CN103660091B - In-sliding block running sliding block mechanism - Google Patents

In-sliding block running sliding block mechanism Download PDF

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Publication number
CN103660091B
CN103660091B CN201210337214.9A CN201210337214A CN103660091B CN 103660091 B CN103660091 B CN 103660091B CN 201210337214 A CN201210337214 A CN 201210337214A CN 103660091 B CN103660091 B CN 103660091B
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Prior art keywords
slide
sliding block
outer slide
block mechanism
hole
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CN201210337214.9A
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CN103660091A (en
Inventor
李小松
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Suzhou Hanyang Precision Electronics Co Ltd
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Suzhou Hanyang Precision Electronics Co Ltd
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Abstract

The present invention provides a kind of in-sliding block running sliding block mechanism, and this in-sliding block running sliding block mechanism includes: outer slide, and it is slidably located in male template, and this outer slide is provided with an oblique through hole running through its body;Inner slide, it is located in this outer slide, and this inner slide is provided with oblique guide hole in this oblique through hole, and when matched moulds, one end of this inner slide leaves stroke space in this outer slide, and the other end is provided with a back slope and stretches out this outer slide;First enters son, and it is located at this inner slide other end and stretches out the side of this outer slide;Second enters son, and it is movably arranged at this outer slide and stretches into the inner side barb of this product of mold cavity forming with this first centre entering son, this second one end entering son, and the other end is located on this inclined-plane;Angle Pin, its one end is located on caster, and this Angle Pin matches with this oblique guide hole.

Description

In-sliding block running sliding block mechanism
[technical field]
The present invention relates to a kind of mould structure, be specifically related to a kind of in-sliding block running sliding block mechanism.
[background technology]
When producing plastic cement products, it is typically based on the different product back-off different slide block structures of design and realizes Exiting smoothly of product, is illustrated in figure 1 race Slanting pin mechanism inside prior art slider, and shown product 10 has There is functional back-off, inside this product 10, have barb at, but need to exit this product 10 in the two directions, Generally conventional slide block can not realize the demoulding of this mechanism, will realize exiting of this product 10, and this mechanism needs Slide block 20 being strengthened, causes the waste of material, the head of the taper pin 30 of this mechanism is without breaking, return simultaneously Time more difficult.
In view of this, being necessary in fact to provide a kind of Novel slide block mechanism, this mechanism structure is simple, it is possible to two The product with functional back-off is exited respectively, to overcome the limitation of prior art on individual direction..
[summary of the invention]
In order to achieve the above object, the present invention provides a kind of in-sliding block running sliding block mechanism, and it is applied to mould In with exit molding one have inner side barb product, this product has a functional back-off, and this mould includes: Caster, male template, mother module core and male die core, it is characterised in that this in-sliding block running sliding block mechanism includes:
Outer slide, it is slidably located in this male template, and this outer slide is provided with one and runs through the most logical of its body Hole;
Inner slide, it is located in this outer slide, and this inner slide is provided with an oblique guide hole in this oblique through hole, is closing During mould, one end of this inner slide leaves stroke space in this outer slide, and the other end is provided with a back slope and stretches Going out this outer slide, this inclined-plane is provided with a T-shaped chute;
First enters son, and it is located at this inner slide other end and stretches out the side of this outer slide, and this first enters son and be provided with One draw-in groove is during when matched moulds, the other end of this inner slide stretches into this draw-in groove, and this first enters son and be connected to this outer slide On;
Second enters son, its be movably arranged at this outer slide with this first enter son centre, this second enter son one end Stretching into the inner side barb of this product of mold cavity forming, the other end is provided with a T-shaped projection and coordinates with this T-shaped chute;
Angle Pin, its one end is located on this caster, and this Angle Pin matches with this oblique guide hole, when matched moulds This Angle Pin is also cross this oblique through hole and this oblique guide hole.
It is also preferred that the left the distance of described stroke space less than this inner slide slide completely exit this second enter son away from From.
It is also preferred that the left described second enters son and exits the barb distance barb amount more than this product of this product.
It is also preferred that the left the breaking laminating when die sinking of the inwall of described oblique guide hole and this access ramp.
It is also preferred that the left described in-sliding block running sliding block mechanism also includes a location steel ball structure, it is located at this outer cunning In block, slide on this inner slide and position this inner slide when die sinking and slide in one end of this positioning ball structure The distance exited, the other end is fixed on this outer slide.
It is also preferred that the left the distance of described positioning ball structure location is less than the distance of described stroke space.
It is also preferred that the left described male template is provided with a stop screw, it is located on this outer slide exit axis and remote From this outer slide.
It is also preferred that the left the cross section of described inner slide is a unfilled corner rectangle.
Compared to prior art, the simple in construction of the present invention, it is possible to exit respectively in both direction and there is function The product of property back-off, to overcome the limitation of prior art..
[accompanying drawing explanation]
Fig. 1 is schematically shown as inside prior art slider running Slanting pin mechanism in the structural representation of matched moulds state.
Fig. 2 is schematically shown as inside present invention slider running slide block mechanism in the structural representation of matched moulds state.
Fig. 3 is schematically shown as inside present invention slider running slide block mechanism in die sinking the first status architecture schematic diagram.
Fig. 4 is schematically shown as inside present invention slider running slide block mechanism in die sinking the second status architecture schematic diagram.
[detailed description of the invention]
Below with accompanying drawing, the better embodiment of the present invention is described in further detail.
Refer to shown in Fig. 2, run slide block mechanism inside present invention slider, it is applied in mould to exit into Type one has the product 100 of inner side barb 101, and this product 100 has a functional back-off, and the present invention is perpendicular Nogata to exiting the functional back-off of this product 100 with horizontal direction, and this mould includes: caster 700, public Template 800, mother module core 701 and male die core 801, this in-sliding block running sliding block mechanism includes:
Outer slide 200, it is slidably located in this male template 800, and this outer slide 200 is provided with one and runs through it The oblique through hole of body;
Inner slide 300, it is located in this outer slide 200, this inner slide 300 be provided with in this oblique through hole with should The oblique guide hole that tiltedly through hole is parallel, when matched moulds, row is left in this outer slide 200 in one end of this inner slide 300 Journey space, the other end is provided with a back slope 301 and stretches out this outer slide 200, and this inclined-plane 301 is provided with one T-shaped chute;
First enters son 400, and it is located at this inner slide 300 other end and stretches out the side of this outer slide 200, and this is the years old One enters son 400 is provided with a draw-in groove 401 other end of this inner slide 300 when matched moulds and stretches in this draw-in groove 401, This first enters son and 400 is connected on this outer slide 200;
Second enters son 500, and it is movably arranged at this outer slide 200 and this first centre entering son 400, and this is second years old The inner side barb 101 of this product 100 of mold cavity forming is stretched in the one end entering son 500, and it is convex that the other end is provided with a T-shaped Block coordinates with this T-shaped chute;
Angle Pin 600, its one end is located on this caster 700, and this Angle Pin 600 matches with this oblique guide hole, When matched moulds, this Angle Pin 600 is also cross this oblique through hole and this oblique guide hole.
Wherein, distance S1 of described stroke space is slided completely less than this inner slide 300 and is exited this and second enter Distance S2 of son 500.
Wherein, the described second distance entering the barb 101 that son 500 exits this product 100 is more than this product 100 Barb amount S3.
Wherein, the inwall of described oblique guide hole and this oblique through hole breaking laminating when die sinking.
Wherein, described in-sliding block running sliding block mechanism also includes a location steel ball structure 201, and it is outer that it is located at this In slide block 200, slide and fixed during in die sinking on this inner slide 300 in one end of this positioning ball structure 201 The distance that position this inner slide 300 slip is exited, the other end is fixed on this outer slide 200.
Wherein, distance S of described positioning ball structure 201 location is less than distance S1 of described stroke space.
Wherein, described male template is provided with a stop screw 802, and it is located at this outer slide 200 exit axis Go up and away from this outer slide 200.
Wherein, the cross section of described inner slide 300 is a unfilled corner rectangle.
Refer to shown in Fig. 3, during mould die sinking, male template 800 and caster 700 are opened, this Angle Pin 600 drive this inner slide 300 to start to exit this outer slide to the direction motion away from this product 100 enters son 400, This second enters the barbs 101 that son 500 exits this product 100 under the guiding of this T-shaped chute at vertical direction, Position this inner slide 300 by this positioning ball structure 201 to slide the distance that exits, now this oblique guide hole and The inwall breaking of this oblique through hole fits together.
Refer to shown in Fig. 4, mould continues die sinking, when this Angle Pin 600 die sinking is to by this oblique through hole breaking When motion is blocked, this Angle Pin 600 starts to drive this outer slide 200 to slide to the direction away from die cavity, Now this outer slide 200 drives this first to enter son and 400 exit this product 100 in the horizontal direction, until sliding into At stop screw 802, now this mechanism completes whole to exit process, ejecting mechanism pushed up by this product 100 Die sinking process is completed after going out.
During mould matched moulds, male template 800 and caster 700 are close to each other, and this Angle Pin 600 is oblique through this Through hole is returned in this oblique guide hole and starts to drive this inner slide 300 to slide to die cavity, simultaneously by this T-shaped Chute drive this second enter son 500 reset on vertical direction die cavities in, this mould continue matched moulds, this is oblique Guide pillar 600 then drives this outer slide 200 to slide to die cavity, drives this first to enter son and 400 reset to simultaneously In die cavity in horizontal direction, now complete the matched moulds process of this mould.
Compared to prior art, the simple in construction of the present invention, it is possible to exit the most respectively and there is merit The product of energy property back-off, to overcome the limitation of prior art.
It is noted that the invention is not restricted to above-mentioned embodiment, any those skilled in the art's base Any simple modification, equivalent variations and the modification made above-described embodiment in technical solution of the present invention, all falls Enter in protection scope of the present invention.

Claims (8)

1. an in-sliding block running sliding block mechanism, its be applied in mould with exit molding one have inner side barb Product, this mould includes: caster, male template, mother module core and male die core, it is characterised in that this is sliding Run slide block mechanism inside block to include:
Outer slide, it is slidably located in this male template, and this outer slide is provided with one and runs through the most logical of its body Hole;
Inner slide, it is located in this outer slide, and this inner slide is provided with oblique guide hole, at matched moulds in this oblique through hole Time this inner slide one end in this outer slide, leave stroke space, the other end is provided with a back slope and stretches out This outer slide, this inclined-plane is provided with a T-shaped chute;
First enters son, and it is located at this inner slide other end and stretches out the side of this outer slide, and this first enters son and be provided with One draw-in groove is during when matched moulds, the other end of this inner slide stretches into this draw-in groove, and this first enters son and be connected to this outer slide On;
Second enters son, its be movably arranged at this outer slide with this first enter son centre, this second enter son one end Stretching into the inner side barb of this product of mold cavity forming, the other end is provided with a T-shaped projection and coordinates with this T-shaped chute;
Angle Pin, its one end is located on this caster, and this Angle Pin matches with this oblique guide hole, when matched moulds This Angle Pin is also cross this oblique through hole and this oblique guide hole.
In-sliding block running sliding block mechanism the most according to claim 1, it is characterised in that described stroke The distance in space less than this inner slide slide completely exit this second enter son distance.
In-sliding block running sliding block mechanism the most according to claim 1, it is characterised in that described second Enter son and exit the barb distance barb amount more than this product of this product.
In-sliding block running sliding block mechanism the most according to claim 1, it is characterised in that described tiltedly lead The inwall of hole and this oblique through hole is breaking laminating when die sinking.
In-sliding block running sliding block mechanism the most according to claim 1, it is characterised in that described slide block The inside is run slide block mechanism and is also included a location steel ball structure, and it is located in this outer slide, this positioning ball structure One end slide on this inner slide and position this inner slide when die sinking and slide the distance that exits, the other end is solid It is scheduled on this outer slide.
In-sliding block running sliding block mechanism the most according to claim 5, it is characterised in that described location The distance of steel ball structure location is less than the distance of described stroke space.
In-sliding block running sliding block mechanism the most according to claim 1, it is characterised in that described male model Plate is provided with a stop screw, and it is located on this outer slide exit axis and away from this outer slide.
In-sliding block running sliding block mechanism the most according to claim 1, it is characterised in that described interior cunning The cross section of block is a unfilled corner rectangle.
CN201210337214.9A 2012-09-13 2012-09-13 In-sliding block running sliding block mechanism Active CN103660091B (en)

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Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201210337214.9A CN103660091B (en) 2012-09-13 2012-09-13 In-sliding block running sliding block mechanism

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CN103660091B true CN103660091B (en) 2017-01-04

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN200939672Y (en) * 2006-08-25 2007-08-29 佛山市顺德区汉达精密电子科技有限公司 Slipper structure
CN201784088U (en) * 2010-07-19 2011-04-06 佛山市顺德区汉达精密电子科技有限公司 Secondary ejection slider mechanism
CN201784093U (en) * 2010-07-19 2011-04-06 佛山市顺德区汉达精密电子科技有限公司 Slide block mechanism with time-lapse withdraw function
CN201824499U (en) * 2010-09-21 2011-05-11 汉达精密电子(昆山)有限公司 Die provided with secondary quit type slide block
CN102407578A (en) * 2010-09-21 2012-04-11 汉达精密电子(昆山)有限公司 Die possessing twice exit mode slide block
CN202264339U (en) * 2011-09-01 2012-06-06 汉达精密电子(昆山)有限公司 Slide block side core-pulling mechanism

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202862463U (en) * 2012-09-13 2013-04-10 苏州汉扬精密电子有限公司 Running sliding block mechanism inside sliding block

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN200939672Y (en) * 2006-08-25 2007-08-29 佛山市顺德区汉达精密电子科技有限公司 Slipper structure
CN201784088U (en) * 2010-07-19 2011-04-06 佛山市顺德区汉达精密电子科技有限公司 Secondary ejection slider mechanism
CN201784093U (en) * 2010-07-19 2011-04-06 佛山市顺德区汉达精密电子科技有限公司 Slide block mechanism with time-lapse withdraw function
CN201824499U (en) * 2010-09-21 2011-05-11 汉达精密电子(昆山)有限公司 Die provided with secondary quit type slide block
CN102407578A (en) * 2010-09-21 2012-04-11 汉达精密电子(昆山)有限公司 Die possessing twice exit mode slide block
CN202264339U (en) * 2011-09-01 2012-06-06 汉达精密电子(昆山)有限公司 Slide block side core-pulling mechanism

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