CN109226901A - A kind of pulsating portable power tool and its application method - Google Patents

A kind of pulsating portable power tool and its application method Download PDF

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Publication number
CN109226901A
CN109226901A CN201811327513.8A CN201811327513A CN109226901A CN 109226901 A CN109226901 A CN 109226901A CN 201811327513 A CN201811327513 A CN 201811327513A CN 109226901 A CN109226901 A CN 109226901A
Authority
CN
China
Prior art keywords
spur gear
gear
cavity
sliding
block
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
CN201811327513.8A
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Chinese (zh)
Inventor
华怡桑
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Ningbo Yinzhou Zhixin Mechanical And Electrical Design Co Ltd
Original Assignee
Ningbo Yinzhou Zhixin Mechanical And Electrical Design Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Ningbo Yinzhou Zhixin Mechanical And Electrical Design Co Ltd filed Critical Ningbo Yinzhou Zhixin Mechanical And Electrical Design Co Ltd
Priority to CN201811327513.8A priority Critical patent/CN109226901A/en
Publication of CN109226901A publication Critical patent/CN109226901A/en
Withdrawn legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23DPLANING; SLOTTING; SHEARING; BROACHING; SAWING; FILING; SCRAPING; LIKE OPERATIONS FOR WORKING METAL BY REMOVING MATERIAL, NOT OTHERWISE PROVIDED FOR
    • B23D79/00Methods, machines, or devices not covered elsewhere, for working metal by removal of material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
    • B23Q11/00Accessories fitted to machine tools for keeping tools or parts of the machine in good working condition or for cooling work; Safety devices specially combined with or arranged in, or specially adapted for use in connection with, machine tools
    • B23Q11/0042Devices for removing chips
    • B23Q11/0067Devices for removing chips chip containers located under a machine or under a chip conveyor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
    • B23Q5/00Driving or feeding mechanisms; Control arrangements therefor
    • B23Q5/02Driving main working members
    • B23Q5/027Driving main working members reciprocating members
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
    • B23Q7/00Arrangements for handling work specially combined with or arranged in, or specially adapted for use in connection with, machine tools, e.g. for conveying, loading, positioning, discharging, sorting
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
    • B23Q7/00Arrangements for handling work specially combined with or arranged in, or specially adapted for use in connection with, machine tools, e.g. for conveying, loading, positioning, discharging, sorting
    • B23Q7/10Arrangements for handling work specially combined with or arranged in, or specially adapted for use in connection with, machine tools, e.g. for conveying, loading, positioning, discharging, sorting by means of magazines

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Control Of Cutting Processes (AREA)

Abstract

The invention discloses a kind of pulsating portable power tool and its application methods, this method use device includes tool cabinet, it is set to the intracorporal conveying disconnecting device in the tool box, it is set to the intracorporal auxiliary disconnecting device in the tool box and is set to the intracorporal storage device in the tool box, the conveying disconnecting device includes being set to the intracorporal first gear chamber in the tool box, motor is fixedly installed in the first gear chamber inner left wall, the motor right end is connected with the first spur gear by shaft power, the first spur gear right end is fixedly connected with the second spur gear by shaft, what is be connected in the first gear chamber upper inside walls is provided with second gear chamber, the present apparatus is not only easy to operate, it is easy to use, but also it can control the length of material after cutting, the material of different length can also separately be stored.

Description

A kind of pulsating portable power tool and its application method
Technical field
The present invention relates to field of material processing, specifically a kind of pulsating portable power tool and its application method.
Background technique
In modern society, strip hard ware material often uses machine tooling, but some non-rigid materials are not suitable for making With machine tooling, this materiel machining can not reached requirement at this time later, therefore design one kind and be not only able to processing strip The material of non-rigid material, and the pulsating that material can be cut into equal length or different length and classified storage is portable Power tool and its application method, can be with it is really necessary to the length that, the present apparatus can continue to process and control material after cutting The material of different length is separately stored, and stores the material clast after processing.
Summary of the invention
Technical problem to be solved by the invention is to provide a kind of pulsating portable power tool and its application method, energy Enough solve the problems in above-mentioned present technology.
The present invention is achieved through the following technical solutions: a kind of pulsating portable power tool of the invention and its making With method, this method use device includes tool cabinet, is set to the intracorporal conveying disconnecting device in the tool box, is set to institute It states the intracorporal auxiliary disconnecting device in tool box and is set to the intracorporal storage device in the tool box, the conveying disconnecting device Including being set to the intracorporal first gear chamber in the tool box, it is fixedly installed motor in the first gear chamber inner left wall, The motor right end is connected with the first spur gear by shaft power, and the first spur gear right end connects by the way that shaft is fixed It is connected to the second spur gear, what is be connected in the first gear chamber upper inside walls is provided with second gear chamber, second straight-tooth Wheel upper end, which extends, is passed through that the second gear is intracavitary and what is be meshed is provided with third spur gear, and third spur gear left end is solid Surely it is connected with the first connecting shaft, first connecting shaft left end is fixedly connected with the 4th spur gear, the 4th spur gear lower end It is engageable to first spur gear, the 4th spur gear left end connects by can be rotated and extend to be passed through extraneous shaft and fix Be connected to pushing block, the first connecting shaft inner opening to the right be provided with axocoel, be connected and be open in the axocoel upper inside walls To the right be provided with the first keyway, the second connecting shaft, the second connecting shaft inner opening are rotatably provided in the axocoel Upward is provided with the second keyway, and upper end extension is slidably provided in second keyway and is passed through in first keyway Flat key is provided with the first cam chamber in inner wall on the right side of the second gear chamber, and the second connecting shaft right end passes through the third Spur gear extension is passed through in first cam chamber and is fixedly connected with the first cam, and first lower cam end offsets and can slide Dynamic is provided with the first sliding block, and first sliding block lower end is fixedly connected with cutting off tool, first sliding block lower end surface and institute It states and is connected with the first spring on the downside of the first cam chamber between inner wall, be connected and penetrate through in inner wall on the downside of first cam chamber It is provided with the first sliding cavity, the cutting off tool lower end, which extends, to be passed through in first sliding cavity, on the right side of first cam chamber Third gear cavity is provided in inner wall, the first cam right end is fixed by extending the shaft being passed through in the third gear cavity It is connected with the 5th spur gear, what the 5th spur gear lower end was meshed is provided with the 6th spur gear, the third gear cavity The 4th gear cavity is provided in the inner wall of right side, the 6th spur gear right end turns by extending to be passed through in the 4th gear cavity Axis is fixedly connected with the 7th spur gear, and what the 7th spur gear lower end was meshed is provided with the 8th spur gear, and the described 8th is straight What gear lower end was meshed is provided with the 9th spur gear, is provided with the second cam chamber in the 4th gear cavity inner left wall, institute It states the 9th spur gear left end and is fixedly connected with the second cam by extending the shaft that is passed through in second cam chamber, described second What is be connected in inner wall on the downside of cam chamber is provided with the second sliding cavity, and the second lower cam end extension is passed through second sliding It is intracavitary and what is offseted is provided with the second sliding block, it is connected between inner wall on the downside of second sliding block lower end surface and second sliding cavity There is second spring, third sliding cavity is provided in second sliding block, is slidably provided with third in the third sliding cavity Sliding block, the third sliding block right end are fixedly connected with the first link block, are connected and pass through in inner wall on the right side of second sliding cavity Logical is provided with third sliding cavity, and the first link block right end extension is passed through the external world and is fixedly connected with the second link block, described It is fixedly connected with fixing clip on front side of second link block upper end, is slidably provided with sliding on rear side of second link block upper end Fixture block up and down and is fixedly installed the two-sided rack in first link block, sets in inner wall on the right side of the 4th gear cavity It is equipped with the 5th gear cavity, the 9th spur gear right end is fixedly connected with by extending the shaft being passed through in the 5th gear cavity First bevel gear, what the first bevel gear rear end was meshed is provided with second bevel gear, the 5th gear cavity front inner wall Interior connected the 6th gear cavity that is provided with for passing through the third sliding cavity, the second bevel gear front end are passed through described by extension Shaft in 6th gear cavity is fixedly connected with the tenth spur gear, is connected in the 6th gear cavity front inner wall and passes through described the Three sliding cavities are provided with the 7th gear cavity, and the tenth spur gear front end is turned by extending to be passed through in the 7th gear cavity Axis is fixedly connected with the first sector gear, and the extension of first sector gear lower end is passed through in the third sliding cavity and engageable In the two-sided rack upper end, the tenth spur gear lower end extension is passed through in the third sliding cavity and what is be meshed is provided with 11st spur gear, be right against the 6th gear cavity and opening upwards on the downside of the third sliding cavity in inner wall is provided with the Eight gear cavities, the eighth gear is intracavitary to be can be rotated and is meshed the 11st spur gear is provided with the 12nd straight-tooth It takes turns, is connected in the eighth gear chamber front inner wall and passes through the 9th gear cavity that is provided with of the third sliding cavity, the described tenth Two spur gear front ends are fixedly connected with the second sector gear by extending the shaft that is passed through in the 9th gear cavity, and described second Sector gear upper end, which extends, to be passed through in the third sliding cavity and is engageable to the two-sided rack lower end.
Further technical solution, the auxiliary disconnecting device include being connected in inner wall on the downside of the third gear cavity It is provided with the first cavity, connector sleeve is rotatably provided in first cavity, is fixedly connected with upper end on the connector sleeve It is engaged in the 13rd spur gear of the 6th spur gear, is connected in inner wall on the right side of the 4th gear cavity and passes through first sky Chamber is provided with the tenth gear cavity, and the 13rd spur gear right end is solid by extending the shaft being passed through in the tenth gear cavity Surely it is connected with the 14th spur gear, what the 14th spur gear lower end was meshed, which be provided with, is fixedly connected on the connector sleeve The 15th spur gear, be right against first cavity on the right side of first sliding cavity in inner wall is fixedly installed radiating block, The connector sleeve left end is connected across the radiating block passes through first sliding cavity, the setting of left and right perforation in the connector sleeve There is the second cavity.
Further technical solution, the storage device include the third being rotatably set in first connecting shaft Link block, third link block rear end are fixedly connected with the 4th link block, are connected in inner wall on the downside of the second gear chamber Be provided with third cavity, what is be connected in inner wall on the downside of the third cavity is provided with the 4th cavity, the 4th link block Lower end extension is passed through in the 4th cavity and right end is fixedly connected with card slot block, is slidably provided in the 4th cavity Block, the block inner opening to the left be provided with card slot, what is be connected in the 4th cavity upper inside walls is provided with the 5th Cavity, being connected on the left of the 5th cavity to pass through extraneous and right side and be connected passes through first sliding cavity, under the 4th cavity What is be connected in the inner wall of side is provided with storage chamber.
Further technical solution, tool cabinet lower end are fixedly installed storage block, are right against in the storage block First sliding cavity and opening upwards are provided with containing cavities, and the clast after cutting is collected in the containing cavities, described Second link block inner opening it is upward be provided with guide groove, in the guide groove slidably and upper end is fixedly connected on the sliding Fixture block is provided with guide pad, is connected with third spring between inner wall on rear side of the guide pad rear end and the guide groove, described What is be connected on the downside of 4th cavity in inner wall is provided with the second guide groove, in second guide groove slidably and upper end is fixed connects It is connected to second guide pad that is provided with of the block, on rear side of second guide pad rear end and second guide groove between inner wall It is connected with the 4th spring.
This method is using steps are as follows: firstly, when needing to cut off material using tool, material one end being extended and is passed through the It offsets in two cavitys and with cutting off tool right end, material opposite side is placed between sliding fixture block and fixing clip, according to object Material cross section size pushes sliding fixture block to slide and fix material, at this time electric motor starting, and then drives the rotation of the second spur gear, into And the rotation of third spur gear is driven by engaging mating connection between the second spur gear and third spur gear, and then drive first to connect Spindle rotation, and then the rotation of the second connecting shaft is driven, and then drive the rotation of the first cam, and then push on the first sliding block pulsating Under reciprocatingly slide, and then cutting off tool pulsating is pushed up and down reciprocatingly to slide and cut off material, while the first cam passes through shaft The 5th spur gear is driven to rotate, and then drive the 6th straight-tooth by engaging mating connection between the 5th spur gear and the 6th spur gear Wheel rotation, and then the rotation of the 7th spur gear is driven, and then by engaging mating connection between the 7th spur gear and the 8th spur gear The 8th spur gear is driven to rotate, and then drive the 9th straight-tooth by engaging mating connection between the 8th spur gear and the 9th spur gear Wheel rotation, and then the rotation of the second cam is driven, and then the second sliding block pulsating is pushed up and down reciprocatingly to slide, and then drive third sliding Block pulsating up and down reciprocatingly slides, and then drives the second link block pulsating up and down reciprocatingly to slide by the first link block, simultaneously 9th spur gear drives first bevel gear rotation by shaft, and then is matched by engaging between first bevel gear and second bevel gear It closes connection and drives second bevel gear rotation, and then drive the rotation of the tenth spur gear, and then drive the rotation of the first sector gear, simultaneously The rotation of the 11st spur gear is driven by engaging to be cooperatively connected between the tenth spur gear and the 11st spur gear, and then passes through the tenth Mating connection is engaged between one spur gear and the 12nd spur gear and drives the rotation of the 12nd spur gear, and then drives the second sector Wheel rotation, and then be meshed by the second sector gear with the two-sided rack and first link block pulsating or so is driven to reciprocatingly slide, And then second link block pulsating of drive or so reciprocatingly slides, and then drives material to slide to the left by fixing clip and sliding fixture block It is dynamic;Secondly, drive the 13rd spur gear to rotate by engaging mating connection between the 6th spur gear and the 13rd spur gear, the 7th Spur gear drives the rotation of the 14th spur gear by shaft, and then by engaging between the 14th spur gear and the 15th spur gear It is cooperatively connected and drives the rotation of the 15th spur gear, and then logical more 13rd spur gears and the 15th spur gear drive connector sleeve to turn Dynamic, material rotation at this time is conducive to cut off, and the material after cutting off at this time is sent out by the 5th cavity;Finally, when needing to change object When expecting the length after cutting off, pushing block is pushed, and then the 4th spur gear is driven to engage with the first spur gear, connected at this time by first Axis drives the second connecting shaft revolving speed to change, and then changes cutting off tool and cut off the material period, and then changes the length after material cutting Degree, while the sliding of third link block is driven by the first connecting shaft, and then drive the sliding of the 4th link block, and then drive card slot block It slips into card slot, and then pushes block sliding, and then the 5th cavity is connected to storage chamber, the material after cutting off at this time can It is stored in storage chamber, the clast fallen on material after cutting is accommodated in containing cavities by the first sliding cavity.
The beneficial effects of the present invention are: the configuration of the present invention is simple, easy to operate, when needing to cut off material using tool, Material one end is extended and is passed through in the second cavity and offsets with cutting off tool right end, material opposite side be placed in sliding fixture block with Between fixing clip, sliding fixture block is pushed to slide and fix material according to material cross section size, electric motor starting, and then band at this time Dynamic second spur gear rotation, and then third spur gear is driven by engaging mating connection between the second spur gear and third spur gear Rotation, and then the rotation of the first connecting shaft is driven, and then drive the rotation of the second connecting shaft, and then drive the rotation of the first cam, in turn It pushes the first sliding block pulsating up and down reciprocatingly to slide, and then cutting off tool pulsating is pushed up and down reciprocatingly to slide and cut off material, The first cam drives the rotation of the 5th spur gear by shaft simultaneously, and then by engaging between the 5th spur gear and the 6th spur gear It is cooperatively connected and drives the rotation of the 6th spur gear, and then drive the rotation of the 7th spur gear, and then is straight by the 7th spur gear and the 8th Engagement, which is cooperatively connected, between gear drives the rotation of the 8th spur gear, and then by engaging between the 8th spur gear and the 9th spur gear It is cooperatively connected and drives the rotation of the 9th spur gear, and then drive the rotation of the second cam, and then push the second sliding block pulsating or more past Multiple sliding, and then drive third sliding block pulsating up and down reciprocatingly to slide, and then drive the second link block arteries and veins by the first link block Dynamic formula up and down reciprocatingly slides, while the 9th spur gear drives first bevel gear to rotate by shaft, and then passes through first bevel gear Mating connection is engaged between second bevel gear and drives second bevel gear rotation, and then drives the rotation of the tenth spur gear, and then band Dynamic first sector gear rotation, while the 11st is driven by engaging mating connection between the tenth spur gear and the 11st spur gear Spur gear rotation, and then the 12nd spur gear is driven by engaging mating connection between the 11st spur gear and the 12nd spur gear Rotation, and then the rotation of the second sector gear is driven, and then the first company of drive that is meshed by the second sector gear with the two-sided rack It connects block pulsating or so to reciprocatingly slide, and then second link block pulsating of drive or so reciprocatingly slides, and then passes through fixing clip Material is driven to slide to the left with sliding fixture block, while by engaging mating connection band between the 6th spur gear and the 13rd spur gear Dynamic 13rd spur gear rotation, the 7th spur gear drives the 14th spur gear to rotate by shaft, and then passes through the 14th straight-tooth Wheel and engage mating connection between the 15th spur gear and drive the rotation of the 15th spur gear, and then passes through the 13rd spur gear and the 15 spur gears drive connector sleeve rotation, and material rotation at this time is conducive to cut off, and the material after cutting off at this time passes through the 5th cavity It sends out, when needing to change the length after material cutting, pushes pushing block, and then the 4th spur gear is driven to nibble with the first spur gear It closes, drives the second connecting shaft revolving speed to change by the first connecting shaft at this time, and then change cutting off tool and cut off the material period, in turn Length after changing material cutting, while the sliding of third link block is driven by the first connecting shaft, and then drive the 4th link block Sliding, and then drive card slot block to slip into card slot, and then push block sliding, and then the 5th cavity and storage chamber are connected Logical, the material after cutting off at this time can be stored in storage chamber, and the clast fallen on material after cutting is stored by the first sliding cavity It is not only easy to operate in containing cavities, it is easy to use, the length of material after cutting can also be controlled, moreover it is possible to by different length Material separately store.
Detailed description of the invention
Fig. 1 is the schematic diagram of internal structure of a kind of pulsating portable power tool of the invention and its application method;
Fig. 2 is the schematic diagram in direction " A-A " in Fig. 1;
Fig. 3 is the schematic diagram in direction " B-B " in Fig. 1;
Fig. 4 is the schematic diagram in direction " C-C " in Fig. 1;
Fig. 5 is the schematic diagram in direction " D-D " in Fig. 1;
Fig. 6 is the schematic diagram in direction " E-E " in Fig. 5.
Specific embodiment
Below with reference to Fig. 1-6, the present invention is described in detail, for sake of convenience, now such as to hereafter described orientation regulation Under: hereafter described front-rear direction up and down is consistent with the front-rear direction up and down of Fig. 1 projection relation itself.
Referring to Fig.1-6, a kind of pulsating portable power tool and its application method of embodiment according to the present invention, we Method use device includes tool cabinet 11, the conveying disconnecting device being set in the tool cabinet 11, is set to the tool Auxiliary disconnecting device in cabinet 11 and the storage device being set in the tool cabinet 11, the conveying disconnecting device packet The first gear chamber 13 being set in the tool cabinet 11 is included, is fixedly installed electricity in 13 inner left wall of first gear chamber Machine 12,12 right end of motor are connected with the first spur gear 14 by shaft power, and 14 right end of the first spur gear is logical It crosses shaft and is fixedly connected with the second spur gear 15, what is be connected in 13 upper inside walls of first gear chamber is provided with second gear Chamber 16,15 upper end of the second spur gear extension is passed through in the second gear chamber 16 and what is be meshed is provided with third spur gear 17,17 left end of third spur gear is fixedly connected with the first connecting shaft 18, and 18 left end of the first connecting shaft is fixedly connected with 4th spur gear 23,23 lower end of the 4th spur gear are engageable to first spur gear 14, and the 4th spur gear 23 is left End is passed through extraneous shaft and is fixedly connected with pushing block 24 by can be rotated and extend, and 18 inner opening of the first connecting shaft is to the right Be provided with axocoel 25, be connected in 25 upper inside walls of axocoel and be open to the right be provided with the first keyway 19, the axocoel Rotatably be provided with the second connecting shaft 26 in 25,26 inner opening of the second connecting shaft it is upward be provided with the second keyway 21, It is slidably provided with upper end in second keyway 21 and extends the flat key 20 being passed through in first keyway 19, second tooth The first cam chamber 27 is provided in wheel 16 right side inner wall of chamber, 26 right end of the second connecting shaft passes through the third spur gear 17 and prolongs It stretches and is passed through in first cam chamber 27 and is fixedly connected with the first cam 28,28 lower end of the first cam offsets and slidably Be provided with the first sliding block 29,29 lower end of the first sliding block is fixedly connected with cutting off tool 31,29 lower end of the first sliding block The first spring 30, phase in the 27 downside inner wall of the first cam chamber are connected between 27 downside inner wall of face and first cam chamber It being connected to and what is penetrated through is provided with the first sliding cavity 32,31 lower end of cutting off tool, which extends, to be passed through in first sliding cavity 32, Third gear cavity 33 is provided in first cam chamber, the 27 right side inner wall, 28 right end of the first cam is passed through institute by extending It states the shaft in third gear cavity 33 and has been fixedly connected with the 5th spur gear 34, what 34 lower end of the 5th spur gear was meshed sets It is equipped with the 6th spur gear 35, is provided with the 4th gear cavity 36, the 6th spur gear in the 33 right side inner wall of third gear cavity 35 right ends are fixedly connected with the 7th spur gear 37, the 7th straight-tooth by extending the shaft being passed through in the 4th gear cavity 36 That takes turns that 37 lower ends are meshed is provided with the 8th spur gear 38, and what 38 lower end of the 8th spur gear was meshed is provided with the 9th straight-tooth 39 are taken turns, the second cam chamber 88 is provided in 36 inner left wall of the 4th gear cavity, 39 left end of the 9th spur gear is by prolonging It stretches the shaft being passed through in second cam chamber 88 and is fixedly connected with the second cam 40, in the 88 downside inner wall of the second cam chamber What is be connected is provided with the second sliding cavity 41, and 40 lower end of the second cam, which extends, to be passed through in second sliding cavity 41 and offset Be provided with the second sliding block 42, is connected between 41 downside inner wall of 42 lower end surface of the second sliding block and second sliding cavity Two springs 48 are provided with third sliding cavity 43 in second sliding block 42, are slidably provided in the third sliding cavity 43 Third sliding block 44,44 right end of third sliding block are fixedly connected with the first link block 45, the 41 right side inner wall of the second sliding cavity What is be inside connected and penetrate through is provided with third sliding cavity 46, and 45 right end of the first link block extension is passed through the external world and is fixedly connected with Second link block 49, is fixedly connected with fixing clip 63 on front side of 49 upper end of the second link block, on second link block 49 End rear side is slidably provided with sliding fixture block 50, up and down and is fixedly installed the two-sided rack in first link block 45 47, the 5th gear cavity 51 is provided in the 36 right side inner wall of the 4th gear cavity, and 39 right end of the 9th spur gear passes through extension The shaft being passed through in the 5th gear cavity 51 is fixedly connected with first bevel gear 52, and 52 rear end of first bevel gear is meshed Be provided with second bevel gear 53, be connected in 51 front inner wall of the 5th gear cavity and pass through the setting of the third sliding cavity 46 There is the 6th gear cavity 54, the shaft being passed through in the 6th gear cavity 54 is fixed to be connected by extending for 53 front end of second bevel gear Be connected to the tenth spur gear 55, be connected in 54 front inner wall of the 6th gear cavity pass through the third sliding cavity 46 be provided with the Seven gear cavities 59,55 front end of the tenth spur gear are fixedly connected with by extending the shaft being passed through in the 7th gear cavity 59 First sector gear 60,60 lower end of the first sector gear extension are passed through in the third sliding cavity 46 and are engageable to described 47 upper end of the two-sided rack, 55 lower end of the tenth spur gear extension is passed through in the third sliding cavity 46 and what is be meshed is provided with 11st spur gear 56 is right against setting for the 6th gear cavity 54 and opening upwards in the 46 downside inner wall of third sliding cavity It is equipped with eighth gear chamber 57, rotatable and being provided in the 11st spur gear 56 that be meshed in the eighth gear chamber 57 12nd spur gear 58, be connected in 57 front inner wall of eighth gear chamber pass through the third sliding cavity 46 be provided with the 9th Gear cavity 61,58 front end of the 12nd spur gear are fixedly connected with by extending the shaft being passed through in the 9th gear cavity 61 Second sector gear 62,62 upper end of the second sector gear extension are passed through in the third sliding cavity 46 and are engageable to described 47 lower end of the two-sided rack.
Valuably, the auxiliary disconnecting device include be connected in the 33 downside inner wall of third gear cavity be provided with the One cavity 71 is rotatably provided with connector sleeve 72 in first cavity 71, is fixedly connected with upper end on the connector sleeve 72 It is engaged in the 13rd spur gear 67 of the 6th spur gear 35, being connected in the 36 right side inner wall of the 4th gear cavity, it is described to pass through First cavity 71 is provided with the tenth gear cavity 68, and 67 right end of the 13rd spur gear is passed through the tenth gear by extending Shaft in chamber 68 is fixedly connected with the 14th spur gear 69, and what 69 lower end of the 14th spur gear was meshed is provided with fixation The 15th spur gear 70 being connected on the connector sleeve 72 is right against described first in first sliding cavity, the 32 right side inner wall Cavity 71 is fixedly installed radiating block 74, and 72 left end of connector sleeve is connected across the radiating block 74 passes through first cunning Dynamic chamber 32, the interior left and right perforation of the connector sleeve 72 are provided with the second cavity 73.
Valuably, the storage device includes the third link block being rotatably set in first connecting shaft 18 22,22 rear end of third link block is fixedly connected with the 4th link block 80, is connected in the 16 downside inner wall of second gear chamber Logical is provided with third cavity 81, and what is be connected in the 81 downside inner wall of third cavity is provided with the 4th cavity 82, and described The extension of four link blocks, 80 lower end is passed through in the 4th cavity 82 and right end is fixedly connected with card slot block 86, the 4th cavity 82 It is interior to be slidably provided with block 78,78 inner opening of block to the left be provided with card slot 87,82 upside of the 4th cavity What is be connected in inner wall is provided with the 5th cavity 77, and being connected to pass through extraneous and right side and be connected on the left of the 5th cavity 77 passes through institute The first sliding cavity 32 is stated, what is be connected in the 82 downside inner wall of the 4th cavity is provided with storage chamber 79.
Valuably, 11 lower end of tool cabinet is fixedly installed storage block 75, is right against in the storage block 75 described First sliding cavity 32 and opening upwards are provided with containing cavities 76, and the clast after cutting is collected in the containing cavities 76, institute State 49 inner opening of the second link block it is upward be provided with guide groove 64, in the guide groove 64 slidably and upper end is fixedly connected on The sliding fixture block 50 is provided with guide pad 66, connects between 64 rear side inner wall of 66 rear end of guide pad and the guide groove There is third spring 65, what is be connected in the 82 downside inner wall of the 4th cavity is provided with the second guide groove 85, second guiding In slot 85 slidably and upper end is fixedly connected on second guide pad 83 that is provided with of the block 78, after second guide pad 83 The 4th spring 84 is connected between end and second guide groove, 85 rear side inner wall.
This method is using steps are as follows: firstly, when needing to cut off material using tool, material one end being extended and is passed through the Offset in two cavitys 73 and with 31 right end of cutting off tool, material opposite side be placed in sliding fixture block 50 and fixing clip 63 it Between, it pushes sliding fixture block 50 to slide according to material cross section size and fixes material, motor 12 starts at this time, and then drives second Spur gear 15 rotates, and then drives third spur gear by engaging mating connection between the second spur gear 15 and third spur gear 17 17 rotations, and then the rotation of the first connecting shaft 18 is driven, and then drive the rotation of the second connecting shaft 26, and then drive 28 turns of the first cam It is dynamic, and then push 29 pulsating of the first sliding block up and down reciprocatingly to slide, and then 31 pulsating of cutting off tool is pushed up and down reciprocatingly to slide And cut off material, while the first cam 28 drives the 5th spur gear 34 to rotate by shaft, and then by the 5th spur gear 34 with Engagement, which is cooperatively connected, between 6th spur gear 35 drives the rotation of the 6th spur gear 35, and then drives the rotation of the 7th spur gear 37, into And the rotation of the 8th spur gear 38 is driven by engaging mating connection between the 7th spur gear 37 and the 8th spur gear 38, and then pass through Mating connection is engaged between 8th spur gear 38 and the 9th spur gear 39 and drives the rotation of the 9th spur gear 39, and then drive second is convex 40 rotation of wheel, and then push 42 pulsating of the second sliding block up and down reciprocatingly to slide, and then drive 44 pulsating of third sliding block or more past Multiple sliding, and then drive 49 pulsating of the second link block up and down reciprocatingly to slide by the first link block 45, while the 9th spur gear 39 drive first bevel gear 52 to rotate by shaft, and then by engaging cooperation between first bevel gear 52 and second bevel gear 53 Connection drives second bevel gear 53 to rotate, and then drives the rotation of the tenth spur gear 55, and then drives the rotation of the first sector gear 60, The rotation of the 11st spur gear 56 is driven by engaging mating connection between the tenth spur gear 55 and the 11st spur gear 56 simultaneously, into And the rotation of the 12nd spur gear 58 is driven by engaging mating connection between the 11st spur gear 56 and the 12nd spur gear 58, into And the rotation of the second sector gear 62 is driven, and then be meshed by the second sector gear 62 with the two-sided rack 47 and drive first to connect 45 pulsating of block or so reciprocatingly slides, and then drive 49 pulsating of the second link block or so reciprocatingly slides, and then passes through fixing clamp Block 63 drives material to slide to the left with sliding fixture block 50;Secondly, by being nibbled between the 6th spur gear 35 and the 13rd spur gear 67 It closing to be cooperatively connected and drives the rotation of the 13rd spur gear 67, the 7th spur gear 37 drives the 14th spur gear 69 to rotate by shaft, And then the rotation of the 15th spur gear 70 is driven by engaging mating connection between the 14th spur gear 69 and the 15th spur gear 70, And then logical more 13rd spur gears 67 and the 15th spur gear 70 drive connector sleeve 72 to rotate, material rotation at this time is conducive to cut Disconnected, the material after cutting off at this time is sent out by the 5th cavity 77;Finally, being pushed when needing to change the length after material cutting Pushing block 24, and then the 4th spur gear 23 is driven to engage with the first spur gear 14, drive second to connect by the first connecting shaft 18 at this time 26 revolving speed of spindle changes, and then changes cutting off tool 31 and cut off the material period, and then changes the length after material cutting, leads to simultaneously Crossing the first connecting shaft 18 drives third link block 22 to slide, and then drives the sliding of the 4th link block 80, and then drive card slot block 86 It slips into card slot 87, and then pushes block 78 to slide, and then the 5th cavity 77 is connected to storage chamber 79, after cutting off at this time Material can be stored in storage chamber 79, the clast fallen on material after cutting is accommodated in containing cavities 76 by the first sliding cavity 32 It is interior.
When original state, pushing block 24 is in limit on the left position, and third spur gear 17 is in the second spur gear 15 and nibbles at this time Conjunction state, the 4th spur gear 23 and the first spur gear 14 are in disengaged position at this time, and third link block 22 is in limit on the left at this time Position, card slot block 86 is in limit on the left position at this time, and block 78 is in preceding limit position under the effect of 84 elastic force of the 4th spring at this time It sets, storage chamber 79 is in close state at this time, and the first sliding block 29 is in lower limit position at this time, and cutting off tool 31 is in down at this time Extreme position simultaneously separates the 5th cavity 77 and the second cavity 73, and the second sliding block 42 is in lower limit position at this time, and third is sliding at this time Block 44 is in limit on the right-right-hand limit position, and the two-sided rack 47 and the second sector gear 62 are in meshing state at this time, at this time the first sector Wheel 60 is in disengaged position with the two-sided rack 47.
When need using tool cut off material when, by material one end extend be passed through in the second cavity 73 and with cutting off tool 31 Right end offsets, and material opposite side is placed between sliding fixture block 50 and fixing clip 63, is pushed according to material cross section size It slides fixture block 50 to slide and fix material, motor 12 starts at this time, and then drives the rotation of the second spur gear 15, and then pass through second Mating connection is engaged between spur gear 15 and third spur gear 17 drives third spur gear 17 to rotate, and then drives the first connecting shaft 18 rotations, and then the rotation of the second connecting shaft 26 is driven, and then drive the rotation of the first cam 28, and then push the pulsation of the first sliding block 29 Formula is up and down reciprocatingly slided, and then 31 pulsating of cutting off tool is pushed up and down reciprocatingly to slide and cut off material, while the first cam 28 The rotation of the 5th spur gear 34 is driven by shaft, and then is connected by engaging cooperation between the 5th spur gear 34 and the 6th spur gear 35 Tape splicing moves the rotation of the 6th spur gear 35, and then drives the rotation of the 7th spur gear 37, and then straight by the 7th spur gear 37 and the 8th Engagement, which is cooperatively connected, between gear 38 drives the rotation of the 8th spur gear 38, and then passes through the 8th spur gear 38 and the 9th spur gear 39 Between engagement be cooperatively connected drive the 9th spur gear 39 rotation, and then drive the second cam 40 rotation, and then push the second sliding block 42 pulsatings up and down reciprocatingly slide, and then 44 pulsating of third sliding block is driven up and down reciprocatingly to slide, and then pass through the first link block 45 drive 49 pulsatings of the second link block up and down reciprocatingly slide, while the 9th spur gear 39 drives first bevel gear 52 by shaft Rotation, and then drive second bevel gear 53 to rotate by engaging mating connection between first bevel gear 52 and second bevel gear 53, And then the rotation of the tenth spur gear 55 is driven, and then drive the rotation of the first sector gear 60, while passing through the tenth spur gear 55 and the Engagement, which is cooperatively connected, between 11 spur gears 56 drives the rotation of the 11st spur gear 56, and then passes through the 11st spur gear 56 and the Engagement, which is cooperatively connected, between 12 spur gears 58 drives the rotation of the 12nd spur gear 58, and then drives 62 turns of the second sector gear It is dynamic, and then be meshed by the second sector gear 62 with the two-sided rack 47 and drive 45 pulsating of the first link block or so reciprocal sliding It is dynamic, and then drive 49 pulsating of the second link block or so reciprocatingly slides, and then is driven by fixing clip 63 and sliding fixture block 50 Material slides to the left, while straight by engaging mating connection drive the 13rd between the 6th spur gear 35 and the 13rd spur gear 67 Gear 67 rotates, and the 7th spur gear 37 drives the 14th spur gear 69 to rotate by shaft, and then passes through the 14th spur gear 69 Mating connection is engaged between the 15th spur gear 70 drives the rotation of the 15th spur gear 70, and then logical more 13rd spur gears 67 Connector sleeve 72 is driven to rotate with the 15th spur gear 70, material rotation at this time is conducive to cut off, and the material after cutting off at this time passes through 5th cavity 77 is sent out, and when needing to change the length after material cutting, pushes pushing block 24, so drive the 4th spur gear 23 with The engagement of first spur gear 14, drives 26 revolving speed of the second connecting shaft to change by the first connecting shaft 18 at this time, and then changes cutoff tool The 31 cutting material period of tool, and then change the length after material cutting, while third link block is driven by the first connecting shaft 18 22 slidings, and then the sliding of the 4th link block 80 is driven, and then card slot block 86 is driven to slip into card slot 87, and then push block 78 slidings, and then the 5th cavity 77 is connected to storage chamber 79, the material after cutting off at this time can be stored in storage chamber 79, be cut off The clast fallen on material afterwards is accommodated in containing cavities 76 by the first sliding cavity 32, not only easy to operate, easy to use, may be used also With the length of material after control cutting, moreover it is possible to separately store the material of different length.
The beneficial effects of the present invention are: the configuration of the present invention is simple, easy to operate, when needing to cut off material using tool, Material one end is extended and is passed through in the second cavity and offsets with cutting off tool right end, material opposite side be placed in sliding fixture block with Between fixing clip, sliding fixture block is pushed to slide and fix material according to material cross section size, electric motor starting, and then band at this time Dynamic second spur gear rotation, and then third spur gear is driven by engaging mating connection between the second spur gear and third spur gear Rotation, and then the rotation of the first connecting shaft is driven, and then drive the rotation of the second connecting shaft, and then drive the rotation of the first cam, in turn It pushes the first sliding block pulsating up and down reciprocatingly to slide, and then cutting off tool pulsating is pushed up and down reciprocatingly to slide and cut off material, The first cam drives the rotation of the 5th spur gear by shaft simultaneously, and then by engaging between the 5th spur gear and the 6th spur gear It is cooperatively connected and drives the rotation of the 6th spur gear, and then drive the rotation of the 7th spur gear, and then is straight by the 7th spur gear and the 8th Engagement, which is cooperatively connected, between gear drives the rotation of the 8th spur gear, and then by engaging between the 8th spur gear and the 9th spur gear It is cooperatively connected and drives the rotation of the 9th spur gear, and then drive the rotation of the second cam, and then push the second sliding block pulsating or more past Multiple sliding, and then drive third sliding block pulsating up and down reciprocatingly to slide, and then drive the second link block arteries and veins by the first link block Dynamic formula up and down reciprocatingly slides, while the 9th spur gear drives first bevel gear to rotate by shaft, and then passes through first bevel gear Mating connection is engaged between second bevel gear and drives second bevel gear rotation, and then drives the rotation of the tenth spur gear, and then band Dynamic first sector gear rotation, while the 11st is driven by engaging mating connection between the tenth spur gear and the 11st spur gear Spur gear rotation, and then the 12nd spur gear is driven by engaging mating connection between the 11st spur gear and the 12nd spur gear Rotation, and then the rotation of the second sector gear is driven, and then the first company of drive that is meshed by the second sector gear with the two-sided rack It connects block pulsating or so to reciprocatingly slide, and then second link block pulsating of drive or so reciprocatingly slides, and then passes through fixing clip Material is driven to slide to the left with sliding fixture block, while by engaging mating connection band between the 6th spur gear and the 13rd spur gear Dynamic 13rd spur gear rotation, the 7th spur gear drives the 14th spur gear to rotate by shaft, and then passes through the 14th straight-tooth Wheel and engage mating connection between the 15th spur gear and drive the rotation of the 15th spur gear, and then passes through the 13rd spur gear and the 15 spur gears drive connector sleeve rotation, and material rotation at this time is conducive to cut off, and the material after cutting off at this time passes through the 5th cavity It sends out, when needing to change the length after material cutting, pushes pushing block, and then the 4th spur gear is driven to nibble with the first spur gear It closes, drives the second connecting shaft revolving speed to change by the first connecting shaft at this time, and then change cutting off tool and cut off the material period, in turn Length after changing material cutting, while the sliding of third link block is driven by the first connecting shaft, and then drive the 4th link block Sliding, and then drive card slot block to slip into card slot, and then push block sliding, and then the 5th cavity and storage chamber are connected Logical, the material after cutting off at this time can be stored in storage chamber, and the clast fallen on material after cutting is stored by the first sliding cavity It is not only easy to operate in containing cavities, it is easy to use, the length of material after cutting can also be controlled, moreover it is possible to by different length Material separately store.
Those skilled in the art can define, can in the case of not departing from overall spirit of the invention and design To make the various modifications for above embodiments.It falls within the scope of protection of the present invention.Protection scheme of the invention It is subject to claims appended hereto.

Claims (5)

1. a kind of pulsating portable power tool and its application method, this method use device includes tool cabinet, is set to institute The intracorporal conveying disconnecting device in tool box is stated, the intracorporal auxiliary disconnecting device in the tool box is set to and is set to the work Has the intracorporal storage device of case, the conveying disconnecting device includes being set to the intracorporal first gear chamber in the tool box, described Motor is fixedly installed in first gear chamber inner left wall, the motor right end is connected with the first straight-tooth by shaft power Wheel, the first spur gear right end are fixedly connected with the second spur gear, phase in the first gear chamber upper inside walls by shaft Connection is provided with second gear chamber, and second spur gear upper end, which extends, is passed through that the second gear is intracavitary and what is be meshed sets It is equipped with third spur gear, third spur gear left end is fixedly connected with the first connecting shaft, and first connecting shaft left end is fixed It is connected with the 4th spur gear, the 4th spur gear lower end is engageable to first spur gear, the 4th spur gear left end It is passed through extraneous shaft by can be rotated and extend and is fixedly connected with pushing block, the first connecting shaft inner opening being provided with to the right Axocoel, first keyway that is provided with for being connected and being open to the right in the axocoel upper inside walls, rotatably sets in the axocoel Be equipped with the second connecting shaft, the second connecting shaft inner opening it is upward be provided with the second keyway, in second keyway slidably The upper end that is provided with extend the flat key that is passed through in first keyway, it is convex in inner wall to be provided with first on the right side of the second gear chamber Chamber is taken turns, the second connecting shaft right end passes through third spur gear extension and is passed through in first cam chamber and is fixedly connected with First cam, first lower cam end offset and are slidably provided with the first sliding block, and first sliding block lower end is fixed to be connected It is connected to cutting off tool, is connected with the first spring, institute between inner wall on the downside of first sliding block lower end surface and first cam chamber First sliding cavity that is provided with for being connected and penetrating through in inner wall on the downside of the first cam chamber is stated, the cutting off tool lower end, which extends, to be passed through In first sliding cavity, third gear cavity is provided on the right side of first cam chamber in inner wall, the first cam right end is logical It crosses the shaft for extending and being passed through in the third gear cavity and has been fixedly connected with the 5th spur gear, the 5th spur gear lower end is mutually nibbled That closes is provided with the 6th spur gear, is provided with the 4th gear cavity, the 6th spur gear in inner wall on the right side of the third gear cavity Right end is fixedly connected with the 7th spur gear, the 7th spur gear lower end by extending the shaft being passed through in the 4th gear cavity What is be meshed is provided with the 8th spur gear, what the 8th spur gear lower end was meshed be provided with the 9th spur gear, and the described 4th The second cam chamber is provided in gear cavity inner left wall, the 9th spur gear left end is passed through second cam chamber by extending Interior shaft is fixedly connected with the second cam, and what is be connected in inner wall on the downside of second cam chamber is provided with the second sliding cavity, Second lower cam end, which extends, to be passed through in second sliding cavity and what is offseted is provided with the second sliding block, under second sliding block It is connected with second spring between inner wall on the downside of end face and second sliding cavity, third sliding is provided in second sliding block Chamber is slidably provided with third sliding block in the third sliding cavity, and the third sliding block right end is fixedly connected with the first connection Block is connected on the right side of second sliding cavity in inner wall and what is penetrated through is provided with third sliding cavity, the first link block right end Extension is passed through the external world and is fixedly connected with the second link block, is fixedly connected with fixing clip on front side of second link block upper end, institute It states and is slidably provided with sliding fixture block on rear side of the second link block upper end, up and down and be fixedly installed in first link block There is the two-sided rack, is provided with the 5th gear cavity on the right side of the 4th gear cavity in inner wall, the 9th spur gear right end is by prolonging It stretches the shaft being passed through in the 5th gear cavity and is fixedly connected with first bevel gear, what the first bevel gear rear end was meshed sets Be equipped with second bevel gear, be connected in the 5th gear cavity front inner wall pass through the third sliding cavity be provided with the 6th gear Chamber, the second bevel gear front end are fixedly connected with the tenth spur gear by extending the shaft being passed through in the 6th gear cavity, It is connected in the 6th gear cavity front inner wall and passes through the 7th gear cavity that is provided with of the third sliding cavity, the tenth straight-tooth Wheel front end is fixedly connected with the first sector gear, first sector by extending the shaft being passed through in the 7th gear cavity Wheel lower end, which extends, to be passed through in the third sliding cavity and is engageable to the two-sided rack upper end, and the tenth spur gear lower end is prolonged It stretches and is passed through in the third sliding cavity and what is be meshed is provided with the 11st spur gear, on the downside of the third sliding cavity in inner wall just For the 6th gear cavity and opening upwards are provided with eighth gear chamber, and the eighth gear is intracavitary to be can be rotated and be meshed Described the is passed through in being connected in the 12nd spur gear that is provided with of the 11st spur gear, the eighth gear chamber front inner wall Three sliding cavities are provided with the 9th gear cavity, and the 12nd spur gear front end is passed through in the 9th gear cavity by extending Shaft is fixedly connected with the second sector gear, and second sector gear upper end, which extends, to be passed through in the third sliding cavity and can nibble Together in the two-sided rack lower end.
2. a kind of pulsating portable power tool according to claim 1 and its application method, it is characterised in that: described auxiliary Help disconnecting device include be connected in inner wall on the downside of the third gear cavity be provided with the first cavity, can in first cavity Rotation is provided with connector sleeve, and the 13rd straight-tooth that upper end is engaged in the 6th spur gear is fixedly connected on the connector sleeve It takes turns, is connected in inner wall on the right side of the 4th gear cavity and passes through the tenth gear cavity that is provided with of first cavity, the described 13rd Spur gear right end is fixedly connected with the 14th spur gear by extending the shaft that is passed through in the tenth gear cavity, and the described 14th What spur gear lower end was meshed is provided with the 15th spur gear being fixedly connected on the connector sleeve, and first sliding cavity is right The radiating block that is fixedly installed of first cavity is right against in the inner wall of side, the connector sleeve left end is connected across the radiating block First sliding cavity is passed through, left and right perforation is provided with the second cavity in the connector sleeve.
3. a kind of pulsating portable power tool according to claim 1 and its application method, it is characterised in that: the storage Cryopreservation device includes the third link block being rotatably set in first connecting shaft, and third link block rear end is fixed to be connected It is connected to the 4th link block, what is be connected in inner wall on the downside of the second gear chamber is provided with third cavity, under the third cavity What is be connected in the inner wall of side is provided with the 4th cavity, and the 4th link block lower end extension is passed through in the 4th cavity and right end It is fixedly connected with card slot block, is slidably provided with block in the 4th cavity, the block inner opening being provided with to the left Card slot, what is be connected in the 4th cavity upper inside walls is provided with the 5th cavity, and being connected on the left of the 5th cavity, it is outer to pass through Boundary and right side, which are connected, passes through first sliding cavity, and what is be connected in inner wall on the downside of the 4th cavity is provided with storage chamber.
4. a kind of pulsating portable power tool according to claim 1 and its application method, it is characterised in that: the work Tool cabinet lower end is fixedly installed storage block, and being provided with for first sliding cavity and opening upwards is right against in the storage block Containing cavities, the clast after cutting are collected in the containing cavities, the second link block inner opening it is upward be provided with guiding Slot, in the guide groove slidably and upper end is fixedly connected on the guide pad that is provided with of the sliding fixture block, after the guide pad Third spring is connected on rear side of end and the guide groove between inner wall, what is be connected in inner wall on the downside of the 4th cavity is provided with Second guide groove, in second guide groove slidably and upper end be fixedly connected on the block be provided with the second guide pad, The 4th spring is connected between inner wall on rear side of second guide pad rear end and second guide groove.
5. this method is using steps are as follows: firstly, extending material one end when needing to cut off material using tool and being passed through second It offsets in cavity and with cutting off tool right end, material opposite side is placed between sliding fixture block and fixing clip, according to material Cross section size pushes sliding fixture block to slide and fix material, at this time electric motor starting, and then drives the rotation of the second spur gear, in turn The rotation of third spur gear is driven by engaging to be cooperatively connected between the second spur gear and third spur gear, and then drives the first connection Axis rotation, and then the rotation of the second connecting shaft is driven, and then drive the rotation of the first cam, and then push the first sliding block pulsating or more It reciprocatingly slides, and then pushes cutting off tool pulsating up and down reciprocatingly to slide and cut off material, while the first cam passes through shaft band Dynamic 5th spur gear rotation, and then the 6th spur gear is driven by engaging mating connection between the 5th spur gear and the 6th spur gear Rotation, and then the rotation of the 7th spur gear is driven, and then by engaging mating connection band between the 7th spur gear and the 8th spur gear Dynamic 8th spur gear rotation, and then the 9th spur gear is driven by engaging mating connection between the 8th spur gear and the 9th spur gear Rotation, and then the rotation of the second cam is driven, and then the second sliding block pulsating is pushed up and down reciprocatingly to slide, and then drive third sliding block Pulsating up and down reciprocatingly slides, and then drives the second link block pulsating up and down reciprocatingly to slide by the first link block, while the Nine spur gears drive first bevel gear rotation by shaft, and then by engaging cooperation between first bevel gear and second bevel gear Connection drives second bevel gear rotation, and then drives the rotation of the tenth spur gear, and then drives the rotation of the first sector gear, leads to simultaneously It crosses between the tenth spur gear and the 11st spur gear and engages mating connection drive the 11st spur gear rotation, and then pass through the 11st Mating connection is engaged between spur gear and the 12nd spur gear and drives the rotation of the 12nd spur gear, and then drives the second sector gear Rotation, and then be meshed by the second sector gear with the two-sided rack and first link block pulsating or so is driven to reciprocatingly slide, into And second link block pulsating of drive or so reciprocatingly slides, and then drives material to slide to the left by fixing clip and sliding fixture block It is dynamic;Secondly, drive the 13rd spur gear to rotate by engaging mating connection between the 6th spur gear and the 13rd spur gear, the 7th Spur gear drives the rotation of the 14th spur gear by shaft, and then by engaging between the 14th spur gear and the 15th spur gear It is cooperatively connected and drives the rotation of the 15th spur gear, and then logical more 13rd spur gears and the 15th spur gear drive connector sleeve to turn Dynamic, material rotation at this time is conducive to cut off, and the material after cutting off at this time is sent out by the 5th cavity;Finally, when needing to change object When expecting the length after cutting off, pushing block is pushed, and then the 4th spur gear is driven to engage with the first spur gear, connected at this time by first Axis drives the second connecting shaft revolving speed to change, and then changes cutting off tool and cut off the material period, and then changes the length after material cutting Degree, while the sliding of third link block is driven by the first connecting shaft, and then drive the sliding of the 4th link block, and then drive card slot block It slips into card slot, and then pushes block sliding, and then the 5th cavity is connected to storage chamber, the material after cutting off at this time can It is stored in storage chamber, the clast fallen on material after cutting is accommodated in containing cavities by the first sliding cavity.
CN201811327513.8A 2018-11-08 2018-11-08 A kind of pulsating portable power tool and its application method Withdrawn CN109226901A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201811327513.8A CN109226901A (en) 2018-11-08 2018-11-08 A kind of pulsating portable power tool and its application method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201811327513.8A CN109226901A (en) 2018-11-08 2018-11-08 A kind of pulsating portable power tool and its application method

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CN109226901A true CN109226901A (en) 2019-01-18

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110253083A (en) * 2019-06-17 2019-09-20 义乌月落自动化设备有限公司 A kind of titanium alloy closing end processing equipment
CN113523876A (en) * 2021-07-12 2021-10-22 湖州雄鹰通信电力设备有限公司 Cutting electric power fitting

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110253083A (en) * 2019-06-17 2019-09-20 义乌月落自动化设备有限公司 A kind of titanium alloy closing end processing equipment
CN110253083B (en) * 2019-06-17 2020-11-20 深圳市以凡泰科技有限公司 Titanium alloy head treatment facility
CN113523876A (en) * 2021-07-12 2021-10-22 湖州雄鹰通信电力设备有限公司 Cutting electric power fitting

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