CN223971247U - Auxiliary clamping and positioning structure for profile machining - Google Patents

Auxiliary clamping and positioning structure for profile machining

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Publication number
CN223971247U
CN223971247U CN202520569544.3U CN202520569544U CN223971247U CN 223971247 U CN223971247 U CN 223971247U CN 202520569544 U CN202520569544 U CN 202520569544U CN 223971247 U CN223971247 U CN 223971247U
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China
Prior art keywords
frame
profile
clamping
place
movable
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Active
Application number
CN202520569544.3U
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Chinese (zh)
Inventor
张阳浩
刘书坛
蒋振兴
薛小林
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Luoyang Xiaozhaidi Construction Technology Co ltd
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Luoyang Xiaozhaidi Construction Technology Co ltd
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Priority to CN202520569544.3U priority Critical patent/CN223971247U/en
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Publication of CN223971247U publication Critical patent/CN223971247U/en
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Abstract

The utility model relates to the field of auxiliary positioning devices for aluminum profiles, in particular to an auxiliary clamping and positioning structure for profile processing, which comprises a bearing frame group, a movable driving part, a movable frame, a profile positioning mechanism and a profile clamping mechanism, wherein the bottom of the bearing frame group is arranged on the working ground, the movable driving part is arranged at the upper part of the bearing frame group, two sides of the lower part of the movable frame are arranged on the bearing frame group and are in sliding contact with the bearing frame group, the middle of the lower part of the movable frame is arranged on the movable driving part and is in threaded contact with the movable driving part, mechanical clamping and positioning can be carried out on the aluminum profile to be processed in the using process, swinging in the processing process of the aluminum profile is avoided, and the processing quality and the safety of the processing process of the aluminum profile are effectively ensured.

Description

Auxiliary clamping and positioning structure for profile machining
Technical Field
The utility model relates to the field of aluminum profile auxiliary positioning devices, in particular to an auxiliary clamping and positioning structure for profile machining.
Background
The aluminum profile structure is light, high in strength and easy to process, the aluminum profile can be used in an assembled building structure as a structural component in a building framework, the aluminum profile is required to be subjected to adaptive processing (such as cutting processing, pore-forming processing and the like) on an operation site before being installed and used, and the aluminum profile is required to be manually pressed and positioned when being subjected to processing on an installation site in the prior art, so that the following problems exist in the specific action process:
1. Firstly, the manual positioning mode is unstable in positioning of the aluminum profile, the cutting surface of the aluminum profile is inclined in the cutting process, and hole position deviation is caused in the hole forming process, so that the subsequent installation and use of the aluminum profile are affected;
2. Secondly, the manual positioning mode needs cooperation of multiple people, and can realize compressing and positioning of the aluminum profile, so that the labor workload of operators is large, potential safety hazards exist, and personal injury can be caused to the operators once loosening occurs.
Disclosure of utility model
The utility model aims to provide an auxiliary clamping and positioning structure for processing an aluminum profile, which can mechanically clamp and position the aluminum profile to be processed in the use process, avoid swinging in the processing process of the aluminum profile and effectively ensure the processing quality and the safety of the processing operation process of the aluminum profile.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
An auxiliary clamping and positioning structure for profile machining comprises a bearing frame set, a movable driving part, a movable frame, a profile in-place mechanism and a profile clamping mechanism;
The bottom of the bearing frame group is arranged above the working floor, the upper part of the bearing frame group is provided with a movable driving part, and two sides of the lower part of the movable frame are arranged on the bearing frame group and are in sliding contact with the bearing frame group;
The movable frame is provided with a section bar in-place mechanism which is connected with the movable frame through bolt installation, and the section bar in-place mechanism is provided with a section bar clamping mechanism which is connected with the section bar in-place mechanism in an installation way.
The bearing frame group comprises a main supporting frame, a left side frame, a right side frame and transverse sliding rails, wherein the left side frame is arranged on the left side of the main supporting frame and fixedly connected with the main supporting frame, the right side frame is arranged on the right side of the main supporting frame and fixedly connected with the main supporting frame, the transverse sliding rails are paved on the main supporting frame, and the transverse sliding rails are fixedly connected with the main supporting frame through bolts.
The movable driving part comprises a driving motor, a motor seat, a rotary screw rod and a screw rod support, wherein the motor seat is arranged on the left side frame, the driving motor is arranged on the motor seat, the screw rod support is arranged on the right side frame, a support bearing is arranged on the screw rod support, the left side of the rotary screw rod is connected with the power output end of the driving motor, and the right side of the rotary screw rod is arranged on the support bearing.
The profile in-place mechanism comprises a fixed frame, an in-place cylinder, a cylinder driving rod and an in-place support, wherein the bottom of the fixed frame is arranged on a movable frame, the in-place cylinder is arranged on the fixed frame, the telescopic cylinder driving rod is arranged on the in-place cylinder, and the inner side of the in-place support is connected with the outer end of the cylinder driving rod.
Further, a longitudinal sliding rail is arranged on the fixed frame, a longitudinal sliding block is arranged at the bottom of the in-place support, and the longitudinal sliding block is arranged on the longitudinal sliding rail and is in sliding contact with the longitudinal sliding rail.
The profile clamping mechanism comprises a fixed block, a clamping block, a bearing bracket, a clamping cylinder and a cylinder pushing rod, wherein the bearing bracket and the fixed block are arranged on a in-place support and fixedly connected with the in-place support, the clamping cylinder is arranged on the bearing bracket, the cylinder pushing rod is arranged on the clamping cylinder, and the clamping block is arranged at the outer end of the cylinder pushing rod and fixedly connected with the outer end of the cylinder pushing rod.
The auxiliary clamping and positioning structure for the aluminum profile machining has the beneficial effects that when the auxiliary clamping and positioning structure is specifically operated and used, the aluminum profile can be mechanically and stably clamped and positioned through the synergistic effect of the bearing frame group, the movable driving part, the movable frame, the profile in-place mechanism, the profile clamping mechanism and other components, so that swinging in the aluminum profile machining process is avoided, the cutting and pore-forming standard degree of the aluminum profile is effectively ensured, specifically, an operator can clamp and position the aluminum profile through the clamping blocks in the profile clamping mechanism, the clamped aluminum profile is moved to an in-place station through the profile in-place mechanism, and finally the movable frame is driven by the movable driving part to drive the profile in-place mechanism, the profile clamping mechanism and the aluminum profile to the machining station for machining.
Drawings
FIG. 1 is a schematic view of the whole structure of an auxiliary clamping and positioning structure for profile processing;
FIG. 2 is a schematic view of the structure of a load-bearing frame set in the present utility model;
Fig. 3 is a schematic structural view of a movement driving part in the present utility model;
FIG. 4 is a schematic view of the profile in place mechanism of the present utility model;
Fig. 5 is a schematic structural view of a profile clamping mechanism in the present utility model;
The drawing comprises a 1-bearing frame group, a 2-moving driving part, a 3-moving frame, a 4-profile locating mechanism and a 5-profile clamping mechanism, wherein the 11-main support frame, a 12-left side frame, a 13-right side frame and a 14-transverse sliding rail, a 21-driving motor, a 22-motor seat, a 23-rotating screw rod and a 24-screw rod support, a 41-fixed frame, a 42-locating cylinder, a 43-cylinder driving rod, a 44-locating support, a 45-longitudinal sliding rail, a 51-fixed block, a 52-clamping block, a 53-bearing bracket, a 54-clamping cylinder and a 55-cylinder pushing rod.
Detailed Description
Example 1 in order to provide a better understanding of the technical solution of the present utility model, the present utility model will be further described in detail below with reference to the drawings and the detailed description, wherein when an element is referred to as being "fixed" or "disposed" on another element, it can be directly or indirectly connected to the other element. When an element is referred to as being "connected to" another element, it can be directly or indirectly connected to the other element. The terms "left" and "right" used in the present document to indicate orientation are each based on the specific structure shown in the drawings, and do not constitute a limitation on the structure.
As shown in an attached figure 1 of the specification, in order to solve the problems that the positioning of an aluminum profile is unstable and the cutting surface of the aluminum profile is easy to deviate, the hole position is deviated and the labor workload of operators is large when the manual positioning mode is adopted for positioning the aluminum profile, the auxiliary clamping and positioning structure for profile processing mainly comprises a bearing frame group 1, a movable driving part 2, a movable frame 3, a profile in-place mechanism 4 and a profile clamping mechanism 5, wherein the bearing frame group 1 is mainly used for mounting and supporting the movable driving part 2, the bottom of the bearing frame group 1 is arranged on a working ground during mounting, the movable driving part 2 is used for driving the movable frame 3 to transversely displace and adjust, two sides of the lower part of the movable frame 3 are arranged on the bearing frame group 1 and are in sliding contact with the bearing frame group 1, the lower part of the movable frame 3 is arranged on the movable driving part 2 and in threaded contact with the movable driving part 2, a in-place mechanism 4 is arranged on the movable frame 3, and the profile in-place mechanism 4 is mainly used for mounting the movable frame 4, and the clamping mechanism 5 is connected with the profile in place mechanism 5 when the clamping mechanism 4 is mounted and is used for mounting the profile in place, and the clamping mechanism 5 is connected with the profile in place mechanism 4 during mounting.
As shown in fig. 2 of the specification of the present utility model, the carrying frame set 1 for mounting and supporting the moving driving part 2 comprises a main supporting frame 11, a left side frame 12, a right side frame 13 and a transverse sliding rail 14, wherein the main supporting frame 11 is used for mounting and supporting the left side frame 12 and the right side frame 13, the left side frame 12 is mounted on the left side of the main supporting frame 11 and fixedly connected with the main supporting frame 11, the right side frame 13 is mounted on the right side of the main supporting frame 11 and fixedly connected with the main supporting frame 11, the transverse sliding rail 14 for guiding the moving frame 3 is paved on the main supporting frame 11, the transverse sliding rail 14 is connected with the main supporting frame 11 through bolts, a transverse sliding block is slidingly mounted on the transverse sliding rail 14, and the upper part of the transverse sliding block is connected with the bottom of the moving frame 3.
As shown in fig. 3 of the specification of the utility model, the movable driving part 2 for driving the movable frame 3 to realize transverse displacement adjustment comprises a driving motor 21, a motor base 22, a rotary screw rod 23 and a screw rod support 24, wherein the motor base 22 is used for mounting and supporting the driving motor 21, the motor base 22 is mounted on the left side frame 12 during mounting, the driving motor 21 for driving the rotary screw rod 23 to rotate is mounted on the motor base 22, the screw rod support 24 is mounted on the right side frame 13, a support bearing is mounted on the screw rod support 24, the left side of the rotary screw rod 23 is connected with the power output end of the driving motor 21, the right side of the rotary screw rod 23 is mounted on the support bearing, a thread sleeve 25 is assembled on the rotary screw rod 23 in a threaded manner, and the outer part of the thread sleeve 25 is mounted and connected with the bottom of the movable frame 3.
As shown in figure 4 of the specification of the utility model, the profile in-place mechanism 4 for driving the profile clamping mechanism 5 to move in place comprises a fixed frame 41, an in-place cylinder 42, a cylinder driving rod 43 and an in-place support 44, wherein the fixed frame 41 is used for carrying out installation and support on the in-place cylinder 42, when the profile clamping mechanism is installed, the bottom of the fixed frame 41 is installed on the moving frame 3, the in-place cylinder 42 for driving the cylinder driving rod 43 to stretch out and draw back is installed on the fixed frame 41, and the telescopic cylinder driving rod 43 is installed on the in-place cylinder 42 and is used for installing and connecting the inner side of the in-place support 44 for bearing the profile clamping mechanism 5 with the outer end of the cylinder driving rod 43. In order to ensure stability during movement of the in-place support 44, a longitudinal rail 45 is mounted on the fixed frame 41, a longitudinal slider is mounted on the bottom of the in-place support 44, and the longitudinal slider is mounted on the longitudinal rail 45 and is in sliding contact with the longitudinal rail 45.
As shown in fig. 5 of the specification of the utility model, the section clamping mechanism 5 for carrying out contact clamping positioning on the aluminum section comprises a fixed block 51, a clamping block 52, a bearing bracket 53, a clamping cylinder 54 and a cylinder pushing rod 55, wherein the bearing bracket 53 is used for carrying out installation and support on the clamping cylinder 54, when the bearing bracket 53 is installed, the bearing bracket 53 and the fixed block 51 are installed on a in-place support 44 and fixedly connected with the in-place support 44, the clamping cylinder 54 for driving the cylinder pushing rod 55 to stretch out and draw back is installed on the bearing bracket 53, the cylinder pushing rod 55 is installed on the clamping cylinder 54, and the clamping block 52 for carrying out clamping action on the aluminum section is installed at the outer end of the cylinder pushing rod 55 and fixedly connected with the outer end of the cylinder pushing rod 55.
The installation and use process of the auxiliary clamping and positioning structure for profile machining in specific installation and use is as follows:
1. the installation process is as follows:
Firstly, an installer can install the bearing frame set 1, specifically, can fixedly install the left side frame 12 at the left side position of the main supporting frame 11; the right side frame 13 is fixedly arranged at the right side of the main supporting frame 11; two sets of transverse sliding rails 14 for guiding the moving frame 3 are paved on the main supporting frame 11, meanwhile, transverse sliding blocks are installed on the transverse sliding rails 14 in a sliding manner, the upper parts of the transverse sliding blocks are connected with the bottom of the moving frame 3, then the moving driving part 2 is installed, during installation, a motor seat 22 can be installed on the left side frame 12, a driving motor 21 for driving the rotating screw rod 23 to rotate is installed on the motor seat 22, a screw rod support 24 is installed on the right side frame 13, a support bearing is installed on the screw rod support 24, the left side end of the rotating screw rod 23 is connected with the power output end of the driving motor 21, the right side of the rotating screw rod 23 is installed on the support bearing, meanwhile, a thread sleeve 25 is installed on the rotating screw rod 23 in a threaded manner, the outer part of the thread sleeve 25 is connected with the bottom of the moving frame 3, finally a profile clamping mechanism 4 and a profile clamping mechanism 5 are installed, the bottom of a fixed frame 41 can be installed on the moving frame 3, a driving cylinder 42 is installed on the fixed frame 41, a telescopic cylinder driving rod 43 is installed on the fixed cylinder 42, the inner side of the fixed cylinder support 44 is connected with the cylinder support 43, the driving rod 43 is driven by the driving rod is connected with the cylinder support 53, a telescopic cylinder supporting rod 53 is installed on the cylinder support 53, a clamping bracket is installed on the cylinder support 53, the outer end of the fixed carrier 53 is used for clamping the profile 55, and the outer carrier is installed on the cylinder support 53, 55 is used for clamping the profile rod is installed on the cylinder support rod 55, the installation process of the utility model is completed;
2. When the aluminum profile clamping mechanism is specifically used, an operator can place an aluminum profile to be machined between the fixed block 51 and the clamping block 52 in the profile clamping mechanism 5, then the clamping cylinder 54 in the profile clamping mechanism 5 is controlled to be started, the clamping cylinder 54 controls the cylinder pushing rod 55 to extend outwards, at the moment, the cylinder pushing rod 55 can drive the clamping block 52 to clamp the aluminum profile between the fixed block 51 and the clamping block 52, then the in-place cylinder 42 in the profile in-place mechanism 4 can be controlled to work, the in-place cylinder 42 drives the cylinder driving rod 43 to retract, at the moment, the cylinder driving rod 43 can drive the in-place support 44 to move to the in-place station, finally, the operator can control the driving motor 21 in the moving driving part 2 to start, the moving driving part 2 drives the rotating screw 23 to rotate clockwise through a motor shaft thereof, at the moment, the threaded sleeve 25 on the rotating screw 23 moves on the rotating screw 23 under the action of the thread pushing force, the moving frame 3 can drive the in-direction moving frame 3 to move the in-place mechanism 4, the profile clamping mechanism 5 and the profile in-place mechanism and the profile in the processing station to carry out treatment together with the aluminum profile. The foregoing has shown and described the basic principles, principal features and advantages of the utility model. It will be understood by those skilled in the art that the present utility model is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present utility model, and various changes and modifications may be made without departing from the spirit and scope of the utility model, which is defined in the appended claims.

Claims (6)

1. The auxiliary clamping and positioning structure for profile machining is characterized by comprising a bearing frame group (1), a movable driving part (2), a movable frame (3), a profile in-place mechanism (4) and a profile clamping mechanism (5);
A movable driving part (2) is arranged at the upper part of the bearing frame group (1), and two sides of the lower part of the movable frame (3) are arranged on the bearing frame group (1) and are in sliding contact with the bearing frame group (1), and the middle of the lower part of the movable frame (3) is arranged on the movable driving part (2) and is in threaded contact with the movable driving part (2);
The movable frame (3) is provided with a section bar in-place mechanism (4), the section bar in-place mechanism (4) is connected with the movable frame (3) through bolt installation, the section bar in-place mechanism (4) is provided with a section bar clamping mechanism (5), and the section bar clamping mechanism (5) is connected with the section bar in-place mechanism (4) in an installation mode.
2. The auxiliary clamping and positioning structure for profile machining according to claim 1 is characterized in that the bearing frame set (1) comprises a main supporting frame (11), a left side frame (12), a right side frame (13) and transverse sliding rails (14), wherein the left side frame (12) is arranged on the left side of the main supporting frame (11) and fixedly connected with the main supporting frame (11), the right side frame (13) is arranged on the right side of the main supporting frame (11) and fixedly connected with the main supporting frame (11), the transverse sliding rails (14) are paved on the main supporting frame (11), and the transverse sliding rails (14) are fixedly connected with the main supporting frame (11) through bolts.
3. The auxiliary clamping and positioning structure for profile machining according to claim 2, wherein the movable driving part (2) comprises a driving motor (21), a motor base (22), a rotary screw (23) and a screw support (24), wherein the motor base (22) is mounted on the left side frame (12), the driving motor (21) is mounted on the motor base (22), the screw support (24) is mounted on the right side frame (13), a support bearing is mounted on the screw support (24), the left side of the rotary screw (23) is connected with the power output end of the driving motor (21), and the right side of the rotary screw (23) is mounted on the support bearing.
4. The auxiliary clamping and positioning structure for profile machining according to claim 1, wherein the profile positioning mechanism (4) comprises a fixed frame (41), an in-place air cylinder (42), an air cylinder driving rod (43) and an in-place support (44), wherein the bottom of the fixed frame (41) is arranged on the movable frame (3), the in-place air cylinder (42) is arranged on the fixed frame (41), the telescopic air cylinder driving rod (43) is arranged on the in-place air cylinder (42), and the inner side of the in-place support (44) is connected with the outer end of the air cylinder driving rod (43).
5. The auxiliary clamping and positioning structure for profile machining according to claim 4, wherein a longitudinal sliding rail (45) is mounted on the fixed frame (41), and a longitudinal sliding block is mounted at the bottom of the in-place support (44), and the longitudinal sliding block is mounted on the longitudinal sliding rail (45) and is in sliding contact with the longitudinal sliding rail (45).
6. The auxiliary clamping and positioning structure for profile machining according to claim 5, wherein the profile clamping mechanism (5) comprises a fixed block (51), a clamping block (52), a bearing bracket (53), a clamping cylinder (54) and a cylinder pushing rod (55), the bearing bracket (53) and the fixed block (51) are arranged on a in-place support (44) and fixedly connected with the in-place support (44), the clamping cylinder (54) is arranged on the bearing bracket (53), the cylinder pushing rod (55) is arranged on the clamping cylinder (54), and the clamping block (52) is arranged at the outer end of the cylinder pushing rod (55) and fixedly connected with the outer end of the cylinder pushing rod (55).
CN202520569544.3U 2025-03-28 2025-03-28 Auxiliary clamping and positioning structure for profile machining Active CN223971247U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202520569544.3U CN223971247U (en) 2025-03-28 2025-03-28 Auxiliary clamping and positioning structure for profile machining

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202520569544.3U CN223971247U (en) 2025-03-28 2025-03-28 Auxiliary clamping and positioning structure for profile machining

Publications (1)

Publication Number Publication Date
CN223971247U true CN223971247U (en) 2026-03-06

Family

ID=98904380

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202520569544.3U Active CN223971247U (en) 2025-03-28 2025-03-28 Auxiliary clamping and positioning structure for profile machining

Country Status (1)

Country Link
CN (1) CN223971247U (en)

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