CN116833258B - Straightening device for aluminum bracket machining - Google Patents

Straightening device for aluminum bracket machining Download PDF

Info

Publication number
CN116833258B
CN116833258B CN202311101936.9A CN202311101936A CN116833258B CN 116833258 B CN116833258 B CN 116833258B CN 202311101936 A CN202311101936 A CN 202311101936A CN 116833258 B CN116833258 B CN 116833258B
Authority
CN
China
Prior art keywords
frame
gear
screw
moving block
bearing
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202311101936.9A
Other languages
Chinese (zh)
Other versions
CN116833258A (en
Inventor
王杰铭
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shandong Zhonghe Tengda Aluminum Co., Ltd.
Original Assignee
Jingjiang Yongming Auto Parts Manufacturing Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Jingjiang Yongming Auto Parts Manufacturing Co ltd filed Critical Jingjiang Yongming Auto Parts Manufacturing Co ltd
Priority to CN202311101936.9A priority Critical patent/CN116833258B/en
Publication of CN116833258A publication Critical patent/CN116833258A/en
Application granted granted Critical
Publication of CN116833258B publication Critical patent/CN116833258B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D3/00Straightening or restoring form of metal rods, metal tubes, metal profiles, or specific articles made therefrom, whether or not in combination with sheet metal parts
    • B21D3/10Straightening or restoring form of metal rods, metal tubes, metal profiles, or specific articles made therefrom, whether or not in combination with sheet metal parts between rams and anvils or abutments

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Jigs For Machine Tools (AREA)
  • Constituent Portions Of Griding Lathes, Driving, Sensing And Control (AREA)

Abstract

本发明涉及铝支架加工技术领域,尤其涉及一种铝支架加工用矫直装置。通过底板上设置对称的可向外滑动的第一框架,每个第一框架上滑动设置有第二框架,第二框架上设置有安装座,且第一框架和第二框架内均设置有动力组件,通过双头丝杠以及各个动力组件之间的配合,将底板、第一框架、第二框架以及安装座进行逐级的展开,反之收缩时进行反向的逐级收缩,以实现对两个矫直部件之间的间距调节,进而对两个矫直部件之间夹持的铝支架进行夹持后的拉伸矫直,以实现在占地面积小的情况下,对长的铝支架进行拉伸,也方便在不使用时对其进行收纳,避免占用较大的空间,造成对其他设备使用时的影响。

The invention relates to the technical field of aluminum bracket processing, and in particular to a straightening device for aluminum bracket processing. A symmetrical first frame that can slide outward is provided on the bottom plate. A second frame is slidably provided on each first frame. A mounting base is provided on the second frame. A power unit is provided in both the first frame and the second frame. Assemblies, through the cooperation between the double-headed screw and each power component, the base plate, the first frame, the second frame and the mounting base are gradually expanded, and on the contrary, they are contracted in the opposite direction step by step to realize the two The spacing between the two straightening components is adjusted, and the aluminum bracket clamped between the two straightening components is stretched and straightened after being clamped, so as to realize the long aluminum bracket while occupying a small area. Stretching it also makes it easier to store it when not in use, so as to avoid occupying a large space and affecting the use of other equipment.

Description

Straightening device for aluminum bracket machining
Technical Field
The application relates to the technical field of aluminum bracket processing, in particular to a straightening device for aluminum bracket processing.
Background
An aluminum bracket refers to a support structure or frame made of aluminum. Aluminum stents have a wide range of applications in various fields of application, including construction, industry, automotive, aerospace, and the like. If the aluminum stent is bent or deformed, straightening may be performed to restore its original shape. This can be straightened by applying a counter force or heat. Reverse force straightening generally involves securing an aluminum stent to a support and then applying force to gradually recover its shape. Heat straightening will make the aluminum support more plastic by heating it and then restoring it to its original shape using external forces, where mechanical stretching typically involves applying force using a stretcher or clamp to gradually increase the length or shape of the aluminum material, heat treating stretching will stretch the aluminum material after it is heated, and by heating the aluminum material it can increase its plasticity to straighten it.
The existing aluminum bracket stretching and straightening equipment clamps two ends of an aluminum bracket through two clamping devices, and then the distance between the two clamping devices is adjusted, so that the stretching and straightening of the aluminum bracket is realized, but the equipment needs a longer track to deal with extreme cases in aluminum brackets with different specifications, but most of the aluminum brackets do not need to be so long, so that a large amount of area is occupied by the track when the aluminum bracket is not used, the usage space of other equipment is occupied, and the utilization of factory sites is not facilitated.
Disclosure of Invention
This section is intended to outline some aspects of embodiments of the application and to briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this section as well as in the description of the application and in the title of the application, which may not be used to limit the scope of the application.
The present application has been made in view of the above problems with the conventional straightening apparatus for aluminum bracket processing.
Accordingly, the present application has an object to provide a straightening device for aluminum bracket processing, which aims to: the straightening device for aluminum bracket processing needs a longer track to cope with extreme conditions in aluminum brackets with different specifications, but most aluminum brackets do not need to be so long, so that the track occupies a large area when not used, and the usage space of other equipment is occupied, which is unfavorable for the utilization of factory sites.
In order to solve the technical problems, the application provides the following technical scheme: the straightening device for aluminum bracket processing comprises a base part, wherein the base part comprises a bottom plate and first frames sliding along the upper surface of the bottom plate, the first frames are provided with two symmetrically arranged first frames, the upper surface of each first frame is provided with a second frame in a sliding mode, each second frame is provided with a mounting seat in a sliding mode, a double-head screw rod for driving the two first frames to move is arranged in the bottom plate, a power assembly is respectively arranged in each of the first frames and the second frames, the power assembly comprises a screw rod part and a transmission part, the screw rod part is used for driving the second frames to move on the first frames and is also used for driving the mounting seats to move on the second frames, and the screw rod part is in transmission connection with the double-head screw rod through the transmission part;
the straightening component is arranged on the base component and comprises an operation table arranged on the mounting seat, a notch used for inserting the end of the aluminum bracket is arranged in the operation table, and a hydraulic cylinder used for clamping the end of the aluminum bracket is arranged in the notch.
As a preferable mode of the straightening device for aluminum bracket processing, the application comprises the following steps: the lower surface of one end of the first frame is provided with a first moving block, the double-end screw rod is in threaded connection with an inner screw hole of the first moving block, a motor is arranged in the middle of the bottom plate, and the motor is connected to the middle point of the double-end screw rod through belt transmission.
As a preferable mode of the straightening device for aluminum bracket processing, the application comprises the following steps: the power assembly is provided with two power assemblies which are respectively positioned between the bottom plate and the first frame, between the second frame and the first frame, and between the bottom plate and the first frame, wherein the power assemblies are provided with a first transmission part, and the power assemblies are positioned in the first frame and are provided with a first screw rod; the second transmission part is arranged between the second frame and the first frame, and the second screw part is arranged in the first frame.
As a preferable mode of the straightening device for aluminum bracket processing, the application comprises the following steps: the first transmission piece is including installing two first polished rods at double-end lead screw both ends, first gear is installed in the key way cooperation on the first polished rod, first bearing is installed to first gear terminal surface, the outside of first bearing is provided with and is used for promoting first spring that first gear reset.
As a preferable mode of the straightening device for aluminum bracket processing, the application comprises the following steps: the first transmission piece further comprises a second polished rod arranged at one end of the first screw rod piece, a second gear is arranged on the second polished rod in a key groove matched mode, the second gear is meshed with the first gear, a second bearing is arranged on the end face of the second gear, and a second spring used for pushing the second gear to reset is arranged on the outer side of the second bearing.
As a preferable mode of the straightening device for aluminum bracket processing, the application comprises the following steps: the second transmission piece comprises a third polished rod arranged at the other end of the first screw rod piece, a third gear is arranged on the third polished rod in a key groove matched mode, a third bearing is arranged on the end face of the third gear, and a third spring used for pushing the third gear to reset is arranged on the outer side of the third bearing.
As a preferable mode of the straightening device for aluminum bracket processing, the application comprises the following steps: the second transmission piece further comprises a fourth polished rod arranged at one end of the second screw rod piece, a fourth gear is arranged on the fourth polished rod in a key groove matched mode, the fourth gear is meshed with the third gear, a fourth bearing is arranged on the end face of the fourth gear, and a fourth spring used for pushing the fourth gear to reset is arranged on the outer side of the fourth bearing.
As a preferable mode of the straightening device for aluminum bracket processing, the application comprises the following steps: the first screw rod is in screw connection with an inner screw hole of a second moving block at the bottom of one end of the second frame, and is used for driving the second moving block to extrude the second gear and the third gear at the left end and the right end; the second screw rod is in threaded connection with an inner screw hole of a third moving block at the bottom of the mounting seat, and is used for driving the third moving block to extrude a fourth gear at one end, and the first moving block extrudes the first gear.
As a preferable mode of the straightening device for aluminum bracket processing, the application comprises the following steps: the first frame with hold the chamber has been seted up to the inside one end of second frame, hold the intracavity portion and be provided with locking support piece, locking support piece is including rotating the setting hold the intracavity portion the ratch and encircle the ratch meshing is connected with three rack.
As a preferable mode of the straightening device for aluminum bracket processing, the application comprises the following steps: the rack is first rack, second rack and third rack respectively, wherein first rack is installed the second bearing or fourth bearing one end, second rack fixedly connected with locking plate, the locking plate is followed vertical cavity in appearance chamber is gone up and down to move, and with first movable block or second movable block locks, third rack fixedly connected with support frame, the support frame is followed first frame or the spacing groove of second frame one end outer wall is gone up and down to move.
The application has the beneficial effects that: through set up symmetrical first frame that can outwards slide on the bottom plate, the slip is provided with the second frame on every first frame, be provided with the mount pad on the second frame, and all be provided with power pack in first frame and the second frame, through the cooperation between double-end lead screw and each power pack, expand bottom plate, first frame, second frame and mount pad step by step, reverse shrink step by step carries out when contracting on the contrary, in order to realize the interval adjustment between two straightening parts, and then carry out the tensile straightening after the centre gripping to the aluminium support of centre gripping between two straightening parts, in order to realize under the condition that area is little, stretch long aluminium support, also conveniently accomodate it when not using, avoid taking great space, cause the influence when using other equipment.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required for the description of the embodiments will be briefly described below, it being obvious that the drawings in the following description are only some embodiments of the present application, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art. Wherein:
FIG. 1 is a schematic view showing the whole structure of a straightening apparatus for processing an aluminum bracket according to the present application.
FIG. 2 is a schematic diagram showing the whole structure of the straightening device for aluminum bracket processing of the application.
FIG. 3 is a schematic view showing the whole structure of the straightening device for aluminum bracket processing according to the present application.
FIG. 4 is a schematic view showing a structure of a cut-out portion of the straightening device for processing an aluminum bracket according to the present application.
FIG. 5 is a schematic diagram showing a structure of a cut-out part of the straightening device for processing an aluminum bracket.
FIG. 6 is a schematic view showing a semi-sectional structure of a straightening apparatus for processing an aluminum stent according to the present application.
FIG. 7 is a schematic view showing a partially sectioned and partially sectioned structure of a straightening device for processing an aluminum bracket according to the present application.
Fig. 8 is an enlarged schematic view of the structure a in fig. 7.
Fig. 9 is an enlarged schematic view of the structure at B in fig. 8.
Detailed Description
In order that the above-recited objects, features and advantages of the present application will become more readily apparent, a more particular description of the application will be rendered by reference to specific embodiments thereof which are illustrated in the appended drawings.
In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present application, but the present application may be practiced in other ways other than those described herein, and persons skilled in the art will readily appreciate that the present application is not limited to the specific embodiments disclosed below.
Further, reference herein to "one embodiment" or "an embodiment" means that a particular feature, structure, or characteristic can be included in at least one implementation of the application. The appearances of the phrase "in one embodiment" in various places in the specification are not necessarily all referring to the same embodiment, nor are separate or alternative embodiments mutually exclusive of other embodiments.
Further, in describing the embodiments of the present application in detail, the cross-sectional view of the device structure is not partially enlarged to a general scale for convenience of description, and the schematic is only an example, which should not limit the scope of protection of the present application. In addition, the three-dimensional dimensions of length, width and depth should be included in actual fabrication.
Example 1
Referring to fig. 1-3, for a first embodiment of the present application, there is provided a straightening apparatus for aluminum bracket processing, including a base member 100, including a base plate 101 and first frames 102 sliding along an upper surface of the base plate 101, the first frames 102 being provided with two and symmetrically arranged, an upper surface of each first frame 102 being provided with a second frame 103, each second frame 103 being provided with a mounting base 104 in a sliding manner, a double-headed screw 105 driving the two first frames 102 to move being provided in the base plate 101, each of the first frames 102 and the second frames 103 being provided with a power assembly, the power assembly including a screw member 106 and a driving member 107, the screw member 106 being configured to drive the second frames 103 to move on the first frames 102, and also to drive the mounting base 104 to move on the second frames 103, the screw member 106 being in driving connection with the double-headed screw 105 through the driving member 107; straightening part 200 is installed on base part 100, and it includes the operation panel 201 of installing on mount pad 104, is provided with the breach 202 that is used for aluminium support end to insert in the operation panel 201, is provided with pneumatic cylinder 203 in breach 202 inside and is used for carrying out the centre gripping to aluminium support end.
In this embodiment, by arranging symmetrical first frames 102 capable of sliding outwards on the bottom plate 101, sliding second frames 103 are arranged on each first frame 102, mounting seats 104 are arranged on the second frames 103, power components are arranged in the first frames 102 and the second frames 103, the bottom plate 101, the first frames 102, the second frames 103 and the mounting seats 104 are expanded step by step through the cooperation between the double-headed screw 105 and each power component, and otherwise, reverse step by step shrinkage is performed during shrinkage, so that the distance between the two straightening components 200 is adjusted, and further the aluminum brackets clamped between the two straightening components 200 are stretched and straightened after being clamped. So as to stretch the long aluminum bracket under the condition of small occupied area.
The base member 100 is first expanded to a length greater than that of the aluminum bracket by the operation table 201, then the aluminum bracket is put on the support frame 109d, then the base member 100 is contracted to the end of the aluminum bracket, then one end of the aluminum bracket is installed and put into the notch 202, then the end of the aluminum bracket is clamped and fixed by the hydraulic cylinder 203, then the operation table 201 controls the base member 100 to be expanded, the base member 100 performs stretching straightening on the aluminum bracket, after the stretching is finished, the hydraulic cylinder 203 is contracted to separate the aluminum bracket, then the aluminum bracket is taken down, and the next aluminum bracket is subjected to stretching straightening.
Example 2
Referring to fig. 4-9, a second embodiment of the present application is shown, which differs from the first embodiment in that: a straightening device for aluminum bracket machining is characterized in that a first moving block 102a is arranged on the lower surface of one end of a first frame 102, a double-head screw 105 is in threaded connection with an inner screw hole of the first moving block 102a, a motor 105a is arranged in the middle of a bottom plate 101, and the motor 105a is connected to the middle point of the double-head screw 105 through belt transmission.
It should be noted that, both ends of the bottom plate 101 are provided with a rotating rod, the lower surface of the first frame 102 rotates along the rotating rod, the inner wall of the bottom plate 101 is provided with symmetrical sliding grooves, the outer surfaces of the first moving blocks 102a opposite to each other rotate to be provided with a rotating wheel, and the rotating wheels rotate in the sliding grooves to ensure that the first frame 102 moves along the bottom plate 101, and because of the rolling state between the first frame 102 and the bottom plate 101, the first frame 102 can move on the bottom plate 101 more easily.
It should be noted that, a belt wheel is disposed at the middle point of the double-end screw 105, and is in driving connection with the belt wheel of the output shaft of the motor 105a through a belt, and is in screwed connection with one end of the double-end screw 105 through an inner screw hole by the first moving block 102a, so that when the motor 105a is started, the belt drives the belt wheel to rotate so as to drive the double-end screw 105 to rotate, and the rotation of the double-end screw 105 drives the two first moving blocks 102a screwed with the belt wheel to move.
In this embodiment, the motor 105a is started to rotate, and the motor 105a drives the double-ended screw 105 to rotate along with the rotation of the double-ended screw 105 through a belt, and the rotation of the double-ended screw 105 drives the two first moving blocks 102a positioned at the left and right sections to move in opposite directions, so that the two first moving blocks are all folded towards the middle or separated towards the two ends, and the movement of the first moving blocks 102a drives the first frame 102 fixedly mounted with the first moving blocks to move along the bottom plate 101, so that the distance between the two first frames 102 on the bottom plate 101 is adjusted.
Example 3
Referring to fig. 1-9, a third embodiment of the present application is shown, which differs from the second embodiment in that: the straightening device for aluminum bracket processing is provided with two power components, wherein the two power components are respectively positioned between the bottom plate 101 and the first frame 102, and between the second frame 103 and the first frame 102, and the first transmission part 107a is arranged between the bottom plate 101 and the first frame 102, and the first screw part 106a is arranged in the first frame 102; a second transmission member 107b is provided between the second frame 103 and the first frame 102, and a second screw member 106b is provided in the first frame 102.
It should be noted that two first frames 102 are symmetrically disposed on the bottom plate 101, and a second frame 103 is further disposed on each first frame 102, so that the power components in each first frame 102 and the second frame 103 are symmetrically disposed.
Specifically, the double-headed screw 105 inside the bottom plate 101 drives the two first frames 102 to synchronously move in opposite directions, and when each first frame 102 moves to one end of the bottom plate 101, the first transmission member 107a between the first frame 102 and the bottom plate 101 transmits the power of the double-headed screw 105 to the first screw member 106a, so that the first screw member 106a inside the first frame 102 drives the second frame 103 to move on the first frame 102, and when the first screw member 106a moves the second frame 103 to one end of the first frame 102, the second transmission member 107b between the second frame 103 and the first frame 102 transmits the power of the first screw member 106a to the second screw member 106b, so that the second screw member 106b inside the second frame 103 drives the mounting seat 104 to move inside the second frame 103.
Conversely, when the second screw member 106b drives the mounting seat 104 to return to the starting end in the second frame 103 to reset, the second transmission member 107b is extruded, so that the second transmission member 107b cuts off the power of the second screw member 106b, at this time, the first screw member 106a can drive the second frame 103 to return to the starting end along the first frame 102 to reset, the first transmission member 107a is extruded, so that the first transmission member 107a cuts off the power of the first screw member 106a, and at this time, the double-headed screw 105 drives the first frame 102 to move along the bottom plate 101 to reset the two first frames 102.
Further, the first transmission member 107a comprises two first polished rods 107a-1 mounted at two ends of the double-ended screw 105, a first gear 107a-2 is mounted on the first polished rod 107a-1 in a key slot fit manner, a first bearing 107a-3 is mounted on the end face of the first gear 107a-2, and a first spring 107a-4 for pushing the first gear 107a-2 to reset is arranged on the outer side of the first bearing 107 a-3. The first transmission member 107a further comprises a second polish rod 107a-5 installed at one end of the first screw member 106a, a second gear 107a-6 is installed on the second polish rod 107a-5 in a key slot fit manner, the second gear 107a-6 is meshed with the first gear 107a-2, a second bearing 107a-7 is arranged on the end face of the second gear 107a-6, and a second spring 107a-8 for pushing the second gear 107a-6 to reset is arranged on the outer side of the second bearing 107 a-7. The second transmission member 107b comprises a third polished rod 107b-1 arranged at the other end of the first screw member 106a, a third gear 107b-2 is arranged on the third polished rod 107b-1 in a key slot fit manner, a third bearing 107b-3 is arranged on the end face of the third gear 107b-2, and a third spring 107b-4 for pushing the third gear 107b-2 to reset is arranged outside the third bearing 107 b-3. The second transmission member 107b further comprises a fourth polish rod 107b-5 installed at one end of the second screw member 106b, a fourth gear 107b-6 is installed on the fourth polish rod 107b-5 in a key slot fit manner, the fourth gear 107b-6 is meshed with the third gear 107b-2, a fourth bearing 107b-7 is arranged on the end face of the fourth gear 107b-6, and a fourth spring 107b-8 for pushing the fourth gear 107b-6 to reset is arranged on the outer side of the fourth bearing 107 b-7.
Wherein, when the first spring 107a-4 is at maximum, the first gear 107a-2 is positioned between the first polish rod 107a-1 and one end of the double-ended screw 105, and is not separated from the first polish rod 107a-1; similarly, when the second spring 107a-8 is at its maximum, the second gear 107a-6 is located between the second polished rod 107a-5 and one end of the first screw member 106a and does not disengage from the second polished rod 107a-5; similarly, when the third spring 107b-4 is at its maximum, the third gear 107b-2 is located between the third polish rod 107b-1 and one end of the first screw member 106a, and does not disengage from the third polish rod 107b-1; similarly, when the fourth spring 107b-8 is at its maximum, the fourth gear 107b-6 is located between the fourth polished rod 107b-5 and one end of the second screw member 106b and does not disengage from the fourth polished rod 107b-5. Wherein the direction of the squeezing movement between the first gear 107a-2 and the second gear 107a-6 is opposite, and the direction of the squeezing movement between the third gear 107b-2 and the fourth gear 107b-6 is opposite.
The first screw member 106a is screwed to an inner screw hole of the second moving block 103a at the bottom of one end of the second frame 103, and is used for driving the second moving block 103a to squeeze the second gear 107a-6 and the third gear 107b-2 at the left and right ends. The second screw member 106b is screwed to an inner screw hole of the third moving block 104a at the bottom of the mounting base 104, and is used for driving the third moving block 104a to squeeze the fourth gear 107b-6 at one end. The first moving block 102a presses the first gear 107 a-2.
It should be noted that, the first transmission member 107a is disposed between the base and the first frame 102, and is configured to switch the power transmission between the first screw member 106a and the double-end screw 105, when the double-end screw 105 drives the first moving block 102a to move towards the outer end, the first moving block 102a moves to the first polished rod 107a-1, all the first gears 107a-2 at the end of the double-end screw 105 are extruded to the first polished rod 107a-1, so that the first gears 107a-2 are meshed with the second gears 107a-6, and because the first gears 107a-2 are matched with the first polished rod 107a-1 through keyways, and the outer side of the first gears 107a-2 are extruded by the first bearings 107a-3 to compress the first springs 107a-4, the first polished rod 107a-1 is mounted at one end of the double-end screw 105, so that the double-end screw 105 can drive the first gears 107a-2 to rotate through the first polished rod 107a-1, and the first gears 107a-6 are driven by the first gears 107a-2 to rotate, and the second gears 107a-6 are meshed with the second gears 107a-6, and the second gears 107a-5 are also driven by the second gears 107a-5 to rotate, so that the first gears are matched with the second polished rod 107a-5 and the second frames are driven to rotate by the second gears 107 a-5. Conversely, when the double-ended screw rod 105 drives the first screw rod to rotate reversely, the first screw rod drives the second moving block 103a to return to the starting end again, the second moving block 103a moves to the second polished rod 107a-5 to extrude the second gear 107a-6, so that the second gear 107a-6 is separated from the first gear 107a-2, meanwhile, the second gear 107a-6 extrudes the second bearing 107a-7 and the second spring 107a-8 on the side face, and the double-ended screw rod 105 drives the first moving block 102a to reset. Wherein when the first moving block 102a is separated from the first gear 107a-2, the first spring 107a-4 pushes the first gear 107a-2 to move between the double-ended screw 105 and the first polished rod 107a-1 in a resetting manner through the first bearing 107 a-3; when the second moving block 103a is separated from the second gear 107a-6 or the third gear 107b-2, the second spring 107a-8 pushes the second bearing 107a-7 to push the second gear 107a-6 to reset along the second polished rod 107a-5, and the third spring 107b-4 pushes the third bearing 107b-3 to push the third gear 107b-2 to reset along the third polished rod 107 b-1.
It should be further noted that, the second transmission member 107b is disposed between the first frame 102 and the second frame 103, and is configured to switch the power transmission between the second screw member 106b and the first screw member 106a, when the first screw member 106a drives the second moving block 103a to move toward the outer end, the second moving block 103a moves to the third polished rod 107b-1, all the third gear 107b-2 at the end of the first screw member 106a is extruded to the third polished rod 107b-1, so that the third gear 107b-2 is meshed with the fourth gear 107b-6, and since the third gear 107b-2 is in key slot fit with the third polished rod 107b-1, and the outer side of the third gear 107b-2 extrudes the third spring 107b-4 through the third bearing 107b-3, the third polished rod 107b-1 is mounted at one end of the first screw member 106a, so that the first screw member 106a can drive the third gear 107b-2 through the third polished rod 107b-1 to rotate, and the fourth gear 107b-6 is also driven to rotate by the fourth gear 107b-5 b-6, so as to drive the fourth gear 107b-5 to rotate with the fourth gear 107b-6 to move the fourth gear 107b-5, thereby driving the fourth gear 107b-5 to rotate with the fourth gear 107b-5. Conversely, when the first screw member 106a drives the second screw member 106b to rotate reversely, the second screw member 106b drives the third moving block 104a to return to the starting end again, the third moving block 104a moves to the fourth polished rod 107b-5 to extrude the fourth gear 107b-6, so that the fourth gear 107b-6 is separated from the third gear 107b-2, and meanwhile, the fourth gear 107b-6 extrudes the fourth bearing 107b-7 and the fourth spring 107b-8 on the side surface, and the second screw member 106b drives the third moving block 104a to reset.
In this embodiment, the double-ended screw rod 105 drives the first moving block 102a to move towards two ends, wherein when the first moving block 102a is moved to one side of the first gear 107a-2 and extrudes the first gear 107a-2, the first moving block 102a moved by the first gear 107a-2 extrudes and moves from one end of the double-ended screw rod 105 to the first screw rod 107a-1 and moves towards the outer end along the first screw rod 107a-1, at this time, the first gear 107a-2 is meshed with the second gear 107a-6 above, and at the same time, the first moving block 102a moves to the first screw rod 107a-1, the double-ended screw rod 105 drives the first screw rod 107a-1 to rotate, the rotation of the first screw rod 107a-1 drives the first gear 107a-2 to rotate, the second gear 107a-6 is driven by the rotation of the first gear 107a-2, the rotation of the first screw rod 106a drives the second moving block 103a to move outwards along the first screw rod 107a-1, at this time, the second gear 103a frame is driven by the rotation of the second screw rod 106a to move along the second gear 103 a-5, and the second screw rod 107a-5 is driven by the rotation of the frame 102 a-5 to move along the second gear 107a-5, and the second gear 107a-5 is driven by the rotation of the second gear 107a-2 to move along the second gear 107a-5, and the frame is driven by the rotation of the second gear 107a-2 to move along the second gear 107a-6 to move along the second side of the second gear 5, and the second gear 107a frame is driven by the rotation of the second gear 107a 5 is driven by the rotation 5 to move the second gear 107a 5 to rotate 5 is driven to rotate 5 and the second gear 5 is driven to rotate 5 to rotate, the rotation of the second screw member 106b drives the third moving block 104a to move, so that the mounting seat 104 positioned at the upper end of the third moving block is driven to move along the upper surface of the second frame 103, and then the position of the straightening component 200 on the mounting seat 104 is driven, so that the straightening component 200 moves in position, and the aluminum bracket to be processed between the two straightening components 200 is stretched and straightened.
Conversely, when the motor 105a drives the double-ended screw rod 105 to rotate reversely, the double-ended screw rod 105 drives the first screw rod 106a, the first screw rod 106a drives the second screw rod 106b to rotate reversely, wherein when the second screw rod 106b drives the second moving block 103a to return to the starting end, the second moving block 103a moves to the fourth polished rod 107b-5 of the second screw rod, the fourth gear 107b-6 is extruded, the fourth gear 107b-6 is separated from the third gear 107b-2, the second screw rod 106b is disconnected, the second moving block 103a is unlocked, the first screw rod 106a drives the second moving block 103a to move to the starting end, the second moving block 103a moves from the third polished rod 107b-1 to the first screw rod 106a, then the first screw rod 106a moves to the second polished rod 107a-5 along the first screw rod 106a, the second gear 107a-6 at the second polished rod 107a-5 is extruded, the second gear 107a-6 is separated from the third gear 107b-2, the first gear 107a is separated from the first gear 107a, the first gear 107a is rotated, the double-ended screw rod 102a is simultaneously, the double-ended screw rod 102a is rotated, and the double-ended screw rod 102a is simultaneously rotated, and the double-ended screw rod 102 is separated from the first screw rod 102a is rotated, and the double-ended screw rod 102 is simultaneously.
Example 4
Referring to fig. 4-9, a fourth embodiment of the present application is shown, which differs from the third embodiment in that: a straightening device for aluminum bracket processing is characterized in that a containing cavity 108 is formed in one end of each of the first frame 102 and the second frame 103, a locking support piece 109 is arranged in the containing cavity 108, and the locking support piece 109 comprises a toothed bar 109a rotatably arranged in the containing cavity 108 and three racks 109b meshed and connected around the toothed bar 109 a. The racks 109b are a first rack 109b-1, a second rack 109b-2 and a third rack 109b-3, wherein the first rack 109b-1 is installed at one end of the second bearing 107a-7 or the fourth bearing 107b-7, the second rack 109b-2 is fixedly connected with a locking plate 109c, the locking plate 109c moves up and down along the vertical cavity of the accommodating cavity 108 and locks with the first moving block 102a or the second moving block 103a, the third rack 109b-3 is fixedly connected with a supporting frame 109d, and the supporting frame 109d moves up and down along a limiting groove on the outer wall of one end of the first frame 102 or the second frame 103.
The first moving block 102a and the second moving block 103a in the reverse rotation state are locked by providing the locking plate 109c, so that when the distance between the two straightening members 200 is narrowed, the mounting base 104, the second frame 103, and the first frame 102 are sequentially reset. The aluminum bracket is supported by the liftable support frames 109d provided at the ends of the first frame 102 and the second frame 103, and is supported by the support frames 109d on the first frame 102 when only the second frame 103 is unfolded, and is supported by the support frames 109d on the second frame 103 when the mount 104 is unfolded.
In this embodiment, when the second moving block 103a is driven by the first screw member 106a to move along the first frame 102 towards the third polished rod 107b-1, due to the separation of the second moving block 103a, the second gear 107a-6 moves along the second polished rod 107a-5 under the action of the second spring 107a-8 and the second bearing 107a-7, the outward movement of the second bearing 107a-7 pulls the first rack 109b-1 to move outward, the movement of the first rack 109b-1 drives the rack 109a to rotate, the rack 109a drives the second rack 109b-2 to descend, so that the locking plate 109c fixed by the second rack 109b-2 moves to the rear end of the first moving block 102a, locks the position of the first moving block 102a, and prevents the first moving block 102a from returning in advance when the double-headed screw 105 drives to reverse; meanwhile, the rack bar 109a drives the third rack 109b-3 to move upwards, and the third rack 109b-3 drives the supporting frame 109d to move upwards along the limit groove on the outer side of the first frame 102, so that the aluminum bracket above is supported. Conversely, when the second moving block 103a is reset under the driving of the first screw member 106a, the second gear 107a-6 is extruded, so that the second gear 107a-6 is separated from the first gear 107a-2, and the second gear 107a-7 and the second spring 107a-8 are pushed to reset, the second gear 107a-7 drives the first rack 109b-1 to reset, the first rack 109b-1 drives the toothed bar 109a to reversely rotate, the toothed bar 109a drives the second rack 109b-2 to rise, the locking member is raised, the third rack 109b-3 descends, and the supporting frame 109d descends, so that the first moving block 102a can be driven by the double-headed screw 105 to reset.
Similarly, when the third moving block 104a is driven by the second screw member 106b to move outwards along the second frame 103, due to the separation of the third moving block 104a, the fourth gear 107b-6 moves along the fourth polished rod 107b-5 under the action of the fourth spring 107b-8 and the fourth bearing 107b-7, the movement of the fourth bearing 107b-7 pulls the first rack 109b-1 to move outwards, the movement of the first rack 109b-1 drives the rack 109a to rotate, the rack 109a drives the second rack 109b-2 to descend, so that the locking plate 109c fixed by the second rack 109b-2 moves to the rear end of the first moving block 102a to lock the position of the second moving block 103a, and the second moving block 103a is prevented from returning in advance when driven by the first screw member 106a to reverse; meanwhile, the rack bar 109a drives the third rack 109b-3 to move upwards, and the third rack 109b-3 drives the supporting frame 109d to move upwards along the limit groove on the outer side of the second frame 103, so that the aluminum bracket above is supported. Conversely, when the third moving block 104a is reset under the driving of the second screw member 106b, the fourth gear 107b-6 is extruded, so that the fourth gear 107b-6 is disengaged from the third gear 107b-2, and the fourth bearing 107b-7 and the fourth spring 107b-8 are pushed to reset, the fourth bearing 107b-7 drives the first rack 109b-1 to reset, the first rack 109b-1 drives the toothed bar 109a to reversely rotate, the toothed bar 109a drives the second rack 109b-2 to rise, the locking member is raised, the third rack 109b-3 is lowered, and the supporting frame 109d is lowered, so that the second moving block 103a can be driven by the first screw member 106a to reset.
It is important to note that the construction and arrangement of the application as shown in the various exemplary embodiments is illustrative only. Although only a few embodiments have been described in detail in this disclosure, those skilled in the art who review this disclosure will readily appreciate that many modifications are possible (e.g., variations in sizes, dimensions, structures, shapes and proportions of the various elements, values of parameters (e.g., temperature, pressure, etc.), mounting arrangements, use of materials, colors, orientations, etc.) without materially departing from the novel teachings and advantages of the subject matter described in this application. For example, elements shown as integrally formed may be constructed of multiple parts or elements, the position of elements may be reversed or otherwise varied, and the nature or number of discrete elements or positions may be altered or varied. Accordingly, all such modifications are intended to be included within the scope of present application. The order or sequence of any process or method steps may be varied or re-sequenced according to alternative embodiments. In the claims, any means-plus-function clause is intended to cover the structures described herein as performing the recited function and not only structural equivalents but also equivalent structures. Other substitutions, modifications, changes and omissions may be made in the design, operating conditions and arrangement of the exemplary embodiments without departing from the scope of the present applications. Therefore, the application is not limited to the specific embodiments, but extends to various modifications that nevertheless fall within the scope of the appended claims.
Furthermore, in an effort to provide a concise description of the exemplary embodiments, all features of an actual implementation may not be described (i.e., those not associated with the best mode presently contemplated for carrying out the application, or those not associated with practicing the application).
It should be noted that the above embodiments are only for illustrating the technical solution of the present application and not for limiting the same, and although the present application has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solution of the present application may be modified or substituted without departing from the spirit and scope of the technical solution of the present application, which is intended to be covered in the scope of the claims of the present application.

Claims (1)

1. The utility model provides a straightener is used in aluminium support processing which characterized in that: comprising the steps of (a) a step of,
the base component (100) comprises a base plate (101) and first frames (102) sliding along the upper surface of the base plate (101), wherein the first frames (102) are provided with two symmetrically arranged first frames (102), the upper surface of each first frame (102) is provided with a second frame (103) in a sliding mode, each second frame (103) is provided with a mounting seat (104) in a sliding mode, a double-head screw (105) driving the two first frames (102) to move is arranged in the base plate (101), a power assembly is arranged in each of the first frames (102) and the second frames (103), the power assembly comprises a screw rod (106) and a transmission piece (107), the screw rod (106) is used for driving the second frames (103) to move on the first frames (102), and is also used for driving the mounting seats (104) to move on the second frames (103), and the screw rod (106) is connected with the double-head screw (105) through the transmission piece (107);
the straightening component (200) is arranged on the base component (100) and comprises an operation table (201) arranged on the mounting seat (104), a notch (202) for inserting the end of the aluminum bracket is arranged in the operation table (201), and a hydraulic cylinder (203) is arranged in the notch (202) and used for clamping the end of the aluminum bracket;
the lower surface of one end of the first frame (102) is provided with a first moving block (102 a), the double-end screw rod (105) is in threaded connection with an inner screw hole of the first moving block (102 a), a motor (105 a) is arranged in the middle of the bottom plate (101), and the motor (105 a) is connected to the middle point of the double-end screw rod (105) through belt transmission;
the power assembly is provided with two power assemblies, which are respectively positioned between the bottom plate (101) and the first frame (102) and between the second frame (103) and the first frame (102), and the power assemblies are positioned between the bottom plate (101) and the first frame (102) and are provided with a first transmission piece (107 a) and are positioned in the first frame (102) and are provided with a first screw rod (106 a); a second transmission member (107 b) is arranged between the second frame (103) and the first frame (102), and a second screw member (106 b) is arranged in the first frame (102);
the first transmission part (107 a) comprises two first polished rods (107 a-1) arranged at two ends of the double-headed screw rod (105), a first gear (107 a-2) is arranged on the first polished rod (107 a-1) in a key slot matching manner, a first bearing (107 a-3) is arranged on the end face of the first gear (107 a-2), and a first spring (107 a-4) for pushing the first gear (107 a-2) to reset is arranged on the outer side of the first bearing (107 a-3);
the first transmission piece (107 a) further comprises a second polished rod (107 a-5) arranged at one end of the first screw rod piece (106 a), a second gear (107 a-6) is arranged on the second polished rod (107 a-5) in a key groove matching mode, the second gear (107 a-6) is meshed with the first gear (107 a-2), a second bearing (107 a-7) is arranged on the end face of the second gear (107 a-6), and a second spring (107 a-8) for pushing the second gear (107 a-6) to reset is arranged on the outer side of the second bearing (107 a-7);
the second transmission part (107 b) comprises a third polished rod (107 b-1) arranged at the other end of the first screw rod part (106 a), a third gear (107 b-2) is arranged on the third polished rod (107 b-1) in a key slot matching way, a third bearing (107 b-3) is arranged on the end face of the third gear (107 b-2), and a third spring (107 b-4) for pushing the third gear (107 b-2) to reset is arranged on the outer side of the third bearing (107 b-3);
the second transmission part (107 b) further comprises a fourth polished rod (107 b-5) arranged at one end of the second screw rod part (106 b), a fourth gear (107 b-6) is arranged on the fourth polished rod (107 b-5) in a key slot matching mode, the fourth gear (107 b-6) is meshed with the third gear (107 b-2), a fourth bearing (107 b-7) is arranged on the end face of the fourth gear (107 b-6), and a fourth spring (107 b-8) for pushing the fourth gear (107 b-6) to reset is arranged on the outer side of the fourth bearing (107 b-7);
the first screw member (106 a) is screwed to an inner screw hole of a second moving block (103 a) at the bottom of one end of the second frame (103), and is used for driving the second moving block (103 a) to squeeze the second gear (107 a-6) and the third gear (107 b-2) at the left end and the right end; the second screw member (106 b) is in screw connection with an inner screw hole of a third moving block (104 a) at the bottom of the mounting seat (104), and is used for driving the third moving block (104 a) to extrude a fourth gear (107 b-6) at one end, and the first moving block (102 a) extrudes the first gear (107 a-2);
a containing cavity (108) is formed in one end of each of the first frame (102) and the second frame (103), a locking support piece (109) is arranged in the containing cavity (108), and each locking support piece (109) comprises a toothed bar (109 a) rotatably arranged in the containing cavity (108) and three racks (109 b) meshed and connected around the toothed bar (109 a);
the rack (109 b) is respectively a first rack (109 b-1), a second rack (109 b-2) and a third rack (109 b-3), wherein the first rack (109 b-1) is installed at one end of the second bearing (107 a-7) or the fourth bearing (107 b-7), the second rack (109 b-2) is fixedly connected with a locking plate (109 c), the locking plate (109 c) moves up and down along a vertical cavity of the accommodating cavity (108) and locks with the first moving block (102 a) or the second moving block (103 a), the third rack (109 b-3) is fixedly connected with a supporting frame (109 d), and the supporting frame (109 d) moves up and down along a limiting groove on the outer wall of one end of the first frame (102) or the second frame (103).
CN202311101936.9A 2023-08-30 2023-08-30 Straightening device for aluminum bracket machining Active CN116833258B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202311101936.9A CN116833258B (en) 2023-08-30 2023-08-30 Straightening device for aluminum bracket machining

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202311101936.9A CN116833258B (en) 2023-08-30 2023-08-30 Straightening device for aluminum bracket machining

Publications (2)

Publication Number Publication Date
CN116833258A CN116833258A (en) 2023-10-03
CN116833258B true CN116833258B (en) 2023-11-21

Family

ID=88165581

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202311101936.9A Active CN116833258B (en) 2023-08-30 2023-08-30 Straightening device for aluminum bracket machining

Country Status (1)

Country Link
CN (1) CN116833258B (en)

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN205183387U (en) * 2015-11-26 2016-04-27 南昌市雄一铝业有限公司 Aluminium alloy straightener
CN209407123U (en) * 2018-11-02 2019-09-20 沃德富泵业(无锡)有限公司 A kind of vertical multi-stage centrifugal pump axis automatic aligning mechanism
CN111804768A (en) * 2020-09-03 2020-10-23 山东商务职业学院 A tensile straightening device for metal pipe processing
CN217323285U (en) * 2022-05-07 2022-08-30 珠海及力高空作业设备有限公司 Multistage formula infinitely variable control telescopic platform
CN218310136U (en) * 2022-08-05 2023-01-17 河南华扬铝业有限公司 Aluminium alloy production straightening equipment
CN116329334A (en) * 2023-03-20 2023-06-27 衡阳鸿大精密制造有限责任公司 Straightening device for preparing low temperature resistant seamless steel pipe

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN205183387U (en) * 2015-11-26 2016-04-27 南昌市雄一铝业有限公司 Aluminium alloy straightener
CN209407123U (en) * 2018-11-02 2019-09-20 沃德富泵业(无锡)有限公司 A kind of vertical multi-stage centrifugal pump axis automatic aligning mechanism
CN111804768A (en) * 2020-09-03 2020-10-23 山东商务职业学院 A tensile straightening device for metal pipe processing
CN217323285U (en) * 2022-05-07 2022-08-30 珠海及力高空作业设备有限公司 Multistage formula infinitely variable control telescopic platform
CN218310136U (en) * 2022-08-05 2023-01-17 河南华扬铝业有限公司 Aluminium alloy production straightening equipment
CN116329334A (en) * 2023-03-20 2023-06-27 衡阳鸿大精密制造有限责任公司 Straightening device for preparing low temperature resistant seamless steel pipe

Also Published As

Publication number Publication date
CN116833258A (en) 2023-10-03

Similar Documents

Publication Publication Date Title
CN216029512U (en) Spare part presss from both sides dress workstation for new energy automobile
CN115008221A (en) Machine tool fixture for machining
CN116833258B (en) Straightening device for aluminum bracket machining
CN110842129A (en) Adjustable Workholding Device for Large Shaft Forging in Forge Workshop
CN217749026U (en) Sheet metal part positioning mechanism for automobile sheet metal
CN118950880B (en) A kind of automobile rearview mirror ring frame flattening installation device
CN220708920U (en) Tensile test mechanical detection equipment
CN221020701U (en) Limiting clamp for machining automobile brake system components
CN116766100B (en) Frock is used in staple assembly
CN220720563U (en) Cold press molding composite device for heat-insulating and decorating integrated plate
CN216096003U (en) Auxiliary clamp for stamping die
CN213317798U (en) Metal pipe drilling device with positioning and anti-deformation functions
CN111496150B (en) Rotary bending machine for probe
CN221009736U (en) Wire harness positioning clamp
CN222700357U (en) Heat treatment auxiliary tool for alloy accessories of small-sized automobile
CN114850523A (en) Mould processing equipment with multidirectional degree of freedom
CN222957612U (en) Aluminum profile end socket cutting machine
CN208484351U (en) A kind of screen printing device producing mobile phone glass film
CN222001753U (en) Hydraulic press for finish extrusion of automobile part processing die
CN220907565U (en) Auxiliary device for heat treatment of shaft part die
CN111438222A (en) An automatic forming tool for discontinuous spiral tube
CN222136616U (en) Be applied to double-deck car feeding step of aluminum alloy folding type of car as a house door
CN112140073A (en) Toughened glass processing mounting fixture
CN221497084U (en) Orthopedic frock of automobile sealing strip
CN119610627B (en) Automatic folding equipment for automobile plastic parts

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20250903

Address after: 236000 Anhui Province, Fuyang City, Yingdong District, Zaozhuang Town, Lizhuang Village, Chuzhuang 39.NO

Patentee after: Li Huihui

Country or region after: China

Address before: 214500 Jiangsu Province Taizhou City Jingjiang City Dongxing Town Zengguang Bridge West Bank Head

Patentee before: Jingjiang Yongming Auto Parts Manufacturing Co.,Ltd.

Country or region before: China

TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20260127

Address after: 252000 Shandong Province Linqing City Ciping District Zhenxing Street Huaniu Chen Village, No. 1 Building in Ciping Modern Logistics Park

Patentee after: Shandong Zhonghe Tengda Aluminum Co., Ltd.

Country or region after: China

Address before: 236000 Anhui Province, Fuyang City, Yingdong District, Zaozhuang Town, Lizhuang Village, Chuzhuang 39.NO

Patentee before: Li Huihui

Country or region before: China

TR01 Transfer of patent right