CN207839991U - A kind of semiaxis balance shaping mould - Google Patents
A kind of semiaxis balance shaping mould Download PDFInfo
- Publication number
- CN207839991U CN207839991U CN201721182168.4U CN201721182168U CN207839991U CN 207839991 U CN207839991 U CN 207839991U CN 201721182168 U CN201721182168 U CN 201721182168U CN 207839991 U CN207839991 U CN 207839991U
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- CN
- China
- Prior art keywords
- semiaxis
- embedded
- membrane module
- cavity plate
- component
- 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.)
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Abstract
The utility model discloses a kind of semiaxis balance shaping moulds, including mutually matched dynamic model component and quiet membrane module, quiet membrane module includes fixed mold component, overturn half module component, shaft, pedestal and telescopic device, shaft is threaded through in pedestal, it is installed with fixed mold component above pedestal, it is hinged by shaft and pedestal to overturn half module component, fixed mold component includes fixed shell and the first embedded membrane module, first embedded membrane module is inlaid in fixed shell, it includes flip cover and the second embedded membrane module to overturn half module component, second embedded membrane module is inlaid in flip cover, first embedded membrane module and the second embedded membrane module are semi- cylindrical, telescopic device is installed in fixed shell, the external part of telescopic device is hinged with pull rod one end, the pull rod other end is hinged with flip cover.The utility model is simple in structure, when being molded to semiaxis balance, is packed into semiaxis and to take out semiaxis quick and convenient.
Description
Technical field
The utility model is related to axle production equipment technical fields, more specifically, more particularly to a kind of semiaxis balance at
Pattern.
Background technology
The process of axle shaft of the prior art is needed to semiaxis one end die mould into balance, and traditional processing method is needed shaft member
Heating one end, is then placed in die for molding, and when longer rod piece is fitted into mold or is taken out from mold during being molded not
It is convenient.
Utility model content
It is easy to use the purpose of this utility model is to provide a kind of simple in structure, it can be quickly packed into mold, upset
Later the semiaxis balance shaping mould that can quickly take out.
In order to achieve the above object, the technical solution adopted in the utility model is as follows:
A kind of semiaxis balance shaping mould, including mutually matched dynamic model component and quiet membrane module, the quiet membrane module include
Fixed mold component, overturning half module component, shaft, pedestal and telescopic device, the shaft are threaded through in the pedestal, the base
Fixed mold component is installed with above frame, the overturning half module component is hinged by shaft and pedestal, the overturning half module
Component can be overturn around the shaft to die-closed position or de-molding position, and the fixed mold component includes that fixed shell and first are embedded
Membrane module, the first embedded membrane module are inlaid in fixed shell, and the overturning half module component includes flip cover and second
Embedded membrane module, the second embedded membrane module are inlaid in flip cover, the first embedded membrane module and the second embedded mould
Component is semi- cylindrical, when overturning half module component is in die-closed position, the first embedded membrane module and the second embedded membrane module
Cavity plate component is collectively constituted, telescopic device, external part and pull rod one end of the telescopic device are installed in the fixed shell
Hinged, the pull rod other end is hinged with flip cover, and the telescopic device is touched for driving overturning half module component to be moved to conjunction
Position or de-molding position.
Further, the dynamic model component includes the moving platen and punch-pin being connected with each other;
The first embedded membrane module includes the first cavity plate backing plate, the first cavity plate, the first semiaxis supporting sleeve, and described first is recessed
Die-cushion plate is embedded in the fixed shell, and first cavity plate is embedded in the first cavity plate backing plate, and the set casing
The first semiaxis supporting sleeve is also embedded in body, first cavity plate, the first cavity plate backing plate, the first semiaxis supporting sleeve are same successively
Axis is arranged;
The second embedded membrane module includes the second cavity plate backing plate, the second cavity plate, the second semiaxis supporting sleeve, and described second is recessed
Die-cushion plate is embedded in the flip cover, and second cavity plate is embedded in the second cavity plate backing plate, and the overturning shell
The second semiaxis supporting sleeve is also embedded in body, second cavity plate, the second cavity plate backing plate, the second semiaxis supporting sleeve are same successively
Axis is arranged;
When overturning half module component is in die-closed position, first cavity plate, the first cavity plate backing plate, the support of the first semiaxis
Set, the second cavity plate, the second cavity plate backing plate, the second semiaxis supporting sleeve are coaxial.
Further, multiple semi-cylindrical grooves, the semi-cylindrical groove two are further opened in the first semiaxis supporting sleeve
End is installed with semicircular ring lacing film, and semicircular ring support, the semicircular ring branch are movably installed in the semi-cylindrical groove
Support both ends offer suspension groove, and the suspension groove shape is adapted with semicircular ring lacing film, and the semicircular ring lacing film outer circle top
It is further opened with limiting cutting, the suspension groove upper end offers limit protrusion, and the limiting cutting and limit protrusion are fan ring
Structure, limit protrusion and limiting cutting match.
Further, semicircular ring support lower end is further opened with angular cutouts.
By that by the way that dynamic model component, fixed mold component and overturning half module component is arranged, can be driven by telescopic device
Dynamic overturning half module component is turned to up to die-closed position or de-molding position.When in use, at telescopic device driving overturning half module component
In de-molding position, the semiaxis of heating one end is fitted into the first embedded membrane module, then telescopic device driving overturning half module component
In die-closed position, overturning half module component can be overturn is combined into a quiet membrane module, horizontal (double action) oil hydraulic with fixed mold component
Driving dynamic model component is moved to quiet membrane module, is molded to semiaxis balance, then at telescopic device driving overturning half module component
In de-molding position, so that it may be taken out semiaxis after molding with facilitating.
Compared with prior art, the utility model has the advantage of:It is simple in structure, when being molded to semiaxis balance, it is packed into half
Axis and to take out semiaxis quick and convenient.
Description of the drawings
In order to illustrate the embodiment of the utility model or the technical proposal in the existing technology more clearly, below will be to embodiment
Or attached drawing needed to be used in the description of the prior art is briefly described, it should be apparent that, the accompanying drawings in the following description is only
It is some embodiments of the utility model, for those of ordinary skill in the art, in the premise not made the creative labor
Under, other drawings may also be obtained based on these drawings.
Fig. 1 is the cross section view of semiaxis balance shaping mould described in the utility model;
Fig. 2 is the structural schematic diagram overturn in quiet membrane module when half module component is in die-closed position;
Fig. 3 is the structural schematic diagram overturn in quiet membrane module when half module component is in de-molding position;
Fig. 4 is the cross section view at semicircular ring Support Position in the utility model;
Fig. 5 is the 3-D view that semicircular ring supports in the utility model;
Fig. 6 is the 3-D view of semicircular ring lacing film in the utility model.
Specific implementation mode
The preferred embodiment of the utility model is described in detail below in conjunction with the accompanying drawings, so that the advantages of the utility model
It can be easier to be readily appreciated by one skilled in the art with feature, it is apparent clear to be made to the scope of protection of the utility model
Define.
Refering to fig. 1 to shown in Fig. 3, the present embodiment provides a kind of semiaxis balance shaping moulds, including mutually matched dynamic model group
Part 100 and quiet membrane module 200, the quiet membrane module 200 include fixed mold component 1, overturning half module component 2, shaft 3, pedestal 4
With telescopic device 5, the shaft 3 is threaded through in the pedestal 4, and 4 top of the pedestal is installed with fixed mold component 1,
The overturning half module component 2 is hinged by shaft 3 and pedestal 4, and the overturning half module component 2 can be molded extremely in 3 overturnings around the shaft
Position or de-molding position, the fixed mold component 1 include 11 and first embedded membrane module 12 of fixed shell, and described first is embedded
Membrane module 12 is inlaid in fixed shell 11, and the overturning half module component 2 includes flip cover 21 and the second embedded membrane module 22,
The second embedded membrane module 22 is inlaid in flip cover 21, the first embedded membrane module, 12 and second embedded membrane module
22 be semi- cylindrical, when overturning half module component 2 is in die-closed position, the first embedded membrane module 12 and the second embedded membrane module
22 collectively constitute cavity plate component 210, are equipped with telescopic device 5 in the fixed shell 11, the external part of the telescopic device 5 with
6 one end of pull rod is hinged, and 6 other end of the pull rod is hinged with flip cover 21, and the telescopic device 5 is for driving overturning set of half mould sets
Part 2 is moved to conjunction and touches position or de-molding position.
By the way that dynamic model component 100, fixed mold component 1 and overturning half module component 2 is arranged, can be driven by telescopic device 5
Dynamic overturning half module component 2, which is overturn, reaches die-closed position or de-molding position.When in use, the driving of telescopic device 5 overturning half module component 2
In de-molding position, the semiaxis of heating one end is fitted into the first embedded membrane module 12, then the driving of telescopic device 5 overturning half module
Component 2 is in die-closed position, and overturning half module component 2 can be overturn is combined into a quiet membrane module 200 with fixed mold component 1,
And the punch assemblies 210 being made of the first embedded membrane module 12 and the second embedded membrane module 22 are provided in quiet membrane module, it is horizontal
Hydraulic press drives dynamic model component 100 to be moved to quiet membrane module 200, is molded to semiaxis balance, and the then driving of telescopic device 5 is turned over
Turn half module component 2 and be in de-molding position, so that it may be taken out semiaxis after molding with facilitating.The device, it is simple in structure, semiaxis is put
When disc molding, it is packed into semiaxis and to take out semiaxis quick and convenient.
Shown in Fig. 2, Fig. 3, in the present embodiment, the dynamic model component 100 includes 101 He of moving platen being connected with each other
Punch-pin 102;Moving platen 101 with horizontal (double action) oil hydraulic for connecting, and punch-pin 102 is used to coordinate die mould semiaxis with punch assemblies 210
Balance.
The first embedded membrane module 12 includes the first cavity plate backing plate 121, the first cavity plate 122, the first semiaxis supporting sleeve
123, the first cavity plate backing plate 121 is embedded in the fixed shell 11, and first cavity plate 122 is embedded recessed described first
Also it is embedded with the first semiaxis supporting sleeve 123 in die-cushion plate 121, and in the fixed shell 11, first cavity plate 122,
First cavity plate backing plate 121, the first semiaxis supporting sleeve 123 are sequentially coaxially arranged;First cavity plate 122, the first cavity plate backing plate 121,
One semiaxis supporting sleeve, 123 section is semi-annular structure.
The second embedded membrane module 22 includes the second cavity plate backing plate 221, the second cavity plate 222, the second semiaxis supporting sleeve
223, the second cavity plate backing plate 221 is embedded in the flip cover 21, and second cavity plate 222 is embedded recessed described second
Also it is embedded with the second semiaxis supporting sleeve 223 in die-cushion plate 221, and in the flip cover 21, second cavity plate 222,
Second cavity plate backing plate 221, the second semiaxis supporting sleeve 223 are sequentially coaxially arranged;Second cavity plate 222, the second cavity plate backing plate 221,
Two semiaxis supporting sleeves, 223 section is semi-annular structure.
When overturning half module component 2 and being in die-closed position, first cavity plate 122, the first cavity plate backing plate 121, the first half
Axis supporting sleeve 123, the second cavity plate 222, the second cavity plate backing plate 221, the second semiaxis supporting sleeve 223 are coaxial.First cavity plate backing plate 121
A convex mould pad can be collectively constituted with the second cavity plate backing plate 221, for installing cavity plate, the first cavity plate 122 and the second cavity plate
222 collectively constitute a cavity plate, and semiaxis one end is shaped to balance, 123 He of the first semiaxis supporting sleeve for coordinating with punch-pin 102
Second semiaxis supporting sleeve 223 collectively constitutes a semiaxis supporting sleeve, is used to support semiaxis.
Shown in Fig. 3 to Fig. 6, multiple semi-cylindrical grooves 1231 are further opened in the first semiaxis supporting sleeve 123, it is described
1231 both ends of semi-cylindrical groove are installed with semicircular ring lacing film 124, and are movably installed in the semi-cylindrical groove 1231
Semicircular ring support 125, the semicircular ring supports 125 both ends to offer suspension groove 1251,1251 shape of the suspension groove and semicircle
Ring lacing film 124 is adapted, and 124 outer circle top of the semicircular ring lacing film is further opened with limiting cutting 1241, the suspension groove
1251 upper ends offer limit protrusion 1252, and the limiting cutting 1241 and limit protrusion 1252 are fan ring structure, limit convex
Rise 1252 and limiting cutting 1241 match.Semicircular ring supports 125 both ends to be mounted on semicircular ring lacing film 124, and semicircular ring is hung
Piece 124 is fixedly mounted on 1231 both ends of semi-cylindrical groove, semicircular ring support 125, semi-cylindrical groove 1231, semicircular ring lacing film again
124 coaxial arrangements, so semicircular ring support 125 can be rotated around semicircular ring lacing film 124.When overturning half module component 2 to demoulding position
When setting mobile, the second semiaxis supporting sleeve 223 is detached with the first semiaxis supporting sleeve 123, work of the semicircular ring support 125 due to gravity
With overturning, semicircular ring supports 125 lower ends to extend out to outside the first semiaxis supporting sleeve 123, when semiaxis is packed into the first semiaxis supporting sleeve
When 123, the semicircular ring support 125 of the protrusion is for holding up semiaxis temporarily.Touching position movement to conjunction when overturning half module component 2 is,
Second semiaxis supporting sleeve 223 closes up with the first semiaxis supporting sleeve 123, and the second semiaxis supporting sleeve 223 supports the semicircular ring of protrusion
In 125 indentation to semi-cylindrical grooves 1231.Preferably, the second semiaxis supporting sleeve 223 squeezes semicircular ring support 125 for convenience,
Semicircular ring supports 125 lower ends to be further opened with angular cutouts 1253, and the surface of the angular cutouts 1253 is used to be supported by the second semiaxis
Set 223 squeezes.
Although being described in conjunction with the accompanying the embodiment of the utility model, patent owner can want in appended right
Various deformations or amendments are made within the scope of asking, and model is protected as long as described no more than the claim of the utility model
It encloses, should all be within the protection scope of the utility model.
Claims (4)
1. a kind of semiaxis balance shaping mould, including mutually matched dynamic model component and quiet membrane module, it is characterised in that:The quiet mould
Component includes that fixed mold component, overturning half module component, shaft, pedestal and telescopic device, the shaft are threaded through the pedestal
In, fixed mold component is installed with above the pedestal, the overturning half module component is hinged by shaft and pedestal, described
Overturning half module component can be overturn around the shaft to die-closed position or de-molding position, the fixed mold component include fixed shell and
First embedded membrane module, the first embedded membrane module are inlaid in fixed shell, and the overturning half module component includes overturning shell
Body and the second embedded membrane module, the second embedded membrane module are inlaid in flip cover, the first embedded membrane module and
Two embedded membrane modules are semi- cylindrical, when overturning half module component is in die-closed position, in the first embedded membrane module and second
Embedding membrane module collectively constitutes cavity plate component, is equipped with telescopic device in the fixed shell, the external part of the telescopic device with
Pull rod one end is hinged, and the pull rod other end is hinged with flip cover, and the telescopic device is for driving overturning half module component to move
It moves to conjunction and touches position or de-molding position.
2. semiaxis balance shaping mould according to claim 1, it is characterised in that:The dynamic model component includes being connected with each other
Moving platen and punch-pin;
The first embedded membrane module includes the first cavity plate backing plate, the first cavity plate, the first semiaxis supporting sleeve, first die supporter
Plate is embedded in the fixed shell, and first cavity plate is embedded in the first cavity plate backing plate, and in the fixed shell
It is also embedded with the first semiaxis supporting sleeve, first cavity plate, the first cavity plate backing plate, the first semiaxis supporting sleeve are sequentially coaxially set
It sets;
The second embedded membrane module includes the second cavity plate backing plate, the second cavity plate, the second semiaxis supporting sleeve, second die supporter
Plate is embedded in the flip cover, and second cavity plate is embedded in the second cavity plate backing plate, and in the flip cover
It is also embedded with the second semiaxis supporting sleeve, second cavity plate, the second cavity plate backing plate, the second semiaxis supporting sleeve are sequentially coaxially set
It sets;
When overturning half module component and being in die-closed position, first cavity plate, the first cavity plate backing plate, the first semiaxis supporting sleeve, the
Two cavity plates, the second cavity plate backing plate, the second semiaxis supporting sleeve are coaxial.
3. semiaxis balance shaping mould according to claim 2, it is characterised in that:It is also opened up in the first semiaxis supporting sleeve
There are multiple semi-cylindrical grooves, the semi-cylindrical groove both ends to be installed with semicircular ring lacing film, and in the semi-cylindrical groove
It is movably installed with semicircular ring support, semicircular ring support both ends offer suspension groove, and the suspension groove shape is hung with semicircular ring
Piece is adapted, and the semicircular ring lacing film outer circle top is further opened with limiting cutting, and the suspension groove upper end offers limit convex
It rises, the limiting cutting and limit protrusion are fan ring structure, and limit protrusion and limiting cutting match.
4. semiaxis balance shaping mould according to claim 3, it is characterised in that:Semicircular ring support lower end is further opened with
Angular cutouts.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201721182168.4U CN207839991U (en) | 2017-09-14 | 2017-09-14 | A kind of semiaxis balance shaping mould |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201721182168.4U CN207839991U (en) | 2017-09-14 | 2017-09-14 | A kind of semiaxis balance shaping mould |
Publications (1)
Publication Number | Publication Date |
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CN207839991U true CN207839991U (en) | 2018-09-11 |
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ID=63425431
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CN201721182168.4U Expired - Fee Related CN207839991U (en) | 2017-09-14 | 2017-09-14 | A kind of semiaxis balance shaping mould |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN116465816A (en) * | 2023-06-20 | 2023-07-21 | 四川省兴冶岩土工程检测有限责任公司 | Concrete impermeability appearance |
-
2017
- 2017-09-14 CN CN201721182168.4U patent/CN207839991U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN116465816A (en) * | 2023-06-20 | 2023-07-21 | 四川省兴冶岩土工程检测有限责任公司 | Concrete impermeability appearance |
CN116465816B (en) * | 2023-06-20 | 2023-10-27 | 四川省兴冶岩土工程检测有限责任公司 | Concrete impermeability appearance |
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20180911 Termination date: 20190914 |