Any-tooth-difference movable type high rotation speed internal combustion engine

A mobile, internal combustion engine technology, applied in the directions of machines/engines, mechanical equipment, transmissions, etc., can solve the problems of shortened lifespan, large volume and complex structure of internal combustion engines, and achieve the effect of compact structure

Inactive Publication Date: 2013-04-17
SICHUAN UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

Since this kind of internal combustion engine relies on the linear motion of the piston and the plane motion of the connecting rod to press and drive the crankshaft to rotate, there is a large friction between the motion pairs, resulting in low transmission efficiency of the internal combustion engine.
These crankshaft-connecting rod type internal combustion engines also have the following main disadvantages: large volume; large unbalanced centrifugal force on the connecting rod and crankshaft; large impact and large vibration; and thus cause large mechanical wear, shorten the life of the internal combustion engine; complex structure , processing, manufacturing, assembly, etc. are relatively difficult; in addition, the general internal combustion engine and the speed change device are two independent machines, and usually the internal combustion engine needs to install a transmission for subsequent speed change, resulting in a large volume

Method used

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  • Any-tooth-difference movable type high rotation speed internal combustion engine

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Embodiment Construction

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Abstract

The invention provides an any-tooth-difference movable type high rotation speed internal combustion engine and relates to the field of combustion gas power. Eight cylinder are annularly and evenly distributed around an outward-protruding inner gear to enable the outward-protruding inner gear to be subjected to zero stress, cylinder pistons directly act on the outward-protruding inner gear through pushing rods, and power is transferred to an output shaft connected with a multiple-phase shock wave cam key through transmission of the outward-protruding inner gear and a multiple-phase cam type moving oscillating teeth. A connecting rod and a crankshaft in a traditional internal combustion engine are omitted, an outward-protruding inner multiple-phase cam type moving transmission mechanism has the advantages of being free of eccentric mass and having inertia force and working load self balance, the rotating speed of the output shaft depends on the transmission ratio of the oscillating teeth, if an oscillating tooth frame is fixed, a multiple-phase shock wave cam performs high-speed output, and the high rotation speed internal combustion engine can be widely applied to the field of machines needing high rotation speed, such as a helicopter engine, a small power generator and the like. When the output rotation speed is fixed, emission of harmful gas can be reduced. The any-tooth-difference movable type high rotation speed internal combustion engine is simple and compact in structure, small in axial size, self-balancing in stress and stable in operation.

Description

technical field The invention relates to the field of gas power, more specifically, a mobile high-speed internal combustion engine with any number of tooth differences. Background technique At present, a general internal combustion engine (engine) is composed of a body, a crank connecting rod mechanism, a gas distribution mechanism, a cooling system, a lubrication system, a fuel system, and an ignition system. stroke. The transmission mechanism of this type of internal combustion engine uses a crank-connecting rod mechanism, which transmits the power of the piston to the crankshaft through the connecting rod, and converts the reciprocating linear motion of the piston into the rotary motion of the crankshaft. Because this internal combustion engine presses and drives the crankshaft to rotate by the linear motion of the piston and the planar motion of the connecting rod, there is greater friction between the kinematic pairs, resulting in low transmission efficiency of the int...

Claims

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Application Information

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IPC IPC(8): F02B75/40F02B75/22F16H37/12
Inventor 梁尚明贺飞飞李杰
Owner SICHUAN UNIV
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