CN2703879Y - Double-cylinder, double-piston internal combustion engine - Google Patents
Double-cylinder, double-piston internal combustion engine Download PDFInfo
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- CN2703879Y CN2703879Y CN 200420031406 CN200420031406U CN2703879Y CN 2703879 Y CN2703879 Y CN 2703879Y CN 200420031406 CN200420031406 CN 200420031406 CN 200420031406 U CN200420031406 U CN 200420031406U CN 2703879 Y CN2703879 Y CN 2703879Y
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Abstract
The utility model relates to a double-cylinder, and double-piston internal combustion engine, which is composed of an engine body, an air distribution mechanism, an oil supply system, a lubrication system, a cooling system and a starting device, wherein, a cylinder provided with a cylinder sleeve is arranged in the engine body. The utility model is characterized in that the double-cylinder, and double-piston internal combustion engine is provided with a plurality of cylinder banks, a pair of cylinders is arranged in each cylinder bank, and two oppositely arranged pistons are arranged in a cylinder of each cylinder. Each cylinder bank is provided with two suits of connecting rod mechanisms, and each connecting rod mechanism is formed by a connecting rod shaft and a connecting rod. The two suits of the connecting rod mechanisms are oppositely arranged on both ends of a pair of the cylinders and connected to a common output crankshaft respectively through connecting rods. The utility model has the advantages of compact structure, small size, good working stability and high output power of unit weight. The double-cylinder, and double-piston internal combustion engine is used, and the cylinder banks can be freely arranged. The modularization of the production of engines can be realized. The double-cylinder, and double-piston internal combustion engine is especially suitable for being used as an engine of an automobile, or an engineering machine or other motive power machines.
Description
Technical field:
The utility model relates to internal-combustion engine technology, and a kind of double-piston explosive motor is provided especially.
Background technique:
Internal-combustion engine is that fuel is burnt at machine intimate, and the heat energy of emitting directly is converted to the dynamic power machine of power, and is the most general with conventional engine.Wide, the supporting convenience of its thermal efficiency height, power and speed range, mobility are good.But since coming out the sixties in 19th century, though through constantly improvement and perfect, the raising of performance is not very big, and particularly the effective thermal efficiency maximum only reaches 0.46.Automobile is mainly used in transportation, requires to have that weight is few, volume is little, fuel saving, power plant that adaptability is good and reliability and durability.The motor overwhelming majority as automobile power is that employing gasoline or light diesel are the four-stroke stroke piston combustion engine of fuel at present, the petrol engine discharge capacity is less than 2.5 liters in-line four cylinder commonly used, horizontal opposed cylinder, minority has V-type 6 cylinders or 8 cylinders, the diesel engine majority is 6 cylinders in upright arrangement, then uses V-type more than 180 kilowatts.
In order to make the engine structure compactness, improve the output power of unit weight, reduce oil consumption, people have designed the motor to the top double-piston again, as the utility model people in first to file 01106292.4, a kind of dual-purpose gasoline and diesel oil four-stroke internal combustion engine, by connecting rod, body, distribution device, oil supply system, lubrication system, cooling system, starting arrangement is formed, connecting rod is by piston set, connection rod set, bent axle and flywheel constitute, the cylinder that cylinder sleeve is housed is installed in the body, it is characterized in that: this explosive motor has two cover crank linkage mechanisms, and two cover crank linkage mechanisms are by 3,5 or 7 driving gears connect; Two opposed pistons of installing in the cylinder of every single cylinder, two pistons have identical phase place; The inlet and exhaust valve of distribution device is arranged at the sidewall at cylinder middle part, adopts four-stroke intake and exhaust mode.But owing to two cover crank linkage mechanisms are adopted the mode of gears output, gear former gapped at the stroke that has in fact reduced piston, make the motor to the top double-piston of this structure can not bring into play due benefit, do not reach theoretical design level far away.
Summary of the invention:
The purpose of this utility model---be to provide a kind of novel twin-tub double-piston explosive motor, its reasonable in design, operation steadily, and can simplify motor, reduce processing and maintenance cost.
The utility model provides a kind of twin-tub double-piston explosive motor, form by body, distribution device, oil supply system, lubrication system, cooling system, starting arrangement, the cylinder that cylinder sleeve is housed is installed in the body, it is characterized in that: this explosive motor has several cylinder group; There are two to become countercylinder in each cylinder group, installing two opposite pistons (1) in the cylinder of every single cylinder (5); Two cover linkage mechanisms are arranged in each cylinder group, and linkage mechanism is made of pitman shaft (2), connecting rod (3), and two cover linkage mechanisms are opposite to two two ends that become countercylinder, and are connected on the common output crank shaft (4) by connecting rod (3) respectively.
In the utility model twin-tub double-piston explosive motor, two the paired pistons (1) in described every single cylinder (5) are staggered relatively, and phase place is identical.
In the utility model twin-tub double-piston explosive motor, two cover linkage mechanisms in described each cylinder group, two connecting rods (3) of linkage mechanism, their end are connected on the different shaft parts of output crank shaft (4), and the other end is connected respectively on two pitman shafts (2) of two cover linkage mechanisms.
In the utility model twin-tub double-piston explosive motor, described two cover linkage mechanisms have corresponding two pitman shafts (2) to be connected respectively on the piston (1) and connecting rod (3) of two one-tenth countercylinders (5) in the same cylinder group.
In the utility model twin-tub double-piston explosive motor, the one-tenth countercylinder in the described same cylinder group has a shared output crank shaft (4), the shared output shafts of a plurality of associated cylinder groups (4) of same motor.
In the utility model twin-tub double-piston explosive motor, described motor has 1 or a plurality of cylinder block, forms twin-tub or multi-cylinder internal combustion engine that total number of cylinders is an even number.
Described in the corresponding background technique, double-piston explosive motor described in the utility model has following advantage:
1, structural design compactness is selected cylinder co-ordination in groups for use, compares with in-line arrangement or V-type cylinder engine, and when output power was identical, the weight of himself was the lightest, and promptly the output power height of unit weight is particularly suitable for as automobile power machinery.
2, owing to all select two pistons of paired anti-phase placement in every single cylinder for use, and the use of connecting rod and pitman shaft considered stress equalization, thereby improved the continuity of engine power, improved the motor traveling comfort.
4, double-piston internal-combustion engine function free arrangement cylinder described in the utility model, and the production of motor is easy to realize modularization, is convenient to carry out the Transform Type design of product and exploitation once more.
5, related connecting rod can reduce resolution of forces better in the utility model, and can simplify motor, reduces processing and maintenance cost.
Description of drawings:
The complete cylinder group principle schematic of a kind of twin-tub double-piston of Fig. 1 explosive motor front view;
The complete cylinder group principle schematic of a kind of twin-tub double-piston of Fig. 2 explosive motor side view;
The complete cylinder group principle schematic of a kind of twin-tub double-piston of Fig. 3 explosive motor front view;
The complete cylinder group principle schematic of a kind of twin-tub double-piston of Fig. 4 explosive motor side view.
Embodiment:
Below by embodiment in detail the utility model is described in detail.
Embodiment
Double-piston explosive motor (as accompanying drawing 3, shown in Figure 4)
A kind of double-piston explosive motor, form by body, distribution device, oil supply system, lubrication system, cooling system, starting arrangement, it is characterized in that: this explosive motor has 1 cylinder group, there are two to become countercylinder in this cylinder group, installing two opposite pistons (1) in the cylinder of every single cylinder (5), and two pistons have identical phase place; Two cover linkage mechanisms are arranged in the every countercylinder group of this internal-combustion engine, linkage mechanism is made of pitman shaft (2), connecting rod (3), the one-tenth countercylinder that cylinder sleeve is housed is installed in the body, and two cover linkage mechanisms are connected on the common output crank shaft (4) by connecting rod (3) respectively.
The described double-piston explosive motor of present embodiment, two cover linkage mechanisms are arranged in its cylinder group, in the two cover linkage mechanisms corresponding two connecting rods (3) are arranged, their end all is connected on the different shaft parts of bent axle (4), and the other end is connected respectively on two pitman shafts (2) of two cover linkage mechanisms.
Present embodiment double-piston explosive motor, wherein said two cover linkage mechanisms have corresponding two pitman shafts (2) to be connected respectively on the paired piston (1) and paired connecting rod (3) of two one-tenth countercylinders (5) in the cylinder group.
One-tenth countercylinder in the described double-piston explosive motor of present embodiment, cylinder group has a shared output crank shaft (4), the shared output shafts of a plurality of associated cylinder groups (4) of same motor.
Claims (6)
1, a kind of twin-tub double-piston explosive motor, form by body, distribution device, oil supply system, lubrication system, cooling system, starting arrangement, the cylinder that cylinder sleeve is housed is installed in the body, it is characterized in that: this explosive motor has several cylinder group; There are two to become countercylinder in each cylinder group, installing two opposite pistons (1) in the cylinder of every single cylinder (5); Two cover linkage mechanisms are arranged in each cylinder group, and linkage mechanism is made of pitman shaft (2), connecting rod (3), and two cover linkage mechanisms are opposite to two two ends that become countercylinder, and are connected on the common output crank shaft (4) by connecting rod (3) respectively.
2, according to the described twin-tub double-piston of claim 1 explosive motor, it is characterized in that: two the paired pistons (1) in described every single cylinder (5) are staggered relatively, and phase place is identical.
3, according to the described twin-tub double-piston of claim 1 explosive motor, it is characterized in that: two cover linkage mechanisms in described each cylinder group, two connecting rods (3) of linkage mechanism, their end is connected on the different shaft parts of output crank shaft (4), and the other end is connected respectively on two pitman shafts (2) of two cover linkage mechanisms.
4, according to claim 1 or 3 described twin-tub double-piston explosive motors, it is characterized in that: described two cover linkage mechanisms have corresponding two pitman shafts (2) to be connected respectively on the piston (1) and connecting rod (3) of two one-tenth countercylinders (5) in the same cylinder group.
5, according to claim 1 or 3 described twin-tub double-piston explosive motors, it is characterized in that: the one-tenth countercylinder in the described same cylinder group has a shared output crank shaft (4), the shared output shafts of a plurality of associated cylinder groups (4) of same motor.
6, according to the described twin-tub double-piston of claim 1 explosive motor, it is characterized in that: described motor has 1 or a plurality of cylinder block, forms twin-tub or multi-cylinder internal combustion engine that total number of cylinders is an even number.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN 200420031406 CN2703879Y (en) | 2004-04-30 | 2004-04-30 | Double-cylinder, double-piston internal combustion engine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN 200420031406 CN2703879Y (en) | 2004-04-30 | 2004-04-30 | Double-cylinder, double-piston internal combustion engine |
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CN2703879Y true CN2703879Y (en) | 2005-06-08 |
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CN 200420031406 Expired - Fee Related CN2703879Y (en) | 2004-04-30 | 2004-04-30 | Double-cylinder, double-piston internal combustion engine |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102425496A (en) * | 2011-11-18 | 2012-04-25 | 刘若丹 | Piston-type four-stroke cylinder-changing gas distribution engine |
CN106224094A (en) * | 2016-08-31 | 2016-12-14 | 河北华北柴油机有限责任公司 | 12 cylinder water-cooled Diesel engines |
-
2004
- 2004-04-30 CN CN 200420031406 patent/CN2703879Y/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102425496A (en) * | 2011-11-18 | 2012-04-25 | 刘若丹 | Piston-type four-stroke cylinder-changing gas distribution engine |
CN106224094A (en) * | 2016-08-31 | 2016-12-14 | 河北华北柴油机有限责任公司 | 12 cylinder water-cooled Diesel engines |
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C19 | Lapse of patent right due to non-payment of the annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |