CN215788459U - Clamping device for cutting off and moving aluminum section - Google Patents

Clamping device for cutting off and moving aluminum section Download PDF

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Publication number
CN215788459U
CN215788459U CN202122001547.1U CN202122001547U CN215788459U CN 215788459 U CN215788459 U CN 215788459U CN 202122001547 U CN202122001547 U CN 202122001547U CN 215788459 U CN215788459 U CN 215788459U
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China
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aluminum profile
fixed
clamping
rotating shaft
retaining plate
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CN202122001547.1U
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Chinese (zh)
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许小涛
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Longtu Energy Saving Aluminum Xuancheng Co ltd
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Longtu Energy Saving Aluminum Xuancheng Co ltd
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Abstract

The utility model provides a press from both sides dress device for aluminium alloy cuts off removal, includes a supporting bench, the supporting bench top surface is fixed with the slide rail, the slide rail top surface is provided with the slip table, the slip table top surface is fixed with first motor, first motor rotation end is connected with drive and limit structure's changeover mechanism perpendicularly, changeover mechanism one side is connected with adjustable clamp dress mechanism, the slip table top surface is fixed with the stopper, changeover mechanism one side laminating in stopper one side. According to the utility model, the aluminum profiles are clamped by driving the clamping mechanism to overturn after the cut aluminum profiles are moved onto the switching mechanism, wherein the clamping mechanism can be adjusted so as to adapt to aluminum profiles with different shapes and sizes, the application range of clamping and conveying the aluminum profiles is improved, and finally the sliding table is rapidly moved on the sliding rail, so that the conveying efficiency of the cut aluminum profiles is improved.

Description

Clamping device for cutting off and moving aluminum section
Technical Field
The utility model belongs to the technical field of aluminum profile processing equipment, and particularly relates to a clamping device for cutting off and moving an aluminum profile.
Background
The aluminum profile has the characteristics of small density, light weight, high corrosion resistance, strong plasticity and the like, can be processed into different shapes so as to be used in different fields, and brings convenience to life and production processing.
After the aluminum profile is subjected to extrusion forming, the aluminum profile needs to be cut off, but in order to ensure that the cut aluminum profile does not block the aluminum profile for subsequent conveying, the cut aluminum profile needs to be clamped and conveyed in time, but when the aluminum profile is generally conveyed, the aluminum profile cannot be pertinently clamped in different shapes and sizes, the surface of the aluminum profile is easily scratched and damaged, and the surface quality of the aluminum profile is reduced.
SUMMERY OF THE UTILITY MODEL
Aiming at the defects in the prior art, the utility model provides a clamping device for cutting off and moving an aluminum profile, and the specific technical scheme is as follows:
the utility model provides a press from both sides dress device for aluminium alloy cuts off removal, includes a supporting bench, the supporting bench top surface is fixed with the slide rail, the slide rail top surface is provided with the slip table, the slip table top surface is fixed with first motor, first motor rotation end is connected with drive and limit structure's changeover mechanism perpendicularly, changeover mechanism one side is connected with adjustable clamp dress mechanism, the slip table top surface is fixed with the stopper, changeover mechanism one side laminating in stopper one side.
Further, the switching mechanism includes branch, first pivot, keeps off and props subassembly, second pivot, second motor, drive belt and box body, branch one end is connected perpendicularly in first motor and is rotated the end, and the other end is connected with the fender that is used for the aluminium alloy to support and props the subassembly, the branch lateral wall is fixed with the second motor, and the branch lateral wall vertical fixation who protects has the box body, the inside grafting of branch has first pivot, first pivot and second motor rotate and are connected with the drive belt between the end, drive belt one side sets up inside the box body, first pivot one end is run through branch and is propped the subassembly and be connected with the second pivot with keeping off, second pivot one side is connected with and presss from both sides dress mechanism.
Furthermore, the blocking and supporting assembly comprises a first blocking plate, a first bolt, a second blocking plate and a bottom supporting plate, the first blocking plate is fixed at the end part of the supporting rod, the second blocking plate is inserted at the bottom side of the first blocking plate, the side wall of the first blocking plate is connected with the first bolt, one end of the first bolt is connected inside the second blocking plate, and the bottom supporting plate is vertically fixed on the side wall of the second blocking plate.
Furthermore, the bottom supporting plate is of a trapezoidal structure with two inclined surfaces at two sides.
Further, press from both sides dress mechanism and include sleeve, second bolt, third fender board, fourth fender board, fixed block, back shaft and holding strip subassembly, the sleeve cup joints in second pivot lateral wall, the sleeve lateral wall is fixed with third fender board, third fender board one side is pegged graft and is had fourth fender board, fourth fender board lateral wall is connected with the second bolt, the second bolt runs through fourth fender board and connects inside the third fender board, third fender board one side is kept away from to the fourth fender board and the recess is seted up, the inside fixed block that is provided with of recess, the fixed block interval is provided with two, two be connected with the back shaft between the fixed block, the back shaft lateral wall has cup jointed the holding strip subassembly, the holding strip subassembly is provided with a plurality ofly.
Furthermore, the sleeve is of a semi-cylindrical structure, the inner wall of the sleeve is fixedly provided with the inserting strips, the inserting strips are inserted into the second rotating shaft, and the inserting strips are semi-circular.
Furthermore, the holding strip subassembly includes the bull stick, inserts the piece and presss from both sides end block, bull stick torsional spring is connected in the back shaft lateral wall, bull stick one end is connected with the piece of inserting, the piece of inserting outside has cup jointed the clamp end piece that is used for pressing from both sides tight aluminium alloy, it is the elasticity piece to press from both sides end block.
The utility model has the beneficial effects that:
1. the aluminum profile clamping mechanism is driven to overturn to clamp the aluminum profile after the cut aluminum profile is moved onto the switching mechanism, wherein the clamping mechanism can be adjusted to adapt to aluminum profiles with different shapes and sizes, the application range of clamping and conveying the aluminum profile is improved, and finally the sliding table is rapidly moved on the sliding rail, so that the conveying efficiency of the cut aluminum profile is improved;
2. the first motor drives the switching mechanism to rotate by taking the rotating end as a circle center, so that the clamping mechanism rotates to one side of the supporting table, the blocking of the return stroke movement of the clamping mechanism to the aluminum profile can be avoided, and the return stroke efficiency of the device is improved.
Drawings
Fig. 1 is a schematic view showing the overall structure of a clamping device for aluminum profile cutting movement according to the utility model;
FIG. 2 illustrates a cross-sectional view of the adapter coupling structure of the present invention;
FIG. 3 shows a schematic view of the clamping mechanism of the present invention;
FIG. 4 shows a cross-sectional view of the construction of a batten assembly of the utility model;
FIG. 5 is a schematic view of the connection structure of the limiting block and the support rod of the present invention;
shown in the figure: 1. a support table; 2. a slide rail; 3. a sliding table; 4. a first motor; 5. a transfer mechanism; 51. a strut; 52. a first rotating shaft; 53. a blocking and supporting assembly; 531. a first blocking plate; 532. a first bolt; 533. a second stop plate; 534. a bottom supporting plate; 54. a second rotating shaft; 55. a second motor; 56. a transmission belt; 57. a box body; 6. a limiting block; 7. a roller; 8. an aluminum profile; 9. a clamping mechanism; 91. a sleeve; 911. cutting; 92. a second bolt; 93. a third baffle plate; 94. a fourth blocking plate; 941. a groove; 95. a fixed block; 96. a support shaft; 97. a clip strip assembly; 971. a rotating rod; 972. inserting a block; 973. a clamping end block.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is further described in detail with reference to the following embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the utility model and are not intended to limit the utility model.
A clamping device for cutting off and moving an aluminum profile comprises a supporting table 1, wherein a slide rail 2 is fixed on the top surface of the supporting table 1, a sliding table 3 is arranged on the top surface of the slide rail 2, a first motor 4 is fixed on the top surface of the sliding table 3, the rotating end of the first motor 4 is vertically connected with a switching mechanism 5 of a driving and limiting structure, one side of the switching mechanism 5 is connected with an adjustable clamping mechanism 9, a limiting block 6 is fixed on the top surface of the sliding table 3, and one side of the switching mechanism 5 is attached to one side of the limiting block 6;
the aluminum profile clamping mechanism is driven to overturn to clamp the aluminum profile after the cut aluminum profile is moved onto the switching mechanism, wherein the clamping mechanism can be adjusted to adapt to aluminum profiles with different shapes and sizes, the application range of clamping and conveying the aluminum profile is improved, and finally the sliding table is rapidly moved on the sliding rail, so that the conveying efficiency of the cut aluminum profile is improved;
the first motor drives the switching mechanism to rotate by taking the rotating end as a circle center, so that the clamping mechanism rotates to one side of the supporting table, the blocking of the return stroke movement of the clamping mechanism to the aluminum profile can be avoided, and the return stroke efficiency of the device is improved.
As shown in fig. 2, the switching mechanism 5 includes a supporting rod 51, a first rotating shaft 52, a blocking and supporting assembly 53, a second rotating shaft 54, a second motor 55, a transmission belt 56 and a box body 57, one end of the supporting rod 51 is vertically connected to the rotating end of the first motor 4, the other end of the supporting rod is connected with the blocking and supporting assembly 53 for supporting an aluminum profile, the second motor 55 is fixed on the side wall of the supporting rod 51, the box body 57 is vertically fixed on the side wall of the supporting rod 51, the first rotating shaft 52 is inserted into the supporting rod 51, the transmission belt 56 is connected between the rotating ends of the first rotating shaft 52 and the second motor 55, one side of the transmission belt 56 is arranged inside the box body 57, one end of the first rotating shaft 52 penetrates through the supporting rod 51 and the blocking and supporting assembly 53 to be connected with the second rotating shaft 54, and one side of the second rotating shaft 54 is connected with the clamping mechanism 9; the switching mechanism can integrally turn under the rotating action of the first motor, and the clamping mechanism fixed on the second rotating shaft can be driven by the second motor, so that the operating efficiency is improved.
As shown in fig. 3, the blocking and supporting assembly 53 includes a first blocking plate 531, a first bolt 532, a second blocking plate 533 and a bottom supporting plate 534, the first blocking plate 531 is fixed at an end of the supporting rod 51, the second blocking plate 533 is inserted into a bottom side of the first blocking plate 531, a first bolt 532 is connected to a side wall of the first blocking plate 531, one end of the first bolt 532 is connected to an inside of the second blocking plate 533, and the bottom supporting plate 534 is vertically fixed on a side wall of the second blocking plate 533; utilize the bottom supporting plate to support the aluminium alloy to adjustable first bolt makes the distance between first fender fishplate bar and the second fender fishplate bar adjust, thereby can adapt to the aluminium alloy and press from both sides the demand of carrying the co-altitude tightly, thereby improved the flexibility of carrying.
The bottom supporting plate 534 is of a trapezoidal structure with inclined surfaces at two sides; can be when the end shoring board removes the aluminium alloy position, can easily play the top surface with the aluminium alloy shovel and support to it is more convenient to make the clamp of aluminium alloy press from both sides tight.
The clamping mechanism 9 comprises a sleeve 91, a second bolt 92, a third blocking plate 93, a fourth blocking plate 94, fixing blocks 95, a supporting shaft 96 and a clamping strip assembly 97, wherein the sleeve 91 is sleeved on the side wall of the second rotating shaft 54, the side wall of the sleeve 91 is fixed with the third blocking plate 93, one side of the third blocking plate 93 is spliced with the fourth blocking plate 94, the side wall of the fourth blocking plate 94 is connected with the second bolt 92, the second bolt 92 penetrates through the fourth blocking plate 94 to be connected inside the third blocking plate 93, one side, far away from the third blocking plate 93, of the fourth blocking plate 94 is provided with a groove 941, the inside of the groove 941 is provided with the fixing blocks 95, the two fixing blocks 95 are provided with two intervals, the supporting shaft 96 is connected between the two fixing blocks 95, the side wall of the supporting shaft 96 is sleeved with the clamping strip assembly 97, and the clamping strip assembly 97 is provided with a plurality of fixing blocks; the second rotating shaft is rotated, so that the clamping strip assembly is rotated to the top surface of the aluminum profile to be clamped, the distance between the third retaining plate and the fourth retaining plate can be adjusted by adjusting the second bolt, and the clamping degree of the clamping strip assembly to the aluminum profile can be adjusted.
The sleeve 91 is of a semi-cylindrical structure, the inner wall of the sleeve 91 is fixed with a cutting 911, the cutting 911 is inserted into the second rotating shaft 54, and the cutting 911 is semi-circular; the second rotating shaft is inserted by the inserting strips, so that the connection strength can be enhanced, and the convenience for disassembling the clamping mechanism is improved.
As shown in fig. 4, the clamping bar assembly 97 includes a rotating rod 971, an insert block 972, and a clamping end block 973, the rotating rod 971 is connected to the side wall of the support shaft 96 by a torsion spring, the insert block 972 is connected to one end of the rotating rod 971, the clamping end block 973 for clamping an aluminum profile is sleeved outside the insert block 972, and the clamping end block 973 is an elastic block; the clamping end block can be replaced at any time by utilizing the matching and the inserting of the clamping end block and the inserting block, so that the aluminum profile can be elastically clamped by utilizing the intact clamping end block, and the aluminum profile can be better clamped.
In the practice of the present invention, the catalyst is,
firstly, the adapting mechanism 5 and the clamping mechanism 9 are adjusted according to the shape structure of the aluminum profile 8 in fig. 1, 3 and 5, the second blocking plate 533 of the blocking and supporting component 53 moves in the first blocking plate 531 by rotating the first bolt 532, so that the bottom surface of the bottom supporting plate 534 is attached to the top surface of the roller 7, and then the second bolt 92 is screwed;
then, manually rotating the second rotating shaft 54 to integrally rotate the clamping mechanism 9 to the top of the bottom bracing plate 534 on which the aluminum profile 8 is placed, then rotating the second bolt 92 to adjust the distance between the fourth blocking plate 94 and the third blocking plate 93, so that the aluminum profile 8 is clamped between the clamping strip assembly 97 and the bottom bracing plate 534, and finally screwing the second bolt 92;
after the aluminum profile 8 moves onto the roller 7 and is cut, the first motor 4 is started, the switching mechanism 5 is integrally rotated to the top of the roller 7, the side wall of the support rod 51 is inserted into the concave surface of the limiting block 6 for limiting, and at the moment, the bottom supporting plate 534 scoops up the aluminum profile 8;
the second motor 55 is then started according to figures 2, 3 and 4, driven inside the box 57 by means of a belt 56 to the inside of the rod 51, so that the first rotating shaft 52 rotates inside the supporting rod 51, the first rotating shaft 52 rotates the second rotating shaft 54, the second rotating shaft 54 rotates the semicircular sleeve 91 sleeved outside, and the semicircular inserting strips 911 are inserted into the second rotating shaft 54 to increase the structural strength, and the sleeve 91 drives the third blocking plate 93 and the fourth blocking plate 94 to rotate, so that the plurality of clamping strip assemblies 97 are attached to the aluminum profile 8, in the groove 941, under the action of the elasticity of the torsion spring of the supporting shaft 96 on the clamping strip assembly 97 and the fixing block 95, the end of the rotating rod 971 can be attached and clamped with the aluminum profile 8 by using the clamping end block 973 connected with the inserting block 972, and the clamping end block 973 is made of elastic rubber and can elastically clamp the aluminum profile 8, so that the surface of the aluminum profile 8 can be fully protected in the clamping process;
at last according to fig. 1 drive slip table 3 and remove rapidly on slide rail 2 on brace table 1, utilize slip table 3 to drive the aluminium alloy 8 after pressing from both sides tightly and transfer, and the counter rotation second motor 55 again, relieve the clamp to aluminium alloy 8, then counter rotation first motor 4, make switching mechanism 5 and press from both sides the whole slip table 3 one side that rotates of dress mechanism 9, utilize slip table 3 to return rapidly on slide rail 2, and can effectively avoid the condition of bumping with aluminium alloy 8 in the process of returning, be favorable to carrying out the clamp of continuation to aluminium alloy 8 and adorn the transport.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the utility model, and any modifications, equivalents and improvements made within the spirit and principle of the present invention are intended to be included therein.

Claims (7)

1. The utility model provides a clamping device for aluminium alloy cuts off removal which characterized in that: including brace table (1), brace table (1) top surface is fixed with slide rail (2), slide rail (2) top surface is provided with slip table (3), slip table (3) top surface is fixed with first motor (4), first motor (4) rotation end is connected with drive and limit structure's changeover mechanism (5) perpendicularly, changeover mechanism (5) one side is connected with adjustable clamp and adorns mechanism (9), slip table (3) top surface is fixed with stopper (6), changeover mechanism (5) one side is laminated in stopper (6) one side.
2. A clamping device for aluminum profile cutting movement according to claim 1, characterized in that: the switching mechanism (5) comprises a support rod (51), a first rotating shaft (52), a blocking and supporting assembly (53), a second rotating shaft (54), a second motor (55), a transmission belt (56) and a box body (57), one end of the support rod (51) is vertically connected to the rotating end of the first motor (4), the other end of the support rod is connected with the blocking and supporting assembly (53) used for supporting an aluminum profile, the second motor (55) is fixed on the side wall of the support rod (51), the box body (57) is vertically fixed on the side wall of the protected support rod (51), the first rotating shaft (52) is inserted into the support rod (51), the transmission belt (56) is connected between the first rotating shaft (52) and the rotating end of the second motor (55), one side of the transmission belt (56) is arranged inside the box body (57), one end of the first rotating shaft (52) penetrates through the support rod (51) and the blocking and supporting assembly (53) to be connected with the second rotating shaft (54), one side of the second rotating shaft (54) is connected with a clamping mechanism (9).
3. A clamping device for aluminum profile cutting movement according to claim 2, characterized in that: keep off and prop subassembly (53) including first fender board (531), first bolt (532), second fender board (533) and bottom bracing board (534), first fender board (531) are fixed in branch (51) tip, first fender board (531) bottom side is pegged graft and is had second fender board (533), first fender board (531) lateral wall is connected with first bolt (532), first bolt (532) one end is connected inside second fender board (533), second fender board (533) lateral wall vertical fixation has bottom bracing board (534).
4. A clamping device for aluminum profile cutting movement according to claim 3, characterized in that: the bottom supporting plate (534) is of a trapezoidal structure with two inclined surfaces at two sides.
5. A clamping device for aluminum profile cutting movement according to claim 2, characterized in that: it includes sleeve (91), second bolt (92), third retaining plate (93), fourth retaining plate (94), fixed block (95), back shaft (96) and holding strip subassembly (97) to press from both sides dress mechanism (9), sleeve (91) cup joints in second pivot (54) lateral wall, sleeve (91) lateral wall is fixed with third retaining plate (93), third retaining plate (93) one side is pegged graft and is had fourth retaining plate (94), fourth retaining plate (94) lateral wall is connected with second bolt (92), second bolt (92) run through fourth retaining plate (94) and connect inside third retaining plate (93), fourth retaining plate (94) are kept away from third retaining plate (93) one side and are seted up recess (941), recess (941) inside is provided with fixed block (95), fixed block (95) interval is provided with two, two be connected with back shaft (96) between fixed block (95), the lateral wall of the supporting shaft (96) is sleeved with a clamping strip assembly (97), and the clamping strip assembly (97) is provided with a plurality of clamping strips.
6. A clamping device for cutting off and moving an aluminum profile according to claim 5, characterized in that: the sleeve (91) is of a semi-cylindrical structure, the inner wall of the sleeve (91) is fixedly provided with an inserting strip (911), the inserting strip (911) is inserted into the second rotating shaft (54), and the inserting strip (911) is semi-circular.
7. A clamping device for cutting off and moving an aluminum profile according to claim 5, characterized in that: the holding strip subassembly (97) include bull stick (971), insert piece (972) and press from both sides end block (973), bull stick (971) torsional spring coupling is in back shaft (96) lateral wall, bull stick (971) one end is connected with inserts piece (972), insert piece (972) outside and cup jointed the clamp end piece (973) that is used for pressing from both sides tight aluminium alloy, it is the elasticity piece to press from both sides end block (973).
CN202122001547.1U 2021-08-24 2021-08-24 Clamping device for cutting off and moving aluminum section Active CN215788459U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122001547.1U CN215788459U (en) 2021-08-24 2021-08-24 Clamping device for cutting off and moving aluminum section

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122001547.1U CN215788459U (en) 2021-08-24 2021-08-24 Clamping device for cutting off and moving aluminum section

Publications (1)

Publication Number Publication Date
CN215788459U true CN215788459U (en) 2022-02-11

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Application Number Title Priority Date Filing Date
CN202122001547.1U Active CN215788459U (en) 2021-08-24 2021-08-24 Clamping device for cutting off and moving aluminum section

Country Status (1)

Country Link
CN (1) CN215788459U (en)

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Address after: 242100 No. 19, shunting West Road, economic development zone, Langxi County, Xuancheng City, Anhui Province

Patentee after: Longtu Energy Saving Aluminum (Xuancheng) Co.,Ltd.

Address before: 242000 No.19, shunting West Road, Langxi Economic Development Zone, Xuancheng City, Anhui Province

Patentee before: LONGTU ENERGY-SAVING ALUMINUM (XUANCHENG) Co.,Ltd.