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Deformed eccentric circular-noncircular gear rotary transplanting mechanism of sitting transplanter

A technology of eccentric circular gear and non-circular gear, applied in the field of agricultural machinery, can solve the problems of complex structure, large damage to seedlings, high relative speed of seedling needles, etc., and achieve the effects of reducing the rate of damage to seedlings, good protection and simple structure

Inactive Publication Date: 2013-05-01
ZHEJIANG SCI-TECH UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The traditional eccentric circular gear insertion mechanism was invented in Japan. The mechanism is composed of 9 eccentric gears. Since the gear clearance will change during the transmission of the eccentric gears, causing vibration and impact, the mechanism uses two dimple spring devices. To eliminate the gear gap, the structure is complex
Finally, an eccentric non-circular conjugate gear was proposed to eliminate the gear gap, but the relative speed of the seedling needles during the operation of the entire sub-insertion mechanism was relatively fast, which caused great damage to the seedlings.

Method used

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  • Deformed eccentric circular-noncircular gear rotary transplanting mechanism of sitting transplanter
  • Deformed eccentric circular-noncircular gear rotary transplanting mechanism of sitting transplanter
  • Deformed eccentric circular-noncircular gear rotary transplanting mechanism of sitting transplanter

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Embodiment Construction

[0027] The present invention will be further described below with reference to the drawings and embodiments.

[0028] Deformed gear pitch curves have been proposed in textbooks on non-circular gears and non-uniform speed transmissions, but so far there is no literature that applies this deformation function to eccentric non-circular gears, let alone in actual production.

[0029] Such as image 3 The figure shows the transmission ratio function i that changes according to the asymmetric law 21 Curve, curve 1 is a symmetrical transmission ratio function curve, curve 2 is a deformed asymmetric transmission ratio function curve, i 21 Given by two smooth functions I and II.

[0030] The interval of the first paragraph is The second interval is

[0031] The external meshing between the deformed eccentric circular gear and the conjugate non-circular gear to achieve variable speed transmission is the key to make the needles of the entire separating-planting mechanism form a "waist-shaped" s...

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Abstract

The invention discloses a deformed eccentric circular-noncircular gear rotary transplanting mechanism of a sitting transplanter. A central chain wheel in a chain wheel box drives a left gear box and a right gear box which have the same structures, to rotate, a central deformed eccentric circular gear in the chain wheel box is fixed, two conjugate noncircular gears which are meshed with the both sides of the central deformed eccentric circular gear rotate with the gear boxes and are respectively meshed with planetary deformed eccentric circular gears, the rotation centers of the five gears areon the same straight line, and the planetary deformed eccentric circular gears perform uniform rotation along with the gear boxes and then perform non-uniform rotation relatively to the gear boxes. The absolute motion of a pair of planting arms which are fixedly connected with the planetary deformed eccentric circular gears through planetary shafts is non-uniform swinging, namely the compound motion containing the circular motion of the gear boxes around a central shaft and the non-uniform rotation of the planetary deformed eccentric circular gears relatively to the gear boxes; proper structural parameters are selected; and planting needles on the planting arms form a kidney-shaped working trajectory, and the front-planting operation demand of the transplanter can be met.

Description

Technical field [0001] The invention relates to an agricultural machine, in particular to a deformed eccentric circle-non-circular gear rotating separating and planting mechanism of a riding rice transplanter. Background technique [0002] At present, there are mainly two types of planting mechanisms for walking rice transplanters on the market: crank-rocker type transplanting mechanism and rotary type transplanting mechanism. Compared with the crank-rocker-type separating-planting mechanism, the rotary-type separating-planting mechanism has the advantages of small inertia force, small vibration and good stability. The non-circular gear transmission has the characteristics of stable transmission, compact structure, high motion precision, easy to achieve dynamic balance to reduce inertial force, etc., and gradually replaces the original crank-rocker type inserting mechanism. Currently used in rotary inserting mechanism, there are mainly elliptical gears, eccentric gears, eccentri...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A01C11/02
Inventor 赵匀高林弟罗华
Owner ZHEJIANG SCI-TECH UNIV
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