Numerical control simulation equipment

By designing a rotatable CNC panel in the CNC simulation equipment, and utilizing motor drive and support beam structure, the problem of the inability to adjust the angle of the CNC panel is solved, thereby improving the simulation and modeling capabilities of the equipment and making it suitable for various operating environments.

CN223730047UActive Publication Date: 2025-12-26NEWCAPEC ELECTRONICS CO LTD
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Patent Information

Application Number
CN202422754700.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2025-12-26
Estimated Expiration
2034-11-12

AI Technical Summary

Technical Problem

The CNC panel of existing CNC simulation equipment has a fixed orientation and cannot be adjusted to the required angle in specific environments, resulting in limitations in simulation or modeling, especially in teaching scenarios where it cannot fully simulate the actual operating environment.

Method used

Design a CNC simulation device that allows a CNC panel to rotate around an axis perpendicular to the surface of the housing. The angle of the panel is adjusted by a motor-driven panel fixing frame, and the rotation of the panel is supported by a structure of support beams and L-shaped fixing angle brackets.

Benefits of technology

It enables the angle adjustment of the CNC panel in specific environments, enhances the flexibility and simulation capability of the simulation equipment, and meets the actual operation needs in different scenarios.

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Abstract

The utility model relates to the field of digital processing devices, in particular to numerical control simulation equipment. The numerical control simulation equipment comprises the shell, the surface of the shell is provided with the numerical control panel, the numerical control panel is rotatably assembled on the shell around the axis perpendicular to the surface of the shell, and the numerical control panel is rotatably assembled on the shell of the numerical control simulation equipment, so that the numerical control panel can rotate under a set condition. The problem that the orientation of an existing numerical control panel is fixed, and the requirement that the numerical control panel needs to be rotated to the needed angle in the specific environment cannot be met is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of using digital processing device especially relates to a numerical control simulation equipment. BACKGROUND

[0002] The orientation of the numerical control panel used by the existing numerical control simulation equipment is fixedly designed in the horizontal or vertical plane, and the angle of the numerical control panel cannot be adjusted in a specific environment, so there are simulation or simulation limitations, especially in the teaching scene, the actual operation environment cannot be simulated in all directions. INVENTION CONTENTS

[0003] The utility model aims at providing a numerical control simulation equipment to solve the fixed orientation of the existing numerical control panel, which cannot meet the needs of rotating the numerical control panel to the required angle in a specific environment.

[0004] To achieve the above-mentioned purpose, the numerical control simulation equipment of the utility model adopts the following technical scheme:

[0005] A numerical control simulation equipment, comprising a shell, a numerical control panel is installed on the surface of the shell, and the numerical control panel is rotationally assembled on the shell around the axis perpendicular to the surface of the shell.

[0006] Further, the surface of the shell has a receiving groove, the numerical control panel is in the receiving groove and its surface is flush with the surface of the shell.

[0007] Further, the back side of the numerical control panel is connected with a panel fixing frame, and the panel fixing frame is rotationally assembled on the shell.

[0008] Further, the numerical control panel is circular, and the numerical control panel comprises a touch screen and a touch screen protective shell arranged on the periphery of the touch screen, and the panel fixing frame is fixedly connected to the touch screen protective shell.

[0009] Further, the shell comprises a shell skeleton and a shell sealing plate, the receiving groove is arranged on the shell sealing plate and is circular, a supporting beam is connected to the shell skeleton, and the panel fixing frame is rotationally mounted on the supporting beam.

[0010] Further, the numerical control panel is provided with a motor, the motor is fixedly mounted on the supporting beam, and the motor is in transmission connection with the panel fixing frame.

[0011] Further, the panel fixing frame is a long strip-shaped plate structure, and the panel fixing plate is fixedly connected to the touch screen protective shell at both ends thereof.

[0012] Further, the supporting beam is a long strip-shaped plate structure, and the supporting beam extends along the diameter direction of the receiving groove and is fixedly connected to the shell at both ends thereof.

[0013] Further, L-shaped fixed corner codes are arranged at both ends of the support beam, the support beam is fixed to one branch of the L-shaped fixed corner code, and the other branch of the L-shaped fixed corner code is fixed to the shell framework.

[0014] Beneficial effects: the numerical control simulation equipment is an element transformation invention. Specifically, the numerical control panel is rotatably assembled on the shell of the numerical control simulation equipment, so that the numerical control panel can rotate under a set condition, and the problem that the existing numerical control panel is fixed in direction and cannot meet the requirement of rotating to a required angle under a specific environment is solved. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 is an embodiment structure schematic diagram of the numerical control simulation equipment.

[0016] Figure 2 is Figure 1 an embodiment structure schematic diagram of the numerical control simulation equipment.

[0017] In the figure: 1, motor; 2, support beam; 3, L-shaped fixed corner code; 4, numerical control panel; 5, panel fixing frame; 6, touch screen protection shell; 7, shell; 71, accommodating groove; 72, shell framework; 73, shell sealing plate; 8, touch screen. DETAILED DESCRIPTION

[0018] The inventive concept of the numerical control simulation equipment is that the numerical control panel is rotatably assembled on the shell of the numerical control simulation equipment, so that the numerical control panel can rotate under a set condition, thereby achieving the purpose of adjusting the angle of the numerical control panel.

[0019] Based on the above concept, as shown in the basic embodiment, Figure 1 the numerical control simulation equipment comprises a shell 7, the surface of the shell 7 is provided with a numerical control panel 4, and the numerical control panel 4 is rotatably assembled on the shell 7 about an axis perpendicular to the surface of the shell.

[0020] As shown in the basic embodiment, Figures 1-2 the surface of the shell 7 is provided with an accommodating groove 71, the numerical control panel 4 is located in the accommodating groove 71, and the surface of the numerical control panel 4 is flush with the surface of the shell 7. In other embodiments, the surface of the shell 7 at the position where the numerical control panel 4 is installed can also be a plane structure, and the numerical control panel 4 is arranged on the plane structure.

[0021] The back side of the numerical control panel 4 is fixedly connected with a panel fixing frame 5, the panel fixing frame 5 is used for fixing and supporting the entire numerical control panel 4, and the panel fixing frame 5 is rotatably assembled on the shell 7. In work, the numerical control panel 4 rotates together with the panel fixing frame 5. In other embodiments, if the back side of the numerical control panel 4 itself is provided with a panel assembly structure for rotatable assembly with the shell 7, the panel fixing frame 5 can also be omitted.

[0022] The numerical control panel 4 is in a circular structure, the numerical control panel 4 comprises a touch screen 8 and a touch screen protective shell 6 arranged at the periphery of the touch screen 8, and the panel fixing frame 5 is installed on the touch screen protective shell 6. The shell 7 comprises a shell skeleton 72 and a shell cover plate 73, the accommodating groove 71 is arranged on the shell cover plate 73 and is in a circular shape, the support beam 2 is connected to the shell skeleton 72, the support beam 2 extends along a diameter direction of the accommodating groove 71, and the panel fixing frame 5 is rotatably installed on the support beam 2.

[0023] The touch screen 8 is in a square structure, the touch screen protective shell 6 is used to fill the gap between the touch screen 8 and the accommodating groove 71, the touch screen 8 and the touch screen protective shell 6 together form the circular numerical control panel 4, and the circular numerical control panel 4 is arranged in the circular accommodating groove 71. In other embodiments, the touch screen 8 can also be in a circular structure, and the touch screen 8 can be directly arranged in the circular accommodating groove 71. If the back side of the touch screen 8 itself has a panel assembly structure for rotation assembly with the shell 7, the panel fixing frame 5 can also not be arranged.

[0024] In an embodiment, the numerical control panel 4 can be rotatably assembled on the shell 7, a user can manually operate the numerical control panel 4 according to needs, so that the numerical control panel 4 is rotated to a required angle. In a preferred embodiment, the numerical control panel 4 is provided with a motor, the motor 1 is preferably a joint motor, the motor 1 is fixedly installed on the support beam 2, the numerical control simulation device main body controls the working of the motor 1, and when the motor 1 rotates, the panel fixing frame 5 can be driven to rotate, so that the numerical control panel 4 fixedly connected to the panel fixing frame 5 is driven to rotate.

[0025] The panel fixing frame 5 is in a long strip-shaped plate structure, and the panel fixing frame 5 is fixedly connected to the touch screen protective shell 6 at both ends thereof. In other embodiments, the panel fixing frame 5 can be in an X-shaped support structure, the center position of the X-shaped support structure is an installation position for rotation installation, and the X-shaped structure is fixedly connected to the touch screen protective shell 6 at four corners thereof. The support beam 2 is in a long strip-shaped plate structure, and the support beam 2 is fixedly connected to the shell 7 of the numerical control simulation device main body at both ends thereof. In other embodiments, the support beam 2 can also be in a square frame structure, an installation fixed plate for installing the motor 1 is arranged at the center of the support structure, the motor 1 is installed on the installation fixed plate at the center of the frame structure, and the frame structure is fixedly connected to the shell skeleton at both ends thereof.

[0026] L-shaped fixed angle codes 3 are arranged at both ends of the support beam 2, the support beam 2 is first fixed to one branch of the L-shaped fixed angle code 3 at both end positions, and the other branch of the L-shaped fixed angle code 3 is fixed to the shell skeleton 72. In other embodiments, the support beam 2 can also be directly fixedly connected to the shell skeleton 72.

[0027] The above merely describes preferred embodiments of the present application, and is not used to limit the present application, and the patent protection scope of the present application is subject to the claims, and any equivalent structural changes made according to the content of the specification and drawings of the present application should also be included in the protection scope of the present application.

Claims

1. A numerical control simulation device characterized by comprising: The shell is provided with a surface mounting numerical control panel, the back of the numerical control panel is connected with a panel fixing frame, the panel fixing frame is rotationally assembled on the shell around an axis perpendicular to the surface of the shell, or the back of the numerical control panel itself is provided with a panel assembling structure, the panel assembling structure is rotationally assembled on the shell around an axis perpendicular to the surface of the shell, and the numerical control panel is configured with a joint motor to drive the numerical control panel to rotate.

2. The numerical control simulation apparatus according to claim 1, characterized by, The surface of the shell is provided with a receiving groove, and the numerical control panel is located in the receiving groove and has a surface flush with the surface of the shell.

3. The numerical control simulation apparatus according to claim 2, characterized by, The numerical control panel is circular, and the numerical control panel comprises a touch screen and a touch screen protective shell arranged at the periphery of the touch screen, and the panel fixing frame is fixedly connected to the touch screen protective shell.

4. The numerical control simulation apparatus according to claim 3, characterized by, The shell comprises a shell framework, a shell cover plate and a support beam, the receiving groove is arranged on the shell cover plate and is circular, the support beam is connected to the shell framework, and the panel fixing frame is rotationally mounted on the support beam.

5. The numerical control simulation apparatus according to claim 4, characterized by, The numerical control panel is provided with a motor, the motor is fixedly mounted on the support beam, and the motor is in transmission connection with the panel fixing frame.

6. The numerical control simulation apparatus according to any one of claims 3 to 5, characterized by, The panel fixing frame is a long strip-shaped plate structure, and the panel fixing plate is fixedly connected to the touch screen protective shell at both ends thereof.

7. The numerical control simulation apparatus according to claim 4 or 5, characterized by The support beam is a long strip-shaped plate structure, extends along a diameter direction of the receiving groove, and is fixedly connected to the shell at both ends thereof.

8. The numerical control simulation apparatus according to claim 7, characterized by, The support beam is provided with an L-shaped fixing corner code at both ends thereof, the support beam is fixed to one branch of the L-shaped fixing corner code at both ends, and the other branch of the L-shaped fixing corner code is fixed to the shell framework. The support beam is provided with an L-shaped fixing corner code at both ends thereof, the support beam is fixed to one branch of the L-shaped fixing corner code at both ends, and the other branch of the L-shaped fixing corner code is fixed to the shell framework.