
[0074] When the right edge of the buckle member 242 is engaged with the buckle engaging portion 241c, the upper surface of the electronic control unit 70 is pressed downward by the buckle engaging portion 241c. The electronic control unit 70 is then sandwiched in the vertical direction between the buckle member 242 and the ECU mounting portion 241a of the cover member 24, and is fixed to the ECU fixing portion 241 of the cover member 24.
[0075] The pair of left and right side wall portions 241b of the ECU fixing portion 241 are formed so that, when the electronic control unit 70 is fixed to the ECU fixing portion 241 of the cover member 24, the left side wall portion 241b faces the left surface of the electronic control unit 70 and the right side wall portion 241b faces the right surface of the electronic control unit 70. The pair of left and right side wall portions 241b of the ECU fixing portion 241 may be formed so that, when the electronic control unit 70 is fixed to the ECU fixing portion 241 of the cover member 24, the left side wall portion 241b abuts against the left surface of the electronic control unit 70 and the right side wall portion 241b abuts against and faces the right surface of the electronic control unit 70.
[0076] The cover member 24 is provided with a restricting portion 243 at a position facing the front surface 70a of the electronic control unit 70. The restricting portion 243 restricts the movement of the electronic control unit 70 in the front-rear direction. The restricting portion 243 is formed integrally with the cover member 24.
[0077] Therefore, even if the ECU harness 81 is pulled in the front-rear direction, the restricting portion 243 restricts the electronic control unit 70 from moving forward, thereby preventing the electronic control unit 70 from coming off the motorcycle 1. Moreover, since the restricting portion 243 is formed integrally with the cover member 24, the number of parts is not increased and the electronic control unit 70 can be prevented from coming off the motorcycle 1 even if the ECU harness 81 is pulled in the front-rear direction.
[0078] The restricting portion 243 has a pair of left and right side wall portions 243a extending in the up-down and front-rear directions, and an upper wall portion 243b extending in the left-right and front-rear directions and connecting the upper ends of the pair of left and right side wall portions 243a.
[0079] The ECU side connector 71 has a lower region on its left surface facing the left side wall 241b of the ECU fixing portion 241 at a predetermined distance, an upper region on its left surface facing the left side wall 243a of the restricting portion 243 at a predetermined distance, a lower region on its right surface facing the right side wall 241b of the ECU fixing portion 241 at a predetermined distance, an upper region on its right surface facing the right side wall 243a of the restricting portion 243 at a predetermined distance, an upper surface facing the upper wall 243b of the restricting portion 243 at a predetermined distance, and a lower surface facing the ECU mounting portion 241a of the ECU fixing portion 241 at a predetermined distance. Therefore, when the electronic control unit 70 is fixed to the ECU fixing portion 241 of the cover member 24, the ECU side connector 71 is surrounded by the restricting portion 243, the left and right side wall portions 241b of the ECU fixing portion 241, and the ECU mounting portion 241a when viewed from the front.
[0080] The pair of left and right side wall portions 243a are arranged so that a distance D1 between them in the left-right direction is smaller than the left-right dimension L1 of the electronic control unit .
[0081] Therefore, when the ECU harness 81 is pulled in the insertion / removal direction (forward in this embodiment), the front surface 70a of the electronic control unit 70 comes into contact with the pair of left and right side wall portions 243a of the restricting portion 243, thereby restricting the forward movement of the electronic control unit 70. In this way, the restricting portion 243 can restrict the forward / backward movement of the electronic control unit 70 with the pair of left and right side wall portions 243a, thereby improving the degree of freedom in designing the restricting portion 243 in the up / down direction, such as the position and shape of the upper wall portion 243b.
[0082] Furthermore, when viewed from the front-to-rear direction, the distance D2 from the upper wall portion 243b of the regulating portion 243 to the upper surface of the ECU side connector 71 is longer than the distance D3 from the upper surface of the ECU mounting portion 241a of the cover member 24 to the lower surface of the ECU side connector 71.
[0083] This makes it easy to remove the ECU harness 81 from the electronic control unit 70 when the ECU harness 81 is pulled in the insertion / removal direction (forward in this embodiment) and pulled diagonally upward relative to the insertion / removal direction.
[0084] Furthermore, when viewed from the front-rear direction, at least a portion of the upper wall portion 243b of the restricting portion 243 extends in the left-right direction above the top surface of the electronic control unit 70.
[0085] This makes it easy to remove the ECU harness 81 from the electronic control unit 70 when the ECU harness 81 is pulled in the insertion / removal direction (forward in this embodiment) and pulled diagonally upward relative to the insertion / removal direction.
[0086] Additionally, the upper wall portion 243b of the restricting portion 243 is located in front of the buckle member 242, and at least a portion of the upper wall portion 243b extends above the buckle member 242 in the left-right direction.
[0087] Therefore, while the ECU harness 81 is accessible from the front, even if an attempt is made to access the electronic control unit 70 from the front, the upper wall portion 243b of the restricting portion 243 prevents access to the buckle member 242, making it difficult to access the electronic control unit 70 from the front and remove the electronic control unit 70 from the motorcycle 1. This makes it possible to access the ECU harness 81 from the front and easily insert and remove the ECU harness 81 into and from the electronic control unit 70, while improving the theft prevention effect of the electronic control unit 70.
[0088] Although one embodiment of the present invention has been described above with reference to the accompanying drawings, it goes without saying that the present invention is not limited to such an embodiment. It is clear that a person skilled in the art can conceive of various modifications or alterations within the scope of the claims, and it is understood that these also naturally fall within the technical scope of the present invention. Furthermore, the components of the above embodiment may be combined in any manner without departing from the spirit of the invention.
[0089] For example, in this embodiment, the regulating section 243 regulates the movement of the electronic control unit 70 in the insertion / removal direction of the ECU harness 81, but it may also regulate the movement of electrical components other than the electronic control unit 70 in the insertion / removal direction of the harness 80.
[0090] Also, for example, in this embodiment, the electronic control unit 70 is fixed to the cover member 24 by the buckle member 242, but the member that fixes the electronic control unit 70 to the cover member 24 is not limited to the buckle member 242 and may be any fixing member.
[0091] This specification describes at least the following: In parentheses, components corresponding to those in the above-described embodiments are shown as examples, but the present invention is not limited to these.
[0092] (1) a cover member (cover member 24) that covers the vehicle body from below; an electrical component (electronic control unit 70) supported by the cover member; a harness (ECU harness 81) connected to the electrical equipment in an insertable and removable manner; An electrical equipment connector (ECU side connector 71) is provided on a first surface (front surface 70a) of the electrical equipment facing the insertion / removal direction of the harness, A harness-side connector (harness-side connector 811) is provided at one end of the harness to be removably connected to the electrical equipment-side connector, A saddle-type vehicle, wherein the cover member has a restricting portion (restricting portion 243) formed integrally with the cover member at a position opposite the first surface of the electrical equipment in the insertion / removal direction, the restricting portion restricting the movement of the electrical equipment in the insertion / removal direction.
[0093] According to (1), the restricting portion that restricts the movement of the electrical equipment in the insertion / removal direction of the harness is formed by integral molding with the cover member, so that the electrical equipment can be prevented from coming off the saddle-type vehicle without increasing the number of parts.
[0094] (2) A saddle-type vehicle according to (1), The saddle-type vehicle further includes a seat (passenger seat 18) on which a driver can sit, The electrical equipment is disposed between the seat and the cover member in the vertical direction, the insertion / removal direction is a front-rear direction of the saddle-ride type vehicle, The restricting portion has a pair of left and right side wall portions (side wall portions 243a) extending in the up-down direction and the front-rear direction, and an upper wall portion (upper wall portion 243b) extending in the left-right direction and the front-rear direction and connecting upper ends of the pair of left and right side wall portions, The pair of left and right side wall portions are arranged so that the distance between them in the left-right direction (distance D1) is smaller than the left-right dimension (left-right dimension L1) of the electrical equipment.
[0095] According to (2), the restricting portion can restrict the forward and backward movement of the electrical component with the pair of left and right side wall portions, which improves the degree of freedom in designing the restricting portion in the up and down direction.
[0096] (3) The saddle-type vehicle according to (2), A saddle-type vehicle in which, when viewed from the insertion / removal direction, the distance (distance D2) from the upper wall portion to the upper surface of the electrical equipment side connector is longer than the distance (distance D3) from the upper surface of the cover member to the lower surface of the electrical equipment side connector.
[0097] According to (3), when the harness is pulled in the insertion / removal direction to remove the harness from the electrical equipment, the harness can be easily removed from the electrical equipment even when pulled obliquely upward relative to the insertion / removal direction.
[0098] (4) A saddle-type vehicle according to (2), When viewed from the insertion / removal direction, at least a portion of the upper wall portion extends in the left-right direction above an upper surface of the electrical equipment.
[0099] According to (4), when the harness is pulled in the insertion / removal direction to remove the harness from the electrical equipment, the harness can be easily removed from the electrical equipment even when pulled obliquely upward relative to the insertion / removal direction.
[0100] (5) A saddle-type vehicle according to (2), The saddle-ride type vehicle is such that the harness is accessible from the front, The electrical equipment is fixed to the cover member by a fixing member (buckle member 242), The upper wall portion is located in front of the fixing member, and at least a portion of the upper wall portion extends in the left-right direction above the fixing member.
[0101] According to (5), while the harness is accessible from the front, even if an attempt is made to access the electrical equipment from the front, the upper wall portion prevents access to the fixing member, making it difficult to access the electrical equipment from the front and remove the electrical equipment from the saddle-type vehicle. This makes it possible to access the harness from the front and easily insert and remove the harness from the electrical equipment, while improving the anti-theft effect of the electrical equipment.
[0102] (6) A saddle-type vehicle according to any one of (1) to (5), The saddle-ride type vehicle is Engine (Engine 31) and a fuel tank (fuel tank 36) that stores fuel to be supplied to the engine; a canister (canister 37) that adsorbs evaporated gas from the fuel stored in the fuel tank; an evaporative gas supply pipe (evaporative gas supply pipe 382) that connects the canister with the engine and forms an evaporative gas supply flow path (evaporative gas supply flow path 382a) that supplies the evaporative gas to the engine; a purge control valve (purge control valve 39) provided in the evaporative gas supply pipe for opening and closing the evaporative gas supply passage; and an air cleaner box (air cleaner box 342) that purifies the outside air to be supplied to the engine. The canister, the purge control valve, and the air cleaner box are arranged so as to be covered from below by the cover member.
[0103] According to (6), the canister, the purge control valve, and the lower part of the air cleaner box can all be covered with the cover member, so that the canister, the purge control valve, and the air cleaner box can be protected while being arranged together, thereby shortening the piping including the evaporative gas recovery pipe and the evaporative gas supply pipe.
[0104] (7) A saddle-type vehicle according to (6), the fuel tank is disposed rearward of the canister; The purge control valve is disposed in front of the canister.
[0105] According to (7), the fuel tank is disposed behind the canister, and the purge control valve is disposed in front of the canister, so that the lengths of the evaporative gas recovery pipe and the evaporative gas supply pipe can be shortened.
[0106] (8) A saddle-type vehicle according to (6), The saddle-ride type vehicle is a battery unit (battery unit 60) that supplies power to the electrical equipment; a connecting tube (connecting tube 343) that connects the air cleaner box and the engine, The battery unit is disposed in front of the air cleaner box and at a position covered by the cover member from below, The battery unit, the electrical equipment, and the connecting tube are arranged so as to intersect with a predetermined imaginary line (first imaginary line VL1) extending in the vertical direction in a side view, The electric equipment and the connecting tube are disposed below the battery unit.
[0107] According to (8), the battery unit, electrical equipment, and connecting tubes are arranged so as to intersect a predetermined imaginary line extending in the vertical direction in a side view, and the electrical equipment and connecting tubes are arranged below the battery unit, so that the battery unit, electrical equipment, and connecting tubes can be arranged together, thereby reducing the number of parts in the saddle-type vehicle and saving space. [Explanation of symbols]
[0108] 1. Motorcycles (saddle-type vehicles) 18 Passenger seat (seat) 24 Cover member 242 Buckle member (fixing member) 243 Regulatory Department 243a Side wall part 243b Upper wall 31 Engine 342 Air cleaner box 343 Connecting Tube 36 Fuel tank 37 Canister 382 Evaporative gas supply pipe 382a Evaporative gas supply passage 39 Purge control valve 60 Battery Unit 70 Electronic control unit (electrical equipment) 70a Front (first side) 71 ECU side connector (electrical equipment side connector) 81 ECU harness (harness) 811 Harness side connector D1 Distance D2 distance D3 Distance L1 left and right dimensions VL1 First virtual line (virtual line)
Claims
1. A seat (18) on which a driver can sit; a cover member (24) that covers the vehicle body from below; an electrical component (70) supported by the cover member (24); The electrical equipment (70) is disposed between the seat (18) and the cover member (24) in the vertical direction, a harness (81) removably connected to the electrical equipment (70), An electrical equipment-side connector (71) is provided on a first surface (70a) of the electrical equipment (70) facing the insertion / removal direction of the harness (81), A harness-side connector (811) is provided at one end of the harness (81) and is removably connected to the electrical equipment-side connector (71), The insertion / removal direction is the front-rear direction of the saddle-ride type vehicle (1), The cover member (24) is formed integrally with a restricting portion (243) at a position facing the first surface (70a) of the electrical equipment (70) in the insertion / removal direction, the restricting portion restricting movement of the electrical equipment (70) in the insertion / removal direction; The restricting portion (243) has a pair of left and right side wall portions (243a) extending in the up-down direction and the front-rear direction, and an upper wall portion (243b) extending in the left-right direction and the front-rear direction and connecting upper ends of the pair of left and right side wall portions (243a), The pair of left and right side wall portions (243a) are arranged so that the distance (D1) between them in the left-right direction is smaller than the left-right dimension (L1) of the electrical equipment (70).
2. A saddle-type vehicle (1) according to claim 1, When viewed from the insertion / removal direction, the distance (D2) from the upper wall portion (243b) to the upper surface of the electrical equipment side connector (71) is longer than the distance (D3) from the upper surface of the cover member (24) to the lower surface of the electrical equipment side connector (71).
3. A saddle-type vehicle (1) according to claim 1, When viewed from the insertion / removal direction, at least a portion of the upper wall portion (243b) extends in the left-right direction above an upper surface of the electrical equipment (70).
4. A saddle-type vehicle (1) according to claim 1, The saddle-ride type vehicle (1) is configured such that the harness (81) is accessible from the front, The electrical equipment (70) is fixed to the cover member (24) by a fixing member (242), The upper wall portion (243b) is located in front of the fixing member (242), and at least a portion of the upper wall portion (243b) extends in the left-right direction above the fixing member (242).
5. A saddle-type vehicle (1) according to any one of claims 1 to 4, The saddle-ride type vehicle (1) includes: an engine (31); a fuel tank (36) for storing fuel to be supplied to the engine (31); a canister (37) for absorbing evaporated gas from the fuel stored in the fuel tank (36); an evaporated gas supply pipe (382) that connects the canister (37) and the engine (31) and forms an evaporated gas supply passage (382a) that supplies the evaporated gas to the engine (31); a purge control valve (39) provided in the evaporated gas supply pipe (382) for opening and closing the evaporated gas supply passage (382a); an air cleaner box (342) for purifying outside air to be supplied to the engine (31); The canister (37), the purge control valve (39), and the air cleaner box (342) are arranged so as to be covered from below by the cover member (24).
6. A saddle-type vehicle (1) according to claim 5, The fuel tank (36) is disposed behind the canister (37), The purge control valve (39) is disposed in front of the canister (37).
7. A saddle-type vehicle (1) according to claim 5, The saddle-ride type vehicle (1) includes: a battery unit (60) that supplies power to the electrical equipment (70); a connecting tube (343) that connects the air cleaner box (342) and the engine (31); The battery unit (60) is disposed in front of the air cleaner box (342) and at a position covered by the cover member (24) from below, The battery unit (60), the electrical equipment (70), and the connecting tube (343) are arranged so as to intersect with a predetermined imaginary line (VL1) extending in the vertical direction in a side view, The electric equipment (70) and the connecting tube (343) are disposed below the battery unit (60).
Citation Information
Patent Citations
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