CN207681565U - The machining tool of die casting - Google Patents

The machining tool of die casting Download PDF

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Publication number
CN207681565U
CN207681565U CN201820021015.XU CN201820021015U CN207681565U CN 207681565 U CN207681565 U CN 207681565U CN 201820021015 U CN201820021015 U CN 201820021015U CN 207681565 U CN207681565 U CN 207681565U
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CN
China
Prior art keywords
die casting
component
cover half
machining tool
toolbox
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.)
Expired - Fee Related
Application number
CN201820021015.XU
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Chinese (zh)
Inventor
娄昔伦
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Ikd Co Ltd
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Ikd Co Ltd
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Filing date
Publication date
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Priority to CN201820021015.XU priority Critical patent/CN207681565U/en
Application granted granted Critical
Publication of CN207681565U publication Critical patent/CN207681565U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a kind of machining tool of die casting, burr and flash for removing die casting, the machining tool include rack, are slidedly arranged on the dynamic model component of the rack and are installed on the cover half component of the rack.The machining tool further includes the toolbox for being installed on the cover half component and the driving device for driving the toolbox, the dynamic model component is for installing the die casting and the die casting being driven to be moved to cover half component direction, until the toolbox cuts off the flash of the die casting.The dynamic model component triggers the driving device, and the driving device drives the toolbox operation to remove the burr of the die casting.Toolbox can realize that the flash of die casting is processed step by step with burr, small to the impact force of die casting, high precision machining avoids die casting from damaging by way of removing Burr removal drawn game portion burr successively, during time processing.

Description

The machining tool of die casting
Technical field
The utility model is related to field of machining technology, more particularly, to a kind of machining tool of die casting.
Background technology
Existing aluminium diecasting deburring and flash, include the following steps:First, the material of die casting is washed away using a punch die The flashes such as handle.Secondly, product parting line burrs on edges is washed away with fine.Again, for interiors of products because of mold aging cracking It can only be removed by hand Deng the burr generated on the overstepping one's bounds molded line such as fleshiness or mandril.
The mode for removing in view of labour increasingly in short supply and by hand flash removed, easily makes at the local burr omission of die casting Reason, leads to that productivity effect is low, unstable quality problem.
Utility model content
In view of the deficiency of the prior art, the purpose of this utility model is to provide a kind of processing machine of die casting Bed, it has feature high in machining efficiency, processing quality is stablized.
To achieve the goals above, technical solution used by the utility model is:A kind of machining tool of die casting is used In the burr and flash of removal die casting, the machining tool includes rack, is slidedly arranged on dynamic model component and the installation of the rack In the cover half component of the rack, the machining tool further includes being installed on described in toolbox and the driving of the cover half component The driving device of toolbox, the dynamic model component is for installing the die casting and driving the die casting to the cover half group Part direction is moved, until the toolbox cuts off the flash of the die casting, the dynamic model component triggers the driving device, The driving device drives the toolbox operation to remove the burr of the die casting.
Optionally, the toolbox includes being fixed on the fixing cutter group of the cover half component and being plugged in the cover half group The bite group of part, the dynamic model component drive the die casting to be moved to the cover half component, and the fixing cutter group cuts institute State the flash of die casting, burr of the bite group for die casting predetermined position described in machining.
Optionally, the bite group elastic telescopic is set on the cover half component.
Optionally, the bite group includes an at least milling cutter part, is installed on the rotating member of the milling cutter part and is sheathed on The both ends elasticity of the elastic component of the rotating member, the elastic component is connected to the cover half component and the rotating member, described dynamic Membrane module drives the die casting to squeeze the milling cutter part, milling cutter part elastic telescopic in the axial direction, so that the cutting Knife group is retracted in the cover half component;The driving device connect with the rotating member and the milling cutter part is driven to rotate, so that The milling cutter part cuts the burr of the die casting.
Optionally, the driving device includes electric machine assembly and at least one driving being drivingly connected with the electric machine assembly Part, an at least actuator are connected to the corresponding bite group, an at least actuator described in the electric machine assembly driving Rotation, an at least actuator drive the bite group rotation.
Optionally, the actuator includes head rod, is installed on first universal group of described head rod one end Part, the second connecting rod, the second gimbal assembly for being installed on second connecting rod one end and the connection head rod and institute State the double threaded screw part of the second connecting rod, the double threaded screw part is used to adjust the total length of the actuator, and the described 10000th It is drivingly connected to component and the electric machine assembly, second gimbal assembly is fixedly connected with the bite group, the motor Actuator rotation is to drive the cutting tool to process the die casting described in Component driver.
Optionally, the head rod and the axis of second connecting rod incline relative to the axis of the bite group Tiltedly setting.
Optionally, the driving device further includes the induction for being installed on the rack and being electrically connected with the electric machine assembly Part, the dynamic model component along the housing slide to triggering the induction pieces so that the electric machine assembly drives the actuator Rotation.
Optionally, the cover half component includes mounting plate and is fixed on the lower module of the mounting plate, the bite group It is installed in the mounting plate and interts to the lower module, the fixing cutter group is installed on the lower module.
Optionally, the rack includes hydraulic pressure platform and is spaced apart in four guide posts of the hydraulic pressure platform, the cover half component Sliding to set and be fixed on four guide posts, the dynamic model component slides along four guide posts and pushes the die casting against described in Toolbox.
With the above structure, the utility model is compared to the prior art advantageously:
Die casting is fixed using dynamic model component, accurate positioning ensures that the fixed position of die casting and Working position determine. Toolbox during time processing, can realize the flash of die casting by way of removing Burr removal drawn game portion burr successively It is processed step by step with burr, small to the impact force of die casting, high precision machining avoids die casting from damaging.Die casting can pass through one Secondary clamping completes the removing step of burr and flash, and high in machining efficiency, labor intensity is low.
Description of the drawings
The utility model is further illustrated with reference to the accompanying drawings and examples:
Fig. 1 is the broken section structural schematic diagram of the utility model;
Fig. 2 is the enlarged structure schematic diagram at A in Fig. 1;
Fig. 3 is the structural schematic diagram of lower module in the utility model.
In figure:Rack 10;Guide post 11;Top plate 12;Hydraulic cylinder 13;Hydraulic pressure platform 14;Dynamic model component 20;Cover half component 30;Peace Loading board 31;Lower module 32;Driving device 40;Actuator 41;Second connecting rod 411;Second gimbal assembly 412;Double threaded screw part 413;Head rod 414;First gimbal assembly 415;Electric machine assembly 42;Gear-box 421;Power motor 422;Induction pieces 43; Toolbox 50;Bite group 51;Milling cutter part 511;Rotating member 512;Elastic component 513;Fixing cutter group 52;Die casting 60.
Specific implementation mode
As described below is only the preferred embodiment of the utility model, does not therefore limit the protection model of the utility model It encloses.
Embodiment is shown in shown in Fig. 1 to Fig. 3:Die casting 60 easily deposits shape after machine-shaping, at positions such as die joint, mandrils At flash and burr, the machining tool of die casting 60 is used to remove the burr and flash of die casting 60.Machining tool includes rack 10, it is slidedly arranged on the dynamic model component 20 of rack 10 and is installed on the cover half component 30 of rack 10, rack 10 includes hydraulic pressure platform 14, interval Four guide posts 11 for being distributed in hydraulic pressure platform 14, the top plate 12 being fixed on four guide posts 11 are equipped with hydraulic cylinder 13, hydraulic pressure on top plate 12 The output shaft of cylinder 13 is fixed in dynamic model component 20, and dynamic model component 20 is pushed to be slided along 11 linear reciprocation of guide post.Machining tool is also Driving device 40 including the toolbox 50 and driving toolbox 50 that are installed on cover half component 30.The cunning of cover half component 30 is set simultaneously It is fixed on the predeterminated position of four guide posts 11, dynamic model component 20 is slided along four guide posts 11, and pushes die casting 60 against to cutter group Part 50.
Die casting 60 to be processed is fixed on dynamic model component 20, and the output shaft of hydraulic cylinder 13 pushes dynamic model component 20 and die casting Part 60 is moved to 30 direction of cover half component, until toolbox 50 cuts off the flash of die casting 60.Wherein, dynamic model component 20 touches Driving device 40 is sent out, driving device 40 drives the operation of toolbox 50 to remove the burr of die casting 60.
Die casting 60 is fixed using dynamic model component 20, accurate positioning ensures fixed position and the machining position of die casting 60 Set determination.Toolbox 50 can realize die casting by way of removing Burr removal drawn game portion burr successively, during time processing The flash of part 60 is processed step by step with burr, small to the impact force of die casting 60, high precision machining, and die casting 60 is avoided to damage. Die casting 60 can complete the removing step of burr and flash by clamped one time, and high in machining efficiency, labor intensity is low.
Toolbox 50 includes being fixed on the fixing cutter group 52 of cover half component 30 and being plugged in the bite of cover half component 30 Group 51.In one embodiment, fixing cutter group 52 and bite group 51 can be set as step-like distribution.I.e.:20 band of dynamic model component Dynamic pressure casting 60 is moved to cover half component 30, and in moving process, fixing cutter group 52 cuts the flash of die casting 60.In fixing cutter After processing is completed by the flash of die casting 60, dynamic model component 20 continues that die casting 60 is driven to be moved at bite group 51 group 52, Bite group 51 rotates under the driving of driving device 40, with the burr of 60 predetermined position of machining die casting.
In another embodiment, 51 elastic telescopic of bite group is set on cover half component 30.That is, bite group 51 is flat Highest plane neat or prominent or less than fixing cutter group 52.Dynamic model component 20 drives die casting 60 to be moved to cover half component 30, In moving process, fixing cutter group 52 cuts the flash of die casting 60, meanwhile, die casting 60 pushes bite group 51 to compress, and makes to cut 51 phase cover half component of sharpener group, 30 internal contraction.Fixing cutter group 52 by the flash of die casting 60 after processing is completed, die casting 60 Bite group 51 is pushed to be compressed to lowest position, dynamic model component 20 triggers driving device 40, makes it that bite group 51 be driven to revolve Turn.Bite group 51 rotates under the driving of driving device 40 with the burr of 60 predetermined position of machining die casting, and Bite group 51 in the presence of a tensile force elasticity cutting die casting 60 burr, cutting depth and cutting effect are easy to adjust.Such as Cut predetermined depth, or the preset angle of cutting etc..
Bite group 51 is in elastic extension structure, and in one embodiment, bite group 51 includes an at least milling cutter part 511, it is installed on the rotating member 512 of milling cutter part 511 and is sheathed on the elastic component 513 of rotating member 512, the both ends bullet of elastic component 513 Property be connected to cover half component 30 and rotating member 512, milling cutter part 511 can be end cutting and/or side wall cutting, such as be set as end face Milling cutter, chamfer drill head etc..Cover half component 30 includes mounting plate 31 and the lower module 32 for being fixed on mounting plate 31, and bite group 51 is pacified Loaded in mounting plate 31 and interting to lower module 32.Wherein, mounting hole and stepped hole, milling cutter part are offered on mounting plate 31 511 intert along stepped hole to lower module 32, and end face can protrude the surface of lower module 32.Rotating member 512 and milling cutter part 511 It is fixedly connected, and formed " in " character form structure, 513 elasticity pushing and pressing of elastic component are between rotating member 512 and mounting plate 31, so that milling Knife 511 can elastic telescopic in the axial direction, connected by thrust ball bearing between rotating member 512 and mounting plate 31.Rotating member 512 other end protrusion mounting plate 31 is simultaneously drivingly connected with driving device 40, so that driving device 40 drives milling cutter part 511 to process Die casting 60.Milling cutter part 511 can be set as one or more, wherein the end face of milling cutter part 511 and the Ministry of worker to be added of die casting 60 Split-phase corresponds to, such as the push rod position of Milling Process die casting 60, nose end and fleshiness position etc..Fixing cutter group 52 is installed on lower module On 32.
The lower module 32 of the protrusion of fixing cutter group 52 is simultaneously protruded towards the edge direction of die casting 60, to cut off the more of die casting 60 Remaining flash.Wherein, dynamic model component 20 drives die casting 60 to squeeze milling cutter part 511, the elastic telescopic in the axial direction of milling cutter part 511, So that in 51 retraction cover half component 30 of bite group.Driving device 40 connect with rotating member 512 and milling cutter part 511 is driven to rotate, So that milling cutter part 511 cuts the burr of die casting 60.
At least actuator 41 that driving device 40 is drivingly connected including electric machine assembly 42 and with electric machine assembly 42, at least One actuator 41 is connected to corresponding bite group 51, and electric machine assembly 42 drives the rotation of an at least actuator 41, at least one driving Part 41 drives bite group 51 to rotate.Electric machine assembly 42 includes power motor 422 and gear-box 421, wherein each actuator 41 A milling cutter part 511 is driven to rotate, each actuator 41 is connect with gear-box 421, so that power motor 422 passes through gear-box 421 Output power to milling cutter part 511.
In one embodiment, actuator 41 includes head rod 414, is installed on the first of 414 one end of head rod Gimbal assembly 415, the second connecting rod 411, the second gimbal assembly 412 for being installed on 411 one end of the second connecting rod and connection first The double threaded screw part 413 of connecting rod 414 and the second connecting rod 411, double threaded screw part 413 are used to adjust the overall length of actuator 41 Degree.First gimbal assembly 415 is drivingly connected with electric machine assembly 42, and the second gimbal assembly 412 is fixedly connected with bite group 51, Electric machine assembly 42 drives the rotation of actuator 41 to drive cutting tool to process die casting 60.
Double threaded screw part 413 is used to adjust the total length of actuator 41, and positive/negative thread is arranged in both ends, in its rotary course In, drive head rod 414 and the second connecting rod 411 to collapse or extend outwardly to center.When bite group 51 is equipped with multiple When milling cutter part 511, the operation of each milling cutter part 511 can be made consistent by the adjustment of double threaded screw part 413, Working position and processing Depth is suitable for different 60 Working positions of die casting, easy to adjust.Further, head rod 414 and the second connecting rod 411 axis is obliquely installed relative to the axis of bite group 51.First gimbal assembly 415 and the second gimbal assembly 412 are set Setting can make the layout of actuator 41 compacter, and power transmission effect is good, and efficiency of transmission is high.Head rod 414 and second Connecting rod 411, which is obliquely installed, can imitate the overall height for adjusting driving device 40 and the accuracy for adjusting installation site and adjustable the The axial force of one connecting rod 414 and the second connecting rod 411.
To accurately control the Working position of die casting 60, the operation of 40 driving bite groups 51 is controlled the driving device in time. In one embodiment, driving device 40 further includes the induction pieces 43 for being installed on rack 10 and being electrically connected with electric machine assembly 42, dynamic model group Part 20 slides into triggering induction pieces 43 along rack 10, so that electric machine assembly 42 drives actuator 41 to rotate.The induction pieces 43 can be set In travel switch or light-operated switch etc. on cover half component 30.The induction pieces 43 and electric machine assembly 42 are interrelated, so that dynamic model After component 20 moves and triggers inductor, dynamic model component 20 stops movement, and the operation of electric machine assembly 42 is to drive bite group 51 to add Work die casting 60, interrelating effect is good, and processing is accurate, avoids the wasting of resources.
Press machine is widely used at present, and other structures and principle are same as the prior art, and which is not described herein again.

Claims (10)

1. a kind of machining tool of die casting, burr and flash for removing die casting, the machining tool include rack, cunning Set on the rack dynamic model component and be installed on the cover half component of the rack, it is characterised in that:The machining tool also wraps It includes the toolbox for being installed on the cover half component and drives the driving device of the toolbox, the dynamic model component is for pacifying It fills the die casting and the die casting is driven to be moved to cover half component direction, until the toolbox cuts off the pressure The flash of casting, the dynamic model component trigger the driving device, and the driving device drives the toolbox operation to go Except the burr of the die casting.
2. machining tool according to claim 1, it is characterised in that:The toolbox includes being fixed on the cover half group The fixing cutter group of part and the bite group for being plugged in the cover half component, the dynamic model component drive the die casting to be moved to institute Cover half component is stated, the fixing cutter group cuts the flash of the die casting, and the bite group is for die casting described in machining The burr of part predetermined position.
3. machining tool according to claim 2, it is characterised in that:The bite group elastic telescopic is set to the cover half On component.
4. machining tool according to claim 3, it is characterised in that:The bite group includes an at least milling cutter part, peace Rotating member loaded on the milling cutter part and the elastic component for being sheathed on the rotating member, the both ends elasticity of the elastic component are connected to institute Cover half component and the rotating member are stated, the dynamic model component drives the die casting to squeeze the milling cutter part, milling cutter part edge Axis direction elastic telescopic, so that the bite group is retracted in the cover half component;The driving device and the rotating member It connects and the milling cutter part is driven to rotate, so that the milling cutter part cuts the burr of the die casting.
5. machining tool according to claim 2, it is characterised in that:The driving device include electric machine assembly and with it is described At least actuator that electric machine assembly is drivingly connected, an at least actuator is connected to the corresponding bite group, described At least actuator rotation described in electric machine assembly driving, an at least actuator drive the bite group rotation.
6. machining tool according to claim 5, it is characterised in that:The actuator includes head rod, is installed on First gimbal assembly of described head rod one end, the second connecting rod, be installed on second connecting rod one end the 20000th To component and the double threaded screw part of the connection head rod and second connecting rod, the double threaded screw part is for adjusting The total length of the actuator is saved, first gimbal assembly is drivingly connected with the electric machine assembly, second gimbal assembly It is fixedly connected with the bite group, the electric machine assembly drives the actuator rotation to drive the cutting tool to process institute State die casting.
7. machining tool according to claim 6, it is characterised in that:The head rod and second connecting rod Axis is obliquely installed relative to the axis of the bite group.
8. machining tool according to claim 5, it is characterised in that:The driving device further includes being installed on the rack And the induction pieces being electrically connected with the electric machine assembly, the dynamic model component along the housing slide to triggering the induction pieces, with The electric machine assembly is set to drive the actuator rotation.
9. machining tool according to claim 2, it is characterised in that:The cover half component includes mounting plate and is fixed on institute The lower module of mounting plate is stated, the bite group is installed in the mounting plate and interts to the lower module, the fixing cutter Group is installed on the lower module.
10. machining tool according to claim 9, it is characterised in that:The rack include hydraulic pressure platform and be spaced apart in Four guide posts of the hydraulic pressure platform, cover half component cunning set and are fixed on four guide posts, and the dynamic model component described in four along leading Column slides and pushes the die casting against the extremely toolbox.
CN201820021015.XU 2018-01-05 2018-01-05 The machining tool of die casting Expired - Fee Related CN207681565U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201820021015.XU CN207681565U (en) 2018-01-05 2018-01-05 The machining tool of die casting

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201820021015.XU CN207681565U (en) 2018-01-05 2018-01-05 The machining tool of die casting

Publications (1)

Publication Number Publication Date
CN207681565U true CN207681565U (en) 2018-08-03

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108015329A (en) * 2018-01-05 2018-05-11 爱柯迪股份有限公司 The machining tool of die casting

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108015329A (en) * 2018-01-05 2018-05-11 爱柯迪股份有限公司 The machining tool of die casting
CN108015329B (en) * 2018-01-05 2024-05-10 爱柯迪股份有限公司 Processing machine tool for die castings

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Inventor after: Lou Xilun

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Granted publication date: 20180803

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