A double spindle drill center integrated hanging slide base

CN224795106UActive Publication Date: 2026-09-25GUANGDONG JUTUO INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202521554353.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-24
Publication Date
2026-09-25
Estimated Expiration
2035-07-24

AI Technical Summary

Technical Problem

[0002]由于传统的双主轴钻攻机床的滑座是为分体式的结构,这种结构安装较为复杂,在加工过程中会产生较大的精度变化,且较为笨重,对机床整体的性能有很大影响

Benefits of technology

[0013]与现有技术相比,本实用新型提供了一种双主轴钻攻中心的一体式挂滑座,具备的有益效果:依靠一体式滑座的结构,解决了传统双头钻攻机床因分体式滑座导致安装困难,过于笨重,位移速度低,整体刚性较弱等问题。依靠一体式滑座可有效的提高机床滑座的位移速度,提高机床整体刚性,以有效的提升整体机床的性能。

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Abstract

The utility model relates to engineering machinery technical field, concretely relates to a kind of integrated hanging slide base of double-spindle drilling center, including left spindle box installation position, integrated slide base, right spindle box installation position, left spindle box part, right spindle box part, the left spindle box part is installed on the left spindle box installation position, the right spindle box part is installed on the right spindle box installation position, the integrated slide base is used for the support and positioning of right spindle box installation position, the left spindle box part and right spindle box part are equipped with independent drive system, to realize the synchronous or asynchronous operation of double spindle.The utility model relies on the structure of integrated slide base, solves the traditional double-end drilling machine tool because of split slide base and leads to installation difficulty, too bulky, displacement speed is low, and the problem such as weak overall rigidity, relies on integrated slide base, and the displacement speed of machine tool slide base can be effectively improved, improves machine tool overall rigidity, to effectively promote the performance of overall machine tool.
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Description

Technical Field

[0001] This utility model relates to the field of engineering machinery technology, specifically to an integrated hanging slide for a dual-spindle drilling and tapping center. Background Technology

[0002] Because the slide of a traditional twin-spindle drilling and tapping machine is a split structure, the installation of this structure is relatively complicated, it will produce large changes in accuracy during the machining process, and it is also relatively bulky, which has a great impact on the overall performance of the machine tool.

[0003] Existing technologies, such as traditional dual-head machines, suffer from high costs, large space requirements, difficult installation, difficulty in guaranteeing accuracy, and slow displacement speed.

[0004] Therefore, an integrated sliding block for dual-spindle drilling and tapping centers is proposed to solve the problems mentioned above. Utility Model Content

[0005] To address the shortcomings of existing technologies, this utility model provides an integrated sliding block for dual-spindle drilling and tapping centers, which solves the problems mentioned in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution: an integrated sliding block for a dual-spindle drilling and tapping center, comprising a left spindle box mounting position, an integrated sliding block, a right spindle box mounting position, a left spindle box sub-assembly, and a right spindle box sub-assembly, wherein the left spindle box sub-assembly is mounted on the left spindle box mounting position, and the right spindle box sub-assembly is mounted on the right spindle box mounting position.

[0007] Preferably, the integrated slide is used for support and positioning of the right spindle box mounting position.

[0008] Preferably, both the left spindle box assembly and the right spindle box assembly are equipped with independent drive systems to achieve synchronous or asynchronous operation of the two spindles.

[0009] Preferably, the integrated slide includes a guide rail and a slider for adjusting the spindle position to adapt to different processing requirements.

[0010] Preferably, both the left spindle box mounting position and the right spindle box mounting position are equipped with cooling systems to reduce the heat generated during the machining process.

[0011] Preferably, the cooling system includes coolant circulation pipes and temperature sensors to ensure temperature control during processing.

[0012] Preferably, the integrated slide is internally equipped with a vibration sensor and a load sensor, which are used to improve machining accuracy and equipment safety.

[0013] Compared with existing technologies, this utility model provides an integrated slide for a dual-spindle drilling and tapping center, which has the following advantages: The integrated slide structure solves the problems of difficult installation, excessive weight, low displacement speed, and weak overall rigidity in traditional dual-head drilling and tapping machine tools caused by separate slides. The integrated slide effectively increases the displacement speed of the machine tool slide and improves the overall rigidity of the machine tool, thereby effectively enhancing the overall performance of the machine tool. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the front structure of this utility model; Figure 3 This is a schematic diagram of the left side structure of this utility model; Figure 4 This is a top view of the structure of this utility model.

[0015] In the diagram: 1. Left spindle mounting position; 2. Integrated slide; 3. Right spindle box mounting position; 4. Left spindle box assembly; 5. Right spindle box assembly. Detailed Implementation

[0016] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model. Example

[0017] See Figures 1-4 This embodiment provides an integrated slide for a dual-spindle drilling and tapping center, including a left spindle box mounting position 1, an integrated slide 2, a right spindle box mounting position 3, a left spindle box assembly 4, and a right spindle box assembly 5. The left spindle box assembly 4 is mounted on the left spindle box mounting position 1, and the right spindle box assembly 5 is mounted on the right spindle box mounting position 3. The integrated slide 2 is designed to simultaneously support and position the two spindle box assemblies to achieve high-precision and high-efficiency drilling and tapping operations. By integrating the two spindle box assemblies into one integrated slide 2, the machine tool's footprint can be reduced, while improving processing flexibility and production efficiency.

[0018] The integrated slide 2 is used for support and positioning of the right spindle box mounting position 3. The integrated slide 2 is made of high-strength material to withstand the high load and vibration generated during the machining process. In addition, the design of the integrated slide 2 takes into account the effects of thermal expansion and contraction to ensure that it can maintain high positioning accuracy during long-term operation. The integrated slide 2 may also include one or more shock absorption devices to further reduce the impact of vibration on machining accuracy.

[0019] Both the left spindle box assembly 4 and the right spindle box assembly 5 are equipped with independent drive systems to achieve synchronous or asynchronous operation of the two spindles. The drive system of each spindle box assembly can be controlled independently, allowing the two spindles to operate at different speeds or at different times, thereby improving the flexibility and efficiency of machining. It can also enable the two spindles to work together when needed to complete more complex machining tasks.

[0020] The integrated slide 2 includes guide rails and sliders for adjusting the spindle position to accommodate different machining requirements. The design of the guide rails and sliders allows for precise adjustment of the spindle position to accommodate workpieces of different sizes and shapes. This adjustment capability enables the machine tool to quickly switch machining tasks without large-scale reconfiguration, thereby improving production efficiency.

[0021] Both the left spindle box mounting position 1 and the right spindle box mounting position 3 are equipped with cooling systems to reduce the heat generated during machining. The cooling systems are designed to effectively dissipate heat, prevent the machine tool from overheating, thereby extending the service life of the machine tool and maintaining machining accuracy. The coolant circulation pipeline can ensure that the coolant is evenly distributed, while the temperature sensor can monitor the temperature of the machine tool in real time to ensure that it operates within a safe and effective temperature range.

[0022] The cooling system includes coolant circulation pipes and temperature sensors to ensure temperature control during machining. The coolant circulation pipes are designed to circulate coolant throughout the machine tool to absorb and remove heat. Temperature sensors are installed in critical locations, such as near the spindle box, to monitor temperature changes and trigger adjustments to the cooling system when necessary to maintain optimal machining temperatures.

[0023] The integrated slide 2 is equipped with vibration sensors and load sensors. These sensors are used to improve machining accuracy and equipment safety. The vibration sensor can detect the vibration of the machine tool during operation, while the load sensor can monitor the load on the spindle. The data from these sensors can be used to monitor the machine tool's operating status in real time, promptly identify and resolve potential problems, thereby improving machining accuracy and equipment safety. In addition, these sensors can be integrated with the machine tool's control system to achieve automated fault diagnosis and preventive maintenance.

[0024] In practical use, the integrated slide of the dual-spindle drilling and tapping center integrates the left spindle box assembly 4 and the right spindle box assembly 5 onto the integrated slide 2, achieving high-precision and high-efficiency drilling and tapping operations. The integrated slide 2 is made of high-strength materials, capable of withstanding high loads and vibrations during processing, while also considering the effects of thermal expansion and contraction to ensure high-precision positioning during long-term operation. Each spindle box assembly is equipped with an independent drive system, allowing the dual spindles to operate synchronously or asynchronously, improving processing flexibility and efficiency. Furthermore, the integrated slide 2 includes guide rails and sliders for adjusting the spindle position to accommodate workpieces of different sizes and shapes. The integrated design allows the machine tool to quickly switch between machining tasks, improving production efficiency. Both the left spindle box mounting position 1 and the right spindle box mounting position 3 are equipped with cooling systems, which effectively dissipate heat through coolant circulation pipes and temperature sensors, preventing the machine tool from overheating, extending its service life, and maintaining machining accuracy. The vibration sensor and load sensor installed inside the integrated slide 2 are used to monitor the machine tool's operating status in real time, improving machining accuracy and equipment safety. These sensors can also be integrated with the machine tool's control system to achieve automated fault diagnosis and preventive maintenance. The overall design reduces the machine tool's footprint, improves machining flexibility and production efficiency, while ensuring the stability and safety of the equipment.

[0025] The installation, connection, or setting methods disclosed in this embodiment are all common mechanical connection methods. As long as they can achieve their beneficial effects, they can be implemented. Therefore, this embodiment will not elaborate on their specific structural composition and working principle.

[0026] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An integrated sliding block for a dual-spindle drilling and tapping center, characterized in that: It includes a left spindle box mounting position (1), an integrated slide (2), a right spindle box mounting position (3), a left spindle box sub-mount (4), and a right spindle box sub-mount (5). The left spindle box sub-mount (4) is mounted on the left spindle box mounting position (1), and the right spindle box sub-mount (5) is mounted on the right spindle box mounting position (3).

2. The integrated sliding block for a dual-spindle drilling and tapping center according to claim 1, characterized in that: The integrated slide (2) is used for support and positioning of the right spindle box mounting position (3).

3. The integrated sliding block for a dual-spindle drilling and tapping center according to claim 2, characterized in that: Both the left spindle box assembly (4) and the right spindle box assembly (5) are equipped with independent drive systems.

4. The integrated sliding block for a dual-spindle drilling and tapping center according to claim 3, characterized in that: The integrated slide (2) includes a guide rail and a slider for adjusting the position of the spindle.

5. The integrated sliding block for a dual-spindle drilling and tapping center according to claim 1, characterized in that: Both the left spindle box mounting position (1) and the right spindle box mounting position (3) are equipped with cooling systems.

6. The integrated sliding block for a dual-spindle drilling and tapping center according to claim 5, characterized in that: The cooling system includes coolant circulation pipes and temperature sensors.

7. The integrated sliding block for a dual-spindle drilling and tapping center according to claim 6, characterized in that: The integrated slide (2) is internally equipped with a vibration sensor and a load sensor.