CN202037241U - Progressive die of motor end cap - Google Patents
Progressive die of motor end cap Download PDFInfo
- Publication number
- CN202037241U CN202037241U CN2011200211038U CN201120021103U CN202037241U CN 202037241 U CN202037241 U CN 202037241U CN 2011200211038 U CN2011200211038 U CN 2011200211038U CN 201120021103 U CN201120021103 U CN 201120021103U CN 202037241 U CN202037241 U CN 202037241U
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- shaping
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Abstract
The utility model provides a progressive die of a motor end cap, which comprises an upper die assembly and a lower die assembly. The upper die assembly and the lower die assembly are correspondingly provided with ten machining stations and one empty station. The ten machining stations and the empty station are provided in an arrangement in a machining sequence: a first punching station, a turnbuckle punching station, a first stretching station, a second stretching station, a third stretching station, a fourth stretching station, the empty station, a shaping station, a second punching station, a waist hole punching station and a blanking material cutting-off station. The thickness of a component which is machined by the progressive die of the motor end cap is larger than or equal with 1.2mm, and the diameter is larger than or equal with 110mm. The die structure is divided into three large areas, namely a stretching area, a shaping area and a cutting area. Each area is provided with a respectively independent alignment structure for ensuring a fact that the relatively independent and integral interconnection requirements can be satisfied in adjustment and operation of each station. The stretching depth can be adjusted through a push rod on the die according to the thickness of material. According to the shaping part, a split type sliding structure is adopted for performing central shaping and outer turning shaping by a shaping punch and an outer shaping punch, thereby ensuring in-place machining for the dimension of the components.
Description
Technical field
The utility model relates to mould, particularly a kind of electric motor end cap progressive die.
Background technology
Progressive die is that a kind of being used for carried out the sectional die that continuous productive process is processed continuously to workpiece, can begin to work the work piece into product through operations such as continuous stretching, shaping, punching, shearings from raw material.For example small-sized electric motor end cap just can be processed with this mould.But according to the structure difference of progressive die, its working ability is also different.For example prior art is used to process the progressive die (integrally stretching) of micro-machine end cap, just can only rapidoprint thickness≤1mm, and the product of diameter<80mm.
The utility model content
The purpose of this utility model in order to solve the problems referred to above that prior art exists, provides a kind of electric motor end cap progressive die with new structure exactly, and energy rapidoprint thickness is greater than 1mm, and diameter is greater than the product of 100mm.
To achieve these goals, the utility model has adopted following technical scheme: a kind of electric motor end cap progressive die, comprise upper die component and following membrane module, described upper die component comprises upper junction plate, top mold frame, upper mounted plate and the stripper that order fuses, described membrane module down comprises lower connecting plate, following mould bases, lower bolster and the bottom plate that order fuses, and upper die component and following membrane module correspondence are provided with ten processing stations and an idle station; Be respectively the first punching station, shock wave basket station, the first stretching station, the second stretching station, the 3rd stretching station, the 4th stretching station, idle station, shaping station, the second punching station, cut off station by the processing sequencing towards waist hole station and blanking.
At the first punching station, upper die component is provided with towards correcting hole punch, and following membrane module correspondence is provided with towards correcting hole die; At shock wave basket station, upper die component is provided with shock wave basket punch, and following membrane module correspondence is provided with shock wave mould in the key; At the first stretching station, upper die component is provided with first stretching convex die, and following membrane module correspondence is provided with the first stretching die; At the second stretching station, upper die component is provided with second stretching convex die, and following membrane module correspondence is provided with the second stretching die; At the 3rd stretching station, upper die component is provided with the 3rd stretching convex die, and following membrane module correspondence is provided with the 3rd stretching die; At the 4th stretching station, upper die component is provided with the 4th stretching convex die, and following membrane module correspondence is provided with the 4th stretching die; At the shaping station, upper die component is provided with the shaping punch-head assembly, and following membrane module correspondence is provided with correcting die; At the second punching station, upper die component is provided with piercing punch, and following membrane module correspondence is provided with punching concave die; Towards waist hole station, upper die component is provided with towards waist hole punch, and following membrane module correspondence is provided with towards waist hole die; Cut off station at blanking, upper die component is provided with blanking punch and cuts off upper slitter, and following membrane module correspondence is provided with blanking die and cuts off counterdie.
Described shaping punch-head assembly comprises shaping drift, spring, outer shaping drift and shaping drift fixed head, spring is arranged in the shaping drift, the shaping drift is assemblied in the outer shaping drift, and outer shaping drift is assemblied in the shaping drift fixed head, and shaping drift fixed head is fixed on the upper mounted plate.
Described towards correcting hole punch, shock wave basket punch, first stretching convex die, second stretching convex die, the 3rd stretching convex die, the 4th stretching convex die, shaping punch-head assembly, piercing punch, pass stripper respectively towards waist hole punch and blanking punch and be assemblied on the upper mounted plate; Described cut-out upper slitter is assemblied in the upper mounted plate side.
Described towards correcting hole die, shock wave in the key mould, the first stretching die, the second stretching die, the 3rd stretching die, the 4th stretching die, correcting die, punching concave die, be assemblied on the bottom plate respectively towards waist hole die, blanking die and cut-out counterdie.
Can dash the piece of can not rushing to summit at the second punching station with towards being provided with between the station of waist hole, this can dash packaged the fitting on the upper mounted plate of can not rushing to summit.
Described shock wave basket station also is provided with to beat and re-packs on bar, the shock wave basket and shock wave jacking block in the key, beat that re-packing on bar and the shock wave basket fuses and be inlaid in the below of shock wave basket punch and be fixed on the fixed block, shock wave in the key jacking block be coated on shock wave in the key mould on every side and be fixed on down on the fixed block.
Described first stretching convex die, second stretching convex die, the 3rd stretching convex die and the 4th stretching convex die link to each other with top mold frame by a push rod screw respectively, can regulate the height of each stretching convex die by regulating the push rod screw, to realize regulating the stretching depth of the station that respectively stretches.
Electric motor end cap progressive die of the present utility model makes it compared with prior art owing to adopted above technical scheme, has following advantage and characteristics:
1, the part thickness 〉=1.2mm of electric motor end cap progressive die processing of the present utility model, diameter 〉=110mm;
2, electric motor end cap progressive die of the present utility model is provided with 10 road processing stations, and mould structure is divided into three big zones, i.e. stretching, shaping, share zone.Every zone has independently leads accurate structure separately, guarantees that mould can relatively independently can satisfy whole interconnected needs again when each station adjustment, work, and the centre is provided with idle station as refuel(l)ing;
3, stretching depth can be regulated push rod on the mould according to material thickness variation, regulates the mould station and meets the requirements of stretched dimension;
4, this mould shaping unit adopts the split slide construction to be carried out the center shaping and turned up shaping by shaping drift and outer shaping drift, guarantees that accessory size processing puts in place.
Description of drawings
Fig. 1 is the broken section structural representation of the utility model electric motor end cap progressive die.
The specific embodiment
Below in conjunction with the drawings and specific embodiments the utility model is elaborated.
Referring to Fig. 1, electric motor end cap progressive die of the present utility model, comprise upper die component and following membrane module, upper die component comprises upper junction plate 24, top mold frame 16,41, upper mounted plate 19,42 and the stripper 9,43 that order fuses, following membrane module comprises lower connecting plate 25, following mould bases 23, lower bolster 15,44 and the bottom plate 3 that order fuses, and upper die component and following membrane module correspondence are provided with ten processing stations and an idle station; Be respectively the first punching station, shock wave basket station, the first stretching station, the second stretching station, the 3rd stretching station, the 4th stretching station, idle station, shaping station, the second punching station, cut off station by the processing sequencing towards waist hole station and blanking.
At the first punching station, upper die component is provided with towards correcting hole punch 2, and following membrane module correspondence is provided with towards correcting hole die 1; At shock wave basket station, upper die component is provided with shock wave basket punch 5, and following membrane module correspondence is provided with shock wave mould 7 in the key; At the first stretching station, upper die component is provided with first stretching convex die 10, and following membrane module correspondence is provided with the first stretching die 11; At the second stretching station, upper die component is provided with second stretching convex die 13, and following membrane module correspondence is provided with the second stretching die 14; At the 3rd stretching station, upper die component is provided with the 3rd stretching convex die 17, and following membrane module correspondence is provided with the 3rd stretching die 18; At the 4th stretching station, upper die component is provided with the 4th stretching convex die 20, and following membrane module correspondence is provided with the 4th stretching die 21; At the shaping station, upper die component is provided with the shaping punch-head assembly, this shaping punch-head assembly comprises shaping drift 28, spring 29, outer shaping drift 30 and shaping drift fixed head 31, in spring 29 is arranged on and is sealed in the shaping drift 28 and by upper padding plate 26, shaping drift 28 is assemblied in the outer shaping drift 30, outer shaping drift 30 is assemblied in the shaping drift fixed head 31, and shaping drift fixed head 31 is fixed on the upper mounted plate 19; Following membrane module correspondence is provided with correcting die 32; At the second punching station, upper die component is provided with piercing punch 34, and following membrane module correspondence is provided with punching concave die 35; Towards waist hole station, upper die component is provided with towards waist hole punch 37, and following membrane module correspondence is provided with towards waist hole die 38; Cut off station at blanking, upper die component is provided with blanking punch 40 and cuts off upper slitter 46, and following membrane module correspondence is provided with blanking die 48 and cuts off counterdie 47.
Dashing correcting hole punch 2, shock wave basket punch 5, first stretching convex die 10, second stretching convex die 13, the 3rd stretching convex die 17, the 4th stretching convex die 20, shaping punch-head assembly, piercing punch 34, pass stripper 9 and 43 respectively towards waist hole punch 37 and blanking punch 40 and be assemblied on the upper mounted plate 19 in the utility model; Cut-out upper slitter 46 is assemblied in the side of upper mounted plate 42.
In the utility model dash correcting hole die 1, shock wave in the key mould 7, the first stretching die 11, the second stretching die 14, the 3rd stretching die 18, the 4th stretching die 21, correcting die 32, punching concave die 35, towards waist hole die 38, blanking die 48 with cut off counterdie 47 and be assemblied in respectively on the bottom plate 3.
The utility model can dash the piece 36 of can not rushing to summit at the second punching station with towards also being provided with between the station of waist hole, and this can dash the piece 36 of can not rushing to summit and be assemblied on the upper mounted plate 42.
Shock wave basket station in the utility model also is provided with to beat and re-packs 6 and shock wave jacking block 8 in the key on bar 4, the shock wave basket, beating re-packs on bar 4 and the shock wave basket 6 fuses and is inlaid in the below of shock wave basket punch 5 and is fixed on the fixed block 19, shock wave in the key jacking block 8 be coated on shock wave in the key mould 7 on every side and be fixed on down on the fixed block 3.
First stretching convex die 10 in the utility model, second stretching convex die 13, the 3rd stretching convex die 17 link to each other with top mold frame by a push rod screw 12 respectively with the 4th stretching convex die 20, can regulate the height of each stretching convex die by regulating the push rod screw, to realize regulating the stretching depth of the station that respectively stretches.
Shown in Fig. 1,22 is die shank, and 27,33,39 is upper padding plate.
Claims (8)
1. electric motor end cap progressive die, comprise upper die component and following membrane module, it is characterized in that: described upper die component comprises upper junction plate, top mold frame, upper mounted plate and the stripper that order fuses, described membrane module down comprises lower connecting plate, following mould bases, lower bolster and the bottom plate that order fuses, and upper die component and following membrane module correspondence are provided with ten processing stations and an idle station; Be respectively the first punching station, shock wave basket station, the first stretching station, the second stretching station, the 3rd stretching station, the 4th stretching station, idle station, shaping station, the second punching station, cut off station by the processing sequencing towards waist hole station and blanking.
2. electric motor end cap progressive die as claimed in claim 1 is characterized in that: at the first punching station, upper die component is provided with towards correcting hole punch, and following membrane module correspondence is provided with towards correcting hole die; At shock wave basket station, upper die component is provided with shock wave basket punch, and following membrane module correspondence is provided with shock wave mould in the key; At the first stretching station, upper die component is provided with first stretching convex die, and following membrane module correspondence is provided with the first stretching die; At the second stretching station, upper die component is provided with second stretching convex die, and following membrane module correspondence is provided with the second stretching die; At the 3rd stretching station, upper die component is provided with the 3rd stretching convex die, and following membrane module correspondence is provided with the 3rd stretching die; At the 4th stretching station, upper die component is provided with the 4th stretching convex die, and following membrane module correspondence is provided with the 4th stretching die; At the shaping station, upper die component is provided with the shaping punch-head assembly, and following membrane module correspondence is provided with correcting die; At the second punching station, upper die component is provided with piercing punch, and following membrane module correspondence is provided with punching concave die; Towards waist hole station, upper die component is provided with towards waist hole punch, and following membrane module correspondence is provided with towards waist hole die; Cut off station at blanking, upper die component is provided with blanking punch and cuts off upper slitter, and following membrane module correspondence is provided with blanking die and cuts off counterdie.
3. electric motor end cap progressive die as claimed in claim 2, it is characterized in that: described shaping punch-head assembly comprises shaping drift, spring, outer shaping drift and shaping drift fixed head, spring is arranged in the shaping drift, the shaping drift is assemblied in the outer shaping drift, outer shaping drift is assemblied in the shaping drift fixed head, and shaping drift fixed head is fixed on the upper mounted plate.
4. electric motor end cap progressive die as claimed in claim 2 is characterized in that: described towards correcting hole punch, shock wave basket punch, first stretching convex die, second stretching convex die, the 3rd stretching convex die, the 4th stretching convex die, shaping punch-head assembly, piercing punch, pass stripper respectively towards waist hole punch and blanking punch and be assemblied on the upper mounted plate; Described cut-out upper slitter is assemblied in the upper mounted plate side.
5. electric motor end cap progressive die as claimed in claim 2 is characterized in that: described towards correcting hole die, shock wave in the key mould, the first stretching die, the second stretching die, the 3rd stretching die, the 4th stretching die, correcting die, punching concave die, be assemblied on the bottom plate respectively towards waist hole die, blanking die and cut-out counterdie.
6. electric motor end cap progressive die as claimed in claim 1 is characterized in that: can dash the piece of can not rushing to summit at the second punching station with towards being provided with between the station of waist hole, this can dash packaged the fitting on the upper mounted plate of can not rushing to summit.
7. electric motor end cap progressive die as claimed in claim 1, it is characterized in that: described shock wave basket station also is provided with to beat and re-packs on bar, the shock wave basket and shock wave jacking block in the key, beat that re-packing on bar and the shock wave basket fuses and be inlaid in the below of shock wave basket punch and be fixed on the fixed block, shock wave in the key jacking block be coated on shock wave in the key mould on every side and be fixed on down on the fixed block.
8. electric motor end cap progressive die as claimed in claim 2, it is characterized in that: described first stretching convex die, second stretching convex die, the 3rd stretching convex die and the 4th stretching convex die link to each other with top mold frame by a push rod screw respectively, can regulate the height of each stretching convex die by regulating the push rod screw, to realize regulating the stretching depth of the station that respectively stretches.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2011200211038U CN202037241U (en) | 2011-01-21 | 2011-01-21 | Progressive die of motor end cap |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2011200211038U CN202037241U (en) | 2011-01-21 | 2011-01-21 | Progressive die of motor end cap |
Publications (1)
Publication Number | Publication Date |
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CN202037241U true CN202037241U (en) | 2011-11-16 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN2011200211038U Expired - Lifetime CN202037241U (en) | 2011-01-21 | 2011-01-21 | Progressive die of motor end cap |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102125957A (en) * | 2011-01-21 | 2011-07-20 | 上海日用-友捷汽车电气有限公司 | Progressive die for motor end cover |
CN108097797A (en) * | 2017-12-19 | 2018-06-01 | 中国航发南方工业有限公司 | A kind of motor mounting shell preparation method |
-
2011
- 2011-01-21 CN CN2011200211038U patent/CN202037241U/en not_active Expired - Lifetime
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102125957A (en) * | 2011-01-21 | 2011-07-20 | 上海日用-友捷汽车电气有限公司 | Progressive die for motor end cover |
CN108097797A (en) * | 2017-12-19 | 2018-06-01 | 中国航发南方工业有限公司 | A kind of motor mounting shell preparation method |
CN108097797B (en) * | 2017-12-19 | 2019-09-03 | 中国航发南方工业有限公司 | A kind of motor mounting shell preparation method |
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Legal Events
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CX01 | Expiry of patent term | ||
CX01 | Expiry of patent term |
Granted publication date: 20111116 |