CN1268633A - Conical gear swinging method for piston reciprocating straight-line mavement - Google Patents

Conical gear swinging method for piston reciprocating straight-line mavement Download PDF

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Publication number
CN1268633A
CN1268633A CN 99103451 CN99103451A CN1268633A CN 1268633 A CN1268633 A CN 1268633A CN 99103451 CN99103451 CN 99103451 CN 99103451 A CN99103451 A CN 99103451A CN 1268633 A CN1268633 A CN 1268633A
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China
Prior art keywords
gear
angular wheel
transmission
gear ring
swing
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Pending
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CN 99103451
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Chinese (zh)
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董高峰
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Individual
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Individual
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Priority to CN 99103451 priority Critical patent/CN1268633A/en
Publication of CN1268633A publication Critical patent/CN1268633A/en
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Abstract

The cone shaped gear oscillation method by piston reciprocating straight line motion is to use the up and down motion of gear ring to drive the rotation of rotating shaft by oscillating gear and driving cone gear and driven cone gear, and the driven cone gear can at the same time oscillate left and right on the rotating shaft to form the driving method, and cooperate with guide bar to roll the contact roller column and strip control path to proceed transmission.

Description

The angular wheel swinging method of piston linear reciprocating motion
During the internal combustion engine linear reciprocating motion, can convert rotation to connecting rod, bent axle and rotate, also can utilize gear ring, gear to change.
Chinese patent CN1196126A one uses gear ring, and gear is changed, and for the transmission circulation is carried out, has adopted the commutate method of transmission of swing gear ring in this patent.The present invention then utilizes a pair of angular wheel can transmit the characteristic that rotatablely moves of concurrent aces, with some rotations rotate be delivered to its axis that intersects on rotation rotate, simultaneously this can also be together swings along the axial direction of driven angular wheel to initiative taper generating gear and driven angular wheel, the reason of swing be because gear in gear ring during towards a direction rotational motion, when gear turns to the bottom of gear ring and top, because gear continues to rotate gear ring towards a direction then can not move left and right, thereby the another side that causes spur roller gear to swing to gear ring forms, and simultaneously fit engagement transmission control system and depth of engagement chain of command carry out the transmission campaign.
As follows according to the accompanying drawing division below, in the accompanying drawings, Fig. 1 is a gearing transmission system schematic representation; Fig. 2 is gear ring, the gear schematic representation of band depth of engagement chain of command; Fig. 3 is four motion state diagrams of gearing transmission system; Two driven gear connection diagrams when Fig. 4 is the transmission system composite application.
The transmission conversion method of gearing:
In Fig. 1, when piston (1) drives gear ring (2) together up and down during straight line motion, will pass through gear ring (2) engagement driven gear (3) rotation rotates, and be connected the two taper driving gears that are combined in gear (3), be initiative taper generating gear (4) and driven angular wheel (5), because initiative taper generating gear (4) and gear (3) is coaxial is connected in, so (3) rotations of initiative taper generating gear (4) and gear are rotated, and drive driven angular wheel (5) rotation by engagement driving and rotate, in Fig. 1, when driven angular wheel (5) rotation is rotated, to drive rotatingshaft (9) and rotate rotation together, and driven angular wheel (5) can also swing on rotatingshaft (9) when driving rotatingshaft (9) rotation rotation, and rotatingshaft (9) is when rotating, also can drive driven angular wheel (5) rotates and swings, in when swing because gear (3) also has driven angular wheel (5) with initiative taper generating gear (4) is to be connected the assemblying body that is combined in, so gear (3) and initiative taper generating gear (4) and driven angular wheel (5) be one and swing, and driven angular wheel (5) is also to be that axis along rotatingshaft (9) swings along himself axis; Initiative taper generating gear (4) and gear (3) are that the axis of relative gear ring (2) and rotatingshaft (9) laterally swings.And stipulate that specially gear ring (2) can only move up and down, and can not swing, gear (3) and initiative taper generating gear (4) and driven angular wheel (5) can only swing and can not move up and down, to reach the purpose of circulation transmission campaign.When gear ring (2) when straight line motion and driven gear (3) rotate up and down, conversely when gear (3) thus rotate to drive gear ring (2) up and down during straight line motion, for arbitrarily swing about gear (3) is unlikely, in transmission system, we have installed bar shaped control track (8A) on gear ring (2), (8B) and with gear ring (2) straight line motion up and down, also in the coaxial rotating shaft that is connected in one gear (3) and initiative taper generating gear (4), a guide rod (6) is installed, scroll wheel post (7A) is arranged on guide rod (6), (7B), and at bar shaped control track (8A), when (8B) moving up and down, scroll wheel post (7A), (7B) will be along bar shaped control track (8A), roll (8B) and slide, engagement driving state in order to control gear (3) and gear ring (2), and even the motion state of whole drive system, its motion transmission have four kinds of motion states.
Below our transmission situation when to-and-fro motion once being described in conjunction with four kinds of motion states of a, b, c, d of Fig. 3, we omit initiative taper generating gear (4) in the drawings, driven angular wheel (5) and rotatingshaft (9), the situation when only having a look gear motion:
In a of Fig. 3, when gear ring (2) when moving upward, will drive bar shaped control track (8A), (8B) moves upward together, and gear (3) is clockwise rotated, in this case, because two slip sheave posts (7A), (7B) are in the left side of bar shaped control track (8A), (8B), so with the left side flank of gear (3) control at gear ring (2).When gear ring (2) upwards runs to its bottom and gear (3) when being meshed, (seeing the b of Fig. 3) at this moment control track (8A), (8B) just slides into the top of scroll wheel post (7A), (7B), thereby makes gear (3) by the bottom flank of control at gear ring (2).Simultaneously because gear (3) is to clockwise rotate, and gear ring (2) straight line motion and can not move left and right up and down, so gear (3) just begins to the swing of rolling of the right side of gear ring (2).When gear (3) is rolled to the right side tooth of gear ring (2), (seeing the c of Fig. 3) at this moment gear ring (2) just changes into and moves downward, and scroll wheel post (7A), (7B) also change into and be attached to bar shaped control track (8A), right side (8B) and with the right side flank of gear (3) control at gear ring (2), when gear ring (2) runs down to its top and gear (3) when being meshed conversely, (seeing the d of Fig. 3) gear ring (2) is again owing to can not swing, gear (3) is just when clockwise rotating, the swing of can only rolling left, and make scroll wheel post (7A), (7B) be in bar shaped control track (8A), top (8B), gear (3) control in the top flank of gear ring (2) and rolling swing left, is carried out the transition to a state of Fig. 3.So far one week of system's operation finishes, and continues to repeat above-mentioned circulation.
In the above in the transmission system of Fig. 1, when gear ring (2) and gear (3) engagement, can make circulation track rolling motion along the tooth mark of gear ring (2) in order to make gear (3), also in engagement, can maintain a certain distance the gap for the gear teeth that make both, exempt from that gear ring (2) moves up and down and gear (3) when swinging to both impact force of the gear teeth, this drive method has also all added depth of engagement chain of command (10) on the limit of gear ring (2) and both gear teeth tooth marks of gear (3), see shown in Figure 2, it is a terrace with certain altitude, goes up and its one week of tooth mark parallel arranged at gear ring (2); On gear (3) also with its gear teeth tooth mark one week of parallel arranged, and both depth of engagement chains of command are contradicting each other both gear teeth meshing distances are being maintained a certain distance the gap.
The composite application of transmission moving system:
In the independently transmission system of Fig. 1, can go up at gear ring (2) and settle several pistons (1A, 1B, 1C, 1D ... 1N), promoting gear ring (2) does reciprocating linear motion, rotatingshaft (9) with two cover systems is connected to one simultaneously, see shown in Figure 4, one is the driven angular wheel (5a) of a status system among Fig. 4, another is the driven angular wheel (5b) of b status system, and the driven angular wheel (5a) of two systems, (5b) shared rotatingshaft (9), we carry out compound transmission utilization at the motion states that can allow the motion state of two cover systems differ 90 degree like this.Also available three independently transmission system form three rotatingshafts be connected to one differ the compound transmissions utilization system of 120 degree with respect to its rotatingshaft.

Claims (1)

1, the angular wheel swinging method of piston linear reciprocating motion, it is characterized in that utilizing gear ring (2) up and down reciprocatingly during straight line motion, can transmit the characteristic that rotatablely moves of concurrent aces by angular wheel, in the swing of gear (3) engagement rolling, will rotate a kind of method that rotatingshaft (9) and fit engagement degree of depth chain of command and engagement driving control system carry out the transmission campaign that passes to of rotating; Stipulate during transmission system circulation transmission, gear ring (2) can only move up and down, and can not swing, gear (3) and initiative taper generating gear (4) and driven angular wheel (5) can only swing and can not move up and down, and four kinds of motion states are arranged during systemic circulation transmission campaign; When driven angular wheel (5) rotates rotation, will drive rotatingshaft (9) rotation and rotate, and driven angular wheel (5) can also swing on rotatingshaft (9) when drive rotatingshaft (9) rotates rotation together; The composite application of transmission moving system is to overlap independently two to settle several pistons to promote gear ring (2) linear reciprocating motion on the gear ring of transmission system (2), driven angular wheel with two systems is connected to one simultaneously, and the motion states that differ 90 degree carry out transmission, also have with three independently transmission system connect to form the compound transmissions that differ 120 degree.
CN 99103451 1999-03-30 1999-03-30 Conical gear swinging method for piston reciprocating straight-line mavement Pending CN1268633A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 99103451 CN1268633A (en) 1999-03-30 1999-03-30 Conical gear swinging method for piston reciprocating straight-line mavement

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 99103451 CN1268633A (en) 1999-03-30 1999-03-30 Conical gear swinging method for piston reciprocating straight-line mavement

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CN1268633A true CN1268633A (en) 2000-10-04

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Application Number Title Priority Date Filing Date
CN 99103451 Pending CN1268633A (en) 1999-03-30 1999-03-30 Conical gear swinging method for piston reciprocating straight-line mavement

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113337646A (en) * 2021-05-21 2021-09-03 李明星 Surface-assisted unhairing and smoothing processing device for leather raw materials

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113337646A (en) * 2021-05-21 2021-09-03 李明星 Surface-assisted unhairing and smoothing processing device for leather raw materials

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C02 Deemed withdrawal of patent application after publication (patent law 2001)
WD01 Invention patent application deemed withdrawn after publication