Engraving and milling machine for shoe mold processing
By setting up a rotating component, a clamping component, and a blocking component on the shoe mold engraving and milling machine, automatic flipping and stable clamping of the workpiece are achieved, solving the problem of reduced processing speed caused by manual flipping and improving engraving and milling efficiency.
Patent Information
- Application Number
- CN202520783082.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-23
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2035-04-23
AI Technical Summary
The process of carving and milling shoe molds requires manual flipping, which reduces processing speed.
A milling machine for shoe mold processing was designed, equipped with a rotating component, a clamping component, and a blocking component. The machine automatically flips, clamps, and blocks the workpiece through an electric telescopic rod and a drive motor, preventing debris from entering the sliding groove.
It enables automatic workpiece flipping and stable clamping, improving milling efficiency and avoiding the problem of chips getting stuck on the screw.
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Figure CN223819704U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of engraving and milling machine, concretely relates to an engraving and milling machine for shoe mold processing. BACKGROUND
[0002] The engraving and milling machine is a kind of numerical control machine tool, and the general engraving and milling machine is a numerical control milling machine using small cutter, high-power and high-speed spindle motor, and the advantage of the engraving machine is to engrave workpieces, and if the hardness of processing material is relatively large, it will also be unsatisfactory, and the emergence of the engraving and milling machine can fill the gap between the numerical control machine tool and the engraving machine.
[0003] The utility model discloses a mould processing engraving and milling machine's fixing device discloses a mould processing engraving and milling machine's fixing device, including processing machine, workstation, slide rail and stop device, the processing machine is engraving and milling machine, the one end of processing machine is equipped with workstation, the surface of workstation is equipped with slide rail, the one end of workstation is equipped with stop device, the stop device includes four sliding blocks, and four sliding blocks are in pairs, the surface of sliding block and slide rail are movably connected, and the same group of sliding blocks is fixedly installed with the clamping plate at the end away from the workstation, the both sides of clamping plate are slidably connected with sliding plate, the both sides of clamping plate are fixedly connected with lug, and the inside of lug is slidably inserted with fixed rod.
[0004] The above-mentioned prior art also has the following defects: when the shoe mold is engraved and milled, the two surfaces of the workpiece need to be engraved and milled, and the workpiece needs to be manually disassembled and fixed again after turning over, so that the processing speed is reduced. CONTENT OF THE UTILITY MODEL
[0005] The purpose of this section is to outline some aspects of the embodiments of the utility model and briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this section and the abstract of the specification and the utility model name to avoid obscuring the purpose of this section, the abstract of the specification and the utility model name, and such simplifications or omissions cannot be used to limit the scope of the utility model.
[0006] To solve the problem of the above background art that the two surfaces of the workpiece need to be engraved and milled when the shoe mold is engraved and milled, and the workpiece needs to be manually disassembled and fixed again after turning over, so that the processing speed is reduced, the utility model adopts the following technical scheme.
[0007] The utility model provides a kind of engraving and milling machine for shoe mold processing, including the engraving and milling assembly installed in the inside top of engraving and milling machine, the inside of engraving and milling machine is installed with the position adjusting element that can move left and right and lift, the outer wall of position adjusting element is slidably connected with mounting plate, moving box door is provided on engraving and milling machine, the upper end of mounting plate is provided with first sliding slot, the inside of first sliding slot is installed with clamping assembly, rotating assembly is installed on clamping assembly, clamping assembly is clamped to workpiece, rotating assembly makes workpiece rotate after lifting, and workpiece is turned over.
[0008] Preferably, the clamping assembly includes a sliding block, a bidirectional screw, a first drive motor, and a mounting vertical plate. The inside of the first sliding slot is rotatably connected with the bidirectional screw. The outer wall of the mounting plate is detachably connected with the first drive motor. The rotating end of the first drive motor is detachably connected with one end of the bidirectional screw. The inside of the bidirectional screw is slidably connected with the sliding block on both sides. The sliding block is threadedly connected with the bidirectional screw. The upper end of the sliding block is mounted with the mounting vertical plate.
[0009] Preferably, the rotating assembly includes an electric telescopic rod, a rotating plate, and a second drive motor. The electric telescopic rod is detachably connected between the sliding block and the mounting vertical plate. The base part of the electric telescopic rod is detachably connected with the upper end of the sliding block. The telescopic end of the electric telescopic rod is detachably connected with the bottom of the mounting vertical plate. The opposite faces of the two mounting vertical plates are rotatably connected with the rotating plate. The outer wall of one side of the mounting vertical plate is detachably connected with the second drive motor. The rotating end of the second drive motor is detachably connected with the outer wall of the rotating plate.
[0010] Preferably, the opposite faces of the two rotating plates are mounted with auxiliary fixing assemblies. The auxiliary fixing assemblies fix the workpiece.
[0011] Preferably, the inside of the first sliding slot is mounted with a shielding assembly. The shielding assembly covers the opening of the first sliding slot.
[0012] Preferably, the auxiliary fixing assembly includes a first clamping plate, a second clamping plate, an adjusting screw, and a second sliding slot. The opposite faces of the two rotating plates are provided with the second sliding slot. The upper end of the rotating plate is provided with the adjusting screw inserted into the inside of the second sliding slot. The bottom of the adjusting screw is rotatably connected with the inside bottom of the second sliding slot. The bottom of the rotating plate is fixedly connected with the first clamping plate. The inside of the second sliding slot is slidably connected with the second clamping plate. The second clamping plate is threadedly connected with the adjusting screw.
[0013] Preferably, the shielding assembly includes a winding roller, a mounting bracket, and a shielding cloth. The two ends of the mounting plate are detachably connected with the mounting bracket. The inside of the two mounting brackets is torsionally connected with the winding roller. The inside of the two first sliding slots is provided with the shielding cloth passing through the two sides of the mounting plate. The two ends of the shielding cloth are wound on the outer wall of the winding roller. The two winding rollers have a force of simultaneously rotating outward. The telescopic end of the electric telescopic rod penetrates the shielding cloth.
[0014] Compared with the prior art, the utility model has the beneficial effects that:
[0015] 1、 Through the electric telescopic rod in the rotation component of setting elongation makes the installation vertical board and the rotating plate move upwards, again through the rotation of second drive motor makes the rotating plate rotate, further can drive work piece to rotate, so can realize automatic turning, cannot need to disassemble and assemble again, make the engraving and milling efficiency get the improvement.
[0016] 2、 Through the rotation of first drive motor in the clamping component of setting drives the two-way screw rod to rotate, further can make both sides slide block and installation vertical board move inwards simultaneously and further can clamp work piece.
[0017] 3、 Through the adjustment screw in the auxiliary fixing component of setting rotation further can make second clamping plate move downwards, cooperation first clamping plate clamps the upper and lower sides of work piece, further can avoid work piece falling in the process of rotating plate rotation, make the clamping of work piece more stable.
[0018] 4、 Through the shielding cloth in the shielding component of setting can cover the inside of first slide groove, further can avoid the process in the engraving and milling of debris entering the inside of first slide groove and contacting two-way screw rod, causes two-way screw rod to get stuck and cannot rotate. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a structure schematic view of engraving and milling machine for shoe mold processing in the utility model;
[0020] Figure 2 It is a structure schematic view of shielding component in the utility model;
[0021] Figure 3 It is a structure schematic view of rotation component in the utility model;
[0022] Figure 4 It is a structure schematic view of auxiliary fixing component in the utility model.
[0023] The corresponding relationship between the annotations of each drawing and the component names in the drawing is as follows:
[0024] 100, engraving and milling machine; 101, moving box door; 102, engraving and milling assembly; 103, position adjusting piece;
[0025] 200, mounting plate; 201, first slide groove; 202, winding roller; 203, mounting bracket; 204, shielding cloth;
[0026] 300 sliding block; 301 bidirectional screw rod; 302 first driving motor; 303 mounting vertical plate; 304 electric telescopic rod; 305 second driving motor; 306 rotating plate; 307 first clamping plate; 308 second clamping plate; 309 adjusting screw rod; 310 second sliding groove. DETAILED DESCRIPTION
[0027] In order to make the above objectives, features and advantages of the present application more apparent, specific embodiments of the present application will be described in detail with reference to the drawings.
[0028] In the following description, a lot of specific details are set forth in order to facilitate a full understanding of the present application, but the present application can also be implemented in other ways different from those described herein, and those skilled in the art can make similar generalizations without departing from the connotation of the present application, therefore the present application is not limited by the specific embodiments disclosed below.
[0029] Secondly, the "one embodiment" or "embodiment" referred to herein means that the specific features, structures or characteristics can be included in at least one implementation of the present application. In this specification, "in one embodiment" does not mean the same embodiment, nor is it an independent or alternative embodiment that excludes other embodiments. The present application provides the following embodiments.
[0030] As shown in Figure 1 It is a structure schematic diagram of a carving and milling machine for shoe mold processing according to a preferred embodiment of the present application, the carving and milling machine for shoe mold processing according to the embodiment comprises a carving and milling assembly 102 mounted on the inner top of a carving and milling machine 100, the carving and milling machine 100 is internally provided with a position adjusting piece 103 which can move left and right and lift, the outer wall of the position adjusting piece 103 is slidably connected with a mounting plate 200, the carving and milling machine 100 is provided with a moving box door 101, in the embodiment, the workpiece is fixed on the upper end of the mounting plate 200, the workpiece is carved and milled by the carving and milling assembly 102, and the moving box door 101 is closed to avoid the movement of the debris outward.
[0031] As shown in Figure 3As shown, this is a schematic diagram of the clamping assembly structure in this embodiment. The upper end of the mounting plate 200 is provided with a first sliding groove 201. A bidirectional screw 301 is rotatably connected inside the first sliding groove 201. A first drive motor 302 is detachably connected to the outer wall of the mounting plate 200. The rotating end of the first drive motor 302 is detachably connected to one end of the bidirectional screw 301. Sliding blocks 300 are slidably connected to both sides inside the bidirectional screw 301. The sliding blocks 300 are threadedly connected to the bidirectional screw 301. A mounting vertical plate 303 is installed on the upper end of the sliding blocks 300. In this embodiment, the first drive motor 302 rotates to drive the bidirectional screw 301 to rotate, thereby enabling the sliding blocks 300 on both sides and the mounting vertical plate 303 to move inward simultaneously, thereby clamping the workpiece.
[0032] It is worth noting that the sliding block 300, the bidirectional screw 301, the first drive motor 302, and the mounting vertical plate 303 mentioned above are the clamping components in this embodiment. The clamping components include, but are not limited to, the sliding block 300, the bidirectional screw 301, the first drive motor 302, and the mounting vertical plate 303. Any component that can clamp the workpiece can be used in this embodiment.
[0033] like Figure 3 As shown, this is a schematic diagram of the rotating component structure in this embodiment. An electric telescopic rod 304 is detachably connected between the sliding block 300 and the mounting vertical plate 303. The base of the electric telescopic rod 304 is detachably connected to the upper end of the sliding block 300, and the telescopic end of the electric telescopic rod 304 is detachably connected to the bottom of the mounting vertical plate 303. A rotating plate 306 is rotatably connected to the opposite surfaces of the two mounting vertical plates 303. A second drive motor 305 is detachably connected to the outer wall of one mounting vertical plate 303. The rotating end of the second drive motor 305 is detachably connected to the outer wall of the rotating plate 306. In this embodiment, when the workpiece needs to be rotated, the electric telescopic rod 304 extends to move the mounting vertical plate 303 and the rotating plate 306 upward. Then, the rotation of the second drive motor 305 causes the rotating plate 306 to rotate, thereby driving the workpiece to rotate. This enables automatic flipping without the need for disassembly and reassembly, thus improving the milling efficiency.
[0034] It is worth noting that the electric telescopic rod 304, the rotating plate 306 and the second drive motor 305 mentioned above are the rotating components in this embodiment. The rotating components include, but are not limited to, the electric telescopic rod 304, the rotating plate 306 and the second drive motor 305. Any component that can make the workpiece rotate can be applied to this embodiment.
[0035] like Figure 4As shown, this is a schematic diagram of the auxiliary fixing component structure in this embodiment. A second sliding groove 310 is provided on the opposite surfaces of the two rotating plates 306. An adjusting screw 309 is provided at the upper end of the rotating plate 306, inserted into the second sliding groove 310. The bottom of the adjusting screw 309 is rotatably connected to the inner bottom of the second sliding groove 310. A first clamping plate 307 is fixedly connected to the bottom of the rotating plate 306. A second clamping plate 308 is slidably connected inside the second sliding groove 310. The second clamping plate 308 is threadedly connected to the adjusting screw 309. In this embodiment, by rotating the adjusting screw 309, the second clamping plate 308 can move downwards, cooperating with the first clamping plate 307 to clamp the upper and lower sides of the workpiece. This prevents the workpiece from falling during the rotation of the rotating plate 306, making the clamping of the workpiece more stable.
[0036] It is worth noting that the first clamping plate 307, the second clamping plate 308, the adjusting screw 309, and the second sliding groove 310 mentioned above are auxiliary fixing components in this embodiment. The auxiliary fixing components include, but are not limited to, the first clamping plate 307, the second clamping plate 308, the adjusting screw 309, and the second sliding groove 310. Any component that can fix the workpiece can be applied to this embodiment.
[0037] like Figure 2 As shown, this is a schematic diagram of the shielding component structure in this embodiment. The two ends of the mounting plate 200 are detachably connected to the mounting brackets 203. The internal torsion springs of the mounting brackets 203 on both sides are rotatably connected to the take-up rollers 202. The interior of the first sliding grooves 201 on both sides is provided with shielding cloths 204 that pass through the two sides of the mounting plate 200. The two ends of the shielding cloths 204 are wrapped around the outer wall of the take-up rollers 202. The two take-up rollers 202 on both sides have a force that rotates outward at the same time. The telescopic end of the electric telescopic rod 304 passes through the shielding cloths 204. In this embodiment, the shielding cloths 204 can cover the interior of the first sliding grooves 201, thereby preventing debris from entering the interior of the first sliding grooves 201 and contacting the bidirectional screw 301 during the engraving and milling process, which would cause the bidirectional screw 301 to get stuck and unable to rotate.
[0038] It is worth noting that the winding roller 202, mounting bracket 203 and shielding cloth 204 mentioned above are shielding components in this embodiment. The shielding components include, but are not limited to, the winding roller 202, mounting bracket 203 and shielding cloth 204. Any component that can shield the opening of the first sliding groove 201 can be applied to this embodiment.
[0039] The above is further detailed description of the utility model in combination with specific embodiments, and cannot be determined that the utility model specific implementation is limited to these descriptions. For ordinary skilled in the art to which the utility model belongs, without departing from the concept of the utility model, a number of simple deductions or substitutions can be made, and all should be regarded as belonging to the protection scope determined by the claims submitted by the utility model.
Claims
1. A milling and engraving machine for shoe mold processing, comprising a milling and engraving assembly (102) installed on the top inner side of the milling and engraving machine (100), a position adjustment component (103) that can move left and right and rise and fall is installed inside the milling and engraving machine (100), a mounting plate (200) is slidably connected to the outer wall of the position adjustment component (103), and a movable door (101) is provided on the milling and engraving machine (100), characterized in that, The upper end of the mounting plate (200) is provided with a first sliding groove (201), and a clamping assembly is installed inside the first sliding groove (201). A rotating assembly is installed on the clamping assembly. The clamping assembly clamps the workpiece, and the rotating assembly raises the workpiece and rotates it to flip the workpiece.
2. The engraving and milling machine for shoe mold processing according to claim 1, characterized in that, The clamping assembly includes a sliding block (300), a bidirectional screw (301), a first drive motor (302), and a mounting plate (303). The bidirectional screw (301) is rotatably connected inside the first sliding groove (201). The first drive motor (302) is detachably connected to the outer wall of the mounting plate (200). The rotating end of the first drive motor (302) is detachably connected to one end of the bidirectional screw (301). The sliding blocks (300) are slidably connected to both sides inside the bidirectional screw (301). The sliding blocks (300) are threadedly connected to the bidirectional screw (301). The mounting plate (303) is installed on the upper end of the sliding blocks (300).
3. The engraving and milling machine for shoe mold processing according to claim 2, characterized in that, The rotating assembly includes an electric telescopic rod (304), a rotating plate (306), and a second drive motor (305). The electric telescopic rod (304) is detachably connected between the sliding block (300) and the mounting vertical plate (303). The base of the electric telescopic rod (304) is detachably connected to the upper end of the sliding block (300). The telescopic end of the electric telescopic rod (304) is detachably connected to the bottom of the mounting vertical plate (303). The rotating plate (306) is rotatably connected to the opposite surfaces of the two mounting vertical plates (303). The second drive motor (305) is detachably connected to the outer wall of one mounting vertical plate (303). The rotating end of the second drive motor (305) is detachably connected to the outer wall of the rotating plate (306).
4. The engraving and milling machine for shoe mold processing according to claim 3, characterized in that, Auxiliary fixing components are installed on the opposite surfaces of the two rotating plates (306) to fix the workpiece.
5. The engraving and milling machine for shoe mold processing according to claim 4, characterized in that, A shielding component is installed inside the first sliding groove (201) to cover the opening of the first sliding groove (201).
6. The engraving and milling machine for shoe mold processing according to claim 5, characterized in that, The auxiliary fixing assembly includes a first clamping plate (307), a second clamping plate (308), an adjusting screw (309), and a second sliding groove (310). The opposite surfaces of the two rotating plates (306) are provided with the second sliding groove (310). The upper end of the rotating plate (306) is provided with an adjusting screw (309) inserted into the second sliding groove (310). The bottom of the adjusting screw (309) is rotatably connected to the bottom of the inner side of the second sliding groove (310). The bottom of the rotating plate (306) is fixedly connected with the first clamping plate (307). The second clamping plate (308) is slidably connected inside the second sliding groove (310). The second clamping plate (308) is threadedly connected to the adjusting screw (309).
7. The engraving and milling machine for shoe mold processing according to claim 6, characterized in that, The shielding assembly includes a take-up roller (202), a mounting bracket (203), and a shielding cloth (204). The mounting bracket (203) is detachably connected to both ends of the mounting plate (200). The take-up roller (202) is rotatably connected to the internal torsion springs of the mounting brackets (203) on both sides. The shielding cloth (204) passing through both sides of the mounting plate (200) is provided inside the first sliding groove (201) on both sides. The two ends of the shielding cloth (204) are wrapped around the outer wall of the take-up roller (202). The two take-up rollers (202) on both sides have a force that rotates outward at the same time. The telescopic end of the electric telescopic rod (304) extends out of the shielding cloth (204).
Citation Information
Patent Citations
Fixing device of engraving and milling machine for mold machining
CN215146926U