Decompression device for internal combustion engine
09752463 ยท 2017-09-05
Inventors
Cpc classification
F01L1/181
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L13/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2800/03
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2013/0094
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/2411
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A decompression device for an internal combustion engine comprises a valve rocker shaft bracket and a valve rod. A valve spring is sleeved on the valve rod, and above the valve rod a valve rocker is arranged. The valve rocker shaft bracket is connected to a decompression bracket. The valve rocker is movably connected to a valve opening/closing device connected with a control device. When the internal combustion engine is started, the valve opening/closing device receives a control command from the control device to keep connecting with the valve rocker for a time, and then disconnect, so that the valve rod arrives at the valve closing position.
Claims
1. A decompression device for an internal combustion engine, comprising: a valve rocker shaft bracket; and a valve rod, wherein a valve spring is sleeved on the valve rod, and a valve rocker is arranged above the valve rod; the valve rocker shaft bracket is connected to a decompression bracket; the valve rocker is movably connected to a valve opening/closing device connected with a control device; the control device is configured to control the valve opening/closing device; the control device is a time-delay relay; when the valve rocker moves downwards before the internal combustion engine is stopped, a space is generated between the valve rocker and a decompression shaft; the valve opening/closing device receives a control command from the control device to insert a valve limiting device in the space so that the valve opening/closing device connects with the valve rocker, the valve rod cannot arrive at a valve closing position, and a valve is at an open state; when the internal combustion engine is started, the valve opening/closing device receives a control command from the control device to keep connecting with the valve rocker for a time, and then disconnect, and the valve rod arrives at the valve closing position; and the control device sends a command to the valve opening/closing device to keep connecting or disconnecting with the valve rocker.
2. The decompression device for the internal combustion engine of claim 1, wherein the valve opening/closing device comprises the decompression shaft located above the valve rocker, the decompression shaft is secured in a mounting hole of the decompression bracket, and the decompression shaft is moveable in the mounting hole of the decompression bracket; a decompression cushion block is sleeved on the decompression shaft, springs are respectively arranged at two ends of the decompression cushion block, the springs are located on the decompression shaft, a spring limiting device is arranged at a side of each of the springs that is away from the decompression cushion block, lengths of each of the springs are equal to each other, and elastic forces of each of the springs are equal to each other; the decompression cushion block is the valve limiting device; and an electromagnet is fixed on a valve chamber cover, a movable iron core of the electromagnet is connected with the decompression shaft, an operation of the electromagnet is controlled by the time-delay relay, and when the internal combustion engine is stopped, the decompression cushion block is located between the decompression shaft and the valve rocker.
3. The decompression device for the internal combustion engine of claim 2, wherein the spring limiting device is a snap spring.
4. The decompression device for the internal combustion engine of claim 2, wherein the spring limiting device comprises a shifting fork shaft and a shifting fork on the shifting fork shaft, and the shifting fork limits the springs; and the movable iron core of the electromagnet is connected with the decompression shaft through the shifting fork shaft and the shifting fork.
5. The decompression device for the internal combustion engine of claim 1, wherein the valve opening/closing device comprises an electromagnet fixed on the decompression bracket; the valve limiting device is a movable iron core; and an action of the electromagnet is controlled by the time-delay relay, and when the internal combustion engine is stopped, the movable iron core is located between the decompression bracket and the valve rocker.
6. The decompression device for the internal combustion engine of claim 1, wherein the valve opening/closing device comprises a hydraulic cylinder fixed on the decompression bracket; an action of a piston of the hydraulic cylinder is controlled by the time-delay relay, and when the internal combustion engine is stopped, the piston is located between the decompression bracket and the valve rocker; and the piston is the valve limiting device.
7. The decompression device for the internal combustion engine of claim 1, wherein the valve opening/closing device comprises an electromagnet fixed on the decompression bracket; the valve limiting device is a movable iron core; and an action of the electromagnet is controlled by the time-delay relay, a valve cap is installed at an upper end of the valve rod, and when the internal combustion engine is stopped, the movable iron core is located between the decompression bracket and the valve cap.
8. A decompression device for an internal combustion engine, comprising: a valve rocker shaft bracket; and a valve rod, wherein a valve spring is sleeved on the valve rod, and a valve rocker is arranged above the valve rod; the valve rocker shaft bracket is connected to a decompression bracket; the valve rocker is movably connected to a valve opening/closing device connected with a control device; the control device is a time-delay relay; when the valve rocker moves downwards before the internal combustion engine is stopped, the valve opening/closing device receives a control command from the control device to connect with the valve rocker, so that the valve rod cannot arrive at a valve closing position, and a valve is at an open state; when the internal combustion engine is started, the valve opening/closing device receives a control command from the control device to keep connecting with the valve rocker for a time, and then disconnect, and the valve rod arrives at the valve closing position; the control device sends a command to the valve opening/closing device to keep connecting or disconnecting with the valve rocker; the valve opening/closing device comprises a decompression shaft located above the valve rocker, the decompression shaft is secured in a mounting hole of the decompression bracket, and the decompression shaft is moveable in the mounting hole of the decompression bracket; a decompression cushion block is sleeved on the decompression shaft, springs are respectively arranged at two ends of the decompression cushion block, the springs are located on the decompression shaft, a spring limiting device is arranged at a side of each of the springs that is away from the decompression cushion block, lengths of each of the springs are equal to each other, and elastic forces of each of the springs are equal to each other; and an electromagnet is fixed on a valve chamber cover, a movable iron core of the electromagnet is connected with the decompression shaft, an operation of the electromagnet is controlled by the time-delay relay, and when the internal combustion engine is stopped, the decompression cushion block is located between the decompression shaft and the valve rocker.
9. The decompression device for the internal combustion engine of claim 8, wherein the spring limiting device is a snap spring.
10. The decompression device for the internal combustion engine of claim 8, wherein the spring limiting device comprises a shifting fork shaft and a shifting fork on the shifting fork shaft, and the shifting fork limits the springs; and the movable iron core of the electromagnet is connected with the decompression shaft through the shifting fork shaft and the shifting fork.
11. A decompression device for an internal combustion engine, comprising: a valve rocker shaft bracket; and a valve rod, wherein a valve spring is sleeved on the valve rod, and a valve rocker is arranged above the valve rod; the valve rocker shaft bracket is connected to a decompression bracket; the valve rocker is movably connected to a valve opening/closing device connected with a control device; the control device is a time-delay relay; when the valve rocker moves downwards before the internal combustion engine is stopped, the valve opening/closing device receives a control command from the control device to connect with the valve rocker, so that the valve rod cannot arrive at a valve closing position, and a valve is at an open state; when the internal combustion engine is started, the valve opening/closing device receives a control command from the control device to keep connecting with the valve rocker for a time, and then disconnect, and the valve rod arrives at the valve closing position; the control device sends a command to the valve opening/closing device to keep connecting or disconnecting with the valve rocker; the valve opening/closing device comprises an electromagnet fixed on the decompression bracket; and an action of the electromagnet is controlled by the time-delay relay, and when the internal combustion engine is stopped, a movable iron core is located between the decompression bracket and the valve rocker.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
DETAILED DESCRIPTION OF THE EMBODIMENTS
Embodiment 1
(9) In
(10) When the internal combustion engine needs to be stopped, the time-delay relay 10 controls the electromagnet 9, the time-delay relay 10 switches on the circuit of the electromagnet 9, the movable iron core 8 propels the decompression shaft 3 to move towards the direction of the valve rocker 5, the springs 4 are compressed, when the valve rocker 5 drops, the decompression cushion block 6 is located between the valve rocker 5 and the decompression shaft 3, the circuit of the electromagnet 9 is switched off, under the acting force of the valve spring 12, the decompression cushion block 6 is located between the valve rocker 5 and the decompression shaft 3 and cannot be reset, the valve rod 11 cannot arrive at a valve closing position, and the valve is at an open state. When the internal combustion engine needs to be started, a signal is sent to the time-delay relay 10 at first, so that the position of the decompression cushion block 6 is maintained between the valve rocker 5 and the decompression shaft 3, the power supply of a starter is turned on, the starter drives a flywheel to rotate, a crankshaft of the internal combustion engine reaches a starting speed, the time-delay relay 10 switches off the circuit of the electromagnet 9, when the valve rocker 5 moves downwards, the decompression cushion block 6 is reset under the acting force of the springs 4, the valve rod 11 arrives at the valve closing position, and the internal combustion engine is started.
(11) In this invention, the valve rocker naturally drops by means of the operation of the internal combustion engine itself, when a certain space is generated with the decompression shaft, a cushion block is inserted in the space so that the valve rod cannot operate to the valve closing position, and the valve is at the open state. The device only needs a very small acting force for opening the valve, and most components can be placed in the valve chamber cover, so that no space is occupied, installation is simple and convenient, the structure is mechanical, the components are few, the reliability is high and the cost is low.
Embodiment 2
(12) In
(13) When the internal combustion engine needs to be stopped, the time-delay relay 10 controls the electromagnet 9, the time-delay relay 10 switches on the circuit of the electromagnet 9, the movable iron core 8 propels the shifting fork shaft 13 to move towards the direction of the valve rocker 5, the shifting fork 14 compresses the springs 4, when the valve rocker 5 drops, the decompression cushion block 6 is located between the valve rocker 5 and the decompression shaft 3, the circuit of the electromagnet 9 is switched off, under the acting force of the valve spring 12, the decompression cushion block 6 is located between the decompression shaft 3 and the valve rocker 5 and cannot be reset, the valve rod 11 cannot arrive at a valve closing position, and the valve is at an open state. When the internal combustion engine needs to be started, a signal is sent to the time-delay relay 10 at first, so that the position of the decompression cushion block 6 is maintained between the valve rocker 5 and the decompression shaft 3, the power supply of a starter is turned on, the starter drives a flywheel to rotate, a crankshaft of the internal combustion engine reaches a starting speed, the time-delay relay 10 switches off the circuit of the electromagnet 9, when the valve rocker 5 moves downwards, the decompression cushion block 6 is reset under the acting force of the springs 4, the valve rod 11 arrives at the valve closing position, and the internal combustion engine is started.
Embodiment 3
(14) In
(15) The operating process in embodiment 3 is the same as the operating process of the structure in
Embodiment 4
(16) In
(17) The operating process in embodiment 4 is the same as the operating process in
Embodiment 5
(18) In
(19) The operating process in embodiment 5 is the same as the operating process of the structure in
(20) The operating processes in embodiment 3, embodiment 4 and embodiment 5 are the same as the operating process in
Embodiment 6
(21) In
(22) When the internal combustion engine needs to be stopped, a time-delay relay 10 sends a signal to the decompression fulcrum bar driving mechanism 110 at first, the decompression fulcrum bar driving mechanism 110 drives the decompression fulcrum bar 104 to extend, when one end of the rocker 5 is jacked up by the valve tappet 11 to open a valve 109, a space is generated between the rocker 5 and the supporting block 103, one end of the decompression fulcrum bar 104 extends to the upper side of the supporting block 103 and is stopped, the decompression fulcrum bar 104 contacts the upper surface of the supporting block 103, as shown in
(23) In this invention, the valve rocker and the valve tappet move up and down by means of the operation of the internal combustion engine itself, when the rocker is lifted up, a decompression fulcrum bar is inserted below the rocker, the decompression fulcrum bar is supported by the supporting block, so that the valve corresponding to the rocker cannot operate to the valve closing position, and the valve is at the open state. The device only needs a very small acting force for opening the valve, and most components can be placed in the valve chamber cover, so that the height of the valve chamber cover is not increased, no space is occupied, installation and design of passenger cars are facilitated, installation is simple and convenient, the structure is mechanical, the components are few, the reliability is high and the cost is low.