CN210308634U - Bellows processing subassembly - Google Patents

Bellows processing subassembly Download PDF

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Publication number
CN210308634U
CN210308634U CN201921311862.0U CN201921311862U CN210308634U CN 210308634 U CN210308634 U CN 210308634U CN 201921311862 U CN201921311862 U CN 201921311862U CN 210308634 U CN210308634 U CN 210308634U
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China
Prior art keywords
die cavity
inflation
mold core
cover plate
bellows
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CN201921311862.0U
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Chinese (zh)
Inventor
谭寅年
李维峰
王磊
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Yantai Hongze Rubber Plastic Products Co Ltd
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Yantai Hongze Rubber Plastic Products Co Ltd
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Priority to CN201921311862.0U priority Critical patent/CN210308634U/en
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Abstract

The utility model discloses a bellows processing subassembly, including cope match-plate pattern and lower bolster, the cope match-plate pattern is formed with the upper die cavity, the lower bolster is formed with the lower die cavity, form accommodation space between upper die cavity and the lower die cavity, the inside mold core that is equipped with of accommodation space, form moulding space between upper die cavity, lower die cavity and the mold core; mold core one end is equipped with the joint portion, the mechanism is aerifyd in the configuration of joint portion. The inflation mechanism comprises a sleeve joint barrel, a cover plate and an inflation joint, and is connected with the assembly part of the mold core through the sleeve joint barrel; the cover plate is connected to the end part of the sleeve joint barrel, the inflation connector is fixedly connected with the cover plate, and the inflation connector is communicated with the sleeve joint barrel. The utility model discloses bellows after the vulcanization shaping on the take off mold core that can be quick uses manpower sparingly, improves machining efficiency.

Description

Bellows processing subassembly
Technical Field
The utility model relates to a bellows processing subassembly belongs to bellows processing technical field.
Background
The corrugated pipe is a tubular elastic sensitive element which is formed by connecting foldable corrugated sheets along the folding and stretching direction. The corrugated pipe is widely applied to instruments and meters and can be used as a measuring element of a pressure measuring instrument to convert pressure into displacement or force. The corrugated pipe has thin pipe wall and high sensitivity, and the measurement range is from tens of Pa to tens of MPa. The rubber, plastic and other corrugated pipes have irreplaceable functions in the fields of medium transmission, electric power threading, machine tools, household appliances and the like.
In the bellows course of working, the mould is indispensable, to the soft bellows of rubber material among the prior art, the inner wall of bellows can be inseparable paste on the mold core behind the vulcanization shaping, because the structure of corrugate, adopts the manpower hardly to take off the laborsaving quick follow mold core of bellows after the shaping, extravagant manpower, machining efficiency is low.
SUMMERY OF THE UTILITY MODEL
The utility model discloses not enough to prior art exists, a bellows processing subassembly is provided, bellows after the vulcanization shaping on the take off mold core that can be quick improves machining efficiency.
The utility model provides an above-mentioned technical problem's technical scheme as follows: a corrugated pipe machining assembly comprises an upper template and a lower template, wherein an upper die cavity is formed in the upper template, a lower die cavity is formed in the lower template, an accommodating space is formed between the upper die cavity and the lower die cavity, a die core is arranged in the accommodating space, and a shaping space is formed among the upper die cavity, the lower die cavity and the die core; mold core one end is equipped with the joint portion, the mechanism is aerifyd in the configuration of joint portion.
As the preferred scheme of the corrugated pipe processing assembly, positioning grooves are respectively arranged on the outer sides of the upper die cavity and the lower die cavity and are semi-cylindrical.
As a preferred scheme of the corrugated pipe machining assembly, the inflating mechanism comprises a sleeve joint barrel, a cover plate and an inflating joint, and the inflating mechanism is connected with the assembling part of the mold core through the sleeve joint barrel; the cover plate is connected to the end part of the sleeve joint barrel, the inflation connector is fixedly connected with the cover plate, and the inflation connector is communicated with the sleeve joint barrel.
The preferable scheme of the corrugated pipe processing assembly further comprises a switch valve, and the switch valve is connected with the inflation connector.
As the preferable scheme of the corrugated pipe machining assembly, positioning holes are formed in two sides of the upper template, and positioning pins are arranged in two sides of the lower template.
As the preferable scheme of the corrugated pipe processing assembly, handles are connected to two sides of the upper template.
The utility model forms a containing space between the upper die cavity and the lower die cavity, a die core is arranged in the containing space, and a shaping space is formed among the upper die cavity, the lower die cavity and the die core; one end of the mold core is provided with an assembly part, the assembly part is provided with an inflating mechanism, the inflating mechanism is provided with a sleeve joint cylinder, a cover plate and an inflating joint, and the inflating mechanism is connected with the assembly part of the mold core through the sleeve joint cylinder; the cover plate is connected to the end of the sleeve joint barrel, the inflation connector is fixedly connected with the cover plate, and the inflation connector is communicated with the sleeve joint barrel. The utility model discloses bellows after the vulcanization shaping on the take off mold core that can be quick uses manpower sparingly, improves machining efficiency.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below. It should be apparent that the drawings in the following description are merely exemplary, and that other embodiments can be derived from the drawings provided by those of ordinary skill in the art without inventive effort.
The structure, ratio, size and the like shown in the present specification are only used for matching with the content disclosed in the specification, so as to be known and read by people familiar with the technology, and are not used for limiting the limit conditions which can be implemented by the present invention, so that the present invention has no technical essential significance, and any structure modification, ratio relationship change or size adjustment should still fall within the scope which can be covered by the technical content disclosed by the present invention without affecting the efficacy and the achievable purpose of the present invention. The arrows in the figure indicate the direction of the grouping action.
Fig. 1 is an exploded view of a bellows processing assembly provided in an embodiment of the present invention;
fig. 2 is a schematic view of an upper mold plate and a lower mold plate assembly of the bellows processing assembly provided in the embodiment of the present invention.
In the figure, 1, an upper template; 2. a lower template; 3. an upper mold cavity; 4. a lower die cavity; 5. an accommodating space; 6. a mold core; 7. a shaping space; 8. a connecting part; 9. an inflation mechanism; 10. sleeving a sleeve; 11. a cover plate; 12. an inflation joint; 13. positioning a groove; 14. an on-off valve; 15. positioning holes; 16. positioning pins; 17. a handle.
Detailed Description
In order to make the above objects, features and advantages of the present invention more comprehensible, embodiments of the present invention are described in detail below with reference to the accompanying drawings. In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present invention. The present invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein, as those skilled in the art will be able to make similar modifications without departing from the spirit and scope of the present invention.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
Referring to fig. 1 and 2, a corrugated pipe machining assembly is provided, and includes an upper template 1 and a lower template 2, where the upper template 1 is formed with an upper mold cavity 3, the lower template 2 is formed with a lower mold cavity 4, an accommodating space 5 is formed between the upper mold cavity 3 and the lower mold cavity 4, a mold core 6 is arranged in the accommodating space 5, and a shaping space 7 is formed among the upper mold cavity 3, the lower mold cavity 4 and the mold core 6; mold core 6 one end is equipped with the portion of uniting 8, the portion of uniting 8 disposes and aerifys mechanism 9. The inflating mechanism 9 comprises a sleeve joint cylinder 10, a cover plate 11 and an inflating joint 12, and the inflating mechanism 9 is connected with the assembling part 8 of the mold core 6 through the sleeve joint cylinder 10; the cover plate 11 is connected to the end of the socket tube 10, the inflation connector 12 is fixedly connected to the cover plate 11, and the inflation connector 12 is communicated with the socket tube 10.
In an embodiment of the bellows processing assembly, the outer sides of the upper mold cavity 3 and the lower mold cavity 4 are respectively provided with a positioning groove 13, and the positioning groove 13 is semi-cylindrical. When the upper template 1 and the lower template 2 are assembled, the positioning grooves 13 of the upper die cavity 3 and the lower die cavity 4 are butted into a cylinder, so that the die core 6 is positioned.
In one embodiment of the bellows processing assembly, the bellows processing assembly further comprises an on-off valve 14, and the on-off valve 14 is connected to the inflation connector 12. The inflation connector 12 can be supplied with compressed air by means of an existing air compressor, and the on-off valve 14 controls the air flow of the inflation mechanism 9.
In one embodiment of the bellows machining assembly, the upper mold plate 1 is provided with positioning holes 15 on both sides thereof, and the lower mold plate 2 is provided with positioning pins 16 on both sides thereof. The assembly of the positioning holes 15 and the positioning pins 16 ensures the assembly precision of the upper template 1 and the lower template 2, and ensures that the upper die cavity 3 and the lower die cavity 4 can be aligned. Handles 17 are connected to both sides of the upper die plate 1. The handle 17 facilitates the control of the upper template 1.
In the utility model, a containing space 5 is formed between an upper die cavity 3 and a lower die cavity 4, a die core 6 is arranged in the containing space 5, and a shaping space 7 is formed among the upper die cavity 3, the lower die cavity 4 and the die core 6; one end of the mold core 6 is provided with an assembly part 8, the assembly part 8 is provided with an inflating mechanism 9, the inflating mechanism 9 is provided with a sleeve joint cylinder 10, a cover plate 11 and an inflating joint 12, and the inflating mechanism 9 is connected with the assembly part 8 of the mold core 6 through the sleeve joint cylinder 10; the cover plate 11 is connected at the end part of the socket sleeve 10, the inflation connector 12 is fixedly connected with the cover plate 11, and the inflation connector 12 is communicated with the socket sleeve 10. Based on utility model, after the bellows has vulcanized, open a cope match-plate pattern 1, take out mold core 6, the bellows is the cover on mold core 6 this moment. Sleeving the sleeve 10 of the inflating mechanism 9 on the mold core 6, opening the switch valve 14, introducing compressed air, expanding the corrugated pipe through the pressure of the air, and separating the corrugated pipe from the mold core 6, so that the corrugated pipe is taken out smoothly. The utility model discloses bellows after the vulcanization shaping on taking off mold core 6 that can be quick uses manpower sparingly, improves machining efficiency.
The technical features of the embodiments described above may be arbitrarily combined, and for the sake of brevity, all possible combinations of the technical features in the embodiments described above are not described, but should be considered as being within the scope of the present specification as long as there is no contradiction between the combinations of the technical features.
The above-mentioned embodiments only represent some embodiments of the present invention, and the description thereof is specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, without departing from the spirit of the present invention, several variations and modifications can be made, which are within the scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.

Claims (6)

1. A corrugated pipe machining assembly comprises an upper template (1) and a lower template (2), wherein an upper die cavity (3) is formed in the upper template (1), a lower die cavity (4) is formed in the lower template (2), and a containing space (5) is formed between the upper die cavity (3) and the lower die cavity (4), and is characterized in that a die core (6) is arranged in the containing space (5), and a shaping space (7) is formed among the upper die cavity (3), the lower die cavity (4) and the die core (6); mold core (6) one end is equipped with combination portion (8), combination portion (8) dispose aerify mechanism (9).
2. A bellows processing assembly according to claim 1, wherein the upper mold cavity (3) and the lower mold cavity (4) are provided with positioning grooves (13) on the outer sides thereof, respectively, and the positioning grooves (13) are semi-cylindrical.
3. A bellows processing assembly according to claim 1, wherein the inflation mechanism (9) comprises a socket (10), a cover plate (11) and an inflation joint (12), the inflation mechanism (9) is connected with the assembling portion (8) of the mold core (6) through the socket (10); the cover plate (11) is connected to the end of the sleeve joint barrel (10), the inflation connector (12) is fixedly connected with the cover plate (11), and the inflation connector (12) is communicated with the sleeve joint barrel (10).
4. A bellows processing assembly according to claim 3, further comprising an on-off valve (14), said on-off valve (14) being connected to said inflation fitting (12).
5. A bellows processing assembly according to claim 1, wherein the upper die plate (1) is provided with positioning holes (15) on both sides thereof, and the lower die plate (2) is provided with positioning pins (16) on both sides thereof.
6. A bellows processing assembly according to claim 1, wherein handles (17) are attached to both sides of the upper die plate (1).
CN201921311862.0U 2019-08-14 2019-08-14 Bellows processing subassembly Active CN210308634U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921311862.0U CN210308634U (en) 2019-08-14 2019-08-14 Bellows processing subassembly

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921311862.0U CN210308634U (en) 2019-08-14 2019-08-14 Bellows processing subassembly

Publications (1)

Publication Number Publication Date
CN210308634U true CN210308634U (en) 2020-04-14

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Application Number Title Priority Date Filing Date
CN201921311862.0U Active CN210308634U (en) 2019-08-14 2019-08-14 Bellows processing subassembly

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CN (1) CN210308634U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113043545A (en) * 2021-04-06 2021-06-29 中山大学 Injection molding method and device for flexible pipe with micro-nano structure on inner surface
CN115195037A (en) * 2022-06-23 2022-10-18 成都万友滤机有限公司 Forming device and production method of TPV corrugated hose

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113043545A (en) * 2021-04-06 2021-06-29 中山大学 Injection molding method and device for flexible pipe with micro-nano structure on inner surface
CN113043545B (en) * 2021-04-06 2022-04-19 中山大学 Injection molding method and device for flexible pipe with micro-nano structure on inner surface
CN115195037A (en) * 2022-06-23 2022-10-18 成都万友滤机有限公司 Forming device and production method of TPV corrugated hose
CN115195037B (en) * 2022-06-23 2024-02-27 成都万友滤机有限公司 Forming device and production method of TPV corrugated hose

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