Receiving disc of movable precision automatic lathe

By using the drive components and buffer structure of the mobile receiving tray of the Swiss-type machine, the problem of the impact of receiving tray replacement on material collection efficiency is solved, achieving the effect of efficient material collection and protection.

CN223718322UActive Publication Date: 2025-12-26DALIAN SHENGSHI PRECISION MASCH CO LTD
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Patent Information

Application Number
CN202520136000.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-21
Publication Date
2025-12-26
Estimated Expiration
2035-01-21

AI Technical Summary

Technical Problem

The existing Swiss-type lathe receiving tray requires the machine to stop working and sort the material after it is full, which affects processing and collection efficiency. In addition, the impact force between the material and the receiving tray causes deformation, which affects the service life.

Method used

The machine adopts a mobile receiving tray, which is driven by a drive component and a servo motor. Combined with a spring and rubber pad buffer structure, it reduces the impact force of materials and automatically replaces the receiving tray when it is full.

Benefits of technology

It improves material collection efficiency, protects materials and receiving trays, reduces the impact of impact on the equipment, and extends service life.

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Abstract

The utility model relates to the technical field of precision automatic lathe, in particular to a movable precision automatic lathe material receiving disc which comprises an upper material receiving disc, a lower material receiving disc A and a lower material receiving disc B. A material conveying channel for conveying materials is fixed to one side of the upper material receiving disc through screws, and a connecting frame for fixing the upper material receiving disc is welded to the outer side of the upper material receiving disc. A bottom frame is welded to the end, away from the upper material receiving disc, of the connecting frame, driving frames are arranged at the bottoms of the lower material receiving disc A and the lower material receiving disc B, servo motors A for providing power are symmetrically connected to the interiors of the driving frames through bolts, and the power output ends of the servo motors A are in key connection with driving rods. Through the arrangement of the driving assembly, the servo motor A, the driving rod, the fixing plate, the spring A, the spring B, the supporting plate, the rubber pad and the annular plate, the problems that when an existing material receiving disc of the precision automatic lathe is used, the material receiving disc is inconvenient to replace, the material collecting efficiency is affected, and meanwhile materials are inconvenient to protect are solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of walking heart machine, concretely relates to a mobile walking heart machine receiving tray. BACKGROUND

[0002] Walking heart machine full name is walking heart type numerical control lathe, also can be called main shaft box mobile type numerical control automatic lathe, economic type turning and milling composite machine tool or longitudinal cutting lathe, belongs to precision machining equipment, can complete turning, milling, drilling, boring, attack, carving etc.

[0003] But the existing walking heart machine receiving tray uses, generally utilizes the receiving tray to collect the material after processing, however the receiving tray is filled after, needs making the walking heart machine equipment stop working, then the material on the receiving tray is arranged again, the processing and the collection efficiency of the material cause certain influence, and the material after processing falls into the receiving tray, will produce the impact force with the receiving tray, the impact force will make the material and the receiving tray deform, cause certain influence to the use of the material and the receiving tray. UTILITY MODEL CONTENTS

[0004] The utility model discloses a kind of mobile walking heart machine receiving tray, the utility model is provided with driving assembly, servo motor A, driving rod, fixed plate, spring A, spring B, branch plate, rubber pad and ring plate, solve the existing walking heart machine receiving tray when using, the receiving tray is not replaced, affect material collection efficiency, and the problem that material is not protected with inconvenience.

[0005] The utility model solves the technical scheme that it adopts is a kind of mobile walking heart machine receiving tray, including upper receiving tray, lower receiving tray A and lower receiving tray B, the upper receiving tray side screw is fixed with the material conveying of material conveying channel, the upper receiving tray outside is welded with the connecting frame of the upper receiving tray fixed, and the bottom frame is welded at the end away from the upper receiving tray of connecting frame, the lower receiving tray A and lower receiving tray B bottom are provided with driving frame, and driving frame inside symmetrical bolt connection has the servo motor A of power supply, the power output end of servo motor A is keyed with driving rod, and the end away from servo motor A of driving rod is bolted with lower receiving tray A bottom, the bottom frame inside is provided with the driving assembly of driving frame movement, the upper receiving tray inboard is welded with fixed plate, and fixed plate inside is welded with spring B, spring B outside is welded with branch plate, the lower receiving tray A inside is welded with spring A, and spring A side is welded with ring plate, the ring plate and branch plate outside are all bonded with the rubber pad of buffer.

[0006] When the material is processed, the processed material enters the upper receiving tray through the conveying path, then the material contacts the fixed plate in the upper receiving tray, the supporting plate on the fixed plate shrinks inward, then the spring B in the fixed plate is compressed, then the material falls outside the ring plate in the lower receiving tray A, then the ring plate moves downward, the spring A at the bottom of the ring plate is compressed, and the rubber pad outside the supporting plate and the ring plate reduces the impact force of the material, thereby reducing the impact force of the material entering the lower receiving tray A, thereby facilitating protection of the processed material.

[0007] When the lower receiving tray A is filled with processed material, the drive assembly in the chassis moves the drive frame, so that the drive frame moves the lower receiving tray A out of the upper receiving tray, then the lower receiving tray B on the drive frame moves into the bottom of the upper receiving tray, thereby improving the collection efficiency of the material.

[0008] Specifically, the drive assembly includes a servo motor B, a lead screw, a threaded sleeve A, a threaded sleeve B, a drive plate A and a drive plate B, the inside of the chassis is bolted with a servo motor B providing power, and the power output end of the servo motor B is keyed with a lead screw, the outside of the lead screw is threadedly connected with a threaded sleeve A and a threaded sleeve B, and the threaded sleeve A is located on the left side of the threaded sleeve B, the outside of the threaded sleeve A is welded with a drive plate A connected with the drive frame, and the outside of the threaded sleeve B is welded with a drive plate B connected with the drive frame.

[0009] By adopting the above technical scheme, when the positions of the lower receiving tray A and the lower receiving tray B need to be adjusted, the servo motor B in the chassis is driven to rotate by the external controller, the threaded sleeve A and the threaded sleeve B outside the lead screw are both limited by the external structure, then the threaded sleeve A drives the drive plate A to move, the threaded sleeve B drives the drive plate B to move, then the drive plate A and the drive plate B drive the drive frame to move in the chassis, then the lower receiving tray A on the drive frame moves out of the upper receiving tray, and the lower receiving tray B moves into the upper receiving tray, thereby facilitating adjustment of the positions of the lower receiving tray A and the lower receiving tray B.

[0010] Specifically, the surface of the drive frame is symmetrically provided with a connecting groove, and a connecting block connected with the lower receiving tray A is slidably connected in the connecting groove.

[0011] By adopting the above technical scheme, when the lower receiving tray A rotates, the connecting block installed at the bottom of the lower receiving tray A slides in the connecting groove formed in the drive frame, so that the lower receiving tray A is limited, thereby improving the stability of the rotation of the lower receiving tray A.

[0012] Specifically, the bottom of the drive frame is welded with a sliding block, and the inside of the chassis is provided with a sliding rail for sliding the sliding block.

[0013] By adopting the technical scheme, when the driving frame moves in the chassis, the sliding block at the bottom of the driving frame slides in the sliding rail formed in the chassis, thereby improving the stability of the movement of the driving frame in the chassis.

[0014] Specifically, the input ends of the servo motor B and the servo motor A are electrically connected with the power supply end of the external power supply.

[0015] By adopting the technical scheme, the electrical equipment can work normally by connecting the external power supply.

[0016] The utility model discloses the beneficial effect of:

[0017] (1) a kind of mobile walk heart machine receiving tray described in the utility model, when lower receiving tray A is filled with the material after processing, the driving assembly in the chassis drives driving frame to move, so that driving frame drives lower receiving tray A to move from upper receiving tray, then lower receiving tray B on driving frame moves into the bottom of upper receiving tray, so as to facilitate the replacement of lower receiving tray, improve the processing and collection efficiency of material.

[0018] (2) a kind of mobile walk heart machine receiving tray described in the utility model, when material is processed, the material is entered into upper receiving tray through conveying way, then material contacts with fixed plate in upper receiving tray, support plate on fixed plate is inwards retracted, then spring B in fixed plate is compressed, then material falls in the ring plate of lower receiving tray A, then ring plate moves downward, spring A at the bottom of ring plate is compressed, while the rubber pad outside support plate and ring plate reduces the impact force of material, so as to reduce the impact force of material into lower receiving tray A, so as to facilitate the protection of material after processing. DRAWINGS

[0019] The utility model is further described below in connection with drawings and examples.

[0020] Figure 1 It is the whole structure schematic diagram of a kind of mobile walk heart machine receiving tray of the utility model;

[0021] Figure 2 It is the driving frame and lower receiving tray A internal structure schematic diagram of a kind of mobile walk heart machine receiving tray of the utility model;

[0022] Figure 3 It is the chassis internal plan view structure schematic diagram of a kind of mobile walk heart machine receiving tray of the utility model;

[0023] Figure 4 It is the fixed plate internal structure schematic diagram of a kind of mobile walk heart machine receiving tray of the utility model;

[0024] In the figure: 1, material conveying channel; 2, upper receiving tray; 3, rubber pad; 4, lower receiving tray A; 5, sliding block; 6, driving frame; 7, sliding rail; 8, lower receiving tray B; 10, fixed plate; 11, bottom frame; 12, connecting frame; 13, ring plate; 14, driving assembly; 15, driving rod; 16, servo motor A; 17, support plate; 18, spring A; 19, connecting block; 20, connecting groove; 21, screw rod; 22, threaded sleeve A; 23, driving plate A; 24, driving plate B; 25, servo motor B; 26, threaded sleeve B; 27, spring B. DETAILED DESCRIPTION

[0025] In order to make the technical means, creative features, purposes and effects of the utility model easy to understand, the utility model is further described below in combination with specific embodiments.

[0026] In order to improve the collection efficiency of materials, as an embodiment of the utility model, as shown in Figure 1 、 Figure 2 、 Figure 3 and Figure 4 , the utility model discloses a mobile walking core machine receiving tray, which comprises an upper receiving tray 2, a lower receiving tray A 4 and a lower receiving tray B 8, the upper receiving tray 2 is provided with a material conveying channel 1 on one side, the outer side of the upper receiving tray 2 is welded with a connecting frame 12 for fixing the upper receiving tray 2, and the end of the connecting frame 12 away from the upper receiving tray 2 is welded with a bottom frame 11, the bottom of the lower receiving tray A 4 and the lower receiving tray B 8 is provided with a driving frame 6, and the inside of the driving frame 6 is symmetrically bolted with a servo motor A 16 for providing power, the power output end of the servo motor A 16 is keyed with a driving rod 15, and the end of the driving rod 15 away from the servo motor A 16 is bolted with the bottom of the lower receiving tray A 4, the inside of the bottom frame 11 is provided with a driving assembly 14 for driving the movement of the driving frame 6, the inner side of the upper receiving tray 2 is welded with a fixed plate 10, and the inside of the fixed plate 10 is welded with a spring B 27, the outer side of the spring B 27 is welded with a support plate 17, the inside of the lower receiving tray A 4 is welded with a spring A 18, and the side of the spring A 18 is welded with a ring plate 13, the outer sides of the ring plate 13 and the support plate 17 are both bonded with a rubber pad 3 for buffering.

[0027] In use, after the materials are processed, the processed materials enter the upper receiving tray 2 through the conveying channel, then the materials contact the fixed plate 10 in the upper receiving tray 2, the support plate 17 on the fixed plate 10 contracts inward, then the spring B 27 in the fixed plate 10 is compressed, then the materials fall outside the ring plate 13 in the lower receiving tray A 4, then the ring plate 13 moves downward, the spring A 18 at the bottom of the ring plate 13 is compressed, and at the same time, the rubber pad 3 outside the support plate 17 and the ring plate 13 reduces the impact force of the materials, thereby reducing the impact force of the materials entering the lower receiving tray A 4, so as to facilitate the protection of the processed materials;

[0028] When the lower receiving tray A4 is filled with processed materials, the driving assembly 14 in the chassis 11 drives the driving frame 6 to move, so that the driving frame 6 drives the lower receiving tray A4 to move out of the upper receiving tray 2, and then the lower receiving tray B8 on the driving frame 6 moves into the bottom of the upper receiving tray 2, thereby improving the collection efficiency of the materials.

[0029] In order to adjust the positions of the lower receiving tray A4 and the lower receiving tray B8, as shown in the example, Figure 3 The utility model also includes that, the driving assembly 14 includes servo motor B25, screw rod 21, threaded sleeve A22, threaded sleeve B26, drive plate A23 and drive plate B24, the inside bolt connection of chassis 11 has the servo motor B25 of power supply, and the power output end key connection of servo motor B25 has screw rod 21, the outside thread connection of screw rod 21 has threaded sleeve A22 and threaded sleeve B26, and threaded sleeve A22 is located threaded sleeve B26 left side, the outside welding of threaded sleeve A22 has the drive plate A23 connected with driving frame 6, the outside welding of threaded sleeve B26 has the drive plate B24 connected with driving frame 6.

[0030] When the lower receiving tray A4 and the lower receiving tray B8 are to be adjusted in use, the servo motor B25 in the chassis 11 is driven to rotate by the external controller, and the threaded sleeve A22 and the threaded sleeve B26 outside the screw rod 21 are limited by the external structure, then the threaded sleeve A22 drives the drive plate A23 to move, the threaded sleeve B26 drives the drive plate B24 to move, and then the drive plate A23 and the drive plate B24 drive the driving frame 6 to move in the chassis 11, then the lower receiving tray A4 on the driving frame 6 moves out of the upper receiving tray 2, and the lower receiving tray B8 moves into the upper receiving tray 2, thereby facilitating the adjustment of the positions of the lower receiving tray A4 and the lower receiving tray B8.

[0031] In order to improve the stability of the rotation of the lower receiving tray A4, as shown in the example, Figure 2 The utility model also includes that, the surface of the driving frame 6 is symmetrically provided with a connecting groove 20, and the inside of the connecting groove 20 is slidably connected with a connecting block 19 connected with the lower receiving tray A4.

[0032] In use, when the lower receiving tray A4 rotates, the connecting block 19 installed at the bottom of the lower receiving tray A4 slides in the connecting groove 20 formed on the driving frame 6, so that the lower receiving tray A4 is limited, thereby improving the stability of the rotation of the lower receiving tray A4.

[0033] In order to improve the stability of the movement of the driving frame 6 in the chassis 11, as shown in the example, Figure 1 The utility model also includes that, the bottom of the driving frame 6 is welded with a sliding block 5, and the inside of the chassis 11 is provided with a sliding rail 7 for sliding the sliding block 5.

[0034] In use, when the driving frame 6 moves in the base frame 11, the sliding block 5 at the bottom of the driving frame 6 slides in the sliding rail 7 opened in the base frame 11, thereby improving the stability of the movement of the driving frame 6 in the base frame 11.

[0035] In order to use the electrical equipment to work normally, for example, as shown in Figure 2 and Figure 3 The utility model discloses still include, the input of servo motor B25 and servo motor A16 all with the power supply end electricity of external power supply connects.

[0036] In use, by connecting external power supply, using electrical equipment normal work.

[0037] The utility model discloses in using, when the material is processed, the material of processing enters the upper material receiving disc 2 through the conveying way, then the material contacts the fixed plate 10 in the upper material receiving disc 2, the inner shrinkage of the support plate 17 on the fixed plate 10, then the spring B27 in the fixed plate 10 is compressed, then the material falls in the ring plate 13 outside in the lower material receiving disc A4, then the ring plate 13 moves down, the spring A18 at the bottom of the ring plate 13 is compressed, and the rubber pad 3 outside the support plate 17 and the ring plate 13 reduce the impact force of material, thereby reducing the impact force of material into the lower material receiving disc A4, thereby facilitating the protection of the material after processing;

[0038] When the lower material receiving disc A4 is filled with the material after processing, the driving assembly 14 in the base frame 11 drives the driving frame 6 to move, so that the driving frame 6 drives the lower material receiving disc A4 to move out of the upper material receiving disc 2, and then the lower material receiving disc B8 on the driving frame 6 moves into the bottom of the upper material receiving disc 2, thereby improving the collection efficiency of the material.

[0039] When the position of the lower material receiving disc A4 and the lower material receiving disc B8 needs to be adjusted, the servo motor B25 in the base frame 11 is driven to rotate by the external controller, the threaded sleeve A22 and the threaded sleeve B26 outside the lead screw 21 are limited by the external structure, then the threaded sleeve A22 drives the driving plate A23 to move, the threaded sleeve B26 drives the driving plate B24 to move, then the driving plate A23 and the driving plate B24 drive the driving frame 6 to move in the base frame 11, then the lower material receiving disc A4 on the driving frame 6 moves out of the upper material receiving disc 2, and the lower material receiving disc B8 moves into the upper material receiving disc 2, thereby facilitating the adjustment of the position of the lower material receiving disc A4 and the lower material receiving disc B8.

[0040] When the lower material receiving disc A4 rotates, the connecting block 19 installed at the bottom of the lower material receiving disc A4 slides in the connecting groove 20 opened in the driving frame 6, so that the lower material receiving disc A4 is limited, thereby improving the stability of the rotation of the lower material receiving disc A4.

[0041] When the driving frame 6 moves in the bottom frame 11, the sliding block 5 at the bottom of the driving frame 6 slides in the sliding rail 7 opened in the bottom frame 11, improving the stability of the driving frame 6 moving in the bottom frame 11.

[0042] The basic principle, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above embodiments and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A mobile core machine receiving tray, characterized by, The utility model provides a material receiving device, including upper receiving tray (2), lower receiving tray A (4) and lower receiving tray B (8), one side screw of upper receiving tray (2) is fixed with the material conveying of material conveying channel (1), the outside welding of upper receiving tray (2) has the connecting frame (12) of the fixed upper receiving tray (2), and the bottom frame (11) is welded to the end away from upper receiving tray (2) of connecting frame (12), lower receiving tray A (4) and lower receiving tray B (8) bottom are provided with drive frame (6), and drive frame (6) inside symmetry bolt connection has the servo motor A (16) of power supply, the power output end key connection of servo motor A (16) has drive rod (15), and drive rod (15) away from servo motor A (16) one end and lower receiving tray A (4) bottom bolt connection, the bottom frame (11) inside is provided with drive assembly (14) of drive frame (6) movement, the inside welding of upper receiving tray (2) has fixed plate (10), and fixed plate (10) inside welding has spring B (27), spring B (27) outside welding has support plate (17), lower receiving tray A (4) inside welding has spring A (18), and spring A (18) one side welding has ring plate (13), and the outside of ring plate (13) and support plate (17) all are bonded with the rubber pad (3) of buffer.

2. The mobile drawframe receiving tray according to claim 1, wherein, The utility model provides a material receiving device, including upper receiving tray (2), lower receiving tray A (4) and lower receiving tray B (8), one side screw of upper receiving tray (2) is fixed with the material conveying of material conveying channel (1), the outside welding of upper receiving tray (2) has the connecting frame (12) of the fixed upper receiving tray (2), and the bottom frame (11) is welded to the end away from upper receiving tray (2) of connecting frame (12), lower receiving tray A (4) and lower receiving tray B (8) bottom are provided with drive frame (6), and drive frame (6) inside symmetry bolt connection has the servo motor A (16) of power supply, the power output end key connection of servo motor A (16) has drive rod (15), and drive rod (15) away from servo motor A (16) one end and lower receiving tray A (4) bottom bolt connection, the bottom frame (11) inside is provided with drive assembly (14) of drive frame (6) movement, the inside welding of upper receiving tray (2) has fixed plate (10), and fixed plate (10) inside welding has spring B (27), spring B (27) outside welding has support plate (17), lower receiving tray A (4) inside welding has spring A (18), and spring A (18) one side welding has ring plate (13), and the outside of ring plate (13) and support plate (17) all are bonded with the rubber pad (3) of buffer.

3. The mobile drawframe receiving tray of claim 1, wherein, The utility model provides a material receiving device, including upper receiving tray (2), lower receiving tray A (4) and lower receiving tray B (8), one side screw of upper receiving tray (2) is fixed with the material conveying of material conveying channel (1), the outside welding of upper receiving tray (2) has the connecting frame (12) of the fixed upper receiving tray (2), and the bottom frame (11) is welded to the end away from upper receiving tray (2) of connecting frame (12), lower receiving tray A (4) and lower receiving tray B (8) bottom are provided with drive frame (6), and drive frame (6) inside symmetry bolt connection has the servo motor A (16) of power supply, the power output end key connection of servo motor A (16) has drive rod (15), and drive rod (15) away from servo motor A (16) one end and lower receiving tray A (4) bottom bolt connection, the bottom frame (11) inside is provided with drive assembly (14) of drive frame (6) movement, the inside welding of upper receiving tray (2) has fixed plate (10), and fixed plate (10) inside welding has spring B (27), spring B (27) outside welding has support plate (17), lower receiving tray A (4) inside welding has spring A (18), and spring A (18) one side welding has ring plate (13), and the outside of ring plate (13) and support plate (17) all are bonded with the rubber pad (3) of buffer.

4. The mobile drawframe receiving tray of claim 1, wherein, The utility model provides a material receiving device, including upper receiving tray (2), lower receiving tray A (4) and lower receiving tray B (8), one side screw of upper receiving tray (2) is fixed with the material conveying of material conveying channel (1), the outside welding of upper receiving tray (2) has the connecting frame (12) of the fixed upper receiving tray (2), and the bottom frame (11) is welded to the end away from upper receiving tray (2) of connecting frame (12), lower receiving tray A (4) and lower receiving tray B (8) bottom are provided with drive frame (6), and drive frame (6) inside symmetry bolt connection has the servo motor A (16) of power supply, the power output end key connection of servo motor A (16) has drive rod (15), and drive rod (15) away from servo motor A (16) one end and lower receiving tray A (4) bottom bolt connection, the bottom frame (11) inside is provided with drive assembly (14) of drive frame (6) movement, the inside welding of upper receiving tray (2) has fixed plate (10), and fixed plate (10) inside welding has spring B (27), spring B (27) outside welding has support plate (17), lower receiving tray A (4) inside welding has spring A (18), and spring A (18) one side welding has ring plate (13), and the outside of ring plate (13) and support plate (17) all are bonded with the rubber pad (3) of buffer.

5. The mobile drawframe receiving tray of claim 2, wherein, The input of servo motor B (25) and servo motor A (16) is electrically connected with the power supply end of external power supply.