CN104439003A - Cold header - Google Patents
Cold header Download PDFInfo
- Publication number
- CN104439003A CN104439003A CN201410710876.5A CN201410710876A CN104439003A CN 104439003 A CN104439003 A CN 104439003A CN 201410710876 A CN201410710876 A CN 201410710876A CN 104439003 A CN104439003 A CN 104439003A
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- China
- Prior art keywords
- locating piece
- cylinder
- sliding panel
- cold headers
- close contact
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Abstract
The invention discloses a cold header which comprises a base, a positioning structure, a casting structure, a feeding structure, a material pushing structure and a baffle structure. The positioning structure comprises a first positioning block, a second positioning block, a third positioning block and a fourth positioning block. The casting structure comprises a first air cylinder, a fixing frame, a first connecting rod and a forming module. The feeding structure comprises a funnel, a fixing plate, a fixing frame, a second air cylinder, a first connecting plate, a third air cylinder and a second connecting plate connected with the third air cylinder. The material pushing structure comprises a fourth air cylinder, a second connecting rod connected with the fourth air cylinder, a rotating rod located above the second connecting rod, a supporting rod supporting the rotating rod, a fifth air cylinder located above the rotating rod, a moving plate located below the fifth cylinder, a third connecting rod connected with the fifth air cylinder, a first sliding plate fixedly connected with the third connecting rod, and a second sliding plate located on the right side of the first sliding plate. The baffle structure comprises a sixth air cylinder, a supporting pillar located below the six air cylinder, and a baffle located on the left side of the sixth air cylinder.
Description
Technical field
The present invention relates to a kind of process equipment, particularly relate to a kind of cold headers.
Background technology
At present, cold headers are usually used in the cold extrusion to very non-ferrous metal, existing cold headers comprise: casing, manipulator, charging ram, slide rail, wherein, slide rail and adopt complete round and smooth excessive S curved, during pusher not at the uniform velocity, easily cause charging ram second line of a couplet cover to fracture, add man-hour, will place hand-manipulated one by one for raw material on a robotic arm, operation inconvenience, efficiency is low.
Therefore, be necessary to provide a kind of new technical scheme to overcome above-mentioned defect.
Summary of the invention
The object of the present invention is to provide a kind of cold headers that can effectively solve the problems of the technologies described above.
For achieving the above object, the present invention adopts following technical scheme: a kind of cold headers, and described cold headers comprise base, be arranged at the location structure above described base, be positioned at the die casting structure above described location structure, be positioned at the feeding structure on the left of described location structure, the baffle arrangement being positioned at the pushing structure below described feeding structure and being positioned on the right side of described location structure, described location structure comprises the first locating piece, be positioned at the second locating piece below described first locating piece, the 4th locating piece being positioned at the 3rd locating piece on the left of described second locating piece and being positioned at above described 3rd locating piece, described die casting structure comprises the first cylinder, the fixed mount of fixing described first cylinder, the forming module being positioned at the head rod below described first cylinder and being positioned at below described head rod, described feeding structure comprises funnel, be positioned at the fixed head below described funnel, be positioned at the fixed mount on the left of described fixed head, be positioned at the second cylinder on the right side of described fixed mount, the first connecting plate be connected with described second cylinder, be positioned at the 3rd cylinder below described second cylinder and connect the second connecting plate of described 3rd cylinder, described pushing structure comprises four-cylinder, the second connecting rod be connected with described four-cylinder, be positioned at the swingle above described second connecting rod, support the support bar of described swingle, be positioned at the 5th cylinder above described swingle, be positioned at the movable plate below described 5th cylinder, connect the 3rd connecting rod of described 5th cylinder, the first sliding panel be fixedly connected with described 3rd connecting rod and the second sliding panel be positioned on the right side of described first sliding panel, described baffle arrangement comprises the 6th cylinder, the stop catch plate being positioned at the support column below described 6th cylinder and being positioned on the left of described 6th cylinder.
Described first locating piece, the second locating piece, the 3rd locating piece and the 4th locating piece are all in cuboid, the upper right corner of described 3rd locating piece is provided with a rectangular recess, described first locating piece and described 4th locating piece and form first passage between the second locating piece and described 3rd locating piece, form second channel between described 3rd locating piece and described 4th locating piece.
Described forming module is in described first passage.
Form third channel between described fixed head and described 4th locating piece, the under shed of described funnel aims at the upper shed of described third channel.
Described second cylinder is fixedly connected with the right surface of described fixed mount, and described first connecting plate extends in described third channel through described fixed head, the right surface of described first connecting plate and the left surface close contact of described 4th locating piece.
Described 3rd cylinder is fixedly connected with the right surface of described fixed mount, described 3rd cylinder is positioned at the below of described second cylinder, the upper surface of described second connecting plate and the lower surface close contact of described fixed head, the right surface of described second connecting plate and the left surface close contact of described 4th locating piece.
The lower surface of described movable plate and the upper surface close contact of described 3rd locating piece, described 5th cylinder is fixedly connected with the upper surface of described movable plate.
Described first sliding panel and described second sliding panel are cuboid, described first sliding panel is connected with the upper surface slide of described movable plate, the right-hand member of described second sliding panel and described movable plate is rotationally connected, the upper surface of described first sliding panel and described second sliding panel and the lower surface close contact of described 4th locating piece.
The right-hand member of described stop catch plate is connected with described 6th cylinder, the left end of described stop catch plate is between described first locating piece and described second locating piece, and the lower surface close contact of the upper surface of described stop catch plate and described first locating piece, the lower surface of described stop catch plate and the upper surface close contact of described second locating piece.
Compared with prior art, the present invention has following beneficial effect: structure of the present invention is simple, and easy to use, efficiency is higher, achieves full automation, saves manpower, has saved cost of labor.
Accompanying drawing explanation
fig. 1 is the structural representation of cold headers of the present invention.
Detailed description of the invention
As shown in Figure 1, the cold headers of the present invention baffle arrangement 6 that comprises base 1, be arranged at location structure 2 above described base 1, be positioned at die casting structure 3 above described location structure 2, be positioned at feeding structure 4 on the left of described location structure 2, be positioned at the pushing structure 5 below described feeding structure 4 and be positioned on the right side of described location structure 2.
As shown in Figure 1, described base 1 is in cuboid.The 4th locating piece 24 that described location structure 2 comprises the first locating piece 21, be positioned at the second locating piece 22 below described first locating piece 21, be positioned at the 3rd locating piece 23 on the left of described second locating piece 22 and be positioned at above described 3rd locating piece 23.Described first locating piece 21, second locating piece 22, the 3rd locating piece 23 and the 4th locating piece 24 are all in cuboid, and the upper right corner of described 3rd locating piece 23 is provided with a rectangular recess.Described first locating piece 21 and described 4th locating piece 24 and form first passage between the second locating piece 22 and described 3rd locating piece 23, form second channel between described 3rd locating piece 23 and described 4th locating piece 24.The left surface of described first locating piece 21 and the left surface of described second locating piece 22 are on same perpendicular, and the right surface of described 3rd locating piece 23 and the right surface of described 4th locating piece 24 are in same perpendicular.Described die casting structure 3 comprises the first cylinder 31, the fixed mount 32 of fixing described first cylinder 31, the forming module 34 that is positioned at the head rod 33 below described first cylinder 31 and is positioned at below described head rod 33.Described first cylinder 31 is positioned at the top of described first passage, and described fixed mount 32 is in L-type, and described fixed mount 32 is provided with two, and lays respectively at the left and right sides of described first motor 31.The lower surface of described fixed mount 32 is fixedly connected with the upper surface of described first locating piece 21 and the 4th locating piece 24 respectively.The other end of described fixed mount 32 is fixedly connected with described first motor 31.The upper end of described head rod 33 is connected with described first motor 31, and lower end is fixedly connected with the upper surface of described forming module 34.The left surface of described forming module 34 and the right intimate surface contact of described 4th locating piece 24, the right surface of described forming module 34 and the left surface close contact of described first locating piece 21.Described forming module 34 is in described first passage.
As shown in Figure 1, described feeding structure 4 comprises funnel 41, is positioned at fixed head 42 below described funnel 41, is positioned at fixed mount 43 on the left of described fixed head 42, is positioned at the second cylinder 44 on the right side of described fixed mount 43, the first connecting plate 46 be connected, is positioned at the 3rd cylinder 45 below described second cylinder 44 and connects the second connecting plate 47 of described 3rd cylinder 45 with described second cylinder 44.Third channel is formed between described fixed head 42 and described 4th locating piece 24, the under shed of described funnel 41 aims at the upper shed of described third channel, thus make described raw material enter into described third channel, described fixed mount 43 is in L-type, its one end is fixedly connected with the left surface of described fixed head 42, and the other end down.Described second cylinder 44 is fixedly connected with the right surface of described fixed mount 43, and described first connecting plate 46 extends in described third channel through described fixed head 42, the right surface of described first connecting plate 46 and the left surface close contact of described 4th locating piece 24.Described 3rd cylinder 45 is fixedly connected with the right surface of described fixed mount 43, and is positioned at the below of described second cylinder 44.The described upper surface of the second connecting plate 47 and the lower surface close contact of described fixed head 42, the right surface of described second connecting plate 47 and the left surface close contact of described 4th locating piece 24.The space size formed between described first connecting plate 46, second connecting plate 47 and fixed head 42 is shaping required raw material volume size.
As shown in Figure 1, described pushing structure 5 comprises four-cylinder 51, the second connecting rod 52 be connected with described four-cylinder 51, is positioned at swingle 53 above described second connecting rod 52, supports the support bar 54 of described swingle 53, is positioned at the 5th cylinder 55 above described swingle 53, is positioned at the movable plate 56 below described 5th cylinder 55, the 3rd connecting rod 57 connecting described 5th cylinder 55, the first sliding panel 58 be fixedly connected with described 3rd connecting rod 57 and the second sliding panel 59 be positioned on the right side of described first sliding panel 58.Described four-cylinder 51 is fixedly connected with the upper surface of described base 1.The left end of described second connecting rod 52 is connected with described four-cylinder 51, and the right-hand member of described second connecting rod 52 turns with described swingle 53 axle and is connected, thus described second connecting rod 52 can be rotated mutually with described swingle 53.Described support bar 54 is in cuboid, and its right surface is fixedly connected with the left surface of described 3rd locating piece 23, and the left end of described support bar 54 turns with the jackshaft of described swingle 53 and is connected.The upper end of described swingle 53 turns with the left end shaft of described movable plate 56 and is connected, thus described swingle 53 is rotated around the left end of described support bar 54, and then described movable plate 56 is moved left and right.The lower surface of described movable plate 56 and the upper surface close contact of described 3rd locating piece 23, described 5th cylinder 55 is fixedly connected with the upper surface of described movable plate 56, the left end of described 3rd connecting rod 57 is connected with described 5th cylinder 55, and the right-hand member of described 3rd connecting rod 57 is fixedly connected with the left surface of described first sliding panel 58.Described first sliding panel 58 and described second sliding panel 59 are in cuboid, described first sliding panel 58 is connected with the upper surface slide of described movable plate 56, described second sliding panel 59 is rotationally connected with the right-hand member of described movable plate 56, described first sliding panel 58 and the upper surface of described second sliding panel 59 and the lower surface close contact of described 4th locating piece 24.The stop catch plate 63 that described baffle arrangement 6 comprises the 6th cylinder 61, is positioned at the support column 62 below described 6th cylinder 61 and is positioned on the left of described 6th cylinder 61.Described support column 62 is in cuboid, the lower surface of described support column 62 is fixedly connected with the upper surface of described base 1, the right-hand member of described stop catch plate 63 is connected with described 6th cylinder 61, the left end of described stop catch plate 63 is between described first locating piece 21 and described second locating piece 22, and the lower surface close contact of the upper surface of described stop catch plate 63 and described first locating piece 21, the lower surface of described stop catch plate 63 and the upper surface close contact of described second locating piece 22.The upper surface of described stop catch plate 63 upper surface and described 3rd locating piece 23 is in same plane, and described stop catch plate 63 lower surface and described 3rd locating piece 23 upper right corner rectangular recess lower surface are in sustained height.Described stop catch plate 63 makes described stop catch plate 63 left end be contained in described rectangular recess under the effect of described 6th cylinder 61.
As shown in Figure 1, during described cold headers work of the present invention, first raw material is put into described funnel 41, start the second cylinder 44, described raw material is made to fall on described second connecting plate 47, then the first connecting plate 46 moves to low order end under the effect of described second cylinder 44, make the left surface close contact of the right surface of described first connecting plate 46 and described 4th locating piece 24, prevent the raw material above described first connecting plate 46 from entering into below, then the 3rd cylinder 45 is started, second connecting plate 47 is moved to the left, the raw material between described first connecting plate 46 and described second connecting plate 47 is made to fall between described first sliding panel 58 and described second sliding panel 59, then the second connecting plate 47 moves to low order end under the effect of described 3rd cylinder 45, then the 4th motor 51 is started, promote described second connecting rod 52 to want to move left, described swingle 53 is turned clockwise, described movable plate 56 is moved right, thus drive described 5th motor 55 and the first sliding panel 58 to move right with described second sliding panel 59, when the right surface on the right surface and described 3rd locating piece 23 that move to described second sliding panel 59 is in same perpendicular, described movable plate 56 stops mobile, described 5th motor 55 starts to start, promote described first sliding panel 58 by described 3rd connecting rod 57 to move right, described the second sliding shoe 59 turns clockwise under the promotion of raw material, until described second sliding panel 59 rotates to level, the now right surface of described the second sliding shoe 59 and the left surface close contact of described second locating piece 22, now the right surface of described first sliding shoe 58 and the right surface of described 4th locating piece 24 are in same perpendicular, now start the first motor 31, described forming module 34 is moved down, until the lower surface of described forming module 34 contacts with the upper surface of described second sliding panel 59, now shaping complete, start the 4th motor 51, described movable plate 56 is moved to the left, the second sliding shoe 59 is rotated counterclockwise to vertical state, start the 6th motor 61 simultaneously, described stop catch plate 63 is moved right, described shaping raw material falls into the below of described first passage, enter into subsequent processing, so far, cold headers work of the present invention is complete.
Obviously, above-described embodiment is only used to clearly example is described, and the restriction not to embodiment.For those of ordinary skill in the field, other multi-form change or variations can also be made on the basis of the above description.Here without the need to also giving exhaustive to all embodiments.And thus the apparent change of amplifying out or variation be still among the protection domain of the invention.
Claims (9)
1. cold headers, is characterized in that: described cold headers comprise base, be arranged at the location structure above described base, be positioned at the die casting structure above described location structure, be positioned at the feeding structure on the left of described location structure, the baffle arrangement being positioned at the pushing structure below described feeding structure and being positioned on the right side of described location structure, described location structure comprises the first locating piece, be positioned at the second locating piece below described first locating piece, the 4th locating piece being positioned at the 3rd locating piece on the left of described second locating piece and being positioned at above described 3rd locating piece, described die casting structure comprises the first cylinder, the fixed mount of fixing described first cylinder, the forming module being positioned at the head rod below described first cylinder and being positioned at below described head rod, described feeding structure comprises funnel, be positioned at the fixed head below described funnel, be positioned at the fixed mount on the left of described fixed head, be positioned at the second cylinder on the right side of described fixed mount, the first connecting plate be connected with described second cylinder, be positioned at the 3rd cylinder below described second cylinder and connect the second connecting plate of described 3rd cylinder, described pushing structure comprises four-cylinder, the second connecting rod be connected with described four-cylinder, be positioned at the swingle above described second connecting rod, support the support bar of described swingle, be positioned at the 5th cylinder above described swingle, be positioned at the movable plate below described 5th cylinder, connect the 3rd connecting rod of described 5th cylinder, the first sliding panel be fixedly connected with described 3rd connecting rod and the second sliding panel be positioned on the right side of described first sliding panel, described baffle arrangement comprises the 6th cylinder, the stop catch plate being positioned at the support column below described 6th cylinder and being positioned on the left of described 6th cylinder.
2. cold headers as claimed in claim 1, it is characterized in that: described first locating piece, the second locating piece, the 3rd locating piece and the 4th locating piece are all in cuboid, the upper right corner of described 3rd locating piece is provided with a rectangular recess, described first locating piece and described 4th locating piece and form first passage between the second locating piece and described 3rd locating piece, form second channel between described 3rd locating piece and described 4th locating piece.
3. cold headers as claimed in claim 2, is characterized in that: described forming module is in described first passage.
4. cold headers as claimed in claim 3, is characterized in that: form third channel between described fixed head and described 4th locating piece, the under shed of described funnel aims at the upper shed of described third channel.
5. cold headers as claimed in claim 4, it is characterized in that: described second cylinder is fixedly connected with the right surface of described fixed mount, described first connecting plate extends in described third channel through described fixed head, the right surface of described first connecting plate and the left surface close contact of described 4th locating piece.
6. cold headers as claimed in claim 5, it is characterized in that: described 3rd cylinder is fixedly connected with the right surface of described fixed mount, described 3rd cylinder is positioned at the below of described second cylinder, the upper surface of described second connecting plate and the lower surface close contact of described fixed head, the right surface of described second connecting plate and the left surface close contact of described 4th locating piece.
7. cold headers as claimed in claim 6, is characterized in that: the lower surface of described movable plate and the upper surface close contact of described 3rd locating piece, described 5th cylinder is fixedly connected with the upper surface of described movable plate.
8. cold headers as claimed in claim 7, it is characterized in that: described first sliding panel and described second sliding panel are cuboid, described first sliding panel is connected with the upper surface slide of described movable plate, the right-hand member of described second sliding panel and described movable plate is rotationally connected, the upper surface of described first sliding panel and described second sliding panel and the lower surface close contact of described 4th locating piece.
9. cold headers as claimed in claim 8, it is characterized in that: the right-hand member of described stop catch plate is connected with described 6th cylinder, the left end of described stop catch plate is between described first locating piece and described second locating piece, and the lower surface close contact of the upper surface of described stop catch plate and described first locating piece, the lower surface of described stop catch plate and the upper surface close contact of described second locating piece.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201410710876.5A CN104439003A (en) | 2014-12-01 | 2014-12-01 | Cold header |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201410710876.5A CN104439003A (en) | 2014-12-01 | 2014-12-01 | Cold header |
Publications (1)
Publication Number | Publication Date |
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CN104439003A true CN104439003A (en) | 2015-03-25 |
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ID=52886194
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201410710876.5A Pending CN104439003A (en) | 2014-12-01 | 2014-12-01 | Cold header |
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CN (1) | CN104439003A (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106091516A (en) * | 2016-08-26 | 2016-11-09 | 温州市凯宇五金有限公司 | A kind of five metals rapid chiller of making iron block |
CN115430795A (en) * | 2022-08-29 | 2022-12-06 | 邵东智能制造技术研究院有限公司 | Large-scale stainless steel hot forging forming blanking equipment |
-
2014
- 2014-12-01 CN CN201410710876.5A patent/CN104439003A/en active Pending
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106091516A (en) * | 2016-08-26 | 2016-11-09 | 温州市凯宇五金有限公司 | A kind of five metals rapid chiller of making iron block |
CN106091516B (en) * | 2016-08-26 | 2018-08-24 | 温州市凯宇五金有限公司 | A kind of rapid cooling device of hardware making iron block |
CN115430795A (en) * | 2022-08-29 | 2022-12-06 | 邵东智能制造技术研究院有限公司 | Large-scale stainless steel hot forging forming blanking equipment |
CN115430795B (en) * | 2022-08-29 | 2023-09-05 | 邵东智能制造技术研究院有限公司 | Large-scale stainless steel hot forging shaping unloading equipment |
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Legal Events
Date | Code | Title | Description |
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C06 | Publication | ||
PB01 | Publication | ||
WD01 | Invention patent application deemed withdrawn after publication |
Application publication date: 20150325 |
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WD01 | Invention patent application deemed withdrawn after publication |