CN218744171U - Profiling tool of anode support oil press - Google Patents

Profiling tool of anode support oil press Download PDF

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Publication number
CN218744171U
CN218744171U CN202222919417.0U CN202222919417U CN218744171U CN 218744171 U CN218744171 U CN 218744171U CN 202222919417 U CN202222919417 U CN 202222919417U CN 218744171 U CN218744171 U CN 218744171U
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China
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mould
tire
profiling
horizontal plate
fixed
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CN202222919417.0U
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Chinese (zh)
Inventor
魏晶
李冲健
杜仲
张传兵
张家智
丁来升
张岭
姜曌霖
仝钦臣
董和玮
龙云鹏
芦源
黄鑫
刚欲晓
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Dalian Shipbuilding Industry Outfitting Co ltd
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Dalian Shipbuilding Industry Outfitting Co ltd
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Abstract

The invention discloses a profiling tool of an oil press of an anode support, and relates to the field of machining, wherein an upper die is fixed below the oil press; the upper mould comprises a top plate, an upper front half mould and an upper rear half mould, wherein the upper front half mould and the upper rear half mould are fixed below the top plate; the lower mould comprises a base, a profiling groove is formed in the base, and limiting convex blocks are arranged on the left side and the right side of the profiling groove; the bottom surface of the profiling groove is provided with a lower front half tire and a lower rear half tire through a vertical telescopic device in a supporting way; a fixed block is arranged above the limiting convex block, a plurality of rotating shafts extending along the front-back direction are hinged on the fixed block, and the upper half parts of the rotating shafts protrude out of the fixed block; the front side and the rear side of the lower front half tire are both provided with lower front limit blocks which are tightly attached to the lower front half tire; the front side and the rear side of the lower rear half tire are both provided with lower rear limiting blocks tightly attached to the lower rear half tire. The invention can produce S-shaped anode supports in batch and improve the processing efficiency of the anode supports.

Description

Profiling tool of anode support oil press
Technical Field
The invention relates to the field of machining, in particular to a profiling tool of an anode support oil press.
Background
The anode support is a metal anti-corrosion device for protecting equipment facilities in a seawater medium, and is widely applied to products such as ships, ocean platforms, ballast water tanks and the like, particularly ocean engineering products. The anode supports are often the same in specification and large in quantity, all cabins of the whole ship are used, and the construction nodes for centralized demand, on-schedule manufacture and delivery and ship protection of products are key.
Because the standard specification of the product is unified, and the quantity is great, every relates to the cold working process, needs research satisfy an anode support pattern cold working simple and easy device, succinctly, satisfy the production requirement of batch manufacturing fast.
Disclosure of Invention
The invention aims to solve the technical problem of providing a profiling tool of an anode support oil press, which is used for carrying out batch extrusion forming on anode supports by utilizing the equipment principle of the oil press, so that the technical quality requirements of products are met, and cost is reduced and efficiency is improved.
In order to achieve the purpose, the invention adopts the following technical scheme:
a profiling tool of an anode support oil press comprises an upper mould and a lower mould, wherein the upper mould is fixed below the oil press;
the upper mould comprises a top plate, an upper front half mould and an upper rear half mould, wherein the upper front half mould and the upper rear half mould are fixed below the top plate;
the lower mould comprises a base, a profiling groove is formed in the base, a left limiting convex block is arranged on the left side of the profiling groove, and a right limiting convex block is arranged on the right side of the profiling groove; the bottom surface of the profiling groove is provided with a lower front half tire and a lower rear half tire through a vertical telescopic device in a supporting way;
a left fixed block is arranged above the left limiting convex block, a plurality of left rotating shafts extending along the front-back direction are hinged on the left fixed block, and the upper half parts of the left rotating shafts protrude out of the left fixed block;
a right fixed block is arranged above the right limiting convex block, a plurality of right rotating shafts extending along the front-back direction are hinged on the right fixed block, and the upper half parts of the right rotating shafts protrude out of the right fixed block;
the front side and the rear side of the lower front half tire are both provided with lower front limit blocks which are tightly attached to the lower front half tire;
the front side and the rear side of the lower rear half tire are both provided with lower rear limiting blocks tightly attached to the lower rear half tire.
The vertical telescopic device comprises a fixed sleeve and a telescopic sleeve; the bottom end of the fixed sleeve is vertically fixed on the bottom surface of the profiling groove, the bottom end of the telescopic sleeve is embedded into the fixed sleeve from an opening at the top end of the fixed sleeve, and the bottom end of the telescopic sleeve is connected with the inner side surface at the bottom end of the fixed sleeve through a spring; the top end of the telescopic sleeve is fixed on the lower front half tire and the lower rear half tire.
The bottom end of the telescopic sleeve is provided with a spring clamping groove, and the top end of the spring is embedded into the spring clamping groove.
The top end of the fixed sleeve is provided with an inward concave outer limiting ring, the bottom end of the telescopic sleeve is provided with an outward convex inner limiting ring, and the inner limiting ring is limited below the outer limiting ring.
The lower front half tire comprises a lower front horizontal plate; the upper front half tire comprises an upper front horizontal plate and an upper front protruding block fixed below the right part of the upper front horizontal plate, and the upper front protruding block is pressed on the upper front horizontal plate.
The lower rear half tire comprises a lower rear horizontal plate and a lower rear convex block fixed above the left part of the lower rear horizontal plate; the upper rear half tire comprises an upper rear horizontal plate and an upper rear convex block fixed below the right part of the upper rear horizontal plate; go up back horizontal plate and press and locate back protruding piece down, go up back protruding piece and press and locate back horizontal plate down.
Compared with the prior art, the anode support has the advantages that the anode support is composed of an upper mold part and a lower mold part, the anode support is similar to an S-shaped bend, the material drawing and wrinkling and other detailed factors are considered when the S-shaped bend is extruded once, the upper mold part and the lower mold part are divided into a front compression area and a rear compression area, and the S-shaped bend of the anode support is divided into 2 steps. The profiling of the anode support is formed by the auxiliary matching profiling of an upper mould and a lower mould, the upper half area and the lower half area of the mould are used for completing the first step, and the upper half area and the lower half area are used for completing the second step. The lower tire applies the principle of spring elasticity, and the front half tire and the rear half tire of the S shape can move up and down to control the running distance of the profiling and facilitate the unloading function of the cold-pressed product. During batch production, two anode supports can be simultaneously processed, one anode support is processed in the front half mould, and the other anode support is processed in the rear half mould, so that the efficiency is improved. Therefore, the invention fully considers the problem of compression stress, and utilizes the vertical expansion device, the rotating shaft on the fixed plate and the like to ensure that the processing process is very smooth and has high efficiency, and two anode supports can be processed simultaneously, thereby having high efficiency.
Drawings
FIG. 1 is a front perspective view of the inventive tool;
FIG. 2 is a rear perspective view of the inventive tool;
FIG. 3 is a schematic view of the tooling of the present invention after the anode support is molded.
In the figure, 1, a top plate, 2, a base, 3, an upper front half tire, 4, a profiling groove, 5, a left limiting protruding block, 6, a right limiting protruding block, 7, a lower front half tire, 8, a left fixing block, 9, a right fixing block, 10, a lower rear half tire, 11, an upper rear half tire, 12, a lower front limiting block, 13 and a lower rear limiting block.
Detailed Description
The following description of the embodiments of the present invention refers to the accompanying drawings.
As shown in fig. 1 to 2, the profiling tool for an anode support oil press of the present invention includes an upper clamping fixture and a lower clamping fixture, wherein the upper clamping fixture is fixed below the oil press;
the upper mould comprises a top plate 1, an upper front half mould 3 and an upper rear half mould 11, wherein the upper front half mould 3 and the upper rear half mould 11 are fixed below the top plate 1;
the lower mould comprises a base 2, a profiling groove 4 is formed in the base 2, a left limiting convex block 5 is arranged on the left side of the profiling groove 4, and a right limiting convex block 6 is arranged on the right side of the profiling groove 4; the bottom surface of the profiling groove 4 is provided with a lower front half tire 7 and a lower rear half tire 10 through a vertical telescopic device in a supporting way;
a left fixing block 8 is arranged above the left limiting convex block 5, a plurality of left rotating shafts extending along the front-back direction are hinged on the left fixing block 8, and the upper half parts of the left rotating shafts protrude out of the left fixing block 8;
a right fixed block 9 is arranged above the right limiting convex block 6, a plurality of right rotating shafts extending along the front-back direction are hinged on the right fixed block 9, and the upper half parts of the right rotating shafts protrude out of the right fixed block 9;
the front side and the rear side of the lower front half tire 7 are both provided with lower front limit blocks 12 tightly attached to the lower front half tire 7;
the front side and the rear side of the lower rear half tire 10 are both provided with lower rear limit blocks 13 which are tightly attached to the lower rear half tire 10.
The vertical telescopic device comprises a fixed sleeve and a telescopic sleeve; the bottom end of the fixed sleeve is vertically fixed on the bottom surface of the profiling groove 4, the bottom end of the telescopic sleeve is embedded into the fixed sleeve from an opening at the top end of the fixed sleeve, and the bottom end of the telescopic sleeve is connected with the inner side surface at the bottom end of the fixed sleeve through a spring; the top end of the telescopic sleeve is fixed on the lower front half tire 7 and the lower rear half tire 10.
The bottom end of the telescopic sleeve is provided with a spring clamping groove, and the top end of the spring is embedded into the spring clamping groove.
The top end of the fixed sleeve 52 is provided with an inward concave outer limit ring, the bottom end of the telescopic sleeve 51 is provided with an outward convex inner limit ring, and the inner limit ring is limited below the outer limit ring.
The lower front half tyre 7 comprises a lower front horizontal plate; the upper front half tire 3 comprises an upper front horizontal plate and an upper front protruding block fixed below the right part of the upper front horizontal plate, and the upper front protruding block is pressed on the upper front horizontal plate.
The lower rear half tire 10 comprises a lower rear horizontal plate and a lower rear convex block fixed above the left part of the lower rear horizontal plate; the upper rear half tire 11 comprises an upper rear horizontal plate and an upper rear convex block fixed below the right part of the upper rear horizontal plate; go up back horizontal plate and press and locate back protruding piece down, go up back protruding piece and press and locate back horizontal plate down.
As shown in FIG. 3, the present invention is used to form a straight anode support into an S-shape. Erect the straight positive pole support on the axis of rotation on left fixed block 8 and right fixed block 9 earlier to make the positive pole support erect under on half child 7 before, then utilize the hydraulic press to provide power and make and go up the child utensil and down push down, go up half child 3 and press and locate on the positive pole support before, and continue to push down positive pole support and half child 7 before down, vertical telescoping device is compressed, and positive pole support is first bent by the extrusion this moment. During the first bending, because the anode support sinks downwards at the bent part, the left side and the right side of the anode support move towards the profiling groove 4 along the rotation of the rotating shaft, which is the function of the rotating shaft and plays a role in supporting and rolling. Of course, the rotating shaft can also be arranged in the form of a crawler belt or the like, or the fixed block can be replaced by a slide block, and the anode support is fixed on the slide block and moves along with the slide block, so that various embodiments are available. After the first bending and pressing type is completed, the upper front mould moves upwards, and the vertical telescopic device can provide restoring force to pop up the anode support for convenient taking. And then, directly placing the anode on the rear half mould, and pressing the anode support by using the lower rear mould and the upper rear mould to form a second bend, wherein the pressing process is the same as that of the first bend. The vertical telescopic device can be respectively arranged on the front and rear clamping fixtures, can also be integrally arranged to simultaneously support the front and rear clamping fixtures, and can be freely selected according to conditions.
During batch production, two anode supports can be processed simultaneously, one in the front half mould and one in the rear half mould, so that the efficiency is improved.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be able to cover the technical solutions and the inventive concepts of the present invention within the technical scope of the present invention.

Claims (6)

1. The profiling tool of the oil press of the anode support is characterized by comprising an upper mould and a lower mould, wherein the upper mould is fixed below the oil press;
the upper mould comprises a top plate (1), and an upper front half mould (3) and an upper rear half mould (11) which are fixed below the top plate (1);
the lower mould comprises a base (2), a profiling groove (4) is formed in the base (2), a left limiting convex block (5) is arranged on the left side of the profiling groove (4), and a right limiting convex block (6) is arranged on the right side of the profiling groove (4); the bottom surface of the profiling groove (4) is provided with a lower front half tire (7) and a lower rear half tire (10) through a vertical telescopic device in a supporting way;
a left fixing block (8) is arranged above the left limiting protruding block (5), a plurality of left rotating shafts extending along the front-back direction are hinged to the left fixing block (8), and the upper half parts of the left rotating shafts protrude out of the left fixing block (8);
a right fixing block (9) is arranged above the right limiting protruding block (6), a plurality of right rotating shafts extending along the front-back direction are hinged to the right fixing block (9), and the upper half parts of the right rotating shafts protrude out of the right fixing block (9);
the front side and the rear side of the lower front half tire (7) are both provided with lower front limit blocks (12) tightly attached to the lower front half tire (7);
the front side and the rear side of the lower rear half tire (10) are both provided with lower rear limiting blocks (13) tightly attached to the lower rear half tire (10).
2. The profiling tool of the oil press for the anode support according to claim 1, wherein the vertical telescopic device comprises a fixed sleeve and a telescopic sleeve; the bottom end of the fixed sleeve is vertically fixed on the bottom surface of the profiling groove (4), the bottom end of the telescopic sleeve is embedded into the fixed sleeve from an opening at the top end of the fixed sleeve, and the bottom end of the telescopic sleeve is connected with the inner side surface at the bottom end of the fixed sleeve through a spring; the top end of the telescopic sleeve is fixed on the lower front half tire (7) and the lower rear half tire (10).
3. The profiling tool for the anode support oil press according to claim 2, wherein a spring clamping groove is formed in the bottom end of the telescopic sleeve, and the top end of the spring is embedded into the spring clamping groove.
4. The profiling tool of the anode support oil press according to claim 2 or 3, wherein an inwardly concave outer limiting ring is arranged at the top end of the fixing sleeve (52), an outwardly convex inner limiting ring is arranged at the bottom end of the telescopic sleeve (51), and the inner limiting ring is limited below the outer limiting ring.
5. The profiling tooling of the anode support oil press as claimed in claim 1, wherein the lower front half tire (7) comprises a lower front horizontal plate; the upper front half tire (3) comprises an upper front horizontal plate and an upper front protruding block fixed below the right part of the upper front horizontal plate, and the upper front protruding block is pressed on the upper front horizontal plate.
6. The profiling tooling of the anode support oil press as claimed in claim 5, wherein the lower rear half tire (10) comprises a lower rear horizontal plate and a lower rear protruding block fixed above the left part of the lower rear horizontal plate; the upper rear half tire (11) comprises an upper rear horizontal plate and an upper rear protruding block fixed below the right part of the upper rear horizontal plate; the upper rear horizontal plate is pressed on the lower rear convex block, and the upper rear convex block is pressed on the lower rear horizontal plate.
CN202222919417.0U 2022-11-01 2022-11-01 Profiling tool of anode support oil press Active CN218744171U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222919417.0U CN218744171U (en) 2022-11-01 2022-11-01 Profiling tool of anode support oil press

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222919417.0U CN218744171U (en) 2022-11-01 2022-11-01 Profiling tool of anode support oil press

Publications (1)

Publication Number Publication Date
CN218744171U true CN218744171U (en) 2023-03-28

Family

ID=85644692

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222919417.0U Active CN218744171U (en) 2022-11-01 2022-11-01 Profiling tool of anode support oil press

Country Status (1)

Country Link
CN (1) CN218744171U (en)

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