A shaping device suitable for aluminum profile machining
By designing aluminum profile shaping equipment with supporting slide rails and reversing components, automatic reversing and multiple corrections of aluminum profiles are achieved, solving the problem of insufficient flexibility of existing equipment and improving operating efficiency and equipment applicability.
Patent Information
- Application Number
- CN202411890730.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2044-12-20
AI Technical Summary
Existing aluminum profile shaping equipment cannot achieve automatic reversing of aluminum profiles, which limits the flexibility and scope of application of the equipment, reduces operating efficiency, and increases operating difficulty and labor intensity.
A shaping equipment including a supporting slide rail, a supporting frame, an upper pressing roller and a lower pressing roller was designed. Multiple corrections and automatic reversing of aluminum profiles were achieved through adjusting components and reversing components, and the angle and position adjustment of the aluminum profiles were controlled by a servo motor and a gear set.
It improves the efficiency and effect of aluminum profile shaping, can adapt to aluminum profiles of different sizes and shapes, realizes automatic reversing and multiple corrections, and reduces the difficulty of operation and labor intensity.
Smart Images

Figure CN119588786B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of aluminum profile processing equipment, and particularly relates to a shaping equipment suitable for aluminum profile processing. BACKGROUND
[0002] In the aluminum profile processing procedure, a shaping equipment is needed to solve a link of the shaping procedure, and the main function of the shaping equipment is to correct the shape of the aluminum profile to ensure the dimensional accuracy and appearance quality. Although the traditional aluminum profile shaping equipment can straighten and shape the aluminum profile to a certain extent, there are many limitations in the processing procedure.
[0003] The existing aluminum profile shaping equipment usually adopts a fixed structure design, that is, the aluminum profile can only pass through the shaping channel in one direction, and cannot be reversed according to actual needs. This design limits the flexibility and application range of the equipment, especially when different faces or different parts of the aluminum profile need to be shaped multiple times, the aluminum profile cannot be automatically taken out, turned over and then put back into the shaping equipment. Therefore, the efficiency is low, and the operation difficulty and labor intensity are increased. Therefore, the present application provides a shaping equipment suitable for aluminum profile processing to solve the above technical problems. SUMMARY
[0004] The present application aims at providing a shaping equipment suitable for aluminum profile processing to solve the technical problem that the existing aluminum profile shaping equipment cannot automatically reverse the aluminum profile.
[0005] To achieve the above-mentioned purpose, the technical scheme of the present application is as follows:
[0006] A shaping equipment suitable for aluminum profile processing comprises a base and a support frame arranged on the base, the support frame is provided with a support slide rail arranged transversely, the support slide rail is provided with a plurality of support frames arranged in an array along the length direction, each support frame is provided with an upper pressing roller and a lower pressing roller arranged vertically and used for extruding and shaping the aluminum profile, and a shaping channel for the aluminum profile to pass through is formed between the upper pressing roller and the lower pressing roller.
[0007] Each support frame is provided with an adjusting component used for adjusting the distance between the upper pressing roller and the lower pressing roller; the base is provided with a first reversing component and a second reversing component respectively aligned with the initial end of the shaping channel and the terminal end of the shaping channel, and the first reversing component and the second reversing component are both used for adjusting the angle in the width direction of the aluminum profile.
[0008] Further, the support frames can be synchronously moved in the same direction on the support slide rails, the ends of the support slide rails are shaped as arc-shaped slide rails, the inner sides of the support slide rails are shaped as straight slide grooves, the inner sides of the arc-shaped slide rails are shaped as arc-shaped slide grooves which are connected with the ends of the straight slide grooves, each support frame is provided with a pulley which can slide in the straight slide groove and the arc-shaped slide groove, and each two adjacent support frames are provided with a movable connecting component.
[0009] Further, the support slide rails are provided with a control component for controlling the automatic sliding of the support frame located at the initial end of the straight slide groove.
[0010] Further, the control component comprises a support member provided on the top of the support slide rail, a screw rod which is parallel to the length direction of the support slide rail is rotatably arranged on the support member, a connecting block is arranged beside the support frame located at the initial end of the straight slide groove, the connecting block is threadedly connected with the screw rod, and the support slide rail is further provided with a second servo motor, the output shaft of the second servo motor is connected with one end of the screw rod through a first bevel gear set.
[0011] Further, the adjusting component comprises a support seat provided on the top of the support frame, adjusting grooves are formed on the opposite sides of the support frame, adjusting blocks are slidably arranged in the adjusting grooves, and the two ends of the upper pressing roller are rotatably arranged with different adjusting blocks; the top of each adjusting block is fixedly provided with a vertical threaded rod, the top end of the threaded rod extends upward through the support frame, the support seat is rotatably provided with a threaded sleeve, and the threaded sleeve is threadedly connected with the threaded rod; the outer side of each threaded sleeve is provided with a driven wheel, a transmission belt is wound on the driven wheel, the support frame is provided with a first servo motor, a driving wheel which is larger than the driven wheel is arranged on the output shaft of the first servo motor, and the transmission belt is wound on the driving wheel.
[0012] Further, the first reversing component comprises a support ring and a rotating ring rotatably arranged on the support ring, the axis of rotation of the rotating ring is consistent with the straight shaping channel, and the rotating ring is internally provided with a fixed frame; the fixed frame is provided with a guide rail which is perpendicular to the axis of rotation of the rotating ring, the guide rail is provided with a first sliding block and a second sliding block which can slide towards each other or away from each other, the first sliding block is rotatably provided with a first clamping roller, and the second sliding block is rotatably provided with a second clamping roller which cooperates with the first clamping roller to clamp the aluminum profile.
[0013] Further, the fixed frame is rotatably provided with a positive and negative threaded rod which is parallel to the length direction of the guide rail, and different threaded portions of the positive and negative threaded rod are threadedly connected with the first sliding block and the second sliding block, respectively.
[0014] Further, the circumferential outer side of the rotating ring is provided with a gear ring, and the support ring is provided with a third servo motor, the output shaft of the third servo motor is provided with a reversing gear which is engaged with the gear ring.
[0015] Further, the first reversing component is tiltable arranged on the base, and the second reversing component is fixedly arranged on the base through the mounting seat.
[0016] Further, the base is provided with a fixing seat, the fixing seat is formed with a rotating groove, the support ring is provided with a rotating frame which is perpendicular to the fixing seat on the outer side, the rotating frame is provided with a rotating shaft at the bottom end, and the rotating frame is rotatably arranged in the rotating groove through the rotating shaft; one section of the rotating shaft is provided with a rotating piece, the outer side of the fixing seat is formed with a plurality of insertion holes, and the rotating piece is provided with a plug pin which can be inserted into the insertion hole.
[0017] The beneficial effects of the present application are as follows: when the aluminum profile to be shaped is placed in the shaping channel, the aluminum profile moves transversely between the upper and lower pressure rollers, and at the same time, the upper and lower pressure rollers simultaneously apply extrusion force to the upper and lower sides of the aluminum profile, realizing rapid correction of the aluminum profile to correct the straight aluminum profile, and achieving efficient correction of the aluminum profile.
[0018] When the aluminum profile moves to the end of the shaping channel, it is received by the second reversing component, i.e., the first correction is completed; then the second reversing component is operated to transport the aluminum profile to the opposite direction to the shaping channel, so that the aluminum profile moves transversely from the end of the shaping channel to the initial end of the shaping channel and is received by the first reversing component, i.e., the second correction is completed; then the first reversing component is operated to re-transport the aluminum profile to the shaping channel, and the aluminum profile is repeatedly transported through the shaping channel by control, thereby performing multiple corrections, greatly improving the efficiency during the correction process and the effect after the correction.
[0019] In addition, after the aluminum profile is separated from the shaping channel and received by the second reversing component, the second reversing component drives the aluminum profile to rotate around its own length center line by a certain angle, thereby adjusting the angle of the width direction of the aluminum profile; after the adjustment is completed, the aluminum profile is re-transported to the shaping channel, realizing correction of the other two length edges of the aluminum profile; the first reversing component also has the function of adjusting the angle of the width direction of the aluminum profile; after multiple times of the above-mentioned correction process, the aluminum profile is corrected into a straight aluminum profile; under the cooperation of the first reversing component and the second reversing component, automatic reversing processing of the aluminum profile is realized, further improving the shaping efficiency and effect of the aluminum profile. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is a three-dimensional structure schematic diagram of the present application.
[0021] Figure 2 It is a structure schematic diagram of the adjusting component and the control component of the present application.
[0022] Figure 3 It is a state schematic diagram of the present application for shaping the arc-shaped aluminum profile.
[0023] Figure 4 Structure diagram of the first reversing component of the present application.
[0024] Reference signs include:
[0025] 1, base; 2, support; 3, support slide rail; 301, straight slide groove; 31, arc-shaped slide rail; 3101, arc-shaped slide groove; 4, support frame body; 41, pulley; 5, upper compression roller; 6, lower compression roller; 7, adjusting component; 71, adjusting groove; 72, adjusting block; 73, threaded rod; 74, support seat; 75, threaded sleeve; 76, driven wheel; 77, transmission belt; 78, first servo motor; 79, driving wheel; 8, control component; 81, support; 82, screw rod; 83, connecting block; 84, second servo motor; 85, first bevel gear set; 9, movable connecting component; 10, first driving motor; 11, first transmission gear set; 12, first reversing component; 121, support ring; 122, rotating ring; 123, tooth ring; 124, third servo motor; 125, reversing gear; 126, fixed frame; 127, guide rail; 128, first sliding block; 129, second sliding block; 1210, first clamping roller; 1211, second clamping roller; 1212, reversible toothed screw rod; 1213, double-shaft motor; 1214, second bevel gear set; 1215, second driving motor; 1216, second transmission gear set; 13, second reversing component; 14, fixed seat; 15, rotating groove; 16, rotating frame; 17, rotating shaft; 18, rotating member; 19, bolt; 20, insertion hole; 21, mounting seat; 22, guide plate; 23, straight aluminum profile; 24, arc-shaped aluminum profile. DETAILED DESCRIPTION
[0026] The present application is a kind of shaping equipment for aluminum profile processing.
[0027] As Figures 1-3 shown, the embodiment of the present application includes a base 1 and a support 2 arranged on the base 1. The support 2 is provided with a transversely arranged support slide rail 3, and a plurality of support frame bodies 4 capable of synchronous movement in the same direction are movably arranged on the support slide rail 3. Each support frame body 4 is provided with an upper compression roller 5 and a lower compression roller 6 arranged above and below and used for extruding and shaping the aluminum profile, and a shaping passage for the aluminum profile is formed between the upper compression roller 5 and the lower compression roller 6. A plurality of upper compression rollers 5 are at the same level, and a plurality of lower compression rollers 6 are also at the same level. After the aluminum profile to be shaped is placed into the shaping passage, the aluminum profile moves transversely between the upper compression roller 5 and the lower compression roller 6, and at the same time, the upper compression roller 5 and the lower compression roller 6 simultaneously apply extrusion force to the upper and lower sides of the aluminum profile, thereby realizing the rapid correction of the aluminum profile to correct it into a straight aluminum profile 23, and achieving efficient correction of the aluminum profile.
[0028] Wherein, in order to make the present shaping device can be shaped processing of different size aluminum profile, each support frame body 4 are equipped with adjusting the spacing between the upper roller 5 and the lower roller 6 adjusting component 7; While operating several adjusting component 7, namely, the spacing between the upper roller 5 and the lower roller 6 can be adjusted. Equipped with a first reversing component 12 and second reversing component 13 on the base 1, respectively, aligning the shaping channel initial end and shaping channel end, the first reversing component 12 and the second reversing component 13 are used to adjust the angle of the aluminum profile width direction; Adjusting the angle of the width direction can be understood as: the width section of the object rotates around its own length center line a certain angle, then this rotation angle can be regarded as the angle of the width direction.
[0029] Specifically, the aluminum profile to be shaped is placed into the shaping channel, and the aluminum profile is controlled to move transversely between the upper roller 5 and the lower roller 6 for rapid correction. When the aluminum profile moves to the end of the shaping channel and is received by the second reversing component 13, the first correction is completed. Then the second reversing component 13 is operated to deliver the aluminum profile to the opposite direction of the shaping channel, so that the aluminum profile moves transversely from the end of the shaping channel to the initial end of the shaping channel and is received by the first reversing component 12, and the second correction is completed. Then the first reversing component 12 is operated to deliver the aluminum profile to the shaping channel again. By controlling the aluminum profile to pass through the shaping channel repeatedly, multiple corrections are performed, which greatly improves the efficiency during the correction process and the correction effect after the correction.
[0030] Furthermore, after the aluminum profile is separated from the shaping channel and is received by the second reversing component 13, the second reversing component 13 drives the aluminum profile to rotate around its own length center line a certain angle, so as to adjust the angle of the width direction of the aluminum profile. After the adjustment is completed, the aluminum profile is delivered to the shaping channel again to correct the other two length edges of the aluminum profile. The first reversing component 12 also has the function of adjusting the angle of the width direction of the aluminum profile. After multiple times of the above correction process, the aluminum profile is corrected into a straight aluminum profile 23.
[0031] The above process is to correct the straight aluminum profile 23. However, in order to correct the arc-shaped aluminum profile 24, the end of the support slide rail 3 is shaped into an arc-shaped slide rail 31, the inner side of the support slide rail 3 is shaped into a straight slide groove 301, the inner side of the arc-shaped slide rail 31 is shaped into an arc-shaped slide groove 3101 which is connected with the end of the straight slide groove 301 in sequence. Each support frame body 4 is provided with a pulley 41 which can slide in the straight slide groove 301 and the arc-shaped slide groove 3101. An active connection component 9 is arranged between the adjacent two support frame bodies 4 to rotate the adjacent two support frame bodies 4.
[0032] When each pulley 41 is placed in the straight slide groove 301, the upper rollers 5 are at the same level, and the lower rollers 6 are also at the same level (as shown in FIG. 1). When the pulley 41 is placed in the arc-shaped slide groove 3101, the upper rollers 5 are not at the same level, and the lower rollers 6 are also not at the same level (as shown in FIG. 2).Figure 2 When the straight aluminum profile 23 needs to be corrected, the support frames 4 placed at the initial end of the linear sliding groove 301 are pushed to move in the same direction, and when the support frames 4 are moved to the arc-shaped sliding rail 3101 one by one, the support frames 4 are arranged in an arc shape under the guidance of the arc-shaped sliding groove 3101, and the shaping channel between the upper pressing roller 5 and the lower pressing roller 6 is arc-shaped (as shown in FIG. 3B). Figure 3 When the arc-shaped aluminum profile 24 needs to be corrected, the support frames 4 placed at the initial end of the linear sliding groove 301 are pushed to move in the same direction, and when the support frames 4 are moved to the arc-shaped sliding rail 3101 one by one, the support frames 4 are arranged in an arc shape under the guidance of the arc-shaped sliding groove 3101, and the shaping channel between the upper pressing roller 5 and the lower pressing roller 6 is arc-shaped (as shown in FIG. 3B).
[0033] In addition, the support rail 3 is provided with a control component 8 for controlling the automatic sliding of the support frames 4 placed at the initial end of the linear sliding groove 301. By operating the control component 8, the automatic sliding of the support frames 4 placed at the initial end of the linear sliding groove 301 on the support rail 3 can be controlled, and the automatic switching between the linear arrangement and the arc-shaped arrangement of the support frames 4 can be realized. Thus, the shaping device can be adjusted to different states, and the straight aluminum profile 23 or the arc-shaped aluminum profile 24 can be corrected, thereby improving the practicability of the shaping device.
[0034] Further, the adjusting component 7 comprises a support seat 74 arranged on the top of the support frame 4, and adjusting grooves 71 are formed on the opposite sides of the support frame 4. An adjusting block 72 is slidably arranged in each adjusting groove 71, and the two ends of the upper pressing roller 5 are rotatably arranged with different adjusting blocks 72. When the adjusting blocks 72 are controlled to slide up and down in the adjusting grooves 71, the upper pressing roller 5 is driven to move up and down, thereby adjusting the distance between the upper pressing roller 5 and the lower pressing roller 6 to adapt to aluminum profiles of different sizes.
[0035] In order to control the up-and-down sliding of the adjusting blocks 72 in the adjusting grooves 71, a vertical threaded rod 73 is fixedly arranged on the top of each adjusting block 72, the top end of the threaded rod 73 extends upward through the support frame 4, the support seat 74 is rotatably provided with a threaded sleeve 75, and the threaded sleeve 75 is threadedly connected with the threaded rod 73. Since the threaded rod 73 is fixedly arranged with the adjusting block 72, when the threaded sleeve 75 is driven to rotate, the threaded rod 73 is controlled to move up and down, thereby driving the upper pressing roller 5 to move up and down.
[0036] A driven wheel 76 is arranged on the outer side of each threaded sleeve 75, a transmission belt 77 is arranged on the driven wheel 76, the support frame 4 is provided with a first servo motor 78, a driving wheel 79 larger than the driven wheel 76 is arranged on the output shaft of the first servo motor 78, and the transmission belt 77 is arranged on the driving wheel 79. When the first servo motor 78 is operated to drive the driving wheel 79 to rotate, the two driven wheels 76 on the sides are driven to rotate synchronously under the transmission of the transmission belt 77, thereby controlling the two adjusting blocks 72 on the sides to move up and down synchronously.
[0037] In the embodiment, the bottom of the support frame 4 is provided with a pair of first driving motors 10, and the two ends of the lower pressing roller 6 are connected with the output shafts of the different first driving motors 10 through first transmission gear sets 11. The first transmission gear sets 11 are composed of a pair of meshing gears. When the pair of first driving motors 10 are operated, the lower pressing roller 6 can be driven to rotate under the transmission of the first transmission gear sets 11, thereby providing the power for the aluminum profile to move in the shaping channel during the correction of the aluminum profile.
[0038] Further, the control component 8 comprises a support 81 provided on the top of the support slide rail 3, and a screw rod 82 with the length direction parallel to the length direction of the support slide rail 3 is rotatably arranged on the support 81. A connecting block 83 is arranged beside the support frame 4 at the initial end of the linear sliding groove 301, and the connecting block 83 is threadedly connected with the screw rod 82. The support slide rail 3 is further provided with a second servo motor 84, and the output shaft of the second servo motor 84 is connected with one end of the screw rod 82 through a first bevel gear set 85. The first bevel gear set 85 is composed of a pair of meshing bevel gears. When the second servo motor 84 is operated, the screw rod 82 can be driven to rotate under the transmission of the first bevel gear set 85, so as to control the support frame 4 at the initial end of the linear sliding groove 301 to slide on the support slide rail 3, and the plurality of support frames 4 can slide synchronously in the same direction.
[0039] As shown in Figure 4 The first reversing component 12 comprises a support ring 121 and a rotating ring 122 rotatably arranged on the support ring 121. The rotating ring 122 rotates around an axis line consistent with the linear shaping channel, and a fixed frame 126 is arranged in the rotating ring 122. The fixed frame 126 rotates on the support ring 121 by arranging the rotating ring 122. The fixed frame 126 is provided with a guide rail 127 with the length direction perpendicular to the axis line of the rotating ring 122. A first sliding block 128 and a second sliding block 129 are slidably arranged on the guide rail 127. The first sliding block 128 is rotatably provided with a first clamping roller 1210, and the second sliding block 129 is rotatably provided with a second clamping roller 1211 cooperating with the first clamping roller 1210 to clamp the straight aluminum profile 23.
[0040] Specifically, when the straight aluminum profile 23 passes through the straight shaping channel in the opposite direction, the end of the straight aluminum profile 23 will move between the first clamping roller 1210 and the second clamping roller 1211. Then, the first slider 128 and the second slider 129 are controlled to move towards each other, thereby driving the first clamping roller 1210 and the second slider 129 to move towards each other to clamp the straight aluminum profile 23. After clamping, the first clamping roller 1210 and the second clamping roller 1211 are driven to rotate in opposite directions, so that the straight aluminum profile 23 is separated from the straight shaping channel (at this time, the straight aluminum profile 23 is supported by the first clamping roller 1210 and the second clamping roller 1211). Then, the rotating ring 122 is controlled to rotate by a specified angle, thereby driving the straight aluminum profile 23 to rotate around the axis of the length direction of the straight aluminum profile 23, so as to adjust the angle of the width direction of the straight aluminum profile 23, and realize automatic reversing processing. After the reversing is completed, the first clamping roller 1210 and the second clamping roller 1211 are driven to rotate again, so as to re-transport the straight aluminum profile 23 after reversing to the straight shaping channel.
[0041] The first clamping roller 1210 on the first slider 128 and the second clamping roller 1211 on the second slider 129 can be provided in plurality, and the plurality of first clamping rollers 1210 are at the same horizontal level, and the plurality of second clamping rollers 1211 are at the same horizontal level. By providing the plurality of first clamping rollers 1210 and the plurality of second clamping rollers 1211, the straight aluminum profile 23 can be clamped more stably, and can be supported more stably.
[0042] In order to control the first slider 128 and the second slider 129 to move towards each other or away from each other, the fixed frame 126 is rotatably provided with a positive and negative screw rod 1212 whose length direction is parallel to the length direction of the guide rail 127. Different threaded portions of the positive and negative screw rod 1212 are respectively threadedly connected with the first slider 128 and the second slider 129. By driving the positive and negative screw rod 1212 to rotate, the first slider 128 and the second slider 129 can be controlled to move towards each other or away from each other.
[0043] In addition, the positive and negative screw rod 1212 is provided in pair, and the fixed frame 126 is provided with a double-shaft motor 1213. The two end output shafts of the double-shaft motor 1213 are respectively connected with the end portions of the different positive and negative screw rods 1212 through the second bevel gear set 1214. By driving the double-shaft motor 1213, the pair of positive and negative screw rods 1212 can be driven to rotate synchronously under the driving action of the second bevel gear set 1214.
[0044] The first slider 128 is provided with a first driving part for driving the first clamp roller 1210 to rotate, and the second slider 129 is provided with a second driving part for driving the second clamp roller 1211 to rotate. The first driving part and the second driving part are the same in structure and are respectively used for driving the first clamp roller 1210 and the second clamp roller 1211 to rotate in opposite directions. The first driving part comprises a second driving motor 1215 provided on the first slider 128. The output shaft of the second driving motor 1215 is in transmission connection with the end of the first clamp roller 1210 through a second transmission gear set 1216. The second transmission gear set 1216 is composed of a pair of gears in mesh with each other. When the second driving motor 1215 is operated, the first clamp roller 1210 can be driven to rotate under the transmission action of the second transmission gear set 1216. The second driving part drives the second clamp roller 1211 to rotate in the opposite direction, thereby achieving the receiving and conveying of the straight aluminum profile 23.
[0045] In order to control the rotation of the rotating ring 122 by a specified angle, a gear ring 123 is arranged on the outer side of the circumference of the rotating ring 122. The supporting ring 121 is provided with a third servo motor 124. The output shaft of the third servo motor 124 is provided with a reversing gear 125 in mesh with the gear ring 123. When the third servo motor 124 is operated, the rotating ring 122 can be controlled to rotate by a specified angle through the transmission of the reversing gear 125 and the reversing gear 125, thereby achieving the rotation and reversing of the straight aluminum profile 23.
[0046] In the embodiment, the first reversing part 12 is arranged on the base 1 in a tilting manner, and the second reversing part 13 is fixedly arranged on the base 1 through the mounting seat 21. The first reversing part 12 is arranged in a tilting manner in order to give way to the arc-shaped aluminum profile 24, so as to facilitate the placing of the arc-shaped aluminum profile 24 into the arc-shaped shaping channel. The first reversing part 12 and the second reversing part 13 cannot perform the reversing processing on the arc-shaped aluminum profile 24. The specific tilting arrangement is as follows:
[0047] The base 1 is provided with a fixing seat 14. The fixing seat 14 is formed with a rotating groove 15. The outer side of the supporting ring 121 is provided with a rotating frame 16 perpendicular to the fixing seat 14. The bottom end of the rotating frame 16 is provided with a rotating shaft 17. The rotating frame 16 is arranged in the rotating groove 15 in a rotating manner through the rotating shaft 17, so that the rotating angle of the rotating frame 16 is 90°. The bottom end of the rotating frame 16 rotates in the rotating groove 15, so that the supporting ring 121 rotates on the fixing seat 14. The optimal rotating angle of the rotating frame 16 is 90°. However, the rotating angle of 45° or 100° can also achieve the effect of giving way. In addition, the rotating angle can also be within the range of 45°-100°.
[0048] One section of the rotating shaft 17 is provided with a rotating member 18, and a plurality of insertion holes 20 are formed on the outer side of the fixing base 14, and the rotating member 18 is provided with a plug pin 19 which can be inserted into the insertion hole 20. When the rotating frame 16 is at different angles, the plug pin 19 will be inserted into different insertion holes 20, so that the rotating frame 16 is fixed on the fixing base 14, when it is needed to adjust the angle of the rotating frame 16, the plug pin 19 is pulled out from the insertion hole 20, then the rotating frame 16 can be rotated on the fixing base 14 by applying force.
[0049] In addition, the first reversing component 12 and the second reversing component 13 are provided with guide plates 22 for guiding the straight aluminum profile 23 on the side close to the shaping channel, so that the straight aluminum profile 23 can be accurately moved between the first clamping roller 1210 and the second clamping roller 1211.
[0050] As described above, the present application has the above-mentioned excellent characteristics, and can improve the performance of the prior art and has practicality, and becomes a product with high practical value.
[0051] The above is only the preferred embodiment of the present application, and for those skilled in the art, according to the idea of the present application, the specific embodiment and application range can be changed, and the content of the specification should not be understood as the limitation of the present application.
Claims
1. A shaping device suitable for aluminum profile processing, characterized by: The invention comprises a base (1) and a bracket (2) arranged on the base (1); a support slide rail (3) arranged transversely is installed on the bracket (2); the support slide rail (3) is provided with a plurality of support frames (4) arranged in an array along the length direction thereof; each support frame (4) is provided with an upper pressing roller (5) and a lower pressing roller (6) arranged up and down and used for extruding and shaping the aluminum profile; a shaping channel for the aluminum profile to pass through is formed between the upper pressing roller (5) and the lower pressing roller (6); Each support frame (4) is provided with an adjusting component (7) for adjusting the distance between the upper pressing roller (5) and the lower pressing roller (6); the base (1) is provided with a first reversing component (12) and a second reversing component (13) respectively aligned with the initial end and the final end of the shaping channel, and the first reversing component (12) and the second reversing component (13) are both used to adjust the angle in the width direction of the aluminum profile; A plurality of support frames (4) can move synchronously in the same direction on the support slide rail (3); an arcuate slide rail (31) is formed at the end of the support slide rail (3); a linear slide groove (301) is formed on the inner side of the support slide rail (3); an arcuate slide groove (3101) connected to the end of the linear slide groove (301) is formed on the inner side of the arcuate slide rail (31); each support frame (4) is provided with a pulley (41); the pulley (41) can slide in the linear slide groove (301) and the arcuate slide groove (3101); and a movable connecting component (9) is provided between two adjacent support frames (4) to enable the two adjacent support frames (4) to be rotatably connected; The first reversing component (12) includes a support ring (121) and a rotating ring (122) rotatably arranged on the support ring (121), the axis of rotation of the rotating ring (122) is consistent with the straight shaping channel, and a fixed frame (126) is installed in the rotating ring (122); a guide rail (127) whose length direction is perpendicular to the axis of rotation of the rotating ring (122) is provided on the fixed frame (126), and a first slider (128) and a second slider (129) that can slide in directions of approaching or moving away from each other are provided on the guide rail (127); a first clamping roller (1210) is rotatably provided on the first slider (128), and a second clamping roller (1211) that cooperates with the first clamping roller (1210) to clamp the aluminum profile is rotatably provided on the second slider (129); The fixed frame (126) is rotatably provided with a positive and negative threaded rod (1212) whose length direction is parallel to the length direction of the guide rail (127); different threaded parts on the positive and negative threaded rod (1212) are respectively threadedly connected to the first slider (128) and the second slider (129); A gear ring (123) is provided on the outer circumference of the rotating ring (122); a third servo motor (124) is installed on the supporting ring (121); and a reversing gear (125) meshing with the gear ring (123) is provided on the output shaft of the third servo motor (124); The first reversing component (12) is tiltably arranged on the base (1), and the second reversing component (13) is fixedly arranged on the base (1) via a mounting seat (21); The base (1) is provided with a fixed seat (14), the fixed seat (14) is formed with a rotation groove (15), a rotating frame (16) perpendicular to the fixed seat (14) is provided on the outer side of the support ring (121), a rotating shaft (17) is provided at the bottom end of the rotating frame (16), and the rotating frame (16) is rotatably arranged in the rotation groove (15) through the rotating shaft (17); a rotating member (18) is provided on one section of the rotating shaft (17), a plurality of insertion holes (20) are formed on the outer side of the fixed seat (14), and a plug (19) that can be inserted into the insertion hole (20) is provided on the rotating member (18) in a pluggable manner.
2. The shaping equipment suitable for aluminum profile processing according to claim 1, characterized in that: A control component (8) is mounted on the support slide rail (3) for controlling the support frame (4) disposed at the initial end of the linear slide groove (301) to automatically slide.
3. The shaping equipment suitable for aluminum profile processing according to claim 2, characterized in that: The control component (8) includes a support member (81) arranged on the top of the support slide rail (3), a screw rod (82) whose length direction is parallel to the length direction of the support slide rail (3) is rotatably provided on the support member (81), a connecting block (83) is provided on the side of the support frame (4) at the initial end of the linear slide groove (301), and the connecting block (83) is threadedly connected to the screw rod (82). The support slide rail (3) is also equipped with a second servo motor (84), and the output shaft of the second servo motor (84) is connected to one end of the screw rod (82) through a first bevel gear set (85).
4. The shaping equipment suitable for aluminum profile processing according to claim 1, characterized in that: The adjusting component (7) includes a support seat (74) arranged on the top of the supporting frame (4), and an adjusting groove (71) is formed on the opposite sides of the supporting frame (4). An adjusting block (72) is provided in each adjusting groove (71) so as to slide up and down. The two ends of the upper pressure roller (5) are respectively rotatably arranged with different adjusting blocks (72); a vertically arranged threaded rod (73) is fixed on the top of each adjusting block (72), and the top end of the threaded rod (73) passes through the supporting frame (4) and extends upward. The support seat (74) is rotatably provided with a threaded sleeve (75), and the threaded sleeve (75) is threadedly connected to the threaded rod (73); the outer side of each threaded sleeve (75) is provided with a driven wheel (76), and a transmission belt (77) is wound around the driven wheel (76); the support frame (4) is equipped with a first servo motor (78), and the output shaft of the first servo motor (78) is provided with a driving wheel (79) whose size is larger than the driven wheel (76), and the transmission belt (77) is wound around the driving wheel (79).
Citation Information
Patent Citations
Aluminum alloy profile twisting and shaping device
CN118002647A
Shaping equipment for aluminum alloy profile
CN211965461U