Double-station processing machine tool

By installing installation and collection components in a dual-station machining tool, the problem of waste chips sticking to the isolation mesh and being difficult to collect is solved, achieving efficient cleaning of waste chips and stable positioning of materials, thus ensuring normal operation of the equipment.

CN223749095UActive Publication Date: 2026-01-02HUAIAN JUJIANG CNC MACHINE TOOL CO LTD
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Patent Information

Application Number
CN202520219010.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-12
Publication Date
2026-01-02
Estimated Expiration
2035-02-12

AI Technical Summary

Technical Problem

In existing dual-station machining centers, waste chips may stick to the isolation mesh. It is difficult to collect the waste chips completely by their own weight alone. Over time, a thick layer of waste chips is formed, which affects the normal operation of the equipment.

Method used

A mounting component, a first collection component, and a second collection component are set in a dual-station machining tool. Through structural cooperation, the waste chips on the filter screen are agitated, which enhances the falling speed and efficiency of the waste chips. The main positioning component and the auxiliary positioning component prevent excessive material compression.

Benefits of technology

This achieves efficient collection of waste debris from the filter screen, avoiding the problem of waste debris accumulation affecting equipment operation, and also avoiding excessive compression of materials during the positioning process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of processing machine tools, and particularly discloses a double-station processing machine tool which comprises an operation platform, a first installation frame and a processing assembly used for drilling, an installation groove is formed in the top face of the operation platform, and a lifting table is installed in the installation groove. A first mounting frame, a main positioning assembly and a first mounting frame are sequentially mounted on the side wall of the operating platform, a first linear module is mounted on the top face of an inner cavity of the first mounting frame, a machining assembly is mounted at the moving end of the first linear module, and a dust collecting assembly is mounted on the side wall of the machining assembly. According to the double-station machining tool, the mounting assembly, the first collecting assembly and the second collecting assembly are arranged in the double-station machining tool, when the double-station machining tool is used, through mutual cooperation of the structures, the filter screen can be pounded when waste scraps on the filter screen are collected through the second collecting frame and the first collecting frame, and the waste scraps on the filter screen can be collected through the second collecting frame and the second collecting frame. And therefore, the falling speed and efficiency of the scraps on the filter screen are improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of processing machine tool, specifically relates to a double-station processing machine tool. BACKGROUND

[0002] The double-station processing machine tool is an advanced machine tool device with two independent processing stations, which can process two workpieces simultaneously. This design significantly improves production efficiency and processing accuracy, and is particularly suitable for fields requiring high efficiency, high precision and high automation in modern manufacturing.

[0003] The existing utility model patent double-station automatic processing machine (publication number: CN219901297U) has a cleaning mechanism installed, so that the processing machine body has a self-cleaning function. When the processing machine body drills holes in the material, waste will remain on the processing machine body, which will require manual cleaning of the waste on the processing machine body later. Therefore, the processing machine body needs to have a self-cleaning function. After the material drilling is completed, the first electric sliding rail and the second electric sliding rail work simultaneously to drive the dust removal box to move. The ventilation groove makes the air inside the dust removal box circulate, and the dust screen is used to block dust. The dust fan works to adsorb the waste remaining on the processing machine body to one side of the barrier net. When the first electric telescopic rod works, the two sets of collection boxes are in contact and located below the barrier net. The dust fan stops working, and the waste on one side of the barrier net will fall into the collection box due to the lack of suction and its own gravity. The electromagnet is de-energized, the collection box is pulled out, the magnet body is moved away from the electromagnet, and the collection box can be removed from the dust removal box. Then the waste in the two dust removal boxes is cleaned, and the waste remaining on the processing machine body is cleaned without the need for manual cleaning later, reducing the labor intensity of workers.

[0004] In the existing technology, the waste may stick to the isolation net, and it is difficult to completely collect the waste on the isolation net relying on the gravity of the waste itself. With the passage of time, the waste that is not cleaned in time will gradually accumulate on the isolation net, forming a thick layer of waste, which will affect the normal operation of the equipment.

[0005] Therefore, the present application proposes a double-station processing machine tool to solve the above problems. Utility model content

[0006] The utility model aims to provide a double-station processing machine tool to solve the problem that in the existing technology, the waste may stick to the isolation net, and it is difficult to completely collect the waste on the isolation net relying on the gravity of the waste itself.

[0007] In order to achieve the above object, the utility model provides the following technical scheme: a double workstation processing machine tool, including operation platform, mounting frame one and the processing assembly for drilling The top surface of operation platform is provided with mounting groove, lifting platform is installed in mounting groove, the side wall of operation platform is sequentially provided with mounting frame one, main positioning assembly and mounting frame one, the top surface of the inner chamber of mounting frame one is provided with linear module one, the moving end of linear module one is provided with processing assembly, the side wall of processing assembly is provided with dust collection assembly;

[0008] The dust collection assembly comprises a fixed frame, and the side wall of the processing assembly is provided with the fixed frame;

[0009] The outer walls on the left and right sides of the fixed frame are respectively provided with mounting assemblies, the outer walls on the left and right sides of the fixed frame are respectively provided with receiving frames;

[0010] A first collection assembly is slidably installed in one of the receiving frames, and a second collection assembly is slidably installed in the other receiving frame;

[0011] The first collection assembly is provided with a resilient assembly in a matching mode, and the resilient assembly comprises a second spring;

[0012] The first collection assembly comprises a first collection frame, the first collection frame is slidably installed in the receiving frame, a first sliding groove is formed in one side of the top surface of the first collection frame, a connecting groove is formed in one side of the inner cavity of the first sliding groove, a second spring is installed on the side wall in the inner cavity of the connecting groove, a first plug-in block is installed on the side of the second spring away from the connecting groove, an arc-shaped groove is formed in the top surface of the first plug-in block, an ejection block is slidably installed in the first sliding groove, a fixed plate is installed on the side wall of the ejection block, a plurality of third springs are installed on the bottom surface of the inner cavity of a second sliding groove connected to the side of the plurality of third springs away from the fixed plate;

[0013] An insertion groove two is formed in the side wall of the ejection block, and the first plug-in block is inserted into the insertion groove two;

[0014] The second collection assembly comprises a second collection frame, and a supporting rod is installed on the side wall of the second collection frame.

[0015] Preferably, a linear module two is installed on the top surface of the receiving frame, a rectangular frame is installed on the side wall of the moving end of the linear module two, a plug-in frame is installed in the rectangular frame, and a through groove is formed in the top surface of the receiving frame.

[0016] Preferably, a first collection frame is slidably installed in one of the receiving frames, an insertion groove one is formed in the top surface of the first collection frame, and a plug-in frame is inserted into the insertion groove one.

[0017] Preferably, a collecting frame two is slidingly installed in the receiving frame, a plug-in slot three is formed in the top surface of the collecting frame two, and a plug-in frame is plugged into the plug-in slot three.

[0018] Preferably, the main positioning assembly comprises a mounting frame two, the mounting frame two is installed on the side wall of the operation platform, an electric push rod is installed on the mounting frame two, a moving plate is installed on the telescopic end of the electric push rod, and an auxiliary positioning assembly is installed in cooperation between the moving plate and the mounting frame two.

[0019] Preferably, the auxiliary positioning assembly comprises a spring one, the spring one is symmetrically installed on the bottom surface of the moving plate, and one pressure plate is installed on the side away from the moving plate of the two spring ones.

[0020] Preferably, limit rods are installed on the two side walls in the inner cavity of the mounting frame two, and a pressure plate is slidingly installed between the two limit rods.

[0021] Preferably, the arc-shaped slot is designed in an arc shape, a jacking rod is plugged into the sliding slot two, and the jacking rod is plugged into the arc-shaped slot.

[0022] Preferably, a ventilation opening is formed in the top surface of the fixed frame, a dust suction fan is symmetrically installed on the top surface in the inner cavity of the fixed frame, and a filter screen is installed on the side wall in the inner cavity of the fixed frame.

[0023] Compared with the prior art, the utility model has the beneficial effects that:

[0024] 1. The utility model discloses a double-station machining tool, which is provided with an installation assembly, a first collecting assembly and a second collecting assembly. When the device is used, the above-mentioned structures are mutually matched, so that the filter screen can be stirred when the waste residues on the filter screen are collected by the collecting frame two and the collecting frame one. Therefore, the falling speed and efficiency of the waste residues on the filter screen are enhanced, so that the problem that the waste residues may be adhered to the isolation screen and cannot be completely collected by the gravity of the waste residues in the prior art is solved.

[0025] 2. The utility model discloses a double-station machining tool, which is provided with a main positioning assembly, an auxiliary positioning assembly and a limit rod. When the device is used, the above-mentioned structures are mutually matched, so that the material on the lifting platform can be positioned, and the material is prevented from being excessively pressed. BRIEF DESCRIPTION OF DRAWINGS

[0026] Figure 1 It is a perspective view of the utility model;

[0027] Figure 2 It is a sectional view of the utility model;

[0028] Figure 3 It is a sectional view of the dust collecting assembly of the utility model;

[0029] Figure 4 is a first collection assembly structural view of the utility model;

[0030] Figure 5 is a second collection assembly structural view of the utility model;

[0031] Figure 6 is a first collection assembly structural view of the utility model Figure 5 is an enlarged structural view of A in the middle;

[0032] Figure 7 is a second collection assembly structural view of the utility model;

[0033] Figure 8 is an arc-shaped groove structural view of the utility model.

[0034] In the figure: 1, operation platform; 3, control panel; 4, mounting frame one; 5, processing assembly; 6, dust collection assembly; 601, fixed frame; 602, ventilation opening; 603, dust suction fan; 7, main positioning assembly; 701, mounting frame two; 702, electric push rod; 703, moving plate; 8, auxiliary positioning assembly; 801, spring one; 802, pressure plate; 9, filter screen; 10, mounting groove; 11, lifting platform; 12, linear module one; 13, limiting rod; 16, mounting assembly; 161, storage frame; 162, linear module two; 163, rectangular frame; 164, plug-in rack; 17, first collection assembly; 171, collection frame one; 172, plug-in groove one; 173, sliding groove one; 174, sliding groove two; 175, connecting groove; 191, spring two; 192, plug-in block one; 193, arc-shaped groove; 194, ejection block; 195, plug-in groove two; 196, spring three; 197, fixed plate; 20, second collection assembly; 2001, collection frame two; 2002, plug-in groove three; 2003, bracing rod. DETAILED DESCRIPTION

[0035] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0036] Reference Figures 1-7As shown, the utility model provides a kind of double-station machining machine tool, including operation platform 1, mounting frame one 4 and the machining assembly 5 for drilling are equipped with installation groove 10 in the top surface of operation platform 1, lifting platform 11 is installed in installation groove 10, and mounting frame one 4, main positioning assembly 7 and mounting frame one 4 are sequentially installed in the side wall of operation platform 1, linear module one 12 is installed in the top surface of the inner cavity of mounting frame one 4, machining assembly 5 is installed on the moving end of linear module one 12, dust collection assembly 6 is installed on the side wall of machining assembly 5;

[0037] Among them, lifting platform 11 and the structure and working principle for lifting machining material in the prior art utility model patent a double-station automatic machining machine tool (announcement number: CN219901297U) are same, do not make too much description here;

[0038] Further, control panel 3 is provided on the outer wall of operation platform 1, and control panel 3 is used for controlling the operation of electrical equipment in the device;

[0039] Dust collection assembly 6 includes fixed frame 601, and fixed frame 601 is installed on the side wall of machining assembly 5;

[0040] Fixed frame 601 is respectively installed on the outer wall of left and right sides, and installation assembly 16 includes storage frame 161, and storage frame 161 is respectively embedded and installed on the outer wall of left and right sides of fixed frame 601;

[0041] First collection assembly 17 is slidably installed in one storage frame 161, and second collection assembly 20 is slidably installed in another storage frame 161;

[0042] Elastic assembly is fittedly installed in first collection assembly 17, and the elastic assembly includes spring two 191;

[0043] First collection assembly 17 includes collection frame one 171, and collection frame one 171 is slidably installed in storage frame 161, and one side of the top surface of collection frame one 171 is provided with sliding groove one 173, and one side of the inner cavity of sliding groove one 173 is provided with connecting groove 175, and spring two 191 is installed on the side wall in the inner cavity of connecting groove 175, and plug-in block one 192 is installed on the side away from connecting groove 175 of spring two 191, and arc-shaped groove 193 is formed in the top surface of plug-in block one 192, and ejector block 194 is slidably installed in sliding groove one 173, and fixed plate 197 is installed on the side wall of ejector block 194, and the bottom surface of fixed plate 197 is provided with a plurality of spring three 196, and the side away from fixed plate 197 of a plurality of spring three 196 is connected with the bottom surface in the inner cavity of sliding groove two 174;

[0044] Ejector block 194 is provided with plug-in groove two 195 on the side wall, and plug-in block one 192 is inserted into plug-in groove two 195;

[0045] The side wall of the ejection block 194 and the top surface of the insertion block 192 are designed in an arc shape.

[0046] The second collecting assembly 20 comprises a collecting frame 2001, and a supporting rod 2003 is mounted on the side wall of the collecting frame 2001.

[0047] The arc-shaped slot 193 is designed in an arc shape, the supporting rod 2003 is inserted into the sliding groove 174, and the supporting rod 2003 is inserted into the arc-shaped slot 193.

[0048] In further embodiments, referring to Figures 1-7 , the top surface of the receiving frame 161 is provided with a linear module 162, the moving end side wall of the linear module 162 is provided with a rectangular frame 163, the rectangular frame 163 is provided with an insertion rack 164 in the east, and the top surface of the receiving frame 161 is provided with a through slot;

[0049] One receiving frame 161 is slidably mounted with a collecting frame 171, the top surface of the collecting frame 171 is provided with an insertion slot 172, and the insertion slot 172 is inserted with the insertion rack 164.

[0050] Another receiving frame 161 is slidably mounted with a collecting frame 2001, the top surface of the collecting frame 2001 is provided with an insertion slot 2002, and the insertion slot 2002 is inserted with the insertion rack 164.

[0051] The main positioning assembly 7 comprises a mounting rack 701, the side wall of the operation platform 1 is provided with the mounting rack 701, the mounting rack 701 is provided with an electric push rod 702, the telescopic end of the electric push rod 702 is provided with a moving plate 703, and the auxiliary positioning assembly 8 is cooperatively mounted between the moving plate 703 and the mounting rack 701.

[0052] Among them, the insertion rack 164 slides up and down on the rectangular frame 163, realizes mutual clamping and separation between the collecting frame 171 and the collecting frame 2001, and further facilitates the disassembly of the first collecting assembly 17 and the second collecting assembly 20.

[0053] In further embodiments, referring to Figures 1-2 , the auxiliary positioning assembly 8 comprises a spring 801, the bottom surface of the moving plate 703 is symmetrically provided with the spring 801, and one pressure plate 802 is mounted on the side away from the moving plate 703 of the two springs 801.

[0054] The mounting rack 701 is provided with a limiting rod 13 on the two side walls of the inner cavity, and the pressure plate 802 is slidably mounted between the two limiting rods 13.

[0055] The electric push rod 702 drives the moving plate 703 and the auxiliary positioning assembly 8 to descend, so that the material on the top surface of the lifting platform 11 is pressed and positioned, and the spring 801 prevents the material on the lifting platform 11 from being excessively pressed.

[0056] In further embodiments, with reference to Figures 1-3 The top surface of the fixed frame 601 is provided with a ventilation opening 602, the top surface of the inner cavity of the fixed frame 601 is symmetrically provided with a dust suction fan 603, and the sidewall of the inner cavity of the fixed frame 601 is provided with a filter screen 9.

[0057] The working principle of the utility model is as follows: when the device is used, first, the electrical equipment in the device is powered on, then the material to be processed is placed on the top surface of the lifting platform 11,

[0058] Then, the height of the lifting platform 11 in the vertical direction is adjusted, so that the height of the material on the lifting platform 11 is driven, then the electric push rod 702 drives the moving plate 703 and the auxiliary positioning assembly 8 to descend, so that the material on the top surface of the lifting platform 11 is pressed and positioned, and under the action of the spring 801, the material on the lifting platform 11 is prevented from being excessively pressed;

[0059] Then, the processing assembly 5 is started to drill the material, and the dust suction fan 603 is started to suck the dust generated in the processing upward and below the filter screen 9, after the processing is completed, the two storage frames 161 are started to drive the collection frame one 171 and the collection frame two 2001 to approach each other, when the collection frame one 171 and the collection frame two 2001 are completely attached, the supporting rod 2003 is inserted into the arc-shaped groove 193, and the insertion block one 192 is moved out of the insertion groove two 195, then under the action of the spring three 196, the ejection block 194 and the fixed plate 197 are popped up and impact the filter screen 9, so as to accelerate the falling of the waste on the filter screen 9;

[0060] When the collection frame one 171 and the collection frame two 2001 are retracted, the ejection block 194 and the top surface of the inner cavity of the storage frame 161 are in contact, and because the sidewall of the ejection block 194 and the top surface of the insertion block one 192 are arc-shaped, the ejection block 194 is moved downward under the extrusion of the storage frame 161, and the insertion block one 192 is retracted into the connecting groove 175, when the connecting groove 175 and the insertion groove two 195 are parallel, under the action of the spring two 191, the insertion block one 192 is clamped into the insertion groove two 195 to limit the ejection block 194.

[0061] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A double station machining tool comprising an operating platform (1), a mounting frame (4) and a machining assembly (5) for drilling, characterized in that, The top surface of the operation platform (1) is provided with a mounting groove (10), a lifting platform (11) is mounted in the mounting groove (10), the side wall of the operation platform (1) is sequentially provided with a mounting frame one (4), a main positioning assembly (7) and the mounting frame one (4), the top surface of the inner cavity of the mounting frame one (4) is provided with a linear module one (12), the moving end of the linear module one (12) is provided with a processing assembly (5), and the side wall of the processing assembly (5) is provided with a dust collection assembly (6). The dust collection assembly (6) comprises a fixed frame (601), and the side wall of the processing assembly (5) is provided with the fixed frame (601). The left and right outer walls of the fixed frame (601) are respectively provided with mounting assemblies (16), the mounting assembly (16) comprises a storage frame (161), and the left and right outer walls of the fixed frame (601) are respectively embeddedly provided with the storage frame (161). A first collection assembly (17) is slidably mounted in one of the storage frames (161), and a second collection assembly (20) is slidably mounted in the other storage frame (161). The first collection assembly (17) is provided with an elastic assembly in a matched mode, and the elastic assembly comprises a spring two (191). The first collection assembly (17) comprises a collection frame one (171), the storage frame (161) is slidably provided with the collection frame one (171), one side of the top surface of the collection frame one (171) is provided with a sliding groove one (173), one side of the inner cavity of the sliding groove one (173) is provided with a connecting groove (175), the side wall of the inner cavity of the connecting groove (175) is provided with the spring two (191), one side, away from the connecting groove (175), of the spring two (191) is provided with a plug-in block one (192), the top surface of the plug-in block one (192) is provided with an arc-shaped groove (193), the sliding groove one (173) is slidably provided with an ejection block (194), the side wall of the ejection block (194) is provided with a fixed plate (197), the bottom surface of the fixed plate (197) is provided with a plurality of spring threes (196), and the inner cavity bottom surface of the sliding groove two (174) is connected with the plurality of spring threes (196) on one side, away from the fixed plate (197). The side wall of the ejection block (194) is provided with a plug-in groove two (195), and the plug-in groove two (195) is plugged with the plug-in block one (192). The second collection assembly (20) comprises a collection frame two (2001), and the side wall of the collection frame two (2001) is provided with a supporting rod (2003).

2. A dual station machine tool as claimed in claim 1, characterised in that: The top surface of the storage frame (161) is provided with a linear module two (162), the moving end side wall of the linear module two (162) is provided with a rectangular frame (163), the rectangular frame (163) is provided with a plug-in frame (164) in the middle, and the top surface of the storage frame (161) is provided with a through groove.

3. A dual station machine tool as claimed in claim 2, characterised in that: One of the storage frames (161) is slidably provided with the collection frame one (171), the top surface of the collection frame one (171) is provided with a plug-in groove one (172), and the plug-in groove one (172) is plugged with the plug-in frame (164).

4. A dual station machine tool as claimed in claim 2, characterised in that: Another said storage frame (161) is slidably installed with a collecting frame two (2001), the top surface of the collecting frame two (2001) is provided with an inserting slot three (2002), and the inserting slot three (2002) is inserted with an inserting frame (164).

5. A dual station machine tool as claimed in claim 1, characterised in that: The main positioning assembly (7) comprises a mounting frame two (701), the side wall of the operation platform (1) is provided with the mounting frame two (701), the mounting frame two (701) is provided with an electric push rod (702), the telescopic end of the electric push rod (702) is provided with a moving plate (703), and the auxiliary positioning assembly (8) is movably arranged between the moving plate (703) and the mounting frame two (701).

6. A dual station machine tool as claimed in claim 5, characterised in that: The auxiliary positioning assembly (8) comprises a spring one (801), and the bottom surface of the moving plate (703) is symmetrically provided with the spring one (801); one pressure plate (802) is arranged on the side, away from the moving plate (703), of the two spring ones (801).

7. A dual station machine tool as claimed in claim 5, characterised in that: The mounting frame two (701) is provided with a limiting rod (13) on the two side walls in the inner cavity, and the pressure plate (802) is slidably arranged between the two limiting rods (13).

8. A dual station machine tool as claimed in claim 1, characterised in that: The arc-shaped slot (193) is designed in an arc shape, the top support rod (2003) is inserted into the sliding slot two (174), and the top support rod (2003) is inserted into the arc-shaped slot (193).

9. A dual station machine tool as claimed in claim 1, characterised in that: The top surface of the fixed frame (601) is provided with a ventilation opening (602), the inner cavity of the fixed frame (601) is symmetrically provided with a dust suction fan (603) on the top surface, and the side wall of the inner cavity of the fixed frame (601) is provided with a filter screen (9).

Citation Information

Patent Citations

  • Double-station automatic processing machine tool

    CN219901297U