Die steel machining turnover device

By introducing an oil-injecting lubrication mechanism into the mold steel processing flip device, and using an oil-injecting sponge to squeeze out lubricating oil on the surface of the ball, the problem of friction damage between the ball and the flip disc is solved, and the efficient lubrication effect of the flip disc is achieved.

CN223084738UActive Publication Date: 2025-07-11HUBEI JUNYAOCHENG MOLD MATERIALS CO LTD
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Patent Information

Application Number
CN202422045805.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-22
Publication Date
2025-07-11
Estimated Expiration
2034-08-22

AI Technical Summary

Technical Problem

In the existing mold steel processing flip device, the balls and the flip plate are prone to frictional damage when rotating for a long time, resulting in poor lubrication effect and affecting the flip effect.

Method used

A mold steel processing flip device including an oil-filling lubrication mechanism is designed. By providing an oil storage component, an oil-filling component and an oil-filling component inside the flip plate, the lubricating oil is squeezed out on the surface of the ball with an oil-filling sponge, thereby reducing friction and improving the lubricating effect.

Benefits of technology

It effectively reduces friction damage between the ball and the flip plate, ensures smooth progress of long-term flip operation, and improves the lubrication treatment effect of the flip device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a die steel processing turnover device which comprises a turnover device body, the turnover device body comprises a fixed bottom plate, a fixed plate is fixedly welded to one end of the upper surface of the fixed bottom plate, a movable plate is arranged at the other end of the upper surface of the fixed bottom plate, and a lead screw is rotationally arranged in the middle of the interior of the fixed bottom plate; by designing an oil injection lubricating mechanism, the interior of an oil storage tank is filled with lubricating oil through an oil immersion channel, the lubricating oil enters the interior through an oil seepage through hole after oil injection, oil injection sponge is immersed in oil through a mounting net seat during entering, and after fixing, an overturning disc rotates and overturns to make contact with a ball to rotate; at the moment, the overturning disc rotates to drive the oil injection sponge to make contact with the surfaces of the balls, the oil injection sponge is extruded to generate oil, the surfaces of the balls are immersed in lubricating oil when the oil injection sponge discharges oil, and therefore the overturning disc rotates to conduct lubricating treatment on the balls, large friction is not likely to be generated to cause damage, and overturning operation is smooth after long-time rotation.
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Description

Technical Field

[0001] The utility model belongs to the technical field of turning devices, and particularly relates to a turning device for die steel processing. Background Technique

[0002] Die steel is a steel type used to manufacture molds such as cold stamping dies, hot forging dies, and die-casting dies. When die steel is processed and produced, it needs to be turned to process different surfaces. Usually, a turning device is used to turn the die steel. The existing turning device is a device for processing and turning the die steel during processing. During device processing, the die steel is clamped and fixed between a fixed plate and a moving plate, and the turning disk is turned by the main motor. Moreover, during the turning operation, it is convenient to lubricate the turning disk and the ball bearings, and the turning disk can turn smoothly, improving the lubrication effect of the turning device on the rotation of the turning disk during die steel processing;

[0003] According to the turning device for die steel processing disclosed in the authorized patent application number 202220013410.X, when the existing turning device processes die steel, after the die steel is fixed between two turning disks by a clamping plate, the motor drives the turning disk to rotate, thereby turning the die steel. Therefore, when the turning disk rotates, it contacts the rolling of the ball bearings, and the ball bearings and the turning disk are prone to friction and damage during frequent rotation. It is not convenient to lubricate between the ball bearings and the turning disk. When the friction is serious, it even reduces the turning effect of the turning disk, affecting the lubrication effect of the turning device on the rotation of the turning disk during die steel processing. For this reason, the utility model proposes a turning device for die steel processing. Content of the Utility Model

[0004] The purpose of the utility model is to provide a turning device for die steel processing to solve the problems raised in the above background technique, that is, the turning disk rotates to turn the die steel, the ball bearings and the turning disk are prone to friction and damage during frequent rotation, it is not convenient to lubricate between the ball bearings and the turning disk, and when the friction is serious, it even reduces the turning effect of the turning disk, affecting the lubrication effect of the turning device on the rotation of the turning disk during die steel processing.

[0005] To achieve the above object, the present utility model provides the following technical solutions: A turning device for processing die steel, comprising a turning device main body, the turning device main body includes a fixed bottom plate, one end of the upper surface of the fixed bottom plate is welded and fixed with a fixed plate, the other end of the upper surface of the fixed bottom plate is provided with a moving plate, a lead screw is rotated at the middle position inside the fixed bottom plate, a forward and reverse motor is arranged at the end of the lead screw at the end of the fixed bottom plate, a moving slide is arranged on the outer surface of the lead screw, the end of the moving slide is fixedly welded with the bottom end of the moving plate, and turning disks are rotated inside the moving plate and the fixed plate through connecting shafts. The turning device main body is further provided with:

[0006] An oil injection and lubrication mechanism, and the oil injection and lubrication mechanism includes an oil storage component arranged at the bottom end inside the turning disk, an oil seepage component is arranged at the bottom end of the oil storage component, and an oil injection component is arranged at the end of the oil seepage component;

[0007] A strengthening and supporting mechanism, and the strengthening and supporting mechanism includes strengthening and supporting components arranged on both sides of the moving plate, and a fixed installation component is arranged at the connection between the side surface of the strengthening and supporting component and the side surface of the moving plate.

[0008] Preferably, balls are rolled at the inner surface edges of the moving plate and the fixed plate, the surface of the balls contacts the surface of the turning disk, a main motor is installed on the surface of the fixed plate on one side of the turning disk, and a clamping plate is installed inside the turning disk through a cylinder.

[0009] Preferably, the oil storage component includes an oil storage tank opened at the bottom end inside the turning disk, an oil immersion channel is opened inside the turning disk at the top end of one side of the oil storage tank, and a sealing cover is rotated at the end of the oil immersion channel at the end of the turning disk.

[0010] Preferably, the oil seepage component includes an oil seepage through hole opened at the bottom end inside the oil storage tank, and an installation groove is opened at the lower surface of the turning disk at the bottom end of the oil seepage through hole.

[0011] Preferably, the oil injection component includes an installation mesh seat fixed inside the installation groove by screws, an oil injection sponge is arranged inside the installation mesh seat, and the surface of the oil injection sponge contacts the balls.

[0012] Preferably, the strengthening and supporting component includes moving grooves opened at both sides at one end of the fixed bottom plate, a strengthening support frame is arranged inside the moving grooves, the bottom end of the strengthening support frame is fixedly welded with the side surface of the moving slide, and the top end of the strengthening support frame extends to the surface of the fixed bottom plate.

[0013] Preferably, the fixed installation component includes two fixed connection plates welded to one side of the strengthening support frame. A fixed bolt is rotated at the end of the fixed connection plate, and the side surface of the fixed connection plate and the moving plate are fixed by the fixed bolt.

[0014] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0015] By designing an oil injection lubrication mechanism, the oil storage tank is filled with lubricating oil through the oil immersion channel. After oil injection, it enters through the oil seepage through-hole, and when entering, the oil injection sponge is immersed in oil through the installation mesh base. After fixing, the turning disc rotates and the contact ball rotates. At this time, when the turning disc rotates and drives the oil injection sponge to contact the surface of the ball, the oil injection sponge is squeezed to discharge oil. When the oil injection sponge discharges oil, the surface of the ball is immersed in lubricating oil, so that the rotation of the turning disc lubricates the ball and is not prone to large friction and damage. It can rotate smoothly for a long time, improving the lubrication effect of the turning disc rotation during the processing of die steel by the turning device main body. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic structural diagram of the present utility model;

[0017] Figure 2 is a schematic cross-sectional structure diagram of the present utility model;

[0018] Figure 3 is a schematic cross-sectional structure diagram of the fixed bottom plate, moving plate and side surface of the strengthening support frame of the present utility model;

[0019] Figure 4 is the present utility model Figure 2 is an enlarged structural diagram of part A in;

[0020] Figure 5 is the present utility model Figure 4 is an enlarged structural diagram of part B in;

[0021] In the figure: 100, turning device main body; 101, fixed bottom plate; 102, moving plate; 1021, moving groove; 1022, strengthening support frame; 1023, fixed connection plate; 1024, fixed bolt; 103, turning disc; 104, clamping plate; 105, fixing plate; 106, main motor; 107, ball; 1071, oil storage tank; 1072, oil immersion channel; 1073, sealing cover; 1074, oil seepage through-hole; 1075, installation groove; 1076, installation mesh base; 1077, oil injection sponge; 108, moving slide; 109, lead screw; 1091, forward and reverse motor. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0022] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0023] Please refer to Figures 1 to 5 , the present invention provides a technical solution: a turning device for die steel processing, including a turning device main body 100. The turning device main body 100 includes a fixed bottom plate 101. One end of the upper surface of the fixed bottom plate 101 is welded and fixed with a fixing plate 105. The other end of the upper surface of the fixed bottom plate 101 is provided with a moving plate 102. A lead screw 109 is rotated at the middle position inside the fixed bottom plate 101. A forward and reverse motor 1091 is arranged at the end of the lead screw 109 at the end of the fixed bottom plate 101. A moving slide 108 is arranged on the outer surface of the lead screw 109. The end of the moving slide 108 is fixedly welded to the bottom end of the moving plate 102. Inside the moving plate 102 and the fixing plate 105, a turning disk 103 is rotated through a connecting shaft. One end of the die steel to be processed is embedded inside the turning disk 103 of the fixing plate 105. Then, the forward and reverse motor 1091 operates to drive the lead screw 109 to rotate. The rotation of the lead screw 109 moves the moving slide 108 on the outer surface of the lead screw 109. The movement of the moving slide 108 drives the moving plate 102 to engage the turning disk 103 inside the moving plate 102 at the other end of the die steel. On one side of the turning disk 103, a main motor 106 is installed on the surface of the fixing plate 105. Inside the turning disk 103, a clamping plate 104 is installed through a cylinder. At the inner surface edges of the moving plate 102 and the fixing plate 105, balls 107 are rolled. The surface of the balls 107 contacts the surface of the turning disk 103. The operation of the cylinder drives the clamping plate 104 to reinforce and install the surface of the clamped die steel. Therefore, it is convenient for the main motor 106 to drive the turning disk 103 to rotate and contact the surface of the balls 107 for smooth turning operation during the processing of the die steel. The turning device main body 100 is further provided with:

[0024] An oil injection and lubrication mechanism, and the oil injection and lubrication mechanism includes an oil storage component arranged at the bottom end inside the turning disk 103. An oil seepage component is arranged at the bottom end of the oil storage component. An oil injection component is arranged at the end of the oil seepage component. When the turning device main body 100 clamps and fixes the die steel for turning, when the turning disk 103 rotates, the oil injection and lubrication mechanism lubricates the surface of the balls 107 contaminated with lubricating oil, and it is not easy to generate large friction and cause damage, and it can rotate smoothly for a long time for turning operation, improving the lubrication treatment effect of the turning disk 103 during the turning of the die steel by the turning device main body 100.

[0025] In order to facilitate the filling of lubricating oil for self-lubricating treatment through the oil storage component, in this embodiment, preferably, the oil storage component includes an oil storage tank 1071 opened at the inner bottom end of the turning disk 103. At the top end of one side of the oil storage tank 1071, an oil immersion channel 1072 is opened inside the turning disk 103. Lubricating oil is injected into the interior of the oil storage tank 1071 through the oil immersion channel 1072, which facilitates the oil injection process. At the end of the oil immersion channel 1072 located at the end of the turning disk 103, a sealing cover 1073 is rotated. After the oil immersion channel 1072 is filled with oil, the sealing cover 1073 seals and closes the end of the oil immersion channel 1072.

[0026] In order to facilitate the oil immersion of the lubricating oil injected into the interior of the oil storage tank 1071 into the oil injection sponge 1077 through the oil seepage component, in this embodiment, preferably, the oil seepage component includes an oil seepage through hole 1074 opened at the inner bottom end of the oil storage tank 1071. At the bottom end of the oil seepage through hole 1074, an installation groove 1075 is opened on the lower surface of the turning disk 103. When the interior of the oil storage tank 1071 is filled with oil, oil seeps from the oil seepage through hole 1074 into the interior of the oil injection sponge 1077 for oil injection and lubrication treatment.

[0027] In order to facilitate the smooth rolling of the ball 107 by injecting lubricating oil onto its surface through the oil injection component and reduce friction, in this embodiment, preferably, the oil injection component includes an installation mesh base 1076 fixed inside the installation groove 1075 by screws. An oil injection sponge 1077 is arranged inside the installation mesh base 1076. The surface of the oil injection sponge 1077 is in contact with the ball 107. When the turning disk 103 rotates and drives the oil injection sponge 1077 to contact the surface of the ball 107, the oil injection sponge 1077 is squeezed, so that the lubricating oil is extruded and contaminates the surface of the ball 107 for lubrication treatment.

[0028] A strengthening support mechanism, and the strengthening support mechanism includes strengthening support components arranged on both sides of the moving plate 102. A fixed installation component is arranged at the connection between the side surface of the strengthening support component and the side surface of the moving plate 102. When the mold steel is clamped and fixed before the turning operation, when the moving plate 102 is moved and clamped and fixed, the moving plate 102 is strengthened and supported by the strengthening support mechanism during the moving clamping and fixing, and the turning operation is clamped more stably.

[0029] In order to facilitate the strengthening of the support for the movable plate 102 and the clamping and fixing followed by flipping through the strengthening support assembly, in this embodiment, preferably, the strengthening support assembly includes moving grooves 1021 opened on both sides at one end of the fixed bottom plate 101. An enhancing support frame 1022 is arranged inside the moving groove 1021. The bottom end of the enhancing support frame 1022 is fixedly welded to the side surface of the moving slide 108, and the top end of the enhancing support frame 1022 extends to the surface of the fixed bottom plate 101. When the moving slide 108 moves, it can drive the enhancing support frame 1022 to move inside the moving groove 1021, so that the enhancing support frame 1022 and the movable plate 102 move simultaneously, and the movable plate 102 is more stably supported when clamped and fixed.

[0030] In order to facilitate the fixed installation of the side surface of the enhancing support frame 1022 to the side surface of the movable plate 102 through the fixed installation assembly and facilitate the fixed installation of the strengthening support, in this embodiment, preferably, the fixed installation assembly includes two fixed connection plates 1023 welded to one side of the enhancing support frame 1022. A fixed bolt 1024 is rotated at the end of the fixed connection plate 1023, and the fixed connection plate 1023 and the side surface of the movable plate 102 are fixed by the fixed bolt 1024. When the fixed connection plate 1023 closes against the side surface of the movable plate 102, it is fixed by the fixed bolt 1024, and the movable plate 102 is strengthened and supported for flipping operation.

[0031] The working principle and usage process of the present utility model: For this kind of mold steel processing flipping device, during use, the flipping device main body 100 is fixedly installed at the position where it is used by the fixed bottom plate 101 contacting the ground. After the flipping device main body 100 is fixedly installed, one end of the mold steel to be processed is inserted into the inside of the flipping disk 103 of the fixing plate 105. Then, the forward and reverse motor 1091 operates to drive the lead screw 109 to rotate. The rotation of the lead screw 109 moves the moving slide 108 on the outer surface of the lead screw 109. The movement of the moving slide 108 drives the movable plate 102 to clamp the flipping disk 103 inside the movable plate 102 to the other end of the mold steel. Then, the cylinder operates to drive the clamping plate 104 to be fixedly installed on the surface of the clamped mold steel. Therefore, it is convenient for the main motor 106 to drive the flipping disk 103 to rotate and contact the surface of the rolling ball 107 for smooth flipping operation during the processing of the mold steel;

[0032] Then, when the main body 100 of the flipping device fixes and processes the die steel, when the moving slide 108 moves on the outer surface of the lead screw 109 to drive the moving plate 102 to move, the moving slide 108 and the moving plate 102 move, and the strengthening support frame 1022 follows the movement inside the moving groove 1021 until the moving plate 102 is tightly pressed and fixedly installed. It is convenient for the moving plate 102 to be strengthened and supported by the strengthening support frame 1022 and the fixed connection plate 1023 during clamping and fixing, so that the moving plate 102 and the flipping disc 103 are more stable during the flipping operation after fixing the die steel, and are not prone to shaking and instability, improving the strengthening support stability of the moving plate 102 during the movement, clamping and fixing operations of the main body 100 of the flipping device when processing the die steel;

[0033] Finally, before the main body 100 of the flipping device fixedly installs and processes the die steel, the lubricating oil is filled into the oil storage tank 1071 through the oil immersion channel 1072. After filling, it enters through the oil seepage through hole 1074, and when entering, it soaks the oil injection sponge 1077 through the installation mesh base 1076. When the flipping disc 103 rotates and flips to contact the ball 107 and rotates, at this time, when the flipping disc 103 rotates to drive the oil injection sponge 1077 to contact the surface of the ball 107, the oil injection sponge 1077 is squeezed to produce oil. When the oil injection sponge 1077 produces oil, the surface of the ball 107 is immersed in the lubricating oil, so that the rotation of the flipping disc 103 to lubricate the ball 107 is not prone to large friction and damage, and the flipping operation can be smoothly carried out for a long time, improving the lubrication treatment effect of the main body 100 of the flipping device on the rotation of the flipping disc 103 during the processing of the die steel.

[0034] Although the embodiments of the present invention have been shown and described (see the above detailed description), for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A mold steel processing flipping device, comprising a flipping device main body (100), the flipping device main body (100) includes a fixed bottom plate (101), one end of the upper surface of the fixed bottom plate (101) is welded and fixed with a fixed plate (105), the other end of the upper surface of the fixed bottom plate (101) is provided with a moving plate (102), a lead screw (109) is rotated at the middle position inside the fixed bottom plate (101), a forward and reverse motor (1091) is arranged at the end of the lead screw (109) located at the end of the fixed bottom plate (101), a moving slide (108) is arranged on the outer surface of the lead screw (109), the end of the moving slide (108) is fixedly welded with the bottom end of the moving plate (102), and flipping discs (103) are rotated inside the moving plate (102) and the fixed plate (105) through connecting shafts, and the characteristics are as follows: The main body (100) of the flipping device is further provided with: An oil injection and lubrication mechanism, and the oil injection and lubrication mechanism includes an oil storage component arranged at the inner bottom end of the flipping disc (103). An oil seepage component is arranged at the bottom end of the oil storage component, and an oil injection component is arranged at the end of the oil seepage component; A strengthening and supporting mechanism, and the strengthening and supporting mechanism includes strengthening and supporting components arranged on both sides of the moving plate (102). A fixed installation component is arranged at the connection between the side surface of the strengthening and supporting component and the side surface of the moving plate (102).

2. The flipping device for processing die steel according to claim 1, characterized in that: Ball bearings (107) roll on the inner surface edges of the moving plate (102) and the fixed plate (105). The surface of the ball bearings (107) contacts the surface of the flipping disc (103). A main motor (106) is installed on the surface of the fixed plate (105) on one side of the flipping disc (103). A clamping plate (104) is installed inside the flipping disc (103) through a cylinder.

3. A mold steel processing turnover device according to claim 2, characterized in that: The oil storage component includes an oil storage tank (1071) opened at the inner bottom end of the flipping disc (103). An oil immersion channel (1072) is opened inside the flipping disc (103) at the top end on one side of the oil storage tank (1071). A sealing cover (1073) rotates at the end of the oil immersion channel (1072) at the end of the flipping disc (103).

4. A mold steel processing turning device according to claim 3, characterized in that: The oil seepage component includes an oil seepage through hole (1074) opened at the inner bottom end of the oil storage tank (1071). An installation groove (1075) is opened on the lower surface of the flipping disc (103) at the bottom end of the oil seepage through hole (1074).

5. A mold steel processing flipping device according to claim 4, characterized in that: The oil injection component includes an installation mesh seat (1076) fixed inside the installation groove (1075) by screws. An oil injection sponge (1077) is arranged inside the installation mesh seat (1076). The surface of the oil injection sponge (1077) contacts the ball bearings (107).

6. The flipping device for processing die steel according to claim 1, characterized in that: The strengthening and supporting component includes moving grooves (1021) opened on both sides at one end of the fixed bottom plate (101). A strengthening support frame (1022) is arranged inside the moving grooves (1021). The bottom end of the strengthening support frame (1022) is fixedly welded to the side surface of the moving sliding seat (108). The top end of the strengthening support frame (1022) extends to the surface of the fixed bottom plate (101).

7. A mold steel processing turning device according to claim 6, characterized in that: The fixed installation component includes two fixed connection plates (1023) welded to one side of the strengthening support frame (1022). A fixed bolt (1024) rotates at the end of the fixed connection plate (1023). The fixed connection plate (1023) and the side surface of the moving plate (102) are fixed by the fixed bolt (1024).

Citation Information

Patent Citations

  • Turnover device for die steel processing

    CN216996416U