Production mold and production method for high-stability steering column of new energy automobile
Through the cooperation of the lifting mechanism and the cleaning mechanism, the problems of mold cleaning and mold release are solved, high stability and high-precision production of steering columns of new energy vehicles are achieved, and mold operation is simplified.
Patent Information
- Application Number
- CN202510587441.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-08
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2045-05-08
AI Technical Summary
Traditional molds are difficult to effectively clean the mold cavity in the production of steering columns of new energy vehicles, resulting in unstable product surface quality and inconvenient mold merging and demolding operations.
The lifting mechanism is used to adjust the position of the cleaning mechanism, combined with the fixed motor and dust blower, to achieve automatic cleaning and convenient mold release of the mold. Through the coordination of the adjustment mechanism and the cleaning mechanism, efficient collection of the steering column and mold cleaning are achieved.
It improves mold cleaning efficiency, ensures high stability and high precision production of steering columns, and simplifies the mold merger and demolding process.
Smart Images

Figure CN120325906A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of pipe column production, and specifically relates to a production mold and a production method of a high-stability steering pipe column for new energy vehicles. Background Art
[0002] Molds are various molds and tools used in industrial production to obtain the desired products by injection molding, blow molding, extrusion, die casting or forging, smelting, stamping and other methods. In short, molds are tools used to make molded objects. This tool is composed of various parts, and different molds are composed of different parts. It mainly realizes the processing of the shape of the object by changing the physical state of the molded material. The mold generally includes two parts, the movable mold and the fixed mold. The two parts can be separated or combined. When separated, the workpiece is taken out, and when closed, the blank is injected into the mold cavity for forming. The mold is a precision tool with a complex shape. It bears the tension of the blank and has high requirements for structural strength, rigidity, surface hardness, surface roughness and processing accuracy. The development level of mold production is one of the important indicators of the level of mechanical manufacturing. The steering column is a tubular shell and an important part of the automobile steering system. When the steering column is manufactured, it is produced by injection molding through the mold.
[0003] As a core safety component for transmitting driving signals, the production of the steering column of energy vehicles must meet the requirements of high precision, high stability and lightweight. In actual use, it is not convenient to clean the mold cavity after each injection molding of traditional molds, and it is easy to leave metal debris, resulting in unstable product surface quality. In addition, it is troublesome to merge and open the upper and lower molds during use, which makes it inconvenient for users to separate the upper and lower molds, resulting in inconvenience in demolding. In actual use, it is not convenient to remove the molded steering column from the mold with traditional molds. Summary of the invention
[0004] The purpose of the present invention is to provide a high-stability steering column production mold for new energy vehicles and a production method thereof. The position of a cleaning mechanism is adjusted by a lifting mechanism, and the upper mold and the lower mold are pushed until they are connected together, which is convenient for users to demold. The position of the cleaning mechanism is adjusted by a lifting mechanism, and then the position of the cleaning tube is adjusted by a fixed motor. The cleaning tube is driven to rotate by the cleaning motor, and the upper mold and the lower mold are cleaned with the cooperation of a dust blower. The position of the cleaning mechanism is adjusted by a lifting mechanism, and the movement of the cleaning tube is adjusted by a fixed motor to clamp the formed steering column between the two cleaning tubes. The height of the steering column is adjusted by a lifting mechanism, and the adjusting rod and the adjusting gear are driven to rotate by the rotation of the adjusting motor. The meshing of the adjusting rack and the adjusting gear is used to make the adjusting plate drive the formed steering column to move out of the upper mold and the lower mold, which is convenient for collecting the formed steering column.
[0005] The technical solution adopted by the present invention is as follows: A high-stability steering column production mold for new energy vehicles, comprising: a support base; a forming mechanism, the forming mechanism includes two groups of support components and a mold component, each group of support components is arranged on the support base, and the mold component is arranged on the support components; an adjusting mechanism, the adjusting mechanism includes a rotating component and two groups of sliding components, the rotating component is arranged on the support base, and each group of sliding components is placed on the rotating component; a lifting mechanism, two groups of lifting mechanisms are provided in total, and each group of lifting mechanisms is arranged on the adjusting mechanism; and a cleaning mechanism, two groups of cleaning mechanisms are provided in total, and each group of cleaning mechanisms includes a support plate, a power component, two groups of moving components and a cleaning component, the support plate is arranged on the lifting mechanism, each group of moving components is arranged on the support plate, and the power component and the cleaning component are both arranged on the moving components.
[0006] Wherein, each group of support components includes a connecting frame, two connecting cylinders, two connecting rods and two connecting springs. One side of the connecting frame is fixedly connected to the outer surface of one side of the support base. One end of each connecting cylinder is fixedly connected to the bottom of the connecting frame. One end of each connecting rod is slidably embedded between the inner walls of the connecting cylinder. Each connecting spring is fixedly connected between the connecting cylinder and the connecting rod.
[0007] Wherein, the mold component includes two mounting plates, an upper mold and a lower mold. The top of one of the mounting plates is fixedly connected to the other end of the connecting rod. The bottom of the other mounting plate is fixedly connected to the top of the support base. The top of the upper mold is fixedly connected to the bottom of one of the mounting plates. The bottom of the lower mold is fixedly connected to the top of the other mounting plate.
[0008] Wherein, the rotating component includes an adjusting motor and an adjusting rod. The two ends of the adjusting rod are rotatably connected between the inner walls of the two sides of the support base. The adjusting motor is fixedly connected to the outer surface of one side of the support base, and the output end of the adjusting motor is fixedly connected to one end of the adjusting rod.
[0009] Wherein, each group of sliding components includes an adjusting plate, two adjusting racks and two adjusting gears. The adjusting plate is slidably embedded in the top of the support base. The top of each adjusting rack is fixedly connected to the bottom of the adjusting plate. Each adjusting gear is fixedly sleeved on the outer surface of the adjusting rod, and each adjusting gear meshes with the adjusting rack.
[0010] Among them, the lifting mechanism includes a lifting motor, a fixing plate, two fixing rods and a fixing threaded rod. One end of each fixing rod is fixedly connected to the top of the supporting base. The bottom of the fixing plate is fixedly connected to the tops of the two fixing rods. The two ends of the fixing threaded rod are rotatably connected between the fixing plate and the supporting base. The lifting motor is fixedly connected to the top of the fixing plate, and the output end of the lifting motor is fixedly connected to one end of the fixing threaded rod. The supporting plate is threadedly sleeved on the outer surface of the fixing threaded rod and is slidably sleeved on the outer surfaces of the two fixing rods.
[0011] Among them, each group of the moving components includes an installation threaded rod, a limiting rod and a moving plate. One end of the installation threaded rod rotatably penetrates through the outer surface of one side of the supporting plate. One end of the limiting rod is fixedly connected to the inner wall of one side of the supporting plate. The moving plate is slidably embedded in the inner wall of one side of the supporting plate. The moving plate is threadedly sleeved on the outer surface of the installation threaded rod and is slidably sleeved on the outer surface of the limiting rod.
[0012] Among them, the power component includes a fixing motor, a fixing synchronous pulley and two connecting synchronous pulleys. Each connecting synchronous pulley is fixedly sleeved on the outer surface of the installation threaded rod. The fixing motor is fixedly connected to the outer surface of one side of the supporting plate. The fixing synchronous pulley is fixedly sleeved on the output end of the fixing motor, and the fixing synchronous pulley and the two connecting synchronous pulleys are driven by a synchronous belt.
[0013] Among them, the cleaning component includes a cleaning pipe, a cleaning motor and a dust blower. The two ends of the cleaning pipe are rotatably connected between the two moving plates. The cleaning motor is fixedly connected to the outer surface of one side of one of the moving plates, and the output end of the cleaning motor is fixedly connected to one end of the cleaning pipe. The dust blower is fixedly connected to the inner wall of the cleaning pipe.
[0014] The production method of a high-stability steering column production mold for new energy vehicles includes the following steps:
[0015] Step 1, casting molding: Turn on the fixing motor. The fixing motor rotates to drive the fixing synchronous pulley to rotate. Through the transmission of the synchronous belt, the connecting synchronous pulley drives the installation threaded rod to rotate, so that the moving plate drives the cleaning pipe to move. The cleaning pipe moves to the top of the installation plate. Then turn on the lifting motor. The lifting motor rotates to drive the fixing threaded rod to rotate. Through the limitation of the fixing rod, the position of the cleaning mechanism is adjusted. The cleaning mechanism pushes the upper mold to move. At this time, the connecting rod moves in the connecting cylinder until the upper mold and the lower mold are butted together, and then casting molding is carried out;
[0016] Step 2. Transfer the steering column: After forming, adjust the position of the cleaning mechanism through the lifting mechanism to restore the upper mold to its original state. Then, adjust the position of the cleaning mechanism through the lifting mechanism, adjust the movement of the cleaning tube through the fixed motor, clamp the formed steering column between the two cleaning tubes, adjust the height of the steering column through the lifting mechanism, turn on the adjustment motor, and the rotation of the adjustment motor drives the adjustment rod and the adjustment gear to rotate. Through the meshing of the adjustment rack and the adjustment gear, the adjustment plate drives the formed steering column to move out of the upper mold and the lower mold, facilitating the collection of the formed steering column.
[0017] Step 3. Clean the mold: Adjust the position of the cleaning mechanism through the lifting mechanism, then adjust the position of the cleaning tube through the fixed motor, drive the cleaning tube to rotate through the cleaning motor, and cooperate with the dust blower to clean the upper mold and the lower mold.
[0018] In summary, due to the adoption of the above technical solutions, the beneficial effects of the present invention are:
[0019] (1) In the present invention, by adjusting the position of the cleaning mechanism through the lifting mechanism and pushing until the upper mold and the lower mold are butted together, it is convenient for the user to demold. By adjusting the position of the cleaning mechanism through the lifting mechanism, then adjusting the position of the cleaning tube through the fixed motor, driving the cleaning tube to rotate through the cleaning motor, and cooperating with the dust blower, the upper mold and the lower mold are cleaned.
[0020] (2) In the present invention, by adjusting the position of the cleaning mechanism through the lifting mechanism, adjusting the movement of the cleaning tube through the fixed motor, clamping the formed steering column between the two cleaning tubes, adjusting the height of the steering column through the lifting mechanism, driving the adjustment rod and the adjustment gear to rotate through the rotation of the adjustment motor, and through the meshing of the adjustment rack and the adjustment gear, the adjustment plate drives the formed steering column to move out of the upper mold and the lower mold, facilitating the collection of the formed steering column. Description of the Drawings
[0021] Figure 1 is the front perspective view of the present invention;
[0022] Figure 2 is the front perspective partial cross-sectional view of the present invention;
[0023] Figure 3 is the partial perspective cross-sectional view of the present invention;
[0024] Figure 4 is the side perspective partial cross-sectional view of the present invention;
[0025] Figure 5 is the top perspective partial cross-sectional view of the present invention;
[0026] Figure 6 is the partial top perspective cross-sectional view of the present invention;
[0027] Figure 7 is a partial front orthographic perspective view of the present invention;
[0028] Figure 8 is a partial front orthographic perspective view of the cleaning mechanism of the present invention;
[0029] Figure 9 is a partial top orthographic perspective sectional view of the cleaning mechanism of the present invention.
[0030] Reference numerals in the figure: 1, support base; 2, adjustment mechanism; 201, adjustment motor; 202, adjustment rod; 203, adjustment gear; 204, adjustment rack; 205, adjustment plate; 3, lifting mechanism; 301, lifting motor; 302, fixed plate; 303, fixed rod; 304, fixed threaded rod; 4, cleaning mechanism; 401, support plate; 402, fixed motor; 403, fixed synchronous pulley; 404, connecting synchronous pulley; 405, mounting threaded rod; 406, limiting rod; 407, moving plate; 408, cleaning pipe; 409, cleaning motor; 410, dust blower; 5, forming mechanism; 501, connecting frame; 502, connecting cylinder; 503, connecting rod; 504, connecting spring; 505, mounting plate; 506, upper mold; 507, lower mold. Detailed implementation manners
[0031] In order to make the objectives, technical solutions and advantages of the present invention clearer and more understandable, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.
[0032] Refer to Figures 1-9 : The present invention provides a technical solution: a production mold for a high-stability steering column of a new energy vehicle, including: a support base 1; a forming mechanism 5, the forming mechanism 5 includes two groups of support components and mold components, each group of support components is arranged on the support base 1, and the mold components are arranged on the support components; an adjustment mechanism 2, the adjustment mechanism 2 includes a rotating component and two groups of sliding components, the rotating component is arranged on the support base 1, and each group of sliding components is placed on the rotating component; a lifting mechanism 3, two groups of lifting mechanisms 3 are provided in total, and each group of lifting mechanisms 3 is arranged on the adjustment mechanism 2; and a cleaning mechanism 4, two groups of cleaning mechanisms 4 are provided in total, and each group of cleaning mechanisms 4 includes a support plate 401, a power component, two groups of moving components and a cleaning component, the support plate 401 is arranged on the lifting mechanism 3, each group of moving components is arranged on the support plate 401, and the power component and the cleaning component are both arranged on the moving components.
[0033] In this implementation: The forming mechanism 5 is provided for the casting and forming of the steering column. The two sets of supporting components are provided for supporting the die components. The die components are provided for the casting and forming of the steering column. The adjusting mechanism 2 is provided for adjusting the positions of the lifting mechanism 3 and the cleaning mechanism 4. The rotating component is used to provide a rotational force. The two sets of sliding components are provided for adjusting the positions of the lifting mechanism 3 and the cleaning mechanism 4. The lifting mechanism 3 is used to adjust the height of the cleaning mechanism 4. The cooperation of the cleaning mechanism 4, the lifting mechanism 3 and the forming mechanism 5 can facilitate the docking between the die components and facilitate demolding. Through the cooperation of the cleaning mechanism 4, the lifting mechanism 3 and the adjusting mechanism 2, it is convenient for the user to collect the formed steering column. Through the cooperation of the cleaning mechanism 4 and the lifting mechanism 3, the die components can be cleaned. The power component is used to provide a rotational force. The cooperation of the two sets of moving components and the power component is used to adjust the position of the cleaning component. The cleaning component is provided for cleaning the die components.
[0034] Specifically, each set of supporting components includes a connecting frame 501, two connecting cylinders 502, two connecting rods 503 and two connecting springs 504. One side of the connecting frame 501 is fixedly connected to the outer surface of one side of the supporting base 1. One end of each connecting cylinder 502 is fixedly connected to the bottom of the connecting frame 501. One end of each connecting rod 503 is slidably embedded between the inner walls of the connecting cylinder 502. Each connecting spring 504 is fixedly connected between the connecting cylinder 502 and the connecting rod 503.
[0035] In this embodiment: The connecting frame 501, the two connecting cylinders 502, the two connecting rods 503 and the two connecting springs 504 are provided for installing the die components, and the connecting rod 503 can slide within the connecting cylinder 502.
[0036] Specifically, the die components include two mounting plates 505, an upper die 506 and a lower die 507. The top of one mounting plate 505 is fixedly connected to the other end of the connecting rod 503. The bottom of the other mounting plate 505 is fixedly connected to the top of the supporting base 1. The top of the upper die 506 is fixedly connected to the bottom of one mounting plate 505. The bottom of the lower die 507 is fixedly connected to the top of the other mounting plate 505.
[0037] In this embodiment: The two mounting plates 505 are provided for installing the upper die 506 and the lower die 507, and the upper die 506 and the lower die 507 are used for casting and forming the steering column.
[0038] Specifically, the rotating component includes an adjusting motor 201 and an adjusting rod 202. The two ends of the adjusting rod 202 are rotatably connected between the inner walls of both sides of the supporting base 1. The adjusting motor 201 is fixedly connected to the outer surface of one side of the supporting base 1, and the output end of the adjusting motor 201 is fixedly connected to one end of the adjusting rod 202.
[0039] In this embodiment: Rotating the adjusting motor 201 can drive the adjusting rod 202 to rotate, adjust the position of the sliding component, and adjust the position of the lifting mechanism 3. The structure and principle of the adjusting motor 201 belong to the prior art and will not be introduced in detail here. Its model can be selected according to the actual usage situation.
[0040] Specifically, each group of sliding components includes an adjusting plate 205, two adjusting racks 204, and two adjusting gears 203. The adjusting plate 205 is slidably embedded in the top of the support base 1. The top of each adjusting rack 204 is fixedly connected to the bottom of the adjusting plate 205. Each adjusting gear 203 is fixedly sleeved on the outer surface of the adjusting rod 202, and each adjusting gear 203 meshes with the adjusting rack 204.
[0041] In this embodiment: By turning on the adjusting motor 201, the adjusting motor 201 rotates to drive the adjusting rod 202 and the adjusting gear 203 to rotate. Through the meshing of the adjusting rack 204 and the adjusting gear 203, the adjusting plate 205 drives the formed steering column to move out of the upper die 506 and the lower die 507.
[0042] Specifically, the lifting mechanism 3 includes a lifting motor 301, a fixing plate 302, two fixing rods 303, and a fixing threaded rod 304. One end of each fixing rod 303 is fixedly connected to the top of the support base 1. The bottom of the fixing plate 302 is fixedly connected to the top of the two fixing rods 303. The two ends of the fixing threaded rod 304 are rotatably connected between the fixing plate 302 and the support base 1. The lifting motor 301 is fixedly connected to the top of the fixing plate 302, and the output end of the lifting motor 301 is fixedly connected to one end of the fixing threaded rod 304. The support plate 401 is threadedly sleeved on the outer surface of the fixing threaded rod 304, and the support plate 401 is slidably sleeved on the outer surface of the two fixing rods 303.
[0043] In this embodiment: By rotating the lifting motor 301 to drive the fixing threaded rod 304 to rotate, and through the limitation of the fixing rod 303, the position of the cleaning mechanism 4 is adjusted. The structure and principle of the lifting motor 301 belong to the prior art and will not be introduced in detail here. Its model can be selected according to the actual usage situation.
[0044] Specifically, each group of moving components includes an installation threaded rod 405, a limiting rod 406, and a moving plate 407. One end of the installation threaded rod 405 rotatably penetrates the outer surface of one side of the support plate 401. One end of the limiting rod 406 is fixedly connected to the inner wall of one side of the support plate 401. The moving plate 407 is slidably embedded in the inner wall of one side of the support plate 401. The moving plate 407 is threadedly sleeved on the outer surface of the installation threaded rod 405, and the moving plate 407 is slidably sleeved on the outer surface of the limiting rod 406.
[0045] In this embodiment: Through the cooperation of the power components, the connecting synchronous pulley 404 drives the mounting threaded rod 405 to rotate, and the moving plate 407 moves on the mounting threaded rod 405 and the limiting rod 406 to adjust the position of the cleaning component.
[0046] Specifically, the power components include a fixed motor 402, a fixed synchronous pulley 403, and two connecting synchronous pulleys 404. Each connecting synchronous pulley 404 is fixedly sleeved on the outer surface of the mounting threaded rod 405. The fixed motor 402 is fixedly connected to the outer surface of one side of the support plate 401. The fixed synchronous pulley 403 is fixedly sleeved on the output end of the fixed motor 402, and the fixed synchronous pulley 403 and the two connecting synchronous pulleys 404 are mutually driven by a synchronous belt.
[0047] In this embodiment: The fixed motor 402 rotates to drive the fixed synchronous pulley 403 to rotate. Through the transmission of the synchronous belt, the connecting synchronous pulley 404 drives the mounting threaded rod 405 to rotate to adjust the position of the cleaning component. The structure and principle of the fixed motor 402 belong to the prior art and will not be introduced in detail here. Its model can be selected according to the actual usage situation.
[0048] Specifically, the cleaning component includes a cleaning pipe 408, a cleaning motor 409, and a dust blower 410. Both ends of the cleaning pipe 408 are rotatably connected between the two moving plates 407. The cleaning motor 409 is fixedly connected to the outer surface of one of the moving plates 407, and the output end of the cleaning motor 409 is fixedly connected to one end of the cleaning pipe 408. The dust blower 410 is fixedly connected to the inner wall of the cleaning pipe 408.
[0049] In this embodiment: The position of the cleaning pipe 408 is adjusted by the fixed motor 402, the cleaning pipe 408 is driven to rotate by the cleaning motor 409, and with the cooperation of the dust blower 410, the upper die 506 and the lower die 507 are cleaned. The structure and principle of the cleaning motor 409 and the dust blower 410 belong to the prior art and will not be introduced in detail here. Their models can be selected according to the actual usage situation.
[0050] The following is a detailed description of the usage method of the high-stability steering column production mold and its production method provided by the embodiments of the present invention. The usage method includes the following steps: Step 1. Casting and molding: Start the fixed motor 402. The rotation of the fixed motor 402 drives the fixed synchronous pulley 403 to rotate. Through the transmission of the synchronous belt, the connecting synchronous pulley 404 drives the installation threaded rod 405 to rotate, so that the moving plate 407 drives the cleaning pipe 408 to move. The cleaning pipe 408 moves to the top of the installation plate 505. Then start the lifting motor 301. The rotation of the lifting motor 301 drives the fixed threaded rod 304 to rotate. Through the limit of the fixed rod 303, the position of the cleaning mechanism 4 is adjusted. The cleaning mechanism 4 pushes the upper mold 506 to move. At this time, the connecting rod 503 moves in the connecting cylinder 502 until the upper mold 506 and the lower mold 507 are butted together, and then casting and molding are carried out; Step 2. Transfer the steering column: After molding, adjust the position of the cleaning mechanism 4 through the lifting mechanism 3 to restore the upper mold 506 to its original state. Then adjust the position of the cleaning mechanism 4 through the lifting mechanism 3, and adjust the movement of the cleaning pipe 408 through the fixed motor 402. Clamp the molded steering column between the two cleaning pipes 408. Adjust the height of the steering column through the lifting mechanism 3. Start the adjustment motor 201. The rotation of the adjustment motor 201 drives the adjustment rod 202 and the adjustment gear 203 to rotate. Through the meshing of the adjustment rack 204 and the adjustment gear 203, the adjustment plate 205 drives the molded steering column to move out of the upper mold 506 and the lower mold 507, which is convenient for collecting the molded steering column; Step 3. Clean the mold: Adjust the position of the cleaning mechanism 4 through the lifting mechanism 3, and then adjust the position of the cleaning pipe 408 through the fixed motor 402. Drive the cleaning pipe 408 to rotate through the cleaning motor 409. Coupled with the cooperation of the dust blower 410, clean the upper mold 506 and the lower mold 507.
[0051] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. The production mold for the highly stable steering column of new energy vehicles is characterized in that Including: Support base (1); Forming mechanism (5), the forming mechanism (5) includes two groups of support components and a die component. Each group of support components is arranged on the support base (1), and the die component is arranged on the support components; Adjusting mechanism (2), the adjusting mechanism (2) includes a rotating component and two groups of sliding components. The rotating component is arranged on the support base (1), and each group of sliding components is placed on the rotating component; Lifting mechanism (3), two groups of lifting mechanisms (3) are provided in total, and each group of lifting mechanisms (3) is arranged on the adjusting mechanism (2); and Cleaning mechanism (4), two groups of cleaning mechanisms (4) are provided in total. Each group of cleaning mechanisms (4) includes a support plate (401), a power component, two groups of moving components and a cleaning component. The support plate (401) is arranged on the lifting mechanism (3), each group of moving components is arranged on the support plate (401), and the power component and the cleaning component are both arranged on the moving components.
2. The high-stability steering column production mold for new energy vehicles according to claim 1, wherein: Each group of support components includes a connecting frame (501), two connecting cylinders (502), two connecting rods (503) and two connecting springs (504). One side of the connecting frame (501) is fixedly connected to the outer surface of one side of the support base (1). One end of each connecting cylinder (502) is fixedly connected to the bottom of the connecting frame (501). One end of each connecting rod (503) is slidably embedded between the inner walls of the connecting cylinder (502). Each connecting spring (504) is fixedly connected between the connecting cylinder (502) and the connecting rod (503).
3. The production mold for the highly stable steering column of a new energy vehicle according to claim 2, wherein: The die component includes two mounting plates (505), an upper die (506) and a lower die (507). The top of one mounting plate (505) is fixedly connected to the other end of the connecting rod (503). The bottom of the other mounting plate (505) is fixedly connected to the top of the support base (1). The top of the upper die (506) is fixedly connected to the bottom of one mounting plate (505). The bottom of the lower die (507) is fixedly connected to the top of the other mounting plate (505).
4. The high-stability steering column production mold for new energy vehicles according to claim 3, characterized in that: The rotating component includes an adjusting motor (201) and an adjusting rod (202). The two ends of the adjusting rod (202) are rotatably connected between the inner walls of the two sides of the support base (1). The adjusting motor (201) is fixedly connected to the outer surface of one side of the support base (1), and the output end of the adjusting motor (201) is fixedly connected to one end of the adjusting rod (202).
5. The production mold for a highly stable steering column of a new energy vehicle according to claim 4, wherein: Each group of sliding components includes an adjusting plate (205), two adjusting racks (204) and two adjusting gears (203). The adjusting plate (205) is slidably embedded in the top of the support base (1). The top of each adjusting rack (204) is fixedly connected to the bottom of the adjusting plate (205). Each adjusting gear (203) is fixedly sleeved on the outer surface of the adjusting rod (202), and each adjusting gear (203) meshes with the adjusting rack (204).
6. The high-stability steering column production mold for new energy vehicles according to claim 5, characterized in that: The lifting mechanism (3) includes a lifting motor (301), a fixing plate (302), two fixing rods (303) and a fixing threaded rod (304). One end of each fixing rod (303) is fixedly connected to the top of the support base (1). The bottom of the fixing plate (302) is fixedly connected to the tops of the two fixing rods (303). The two ends of the fixing threaded rod (304) are rotatably connected between the fixing plate (302) and the support base (1). The lifting motor (301) is fixedly connected to the top of the fixing plate (302), and the output end of the lifting motor (301) is fixedly connected to one end of the fixing threaded rod (304). The support plate (401) is threadedly sleeved on the outer surface of the fixing threaded rod (304), and the support plate (401) is slidably sleeved on the outer surfaces of the two fixing rods (303).
7. The production mold for the highly stable steering column of a new energy vehicle according to claim 6, wherein: Each group of the moving components includes an installation threaded rod (405), a limiting rod (406) and a moving plate (407). One end of the installation threaded rod (405) rotatably penetrates through the outer surface of one side of the support plate (401). One end of the limiting rod (406) is fixedly connected to the inner wall of one side of the support plate (401). The moving plate (407) is slidably embedded in the inner wall of one side of the support plate (401). The moving plate (407) is threadedly sleeved on the outer surface of the installation threaded rod (405), and the moving plate (407) is slidably sleeved on the outer surface of the limiting rod (406).
8. The high-stability steering column production mold for new energy vehicles according to claim 7, characterized in that: The power component includes a fixing motor (402), a fixing synchronous pulley (403) and two connecting synchronous pulleys (404). Each connecting synchronous pulley (404) is fixedly sleeved on the outer surface of the installation threaded rod (405). The fixing motor (402) is fixedly connected to the outer surface of one side of the support plate (401). The fixing synchronous pulley (403) is fixedly sleeved on the output end of the fixing motor (402), and the fixing synchronous pulley (403) is driven by a synchronous belt with the two connecting synchronous pulleys (404).
9. The high-stability steering column production mold for new energy vehicles according to claim 8, characterized in that: The cleaning component includes a cleaning pipe (408), a cleaning motor (409) and a dust blower (410). The two ends of the cleaning pipe (408) are rotatably connected between the two moving plates (407). The cleaning motor (409) is fixedly connected to the outer surface of one side of one of the moving plates (407), and the output end of the cleaning motor (409) is fixedly connected to one end of the cleaning pipe (408). The dust blower (410) is fixedly connected to the inner wall of the cleaning pipe (408).
10. A production method of a high-stability steering column production mold for new energy vehicles, which is applied to the high-stability steering column production mold for new energy vehicles described in claim 9, characterized in that, It includes the following steps: S1. Pouring and molding: Turn on the fixed motor (402). The rotation of the fixed motor (402) drives the rotation of the fixed synchronous pulley (403). Through the transmission of the synchronous belt, the connecting synchronous pulley (404) drives the rotation of the mounting threaded rod (405), causing the moving plate (407) to drive the cleaning pipe (408) to move. The cleaning pipe (408) moves to the top of the mounting plate (505). Then turn on the lifting motor (301). The rotation of the lifting motor (301) drives the rotation of the fixed threaded rod (304). Through the limitation of the fixed rod (303), the position of the cleaning mechanism (4) is adjusted. The cleaning mechanism (4) pushes the upper mold (506) to move. At this time, the connecting rod (503) moves in the connecting cylinder (502) until the upper mold (506) and the lower mold (507) are butted together, and then pouring and molding are carried out; S2. Transfer the steering column: After molding, adjust the position of the cleaning mechanism (4) through the lifting mechanism (3) to restore the upper mold (506) to its original state. Then adjust the position of the cleaning mechanism (4) through the lifting mechanism (3), and adjust the movement of the cleaning pipe (408) through the fixed motor (402). Clamp the molded steering column between the two cleaning pipes (408). Adjust the height of the steering column through the lifting mechanism (3). Turn on the adjustment motor (201). The rotation of the adjustment motor (201) drives the rotation of the adjustment rod (202) and the adjustment gear (203). Through the meshing of the adjustment rack (204) and the adjustment gear (203), the adjustment plate (205) drives the molded steering column to move out of the upper mold (506) and the lower mold (507), facilitating the collection of the molded steering column; S3. Clean the mold: Adjust the position of the cleaning mechanism (4) through the lifting mechanism (3), then adjust the position of the cleaning pipe (408) through the fixed motor (402), drive the cleaning pipe (408) to rotate through the cleaning motor (409), and cooperate with the dust blower (410) to clean the upper mold (506) and the lower mold (507).
Citation Information
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