Automatic casting machine
By designing an automatic pouring machine that includes forward and backward moving rods, left and right moving rods, a fixed frame, a moving motor, and a rotating connecting column, the problem of the single function of existing equipment has been solved. It realizes multi-directional movement and replaceable pouring heads, thereby improving production efficiency and safety.
Patent Information
- Application Number
- CN202520280547.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-21
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-02-21
AI Technical Summary
Existing automatic pouring machines have limited functionality and cannot adapt to pouring tasks in various scenarios.
An automatic pouring machine was designed, comprising a front-to-back moving rod, a left-to-right moving rod, a fixed frame, a moving motor, a rotating connecting column, and a rotating base. The combination of these components enables multi-directional movement and replacement of the pouring head, enhancing the flexibility and versatility of the device.
It enables multi-directional movement of the automatic pouring machine and the interchangeability of the pouring head, improving the versatility and adaptability of the equipment's working modes, reducing labor intensity, and increasing production efficiency.
Smart Images

Figure CN223833457U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of casting equipment technology, and more specifically, it relates to an automatic casting machine. Background Technology
[0002] Automatic casting machines are widely used in the foundry industry, primarily used to precisely inject molten metal into molds to form castings of various shapes. With the advancement of industrial automation, the research and application of automatic casting machines have received increasing attention, particularly in improving production efficiency, reducing labor intensity, and minimizing safety accidents. In traditional casting production, pouring molten iron is a labor-intensive and accident-prone process. Early pouring processes relied mainly on manual operation, which was not only inaccurate but also prone to accidents due to the high workload.1 To improve this situation, semi-automatic pouring methods emerged, adding tilting devices to both sides of the ladle. However, this still requires manual monitoring, resulting in high labor intensity and low efficiency. The development of automatic casting machine technology aims to address the limitations of traditional pouring methods, improving production efficiency, reducing labor intensity, and minimizing safety accidents through technological innovation. With continuous technological advancements, automatic casting machines will play an increasingly important role in the foundry industry.
[0003] Based on the above, the casting machine has low efficiency, requires long-term manual supervision, resulting in high labor costs, and its functionality is relatively limited, making it difficult to perform filling tasks in various scenarios. Utility Model Content
[0004] To address the aforementioned technical problems, this utility model provides an automatic pouring machine to solve the problem that existing automatic pouring machines have limited functionality and cannot pour in various scene size modes.
[0005] This utility model discloses an automatic pouring machine, which is achieved by the following specific technical means:
[0006] An automatic casting machine includes a front-to-back moving rod, a left-to-right moving rod, a fixed frame, a moving motor C, a rotating connecting column, and a rotating base. The left and right moving rods each have a set of circular threaded connecting holes on their left and right sides at the bottom, and a set of T-shaped sliding grooves in the middle of the rods. The fixed frame has a set of circular threaded connecting shafts on its upper part, which are screwed onto the circular threaded connecting holes on both sides of the left and right moving rods. The front-to-back moving rods have a set of circular connecting rods at their bottom center, and a set of T-shaped sliding grooves in the middle of the rods. A moving gear C is rotatably connected to the circular connecting shafts at the bottom center of the front-to-back moving rods, and the moving gear C is movably connected to the T-shaped sliding grooves in the middle of the left and right moving rods. A moving gear B is slidably connected within the T-shaped sliding grooves inside the front-to-back moving rods, and the circular connecting hole in the middle of the moving gear B is rotatably connected to the rotating connecting rod at the bottom of the moving motor C. The rotating connecting column and the rotating base each have a set of circular connecting holes at their bottoms, and these holes are connected by the moving motor C.
[0007] Furthermore, a set of circular threaded connection holes is provided on one side of the upper part of the fixing frame, and a moving motor A is threadedly connected to the circular threaded connection holes on one side of the upper part of the fixing frame. A set of circular connecting shafts is provided at the bottom of the moving motor A, and a moving gear A is rotatably connected to the circular connecting shafts at the bottom of the moving motor A.
[0008] Furthermore, a set of circular connecting holes are provided on the connecting plate on one side of the fixing frame, and a clamping knob is rotatably connected to the circular connecting hole on the connecting plate on one side of the fixing frame. A clamping plate is welded to one side of the clamping knob.
[0009] Furthermore, two sets of circular snap-fit connection holes are provided on one side of the middle of the front and rear moving rods, and a moving motor B is snapped into the circular snap-fit connection hole on one side of the middle of the front and rear moving rods; a set of circular connecting shafts is provided at the bottom of the moving motor B, and a small moving gear is rotatably connected to the circular connecting shafts at the bottom of the moving motor B.
[0010] Furthermore, the upper part of the rotating connecting column is provided with a set of circular connecting holes, and an injection tube is slidably connected in the circular connecting holes at the upper part of the rotating connecting column; a set of circular threaded connecting shafts is provided on the upper side of the circular connecting holes at the upper part of the rotating connecting column, and a tightening knob is threadedly screwed into the circular threaded connecting holes on the upper side of the circular connecting holes at the upper part of the rotating connecting column.
[0011] Compared with the prior art, the present invention has the following beneficial effects:
[0012] 1. This utility model can be fixed to a flat surface at will by setting a fixing bracket, and can be moved by moving motor A. It can be moved directly after installation, which is convenient and quick.
[0013] 2. This utility model achieves 360-degree movement by setting forward and backward moving rods and left and right moving rods, and can be changed in any direction at will, making its working mode diversified.
[0014] 3. This utility model allows for the installation of injection pipes by setting a rotating connecting column, enabling the replacement of different injection heads and thus diversifying its functionality. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the main structure of the present invention.
[0016] Figure 2 This is a schematic diagram of the internal structure of the main body of this utility model.
[0017] Figure 3 This is a cross-sectional view of the main body of this utility model.
[0018] Figure 4 This is a cross-sectional view of the side of the main body of this utility model.
[0019] In the diagram, the correspondence between component names and drawing numbers is as follows:
[0020] 1. Injection pipe; 2. Front and rear moving rod; 3. Left and right moving rod; 4. Fixing frame; 5. Moving motor A; 6. Moving motor B; 7. Moving motor C; 101. Tightening knob; 102. Rotating connecting column; 103. Rotating base; 401. Clamping knob; 402. Clamping plate; 501. Moving gear A; 601. Small moving gear; 701. Moving gear B; 702. Moving gear C. Detailed Implementation
[0021] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.
[0022] Example:
[0023] As attached Figure 1 To be continued Figure 4 As shown:
[0024] This utility model provides an automatic pouring machine, including a front-to-back moving rod 2, a left-to-right moving rod 3, a fixed frame 4, a moving motor C7, a rotating connecting column 102, and a rotating base 103; the left and right moving rods 3 have a set of circular threaded connecting holes on the left and right sides of their bottom, and a set of T-shaped sliding grooves in the middle of the left and right moving rods 3; the fixed frame 4 has a set of circular threaded connecting shafts on its upper part, and the circular threaded connecting shafts on the upper part of the fixed frame 4 are screwed to the circular threaded connecting holes on both sides of the left and right moving rods 3; the front-to-back moving rod 2 has a set of circular connecting rods at its bottom middle, and a set of T-shaped sliding grooves in the middle of the front-to-back moving rod 2. The moving groove; the circular connecting shaft at the bottom of the front and rear moving rods 2 is rotatably connected to the moving gear C702, and the moving gear C702 is movably connected to the T-shaped sliding groove in the middle of the left and right moving rods 3; the moving gear B701 is slidably connected in the T-shaped sliding groove inside the middle of the front and rear moving rods 2, and the circular connecting hole in the middle of the moving gear B701 is rotatably connected to the rotating connecting rod at the bottom of the moving motor C7; the bottom of the rotating connecting column 102 and the rotating base 103 are each provided with a set of circular connecting holes, and the circular connecting holes at the bottom of the rotating connecting column 102 and the rotating base 103 are connected by the moving motor C7.
[0025] The upper side of the fixed frame 4 is provided with a set of circular threaded connection holes, and the circular threaded connection holes on the upper side of the fixed frame 4 are threadedly connected to the moving motor A5. The bottom of the moving motor A5 is provided with a set of circular connecting shafts, and the circular connecting shafts at the bottom of the moving motor A5 are rotatably connected to the moving gear A501, so as to realize the autonomous movement of the device.
[0026] The connecting plate on one side of the fixing frame 4 is provided with a set of circular connecting holes, and the circular connecting holes on the connecting plate on one side of the fixing frame 4 are rotatably connected to a clamping knob 401. A clamping plate 402 is welded to one side of the clamping knob 401 so that it can be clamped in a suitable corresponding position.
[0027] Among them, the front and rear moving rod 2 has two sets of circular locking connection holes on one side of the middle, and the moving motor B6 is locked and connected in the circular locking connection hole on one side of the middle of the front and rear moving rod 2; the moving motor B6 has a set of circular connecting shafts at the bottom, and the circular connecting shafts at the bottom of the moving motor B6 are rotatably connected to a small moving gear 601, which transmits power to drive the device to move left and right.
[0028] The rotating connecting column 102 has a set of circular connecting holes on its upper part, and the injection tube 1 is slidably connected in the circular connecting holes on the upper part of the rotating connecting column 102; a set of circular threaded connecting shafts is provided on the upper side of the circular connecting holes on the upper part of the rotating connecting column 102, and a tightening knob 101 is threadedly screwed into the circular threaded connecting hole on the upper side of the circular connecting holes on the upper part of the rotating connecting column 102, so that injection tubes 1 of various sizes can be replaced.
[0029] The specific usage and function of this embodiment are as follows:
[0030] In this utility model, the device is first installed in a specific position, and the fixing frame 4 is first clamped in the designated position. Then, the device is fixed by turning the clamping knob 401 to drive the clamping plate 402. Then, the moving motor A5 can be started to drive the moving gear A501 to move, and the device can move back and forth. Then, when filling, the moving motors B6 and C7 are started to drive the moving gears B701 and C702 to directly adjust the direction of the filling tube 1, so that it can be directly filled into the filling bucket at the corresponding position to complete the filling.
[0031] Any aspects of this utility model not described in detail are well-known technologies to those skilled in the art.
Claims
1. An automatic casting machine, characterized in that: It includes a front-to-back moving rod (2), a left-to-right moving rod (3), a fixed frame (4), a moving motor C (7), a rotating connecting column (102), and a rotating base (103); The left and right moving rods (3) are provided with a set of circular threaded connecting holes on the left and right sides of the bottom, and a set of T-shaped sliding grooves are provided in the middle of the left and right moving rods (3); the upper part of the fixing frame (4) is provided with a set of circular threaded connecting shafts, and the circular threaded connecting shafts on the upper part of the fixing frame (4) are screwed to the circular threaded connecting holes on both sides of the left and right moving rods (3); the bottom of the front and rear moving rods (2) is provided with a set of circular connecting rods, and a set of T-shaped sliding grooves are provided in the middle of the front and rear moving rods (2); the circular connecting shaft at the bottom of the middle of the front and rear moving rods (2) is rotatably connected to a moving gear C (70). 2), and the moving gear C (702) is movably connected to the T-shaped sliding groove in the middle of the left and right moving rods (3); the moving gear B (701) is slidably connected in the T-shaped sliding groove in the middle of the front and rear moving rods (2), and the circular connecting hole in the middle of the moving gear B (701) is rotatably connected to the bottom rotating connecting rod of the moving motor C (7); the bottom of the rotating connecting column (102) and the rotating base (103) are each provided with a set of circular connecting holes, and the circular connecting holes at the bottom of the rotating connecting column (102) and the rotating base (103) are connected by the moving motor C (7).
2. The automatic casting machine as described in claim 1, characterized in that: The upper side of the fixed frame (4) is provided with a set of circular threaded connection holes, and the circular threaded connection holes on the upper side of the fixed frame (4) are threadedly connected to a moving motor A (5). The bottom of the moving motor A (5) is provided with a set of circular connecting shafts, and the circular connecting shafts at the bottom of the moving motor A (5) are rotatably connected to a moving gear A (501).
3. The automatic casting machine as described in claim 1, characterized in that: The connecting plate on one side of the fixing frame (4) is provided with a set of circular connecting holes, and the circular connecting holes on the connecting plate on one side of the fixing frame (4) are rotatably connected to a clamping knob (401), and a clamping plate (402) is welded to one side of the clamping knob (401).
4. An automatic casting machine as described in claim 1, characterized in that: Two sets of circular snap-fit connection holes are provided on one side of the middle of the front and rear moving rods (2), and a moving motor B (6) is snap-fitted into the circular snap-fit connection hole on one side of the middle of the front and rear moving rods (2); a set of circular connecting shafts are provided at the bottom of the moving motor B (6), and a small moving gear (601) is rotatably connected to the circular connecting shaft at the bottom of the moving motor B (6).
5. An automatic casting machine as described in claim 1, characterized in that: The upper part of the rotating connecting column (102) is provided with a set of circular connecting holes, and an injection tube (1) is slidably connected in the circular connecting holes of the upper part of the rotating connecting column (102); a set of circular threaded connecting shafts is provided on the upper side of the circular connecting holes of the upper part of the rotating connecting column (102), and a tightening knob (101) is threadedly screwed into the circular threaded connecting hole on the upper side of the circular connecting hole of the upper part of the rotating connecting column (102).