Work Vehicle
20250382924 ยท 2025-12-18
Inventors
Cpc classification
F02D2200/101
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D2200/50
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D9/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D2009/022
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A work vehicle includes an engine; a transmission device configured to adjust motive power from the engine; a centrifugal clutch between the engine and the transmission device; and a throttle controller configured to electronically control an opening degree of a throttle valve of the engine, the throttle controller including a filter value deriver configured to derive an opening degree filter value from an engine rotational speed of the engine and the opening degree, the throttle controller being configured to electronically control the opening degree with use of the opening degree filter value, the filter value deriver being configured to derive a first opening degree filter value for decreasing throttle responsiveness of the engine under a derivation condition of the engine rotational speed being not higher than a centrifugal clutch connection rotational speed of the centrifugal clutch.
Claims
1. A work vehicle, comprising: an engine; a transmission device configured to adjust motive power from the engine; a centrifugal clutch between the engine and the transmission device; and a throttle controller configured to electronically control an opening degree of a throttle valve of the engine, and wherein: the throttle controller comprises a filter value deriver configured to derive an opening degree filter value from an engine rotational speed of the engine and the opening degree, the throttle controller is configured to electronically control the opening degree with use of the opening degree filter value, and the filter value deriver is configured to derive a first opening degree filter value for decreasing throttle responsiveness under a derivation condition of the engine rotational speed being not higher than a centrifugal clutch connection rotational speed of the centrifugal clutch.
2. The work vehicle according to claim 1, wherein: the filter value deriver is configured to, under a condition of the engine rotational speed being not lower than an idling rotational speed of the engine and not higher than the centrifugal clutch connection rotational speed, derive a second opening degree filter value for decreasing the throttle responsiveness as compared to a third opening degree filter value derived under another condition.
3. The work vehicle according to claim 1, wherein: the filter value deriver comprises a partially or entirely adjustable three-dimensional map based on the engine rotational speed, the opening degree, and the opening degree filter value.
4. The work vehicle according to claim 3, wherein: the three-dimensional map is partially or entirely adjustable in accordance with a change in a property of the centrifugal clutch over time.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
DESCRIPTION OF THE INVENTION
[0017] The description below deals with a utility vehicle as an example of the work vehicle according to the present invention. The description below of the utility vehicle refers to the drawings, which show arrow F to indicate the forward direction relative to the vehicle body, arrow B to indicate the backward direction relative to the vehicle body, arrow U to indicate the upward direction relative to the vehicle body, arrow D to indicate the downward direction relative to the vehicle body, arrow L to indicate the leftward direction relative to the vehicle body, and arrow R to indicate the rightward direction relative to the vehicle body.
[0018]
[0019] As illustrated in
[0020]
[0021] The control system includes as elements related to present embodiment an engine controlling unit 4 and a meter controlling unit 8 connected to each other over an in-vehicle local-area network. The engine controlling unit 4 is configured to transmit various control instructions to the engine E and its accessories and receive signals indicative of the state of the engine E detected by various sensors or the like such as an engine rotational speed. The engine controlling unit 4 includes a throttle controller 50 as a functional section particularly related to present embodiment.
[0022] The meter controlling unit 8 is configured to receive from various sensors included in a vehicle device group 7 detection signals indicative of such states as how the utility vehicle is driven, how the utility vehicle is operated, and the state of the driver, and notify the driver of the above states with use of various meters and lamps included in the meter panel 93 and the touch screen 94. The meter controlling unit 8 is also configured to receive operation signals from various operation switches included in the meter panel 93 and transmit the operation signals to the engine controlling unit 4 where necessary. The engine controlling unit 4 receives directly from the vehicle device group 7 some detection signals, for example, an operation signal indicative of an operation of the accelerator pedal 71.
[0023]
[0024] The throttle controller 50 is configured to electronically control the opening degree of the throttle valve 60 with use of an opening degree filter value based on the engine rotational speed and the current opening degree of the throttle valve 60. The throttle controller 50 includes an opening degree calculator 51 and a filter value deriver 52 for the electronic control. The throttle valve 60 and the throttle controller 50 constitute a throttle mechanism 6.
[0025] The throttle controller 50 is configured to generate a throttle controlling signal with use of an opening degree filter value (degree of smoothing). The opening degree of the throttle valve 60 decided based on an opening degree filter value, which decreases the throttle responsiveness under a particular condition. Specifically, the throttle controller 50 generates a throttle controlling signal with use of an opening degree filter value. The filter value deriver 52 is configured to derive an opening degree filter value (a first opening degree filter valuer) for decreasing the throttle responsiveness under a predetermined particular derivation condition, that is, if the engine rotational speed is not higher than the centrifugal clutch connection rotational speed of the centrifugal clutch 11, preferably, if the engine rotational speed is not lower than the idling rotational speed and not higher than the centrifugal clutch connection rotational speed. In other words, the filter value deriver 52 is configured to, if the engine rotational speed is not lower than the idling rotational speed and not higher than the centrifugal clutch connection rotational speed, derive an opening degree filter valuer (a second opening degree filter valuer) for decreasing the throttle responsiveness as compared to an opening degree filter value (a third opening degree filter valuer) derived under another condition.
[0026] As illustrated in
[0027] The lookup table shows each of the engine rotational speed and the accelerator opening degree with discrete numerical values, that is, values in distinct stages, and accordingly assigns to the distinct stages opening degree filter values to be derived. The stages in
[0028] The lookup table in
[0029]
[0030] The opening degree filter value, which is related to the throttle responsiveness, is an important factor for drivability. The relationship between the engine rotational speed, the opening degree of the throttle valve 60, and the opening degree filter value should thus preferably be at least partially adjusted depending on, for example, the personality of the utility vehicle, a change of the utility vehicle over time, and/or the driver's preferences. The lookup table for the present embodiment allows adjustment of the opening degree filter value and the range of the degree of smoothing partial matrix.
[0031] The centrifugal clutch 11, which is configured to control motive power transmission with use of centrifugal force, has clutch properties that vary individually and that change over time. In view of that, the lookup table for the present embodiment includes a three-dimensional map partially or entirely adjustable in accordance with a change in the properties of the centrifugal clutch 11 over time.
Alternative Embodiments
[0032] (1) The embodiment described above is a utility vehicle as an example of the work vehicle. The present invention is also applicable to, for example, a mower, a snowmobile, or an off-road vehicle.
[0033] (2) The embodiment described above uses only the engine rotational speed and the opening degree of the throttle valve 60 as derivation conditions for deriving an opening degree filter value. The derivation conditions may further include such factors as weather, the state of the travel surface, and geographical characteristics.
[0034] The arrangements disclosed for the above embodiments (including the alternative embodiments) may each be combined with an arrangement disclosed for another embodiment, as long as such a combination does not cause a contradiction. Further, the embodiments disclosed in the present specification are mere examples. The present invention is not limited to those embodiments, and may be altered as appropriate, as long as such an alteration does not result in a failure to attain an object of the present invention.
INDUSTRIAL APPLICABILITY
[0035] The present invention is applicable to a work vehicle including an engine, a motive power transmission path extending from the engine, and a centrifugal clutch on the motive power transmission path.
REFERENCE SIGNS LIST
[0036] 4 Engine controlling unit [0037] 6 Throttle mechanism [0038] 8 Meter controlling unit [0039] 11 Centrifugal clutch [0040] 12 Transmission device [0041] 30 Cargo bed [0042] 50 Throttle controller [0043] 51 Opening degree calculator [0044] 52 Filter value deriver [0045] 60 Throttle valve [0046] 71 Accelerator pedal [0047] 72 Shift lever [0048] E Engine [0049] T Transmission