浙江大学学报(农业与生命科学版)
浙江大學學報(農業與生命科學版)
절강대학학보(농업여생명과학판)
JOURNAL OF ZHEJIANG UNIVERSITY(AGRICULTURE & LIFE SCIENCES)
2013年
6期
663-667
,共5页
李兴%李建平%陈正贝%朱盘安%邱景图
李興%李建平%陳正貝%硃盤安%邱景圖
리흥%리건평%진정패%주반안%구경도
嫁接机%针接式嫁接法%穴盘定位%砧木夹持
嫁接機%針接式嫁接法%穴盤定位%砧木夾持
가접궤%침접식가접법%혈반정위%침목협지
grafting machine%pin-grafting method%locating aperture disk%clamping rootstocks
为提高茄科植物嫁接育苗效率,根据“针接式嫁接法”的嫁接作业要求,设计可直接在穴盘内对幼苗进行嫁接操作的针接式自动嫁接机.设计穴盘定位机构,完成在嫁接作业位置对穴盘的控制;针对砧木的柔嫩性,设计砧木扶直装置和带有导向槽的砧木夹持装置协同完成对砧木形态的控制,实现对穴盘内单行6株苗同时夹持定位;针对接穗处理,设计旋转切削机构对接穗进行切削,提高切削速度,增加切削平滑度;同时,对样机的作业性能进行试验.结果表明,砧木夹持成功率为97.4%,接穗切削成功率为94.4%.嫁接机工作性能稳定可靠,可以适应茄科作物工厂化育苗需求.
為提高茄科植物嫁接育苗效率,根據“針接式嫁接法”的嫁接作業要求,設計可直接在穴盤內對幼苗進行嫁接操作的針接式自動嫁接機.設計穴盤定位機構,完成在嫁接作業位置對穴盤的控製;針對砧木的柔嫩性,設計砧木扶直裝置和帶有導嚮槽的砧木夾持裝置協同完成對砧木形態的控製,實現對穴盤內單行6株苗同時夾持定位;針對接穗處理,設計鏇轉切削機構對接穗進行切削,提高切削速度,增加切削平滑度;同時,對樣機的作業性能進行試驗.結果錶明,砧木夾持成功率為97.4%,接穗切削成功率為94.4%.嫁接機工作性能穩定可靠,可以適應茄科作物工廠化育苗需求.
위제고가과식물가접육묘효솔,근거“침접식가접법”적가접작업요구,설계가직접재혈반내대유묘진행가접조작적침접식자동가접궤.설계혈반정위궤구,완성재가접작업위치대혈반적공제;침대침목적유눈성,설계침목부직장치화대유도향조적침목협지장치협동완성대침목형태적공제,실현대혈반내단행6주묘동시협지정위;침대접수처리,설계선전절삭궤구대접수진행절삭,제고절삭속도,증가절삭평활도;동시,대양궤적작업성능진행시험.결과표명,침목협지성공솔위97.4%,접수절삭성공솔위94.4%.가접궤공작성능은정가고,가이괄응가과작물공엄화육묘수구.
Summary Mechanized grafting can reduce labor intensity,improve production efficiency and ensure product quality.The majority of researchers choose traditional grafting methods for their grafting machines,such as cut-in grafting,joining grafting or split grafting.However,the conventional methods either require multiple steps, quality seedlings,or need external clamping to fix the grafted seedlings,which restrict the grafting speed. <br> In this study,an autografting machine aiming at the Solanaceae was designed based on pin-grafting method, which could connect the rootstock and scion with a pin.This method can overcome the limitations mentioned above,because of acting on the aperture disk seedlings directly. <br> The grafting machine was composed of two processing mechanisms:rootstock morphology controlling and scion cutting. The former included three parts: mechanism of location in aperture disk, mechanism of straightening rootstocks and mechanism of clamping rootstocks.The first one,which was designed to control the position of aperture disk during the grafting,was a micro-positioner that could jog the aperture forward to the next line of seedlings after completing the grafting task of the current line.The second and third parts worked together to ensure the rootstock in the right posture and clamped six seedlings in each row of the disk during a period,in which the second one was used to correct the rootstocks in vertical direction with two mechanical arms,while the third one played a similar role in transversal direction.These parts were effective,especially when dealing with the untidy growth of tender seedlings.The latter,i.e.,the mechanism of rotary cutting was driven by a rotating cylinder.This mechanism had six tool holders of which the blades were installed on the top.It made the incision of scion smooth and flush at a high speed with a determined cutting radius.The results of the performance test indicated that the proposed grafting machine was able to accomplish the clamping task with 97.4% success rate and the cutting task with 94.4% success rate.The prototype machine can work steadily and reliably,which suggests its potential for practical application.