Guide rail rough milling device facilitating feeding and clamping

By combining the auxiliary feeding device and the guide rail clamping device, the time-consuming and labor-intensive problem of loading, unloading and clamping of the guide rail rough milling device is solved, realizing convenient loading and unloading and high-stability clamping, improving processing efficiency and protection performance.

CN223801617UActive Publication Date: 2026-01-16ZAOZHUANG LONGDA HEAVY NUMERICAL CONTROL MACHINE TOOL CO LTD
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Patent Information

Application Number
CN202423202386.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2026-01-16
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

Existing guide rail rough milling devices are time-consuming and labor-intensive during loading, unloading, and clamping, and lack clamping stability and protection.

Method used

An auxiliary feeding device is used to realize the lifting and horizontal movement of the guide rail. Combined with the guide rail clamping device, multiple sets of bolts are used for fastening and silicone sleeves for buffering, which improves the clamping stability and protection.

Benefits of technology

It enables convenient loading and unloading of guide rails and highly stable clamping, improving processing efficiency and protective performance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a guide rail rough milling device convenient for feeding and clamping, which comprises a rough milling machine tool, an operation panel, an auxiliary feeding device, a guide rail clamping device and a guide rail, and the top of the front end of the rough milling machine tool is provided with the operation panel with an embedded structure. Auxiliary feeding devices fixed through bolts are installed at the left end and the right end of the rough milling machine tool, the auxiliary feeding devices are connected with the operation panel through cables, guide rail clamping devices fixed through bolts are installed in front of the top ends of the auxiliary feeding devices, and guide rails are placed on the inner sides of the guide rail clamping devices. According to the guide rail rough milling device, reasonable design is matched with the auxiliary feeding device, feeding, discharging and moving adjustment of the guide rail are facilitated, operation is easy, time and labor are saved, meanwhile, the guide rail clamping device is matched, the guide rail can be stably clamped, and buffering protection is achieved through a silicon rubber case.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a guide rail rough milling device, especially to a guide rail rough milling device convenient to loading and clamping. BACKGROUND

[0002] In the processing of guide rail, rough milling machine is often used to rough mill guide rail. The current rough and fine device is time-consuming and laborious in loading and unloading and clamping, and the clamping stability and protection need to be improved. Therefore, a new type of guide rail rough milling device is needed, which can facilitate loading and unloading, improve clamping stability and protection. UTILITY MODEL CONTENTS

[0003] The utility model discloses a guide rail rough milling device convenient to loading and clamping, which solves the above technical problems.

[0004] To achieve the above purpose, the utility model adopts the following technical scheme:

[0005] A guide rail rough milling device convenient to loading and clamping, comprising a rough milling machine, an operation panel, an auxiliary loading device, a guide rail clamping device and a guide rail, wherein the operation panel of embedded structure is installed at the top of the front end of the rough milling machine, the auxiliary loading device is fixed by bolts and installed at the left and right ends of the rough milling machine, the auxiliary loading device is connected with the operation panel through a cable, the guide rail clamping device is fixed by bolts and installed at the top front of the auxiliary loading device, and the guide rail is placed in the guide rail clamping device.

[0006] On the basis of the above technical scheme, the auxiliary loading device comprises a guide mounting frame, a hydraulic cylinder mounting cover, a hydraulic cylinder, a movable frame, a support rib plate, a rubber pad, a lead screw support, a lead screw, a servo motor, a moving nut and a connecting frame, the hydraulic cylinder mounting cover is fixed by bolts and installed at the top of the guide mounting frame, the hydraulic cylinder is fixed by bolts and installed at the top of the inside of the hydraulic cylinder mounting cover, the movable frame is connected with the inside of the guide mounting frame through the through hole in the middle of the top of the guide mounting frame and fixed by bolts, the support rib plate is fixed by welding and installed at the bottom of the movable frame and symmetrically distributed on both sides, the rubber pad is fixed by bonding and installed at the bottom of the movable frame and in front of the support rib plate, the lead screw support is fixed by bolts and installed at the top front of the movable frame, the lead screw is installed in the inside of the lead screw support and connected through bearing hinged connection, the servo motor is connected by keys and installed at the middle of the rear end of the lead screw, the moving nut is connected by threads and nested on the circumferential surface of the lead screw, and the connecting frame is connected by inserting and fixed by bolts and installed on the circumferential surface of the moving nut.

[0007] On the basis of the above technical scheme, the guide rail clamping device comprises a clamping platform, a fixing frame, threaded holes, bolts, hexagonal rods and silica gel sleeves, the clamping platform is fixedly connected with the connecting frame through bolts, two groups of symmetrically distributed fixing frames are installed at the top end of the clamping platform and are fixed through welding, symmetrically distributed threaded holes are formed in the surface of the fixing frame, the threaded holes are internally provided with the bolts in threaded connection, the hexagonal rods are fixedly installed at the middle of the rear end of the bolts, and the silica gel sleeves are nested on the surface of the hexagonal rods and are fixed through glue.

[0008] Compared with the prior art, the guide rail rough milling device has the following advantages: the auxiliary feeding device can realize the lifting and horizontal movement of the material, thereby facilitating the feeding and processing of the guide rail, and then the guide rail clamping device is used to fasten and clamp the guide rail through a plurality of bolts and the silica gel pad is used to buffer and protect the guide rail during clamping. BRIEF DESCRIPTION OF DRAWINGS

[0009] Figure 1 It is an appearance structure schematic view of the utility model.

[0010] Figure 2 It is an auxiliary feeding device structure schematic view of the utility model.

[0011] Figure 3 It is a guide rail clamping device structure schematic view of the utility model.

[0012] Figure 4 It is a guide rail clamping device structure enlarged schematic view of the utility model.

[0013] In the drawing: 1, rough milling machine tool, 2, operation panel, 3, auxiliary feeding device, 4, guide rail clamping device, 5, guide rail, 6, guide mounting frame, 7, hydraulic cylinder mounting cover, 8, hydraulic cylinder, 9, movable frame, 10, support rib plate, 11, rubber pad, 12, screw rod support, 13, screw rod, 14, servo motor, 15, moving nut, 16, connecting frame, 17, clamping platform, 18, fixing frame, 19, threaded hole, 20, bolt, 21, hexagonal rod, 22, silica gel sleeve. DETAILED DESCRIPTION

[0014] The utility model will be further described in detail in combination with the drawings and specific embodiments.

[0015] As Figures 1-4The utility model discloses a guide rail rough milling device convenient to loading and clamping, including rough milling machine bed 1, operating panel 2, auxiliary loading device 3, guide rail clamping device 4, guide rail 5, the operating panel 2 of embedded structure is installed to the rough milling machine bed 1 front end top, the auxiliary loading device 3 of bolt fixation is installed to the rough milling machine bed 1 both ends, the auxiliary loading device 3 is connected with operating panel 2 through cable, the guide rail clamping device 4 of bolt fixation is installed to the auxiliary loading device 3 top end front, the guide rail 5 is placed to the inboard of guide rail clamping device 4.

[0016] The auxiliary loading device 3 includes guide mounting frame 6, hydraulic cylinder mounting cover 7, hydraulic cylinder 8, movable frame 9, support rib plate 10, rubber pad 11, screw rod support 12, screw rod 13, servo motor 14, moving nut 15, connecting frame 16, the bolt-fixed hydraulic cylinder mounting cover 7 is installed to the top end of guide mounting frame 6, the bolt-fixed hydraulic cylinder 8 is installed to the top inside of hydraulic cylinder mounting cover 7, the movable frame 9 that is insertedly connected with its inboard is passed through the through-hole of the top middle part of guide mounting frame 6 and is fixed by bolt, the movable frame 9 bottom end both sides are installed with the welded fixed support rib plate 10 and are symmetrically distributed, the movable frame 9 bottom end, support rib plate 10 front are installed with the adhesively fixed rubber pad 11, the bolt-fixed screw rod support 12 is installed to the movable frame 9 top end front, the screw rod 13 is installed inboard to screw rod support 12 and is connected through bearing hinged connection, the keyed servo motor 14 is installed to the middle part of screw rod 13 rear end, the moving nut 15 of screw thread connection is nested to the circumferential surface of screw rod 13, the connecting frame 16 of insertion connection, bolt fixation is nested to the circumferential surface of moving nut 15.

[0017] The guide rail clamping device 4 includes clamping platform 17, fixed frame 18, threaded hole 19, bolt 20, hexagonal rod 21, silica gel sleeve 22, the clamping platform 17 is fixedly connected with connecting frame 16 through bolt, the clamping platform 17 top end is installed with two groups of symmetrically distributed fixed frame 18 and is fixed through welding, the surface of fixed frame 18 is all opened with equidistant symmetrically distributed threaded hole 19, the threaded hole 19 inboard is installed with the bolt 20 of screw connection, the bolt 20 rear end middle part is installed with the welded fixed hexagonal rod 21, the hexagonal rod 21 surface is nested with silica gel sleeve 22 and is fixedly bonded with glue.

[0018] The utility model discloses a work principle: first, the guide rail is placed between the fixed frame above the clamping platform, then through the rotation bolt drive six square rods and silica gel sleeve to the guide rail clamping, not only through a plurality of bolts to the guide rail fastening improves the clamping stability and through silica gel sleeve can in the fastening guide rail while avoiding six square rods to destroy the guide rail surface and improve the protection performance, then through the hydraulic cylinder drive movable frame to lift and through the support rib further improves movable frame's support performance and activity stability, then through servo motor drive screw rod rotation, subsequently screw rod in the process of rotation cooperation mobile nut realizes the horizontal motion of connecting frame and guide rail clamping device, and then conveniently guide rail moves to the rough milling machine tool processing area below and then processes the guide rail, and the same reason reversely operates can realize the guide rail's unloading etc. Operation.

[0019] The above is the preferred embodiment of the utility model, for the ordinary skill in the art, according to the teaching of the utility model, under the condition of not departing from the principle and spirit of the utility model, the change, modification, replacement and variation of the implementation mode still fall within the protection scope of the utility model.

Claims

1. A guide rail rough milling device facilitating feeding and clamping, comprising a rough milling machine tool (1), an operation panel (2), an auxiliary feeding device (3), a guide rail clamping device (4), a guide rail (5), characterized in that: The rough milling machine (1) front end top is installed with the embedded structure operation panel (2), the rough milling machine (1) left and right two ends are installed with the bolt fixed auxiliary feeding device (3), the auxiliary feeding device (3) is connected with operation panel (2) through cable, the auxiliary feeding device (3) top front is installed with bolt fixed guide rail clamping device (4), the guide rail clamping device (4) inside places guide rail (5).

2. The roughing device of claim 1, wherein: The auxiliary feeding device (3) includes guide mounting bracket (6), hydraulic cylinder mounting cover (7), hydraulic cylinder (8), movable frame (9), support rib plate (10), rubber pad (11), screw rod support (12), screw rod (13), servo motor (14), moving nut (15), connecting frame (16), the hydraulic cylinder mounting cover (7) is fixed on the top of the guide mounting bracket (6), the hydraulic cylinder (8) is fixed on the top of the hydraulic cylinder mounting cover (7), the movable frame (9) is connected with the inside of the guide mounting bracket (6) through the through hole in the middle of the top, the movable frame (9) is fixed by bolt, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by welding on both sides of the bottom, the movable frame (9) is fixed by 3. The device according to claim 1, wherein: ​