CN217492358U - Double-type guide rail machining die - Google Patents
Double-type guide rail machining die Download PDFInfo
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- CN217492358U CN217492358U CN202221199534.8U CN202221199534U CN217492358U CN 217492358 U CN217492358 U CN 217492358U CN 202221199534 U CN202221199534 U CN 202221199534U CN 217492358 U CN217492358 U CN 217492358U
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Abstract
The utility model discloses a two types guide rail mold processing, it relates to guide rail processing technology field. An intermediate die is arranged between the fixed side die and the movable side die; a clamping groove and a placing limiting groove are formed in one side of the fixed side mold, a convex block is formed between the clamping groove and the placing limiting groove, and a baffle extends from the top of the placing limiting groove; the middle die is of a convex structure, the bottom block of the middle die is arranged corresponding to the clamping groove, the top bulge is arranged corresponding to the side face of the lug, and after the bottom block is clamped in the clamping groove, the side face of the top bulge is spaced from the lug; the movable side mold is a symmetrical structure of the fixed side mold; a plurality of upper punches are arranged above the fixed side die and the movable side die. The utility model has the advantages that: the guide rail can be directly limited in position and cannot move after being placed, other locking mechanisms are not needed, and the operation is simple; the two guide rails can be processed simultaneously, so that the processing efficiency is improved; the die can punch holes on two guide rails, the die is strong in universality, and the processing cost is reduced.
Description
Technical Field
The utility model relates to a guide rail processing technology field, concretely relates to two types of guide rail mold processing.
Background
A guide rail is a device that can bear, secure, guide and reduce friction of moving devices or equipment, made of metal or other materials, as grooves or ridges. Many guide rails are currently made of aluminum. The guide rail is also called a slide rail, a linear guide rail and a linear slide rail, is an upgraded linear bearing bracket, is used in the linear reciprocating motion occasions, has higher rated load than the traditional linear bearing, can bear certain torque, and can realize high-precision linear motion under the condition of high load. When the guide rail is installed and fixed, the guide rail needs to be connected through bolts and the like, and connecting holes need to be punched on the guide rail.
The processing of punching a hole again after the preparation shaping is mostly to current guide rail, it needs to carry out the punching a hole of relevant position to it through corresponding mould to process to punch a hole, among the prior art, the mould can only punch a hole the processing to a type guide rail, to the guide rail of recess type and two kinds of types of protrusion type, need process respectively through two sets of moulds, the mould does not have the commonality, and need rethread fixed establishment to lock fixedly when the guide rail is placed, the operation is complicated, can only once carry out the processing of a guide rail during punching a hole, machining efficiency is low, the processing cost is higher.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to provide a two type guide rail mold processing, can solve among the prior art mould do not possess commonality, when the guide rail is placed need lock in addition, the operation is complicated, can only once carry out the processing of a guide rail when punching a hole, machining efficiency is low, the higher problem of processing cost.
In order to solve the technical problem, the utility model adopts the technical scheme that: the device comprises a fixed side die, a movable side die and an intermediate die, wherein the fixed side die and the movable side die are arranged side by side;
a clamping groove and a placing limiting groove are formed in one side, close to the moving side mold, of the fixed side mold, the placing limiting groove is formed above the clamping groove, a bump is formed between the clamping groove and the placing limiting groove, and a baffle extends from the top of the placing limiting groove;
the middle die is arranged between the fixed side die and the movable side die, the middle die is of a convex structure and comprises a bottom block and a top bulge, the bottom block is arranged corresponding to the clamping groove, the top bulge is arranged corresponding to the side face of the lug between the clamping groove and the placement limiting groove, after the bottom block is clamped in the clamping groove, the distance is reserved between the side face of the top bulge and the lug, the height of the top bulge is the same as that of the lug, and the area between the top of the top bulge and the baffle, the area between the placement limiting groove and the side face of the top bulge and the area between the lugs are mutually communicated;
the movable side die is a symmetrical structure of the fixed side die;
the baffle plate is provided with a through hole, and the tops of the fixed side die and the movable side die, which are positioned above the placing limiting groove, are provided with through holes;
and a plurality of upper punches are arranged above the fixed side die and the movable side die.
Furthermore, the plurality of upper punches are respectively arranged corresponding to the through holes on the baffle and the through holes on the tops of the fixed side die and the movable side die.
Further, fixed side form fixed mounting is on the base, the activity of removal side form is located on the base, one side that the base is close to the removal side form is equipped with the support, the side-mounting of support has drive actuating cylinder, drive actuating cylinder drive slurcam translation, the slurcam keeps away from one side fixed connection of fixed side form with the removal side form.
Furthermore, after the fixed side die and the movable side die are close to each other, the side faces of the fixed side die and the side faces of the movable side die, which are close to each other, are connected, the fixed side die is connected with a baffle at the top of the movable side die, and the middle die is clamped in a clamping groove of the fixed side die and the movable side die.
Furthermore, the upper punches are all installed at the bottom of the upper die plate through punch seats, and the upper die plate is driven to press downwards through a hydraulic cylinder.
After adopting the structure, the utility model has the advantages that: when the groove-shaped guide rail is machined, the groove-shaped guide rail is arranged on the middle die in an inverted mode, the middle die is clamped in the clamping grooves of the fixed side die, the groove-shaped guide rail is clamped between the middle die and the baffle plate, the movable side die is driven by the driving cylinder to move towards the direction of the fixed side die until the movable side die is connected with the fixed side die, the middle die is clamped and limited in the clamping grooves on two sides, the groove-shaped guide rail is clamped and fixed between the middle die and the baffle plate on two sides, the groove-shaped guide rail cannot move due to position limitation, other locking mechanisms are not needed, and the operation is simple;
when the convex guide rails are machined, the two convex guide rails can be inverted on two sides of the middle die at the same time, when the middle die is clamped into the clamping grooves of the fixed side die, the convex guide rails enter the placing limiting grooves to obtain position limitation, after the moving side die is close to the middle die, the convex guide rails on the other side enter the placing limiting grooves of the moving side die to obtain position limitation, the two guide rails can be machined at the same time, and the machining efficiency is improved;
the die can punch holes on two guide rails, the die is strong in universality, and the processing cost is reduced.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the exploded structure of the present invention;
FIG. 3 is a view showing the usage status of the groove-shaped guide rail of the present invention during machining;
fig. 4 is a usage status diagram of the convex guide rail of the present invention during machining.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail with reference to the accompanying drawings and the following detailed description. The following examples will provide those skilled in the art with a more complete understanding of the present invention, but are not intended to limit the scope of the present invention to the examples described herein.
As shown in fig. 1 and fig. 2, the following technical solutions are adopted in the present embodiment: including fixed side form 1, remove side form 2 and middle mould 3, fixed side form 1 sets up side by side with removal side form 2, fixed side form 1 fixed mounting is on base 4, remove side form 2 activity and locate on base 4, one side that base 4 is close to removal side form 2 is equipped with support 5, the side-mounting of support 5 drives actuating cylinder 6, the actuating lever that drives actuating cylinder 6 is connected with kickboard 7, one side fixed connection that fixed side form 1 was kept away from with removal side form 2 to kickboard 7, thereby it realizes the translation to drive actuating cylinder 6 drive kickboard 7 translation drive removal side form 2 on base 4.
One side that fixed side form 1 is close to removal side form 2 is equipped with joint groove 11 and places limit groove 12, places limit groove 12 and locates the top in joint groove 11, joint groove 11 and place and form lug 13 between the limit groove 12, and the top extension of placing limit groove 12 has baffle 14, and joint groove 11 is used for the joint of middle mould 3 to be fixed, places limit groove 12 and is used for the spacing of placing of protruding type guide rail.
The protrusion 32 is arranged corresponding to the side face of the clamping groove 11 and the side face of the lug 13 between the limiting grooves 12, after the bottom block 31 is clamped in the clamping groove 11, a distance is reserved between the side face of the top protrusion 32 and the lug 13, the height of the top protrusion 32 is the same as that of the lug 13, and the area between the top of the top protrusion 32 and the baffle 14, the side face of the top protrusion 32 and the area between the lug 13 are mutually communicated.
The movable side die 2 is a symmetrical structure of the fixed side die 1, when groove-shaped guide rails are processed, the groove-shaped guide rails are arranged on the middle die 3 in an inverted mode, the groove-shaped guide rails are arranged in the areas between the top protrusions 32 and the convex blocks 13 of the fixed side die 1 and the movable side die 2 and between the top protrusions 32 and the baffle plates 14, when the convex guide rails are processed, the convex guide rails are arranged on the side faces of the middle die 3 in an inverted mode, the two convex guide rails can be processed simultaneously, and the convex guide rails are arranged in the areas between the top protrusions 32 and the convex blocks 13 and between the top protrusions 32 and the baffle plates 14 of the fixed side die 1 and the movable side die 2 and are arranged in the limiting grooves 12.
After the fixed side die 1 is close to the movable side die 2, the side that the fixed side die 1 is close to each other with the movable side die 2 meets, the side of the baffle 14 at the top of the fixed side die 1 and the movable side die 2 meets, the middle die 3 is just in time clamped in the clamping groove 11 of the fixed side die 1 and the movable side die 2 to be fixed, the positions of the middle die 3 and the guide rail are all limited, and no offset exists.
A plurality of upper punches 8 are arranged above the fixed side die 1 and the movable side die 2, the number of the upper punches 8 is 4 in the embodiment, the four upper punches 8 are respectively arranged corresponding to the through holes on the baffle 14 and the through holes at the tops of the fixed side die 1 and the movable side die 2, the four upper punches 8 are all arranged at the bottom of the upper template 10 through the punch seat 9, the upper template 10 is driven to press down through a hydraulic cylinder, the hydraulic cylinder is not shown in the figure, the through holes are formed in the baffle 14, the through holes are formed in the tops of the fixed side die 1 and the movable side die 2, which are positioned above the placement limiting groove 12, and are used for the upper punches 8 to pass through, the upper template 10 presses down to drive the punch seat 9 to press down, so that the upper punches 8 are pressed down, and the guide rail is punched after the upper punches 8 pass through.
The working principle is as follows: as shown in fig. 3, when the groove-shaped guide rail 100 is processed, the groove-shaped guide rail 100 is placed upside down on the middle mold 3, the middle mold 3 is clamped in the clamping groove 11 of the fixed side mold 1, the top of the groove-shaped guide rail 100 is clamped between the middle mold 3 and the baffle 14, the side surface of the groove-shaped guide rail 100 is clamped between the middle mold 3 and the bump 13, the movable side mold 2 is driven by the driving cylinder 6 to move to the fixed side mold 1 to be connected, so that the middle mold 3 is just clamped and limited in the clamping grooves 11 on both sides, the groove-shaped guide rail 100 is clamped and fixed between the middle mold 3 and the baffle 14 of the fixed side mold 1 and the movable side mold 2 and between the middle mold 3 and the bump 13, the position of the groove-shaped guide rail 100 is limited and can not move, other locking mechanisms are not needed, and the operation is simple;
as shown in fig. 4, when the convex guide rails 200 are processed, two convex guide rails 200 can be inverted at the same time at two sides of the middle die 3, when the middle die 3 is clamped into the clamping groove 11 of the fixed side die 1, the convex guide rail 200 at the left side enters the placing limit groove 12 of the fixed side die 1 to obtain position limitation, the moving side die 2 is driven by the driving cylinder 6 to approach the fixed side die 1, the convex guide rail 200 at the right side enters the placing limit groove 12 of the moving side die 2 to obtain position limitation, the processing of the two convex guide rails 200 can be simultaneously performed, and the processing efficiency is improved;
after the position of the groove-shaped guide rail 100 or the protrusion-shaped guide rail 200 is limited, the hydraulic cylinder drives the upper die plate 10 to descend to drive the punch seat 9 to press downwards, so that the upper punch 8 is pressed downwards, the upper punch 8 penetrates through the punched hole to punch the guide rail, the die can punch the guide rails of two types, the die is strong in universality and low in processing cost, after the processing is finished, the driving cylinder 6 drives the movable side die 2 to move away from the fixed side die 1, the middle die 3 is pulled out to directly perform the demolding of the guide rail, and the demolding is convenient.
The basic principles and main features of the invention and the advantages of the invention have been shown and described above. It should be understood by those skilled in the art that the present invention is not limited to the above embodiments, and the above embodiments and descriptions are only illustrative of the principles of the present invention, and that various changes and modifications may be made without departing from the spirit and scope of the present invention, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of the invention is defined by the appended claims and equivalents thereof.
Claims (5)
1. The utility model provides a two types of guide rail mold processing which characterized in that: the device comprises a fixed side die, a movable side die and an intermediate die, wherein the fixed side die and the movable side die are arranged side by side;
a clamping groove and a placing limiting groove are formed in one side, close to the moving side mold, of the fixed side mold, the placing limiting groove is formed above the clamping groove, a bump is formed between the clamping groove and the placing limiting groove, and a baffle extends from the top of the placing limiting groove;
the middle die is arranged between the fixed side die and the movable side die, the middle die is of a convex structure and comprises a bottom block and a top bulge, the bottom block is arranged corresponding to the clamping groove, the top bulge is arranged corresponding to the side face of the lug between the clamping groove and the placement limiting groove, after the bottom block is clamped in the clamping groove, the distance is reserved between the side face of the top bulge and the lug, the height of the top bulge is the same as that of the lug, and the area between the top of the top bulge and the baffle, the area between the placement limiting groove and the side face of the top bulge and the area between the lugs are mutually communicated;
the movable side die is a symmetrical structure of the fixed side die;
the baffle is provided with a through hole, and the tops of the fixed side mold and the moving side mold, which are positioned above the placing limiting groove, are provided with through holes;
and a plurality of upper punches are arranged above the fixed side die and the movable side die.
2. The double-type guide rail processing mold according to claim 1, wherein: the upper punches are respectively arranged corresponding to the through holes on the baffle and the through holes at the tops of the fixed side die and the movable side die.
3. The double-type guide rail processing mold according to claim 1, wherein: fixed side form fixed mounting is on the base, the activity of removal side form is located on the base, one side that the base is close to the removal side form is equipped with the support, the side-mounting of support has drive actuating cylinder, drive actuating cylinder drive slurcam translation, the slurcam keeps away from one side fixed connection of fixed side form with the removal side form.
4. The double-type guide rail processing mold according to claim 1, wherein: the fixed side form is close to the back with removing the side form, and the side that the fixed side form is close to each other with removing the side form meets, and the fixed side form meets with the baffle at removal side form top, and the joint inslot of fixed side form and removal side form is located to the middle mould card.
5. The double-type guide rail processing mold according to claim 1, wherein: the upper punches are all installed at the bottom of the upper template through punch bases, and the upper template is driven to be pressed downwards through a hydraulic cylinder.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202221199534.8U CN217492358U (en) | 2022-05-19 | 2022-05-19 | Double-type guide rail machining die |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202221199534.8U CN217492358U (en) | 2022-05-19 | 2022-05-19 | Double-type guide rail machining die |
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CN217492358U true CN217492358U (en) | 2022-09-27 |
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CN202221199534.8U Active CN217492358U (en) | 2022-05-19 | 2022-05-19 | Double-type guide rail machining die |
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CN (1) | CN217492358U (en) |
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- 2022-05-19 CN CN202221199534.8U patent/CN217492358U/en active Active
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