Floor type boring machine for machining coiling machine

By designing a floor-mounted boring machine with boring and docking moving components, the complexity and danger of machining caused by the high weight of the shaft rollers were solved, enabling stable boring and convenient transfer of the shaft rollers and improving machining safety.

CN223718363UActive Publication Date: 2025-12-26TANGSHAN XINKUN MASCH EQUIP CO LTD
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Patent Information

Application Number
CN202520238625.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-14
Publication Date
2025-12-26
Estimated Expiration
2035-02-14

AI Technical Summary

Technical Problem

When processing the shaft rollers of the coiler, the shaft rollers are heavy, and the process of transporting them to the boring machine for processing is complex and dangerous, requiring lifting equipment for transfer and installation.

Method used

A floor-type boring machine including a boring assembly and a docking moving assembly was designed. The boring assembly achieves stable boring through structures such as a vertical lead screw, lifting seat, rotary table, and shaft. The docking moving assembly facilitates the transfer and stable connection of the shaft rollers through structures such as a second lead screw, a third slide rail, and a telescopic cylinder.

Benefits of technology

It enables stable boring and convenient transfer of shaft rollers, reduces the complexity of transportation and installation, and improves safety.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223718363U_ABST
    Figure CN223718363U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of boring machines, and provides a floor type boring machine for processing a coiling machine, which comprises a rack and a movable table, the movable table is arranged on the rack, a boring assembly is arranged on the rack, a movable base is arranged on the rack, a butt joint movable assembly is arranged between the movable base and the rack, and the boring assembly comprises a plurality of sliding rails. The sliding rails are arranged in the machine frame, a vertical lead screw is arranged in the machine frame, the vertical lead screw is controlled by a motor to rotate, a lifting base is connected to the sliding rails in a sliding mode, and the lifting base is connected with the vertical lead screw in a threaded fit mode. According to the technical scheme, the problems that in the prior art, the weight of the shaft roller is very high, although the shaft roller does not need to be fixed during machining, the process of conveying the shaft roller to a boring machine for machining is troublesome, various hoisting equipment is needed for transferring and mounting, the process is complex, and danger is generated are solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of boring machine technology, specifically, relates to a floor type boring machine for processing coiler. BACKGROUND

[0002] Boring machines are divided into horizontal boring machines, floor type boring and milling machines, diamond boring machines and coordinate boring machines, and are mainly used for boring machines that use boring tools to bore existing precast holes in workpieces. The boring tool rotates as the main movement, and the boring tool or the workpiece moves as the feed movement. It is mainly used for machining high-precision holes or completing the machining of multiple holes in one positioning. In addition, it can also be used for machining other machined surfaces related to hole machining. The workpiece is usually fixed above the bearing table of the floor type boring machine and positioned by bolts and other parts. When machining the shaft roll of the coiler, the weight of the shaft roll is very high. Although it does not need to be fixed during machining, the process of transporting it to the boring machine for machining is relatively troublesome, various lifting equipment is needed for transfer and installation, the process is relatively complex, and it is dangerous.

[0003] Therefore, the above problems are improved. CONTENT OF THE UTILITY MODEL

[0004] The utility model provides a floor type boring machine for processing coiler, which solves the problem of the high weight of the shaft roll in the related art, the process of transporting it to the boring machine for machining is relatively troublesome, various lifting equipment is needed for transfer and installation, the process is relatively complex, and it is dangerous.

[0005] The technical scheme of the utility model is as follows: including

[0006] A machine frame and a moving table, the moving table is arranged on the machine frame;

[0007] A boring assembly, the boring assembly is arranged on the machine frame;

[0008] A moving base and a docking moving assembly, the moving base is arranged on the machine frame, and the docking moving assembly is arranged between the moving base and the machine frame;

[0009] The boring assembly comprises a plurality of vertical sliding rails, the vertical sliding rails are arranged in the machine frame, a vertical lead screw is arranged in the machine frame, the vertical lead screw is controlled to rotate by a motor, a lifting seat is slidably connected to the vertical sliding rail, and the lifting seat is connected to the vertical lead screw in a threaded manner.

[0010] As a further technical scheme, a main shaft motor is installed on the side surface of the lifting seat, a rotating disc is rotatably connected in the lifting seat, the rotating disc is connected to the output end of the main shaft motor, and a shaft rod is installed on the rotating disc.

[0011] As a further technical scheme, the shaft rod front end is provided with a slot, a pair of thread grooves are formed in the slot, the moving table surface is provided with a telescopic rod, the telescopic rod upper end is provided with a shaft sleeve, and the shaft sleeve is rotatably sleeved and connected outside the shaft rod.

[0012] As a further technical scheme, the docking moving assembly comprises a second screw rod, the second screw rod is installed at the inner bottom of the rack, a pair of second sliding rails are arranged in the rack, and the moving table is slidably connected on the second sliding rails.

[0013] As a further technical scheme, the moving table is connected with the second screw rod through thread cooperation, a pair of third sliding rails are arranged on the outer surface of the rack, a moving base is slidably connected on the third sliding rails, and an outer groove is formed in the surface of the moving base.

[0014] As a further technical scheme, the outer groove is wrapped outside the moving table, a pair of rectangular grooves are formed in the surface of the moving table, a telescopic cylinder is arranged in the rectangular groove, a docking block is arranged at the output end of the telescopic cylinder, and the docking block is inserted and connected with the inner surface of the outer groove through the inner side of the rectangular groove.

[0015] As a further technical scheme, a pair of hydraulic cylinders are arranged at both ends of the bottom of the moving base, a stand is arranged at the output end of the hydraulic cylinder, a side groove is formed in the side surface of the stand, a limiting hole is formed in the top of the side groove, a sleeve frame is inserted and connected in the side groove and the limiting hole, and a pair of moving frames are arranged at the bottom of the moving base.

[0016] As a further technical scheme, the shaft rod surface is provided with a relief groove, and the relief groove has a spiral line structure.

[0017] As a further technical scheme, the sleeve frame is bent downward at both ends and has a V-shaped structure as a whole.

[0018] The working principle and beneficial effects of the utility model are as follows:

[0019] 1. The boring assembly is arranged in the utility model, and through the interaction of the vertical screw rod, the lifting seat, the rotating disc, the shaft rod, the telescopic rod and the shaft sleeve and the like, the shaft rod can also be kept in a stable state under the condition of being too long, and vibration does not occur, so that the boring stability is good.

[0020] 2. The docking moving assembly is arranged in the utility model, and through the interaction of the second screw rod, the third sliding rail, the telescopic cylinder, the docking block, the hydraulic cylinder and the sleeve frame and the like, the moving base can be separated from the rack, the shaft roller is convenient to transfer, can be quickly connected, can be kept in a stable moving state, has good supporting stability, and the safety of the equipment conveying is higher. DRAWINGS

[0021] The utility model will be described in further detail below in combination with the drawings and specific embodiments.

[0022] Figure 1 It is a structural schematic view of the utility model;

[0023] Figure 2 It is an isometric view of the utility model;

[0024] Figure 3 It is another isometric view of the utility model;

[0025] Figure 4 It is a sectional view of the utility model;

[0026] Figure 5 It is another sectional view of the utility model;

[0027] In the figure: 1, rack; 2, mobile station; 3, mobile base; 4, boring assembly; 4-1, vertical slide rail; 4-2, vertical screw; 4-3, lifting seat; 4-4, main shaft motor; 4-5, rotary disc; 4-6, shaft rod; 4-7, slot; 4-8, threaded groove; 4-9, telescopic rod; 4-10, shaft sleeve; 5, butt joint mobile assembly; 5-1, second screw; 5-2, second slide rail; 5-3, third slide rail; 5-4, outer groove; 5-5, rectangular groove; 5-6, telescopic cylinder; 5-7, butt joint block; 5-8, hydraulic cylinder; 5-9, stand; 5-10, side groove; 5-11, limit hole; 5-12, sleeve frame; 5-13, moving frame; 6, row of cutting grooves. DETAILED DESCRIPTION

[0028] The technical solutions in the embodiments of the utility model will be described clearly and completely below in combination with the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor are involved in the protection scope of the utility model.

[0029] As shown in Figures 1-5 the embodiment, a floor boring machine for processing coiler is provided, which comprises

[0030] a rack 1 and a mobile station 2, wherein the mobile station 2 is arranged on the rack 1;

[0031] a boring assembly 4, wherein the boring assembly 4 is arranged on the rack 1;

[0032] a mobile base 3 and a butt joint mobile assembly 5, wherein the mobile base 3 is arranged on the rack 1, and the butt joint mobile assembly 5 is arranged between the mobile base 3 and the rack 1;

[0033] The boring assembly 4 comprises a plurality of vertical sliding rails 4-1, the vertical sliding rails 4-1 are arranged in the rack 1, a vertical screw rod 4-2 is arranged in the rack 1, the vertical screw rod 4-2 is controlled to rotate by a motor, a lifting seat 4-3 is slidably connected to the vertical sliding rail 4-1, the lifting seat 4-3 is threadedly connected with the vertical screw rod 4-2, a main shaft motor 4-4 is mounted on the side surface of the lifting seat 4-3, a rotating disc 4-5 is rotatably connected in the lifting seat 4-3, the rotating disc 4-5 is connected with the output end of the main shaft motor 4-4, a shaft rod 4-6 is mounted on the rotating disc 4-5, a notch 4-7 is formed in the front end of the shaft rod 4-6, a pair of threaded grooves 4-8 are formed in the notch 4-7, an extension rod 4-9 is arranged on the surface of the moving table 2, a shaft sleeve 4-10 is arranged at the upper end of the extension rod 4-9, and the shaft sleeve 4-10 is rotatably sleeved and connected outside the shaft rod 4-6.

[0034] In the embodiment, in order to realize the effect of stable boring, the boring assembly 4 is designed, the vertical sliding rail 4-1 and the vertical screw rod 4-2 are arranged in the stand 5-9, the lifting seat 4-3 is connected to the vertical sliding rail 4-1 and the vertical screw rod 4-2, the main shaft motor 4-4 and the rotating disc 4-5 are mounted on the lifting seat 4-3, the rotating disc 4-5 can be driven to rotate at high speed by the main shaft motor 4-4, the shaft rod 4-6 is mounted on the rotating disc 4-5, the notch 4-7 is formed in the front end of the shaft rod 4-6 and the threaded grooves 4-8 are formed in the notch 4-7, the boring tool is used for installation, the extension rod 4-9 and the shaft sleeve 4-10 are arranged on the moving table 2, the shaft sleeve 4-10 is rotatably sleeved and connected outside the shaft rod 4-6 and can move on the surface of the shaft rod 4-6, and the stability of the shaft rod 4-6 during rotation is improved.

[0035] Further, the docking moving assembly 5 comprises a second screw rod 5-1, the second screw rod 5-1 is mounted at the bottom of the rack 1, a pair of second sliding rails 5-2 are arranged in the rack 1, the moving table 2 is slidably connected to the second sliding rails 5-2, the moving table 2 is threadedly connected with the second screw rod 5-1, a pair of third sliding rails 5-3 are arranged on the outer surface of the rack 1, the moving base 3 is slidably connected to the third sliding rails 5-3, an outer groove 5-4 is formed on the surface of the moving base 3, the outer groove 5-4 is wrapped outside the moving table 2, a pair of rectangular grooves 5-5 are formed on the surface of the moving table 2, extension cylinders 5-6 are arranged in the rectangular grooves 5-5, docking blocks 5-7 are arranged at the output ends of the extension cylinders 5-6, the docking blocks 5-7 pass through the inner side of the rectangular grooves 5-5 and are insertedly connected with the inner surface of the outer groove 5-4, a pair of hydraulic cylinders 5-8 are arranged at both ends of the bottom of the moving base 3, stands 5-9 are arranged at the output ends of the hydraulic cylinders 5-8, side grooves 5-10 are formed on the side surfaces of the stands 5-9, limit holes 5-11 are formed at the top of the side grooves 5-10, sleeve frames 5-12 are insertedly connected with the side grooves 5-10 and the limit holes 5-11, and a pair of moving frames 5-13 are arranged at the bottom of the moving base 3.

[0036] In this embodiment, in order to realize the effect of supporting the shaft roller to move and be connected with the device, a connecting and moving assembly 5 is designed, a second lead screw 5-1, a second sliding rail 5-2 and a third sliding rail 5-3 are arranged in the rack 1, the moving table 2 is connected with the second lead screw 5-1 and the second sliding rail 5-2, the moving table 2 can be controlled to move on the surface of the rack 1, the moving base 3 is slidingly connected on the third sliding rail 5-3, the surface of the moving base 3 is provided with an outer groove 5-4 and is sleeved outside the moving table 2, the surface of the moving table 2 is provided with two rectangular grooves 5-5, a telescopic cylinder 5-6 and a connecting block 5-7 are arranged inside, the connecting block 5-7 can be inserted into the outer groove 5-4 through the telescopic cylinder 5-6, the moving base 3 is connected with the moving table 2, the moving table 2 can drive the moving base 3 to move on the third sliding rail 5-3, the top of the moving base 3 is used for placing the shaft roller, a plurality of hydraulic cylinders 5-8 are arranged at the bottom of the moving base 3, a stand 5-9 is arranged at the output end of the hydraulic cylinder 5-8, a side groove 5-10 is arranged on the side surface of the stand 5-9, a limiting groove is arranged at the top of the side groove 5-10, a sleeve frame 5-12 is inserted into the side groove 5-10, when the sleeve frame 5-12 is tightly sleeved on the shaft roller, the sleeve frame 5-12 can be controlled to move downward and be pressed on the top of the shaft roller through the hydraulic cylinder 5-8, and the sleeve frame 5-12 is inserted into the limiting hole 5-11, so that the effect of anti-skid and anti-falling is achieved.

[0037] Further, the surface of the shaft rod 4-6 is provided with a spiral-shaped cutting groove 6.

[0038] In this embodiment, in order to realize the effect that the shaft rod 4-6 can be cut, the spiral-shaped cutting groove 6 is arranged on the surface of the shaft rod 4-6, and the shaft rod 4-6 can be cut outward during boring.

[0039] Further, the sleeve frame 5-12 is bent downward at both ends and has a V-shaped structure as a whole.

[0040] In this embodiment, the sleeve frame 5-12 is bent downward at both ends, so that the sleeve frame 5-12 can be tightly sleeved on the top of the shaft roller.

[0041] When machining is needed, the shaft roller is placed on the moving base 3, the sleeve frame 5-12 is inserted into the side groove 5-10, the sleeve frame 5-12 is tightly sleeved on the shaft roller by starting the hydraulic cylinder 5-8, then the moving frame 5-13 is moved on the ground, the moving frame 5-13 is slidingly connected into the third sliding rail 5-3, the supporting block is inserted into the outer groove 5-4, the connecting block 5-7 is inserted into the outer groove 5-4 on both sides and is connected with the moving base 3 by starting the telescopic cylinder 5-6, the cutter is arranged in the slot 4-7 of the shaft rod 4-6, the height of the shaft rod 4-6 is adjusted by starting the vertical lead screw 4-2, the shaft sleeve 4-10 is kept connected with the shaft rod 4-6 by cooperation of the telescopic rod 4-9, the shaft rod 4-6 starts to rotate at high speed by starting the main shaft motor 4-4, the moving table 2 and the moving base 3 start to move by starting the second lead screw 5-1, and boring is performed during the moving process.

[0042] The above merely preferred embodiments of the present application are not used to limit the present application, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A floor-type boring machine for a processing coiler, characterized in that Comprising A rack (1) and a mobile platform (2), the mobile platform (2) is arranged on the rack (1); A boring assembly (4) arranged on the rack (1); A mobile base (3) arranged on the rack (1) and a docking mobile assembly (5) arranged between the mobile base (3) and the rack (1); The boring assembly (4) comprises a plurality of vertical sliding rails (4-1), the vertical sliding rails (4-1) are arranged in the rack (1), a vertical lead screw (4-2) is arranged in the rack (1), the vertical lead screw (4-2) is controlled to rotate by a motor, a lifting seat (4-3) is slidably connected on the vertical sliding rail (4-1), and the lifting seat (4-3) is connected with the vertical lead screw (4-2) through thread cooperation.

2. A floor-type boring machine for a process coiler according to claim 1, characterized in that A main shaft motor (4-4) is mounted on the side surface of the lifting seat (4-3), a rotating disc (4-5) is rotatably connected in the lifting seat (4-3), the rotating disc (4-5) is connected with the output end of the main shaft motor (4-4), and a shaft rod (4-6) is mounted on the rotating disc (4-5).

3. A floor-type boring machine for a process coiler according to claim 2, characterized in that A notch (4-7) is formed in the front end of the shaft rod (4-6), a pair of threaded grooves (4-8) are formed in the notch (4-7), an extension rod (4-9) is arranged on the surface of the mobile platform (2), a shaft sleeve (4-10) is arranged at the upper end of the extension rod (4-9), and the shaft sleeve (4-10) is rotatably connected outside the shaft rod (4-6).

4. A floor-type boring machine for a process coiler according to claim 1, characterized in that, The docking mobile assembly (5) comprises a second lead screw (5-1), the second lead screw (5-1) is mounted at the bottom of the rack (1), a pair of second sliding rails (5-2) are arranged in the rack (1), and the mobile platform (2) is slidably connected on the second sliding rail (5-2).

5. A floor-type boring machine for a process coiler according to claim 4, characterized in that The mobile platform (2) and the second lead screw (5-1) are connected through thread cooperation, a pair of third sliding rails (5-3) are arranged on the outer surface of the rack (1), the mobile base (3) is slidably connected on the third sliding rail (5-3), and an outer groove (5-4) is formed on the surface of the mobile base (3).

6. A floor-type boring machine for a process coiler according to claim 5, characterized in that The outer groove (5-4) is wrapped outside the mobile platform (2), a pair of rectangular grooves (5-5) are formed on the surface of the mobile platform (2), an extension cylinder (5-6) is arranged in the rectangular groove (5-5), a docking block (5-7) is arranged at the output end of the extension cylinder (5-6), and the docking block (5-7) is inserted and connected with the inner surface of the outer groove (5-4) through the inner side of the rectangular groove (5-5).

7. A floor-type boring machine for a process coiler according to claim 6, characterized in that The mobile base (3) is provided with a pair of hydraulic cylinders (5-8) at both ends of the bottom, the output end of the hydraulic cylinder (5-8) is provided with a stand (5-9), the side surface of the stand (5-9) is provided with a side groove (5-10), the inner top of the side groove (5-10) is provided with a limiting hole (5-11), the side groove (5-10) and the limiting hole (5-11) are connected with a sleeve frame (5-12) through insertion, and the bottom of the mobile base (3) is provided with a pair of moving frames (5-13).

8. A floor-type boring machine for a process coiler according to claim 2, characterized in that The surface of the shaft rod (4-6) is provided with a discharge groove (6), and the discharge groove (6) is in a spiral line structure.

9. A floor-type boring machine for a process coiler according to claim 7, characterized in that The both ends of the sleeve frame (5-12) are bent downward as a whole in a V-shaped structure.