Multi-dimensional vibration shakeout machine for casting
By designing a multi-dimensional vibration sand-falling machine composed of a limit rod and a compression spring, the problem of incomplete sand-falling caused by the vibration of the sand-falling machine is solved, the rapid shaking and collection of the casting sand is achieved, the work efficiency is improved and the production cost is reduced.
Patent Information
- Application Number
- CN202420663310.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-01
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-04-01
AI Technical Summary
The existing shakeout machine vibrates when fixing the casting, resulting in incomplete shakeout and the need for subsequent processing, which reduces work efficiency and increases production costs.
A multi-dimensional vibration sand shakeout machine for casting is designed. The combination of a limit rod and a compression spring is used to prevent the sand shakeout box from moving with the vibration. At the same time, the shaking of the screen plate and the connecting rod is used to achieve rapid shaking and collection of the casting sand.
The rapid shaking and collection of casting sand is achieved, which avoids incomplete sand falling, saves time, improves work efficiency and reduces production costs.
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Figure CN223325444U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of casting processing equipment, in particular to a multi-dimensional vibration sand-shaking machine for casting. Background Art
[0002] Sand shakeout machines are widely used in the foundry industry. Their vibration sources are generally categorized as mechanical, electromagnetic, and pneumatic. They utilize vibration and impact to separate the molding sand and casting in the mold, enabling rapid separation of the two. A common drawback of sand shakeout machines is that they are often fixed together with the casting, causing the casting to vibrate as the casting vibrates, resulting in incomplete sand shakeout. Furthermore, sand shakeout requires post-processing, which wastes time, reduces work efficiency, and increases production costs. Utility Model Content
[0003] In view of this, the utility model provides a multi-dimensional vibration sand-falling machine for casting, which can place the cast material on the screen plate, start the vibration motor, and the vibration motor drives the connecting plate to vibrate, the connecting plate drives the supporting plate to vibrate, the supporting plate drives the supporting rod to vibrate, the supporting rod drives the first connecting rod to vibrate, the first connecting rod drives the screen plate to vibrate, and when the screen plate vibrates, it drives the material to vibrate, and the casting sand on the material is shaken off, and the shaken casting sand falls onto the slide through the holes on the screen plate, one end of the second connecting rod is connected to the slide and the other end is connected to the support rod, and when the support rod shakes The second connecting rod is driven to vibrate, and the second connecting rod drives the slide to vibrate to discharge the casting sand that falls on the slide through the slot on the sand falling box. The casting sand can be collected at the same time when it is shaken off, which saves time and increases work efficiency. The limit rod is slidably arranged in the limit hole to limit the support rod and a compression spring is provided on the limit rod. When the vibration motor drives the support rod to vibrate, the support rod compresses the compression spring, and the support plate slides up and down in the limit slot, which avoids the sand falling box from vibrating when the vibration component vibrates the material to shake out the sand, resulting in incomplete sand falling.
[0004] In order to solve the above technical problems, the utility model provides a multi-dimensional vibration sand-shaking machine for casting, including a sand-shaking box, which is used to place materials. Limiting grooves are symmetrically provided on both sides of the sand-shaking box, and the limiting grooves are used to limit the support rods. A vibration component is provided in the limiting groove, and the vibration component is used to shake off the casting sand on the material. A recovery component is connected to the bottom of the vibration component, and the recovery component is used to collect the shaken casting sand.
[0005] The vibration assembly includes a support rod, which is used to connect and support the first connecting rod and the support plate. The support rod is set in a limit groove for sliding up and down. A limit hole is provided on the sand box, and the limit hole is used to limit the limit rod.
[0006] The limit holes are symmetrically arranged at both ends of the limit slot. A limit rod is provided between the upper base surface and the lower base surface of the support rod. The limit rod is used to limit the support rod to prevent the support rod from moving left and right in the limit slot. The limit rod is slidably arranged in the limit hole.
[0007] A compression spring is provided on the limit rod. The compression spring is used to support the support plate and facilitate the support rod to shake better when the vibration motor drives the support rod to shake. One end of the compression spring is placed on the support rod, and the other end of the compression spring is placed on one end of the limit slot.
[0008] Support plates are symmetrically provided on the lower base surfaces at both ends of the support rod, the support plates are connected to the support connecting plates, the support plates are connected to connecting plates, the connecting plates are used to connect the vibration motor, the connecting plates are connected to the vibration motor, and the vibration motor is used to drive the screen plate to vibrate.
[0009] A first connecting rod is connected to the base surface of the support rod, and the first connecting rod is used to connect the screen plate. The first connecting rod is connected to the screen plate, and the screen plate is used to place materials and facilitate the falling of casting sand. The recovery assembly includes a second connecting rod, and the second connecting rod is used to connect the slide.
[0010] The second connecting plate is connected to the lower base surface of the support plate, and a slide is connected to one end of the second connecting plate. The slide is used to collect the casting sand falling from the screen plate. A slot is provided at the front end of the sand falling box. The slot facilitates the casting sand to flow out of the sand falling box and be collected. The slide is movably arranged in the slot.
[0011] The beneficial effects of the above technical solution of the utility model are as follows:
[0012] 1. Place the cast material on the screen plate and start the vibration motor. The vibration motor drives the connecting plate to vibrate, the connecting plate drives the supporting plate to vibrate, the supporting plate drives the supporting rod to vibrate, the supporting rod drives the first connecting rod to vibrate, the first connecting rod drives the screen plate to vibrate, and when the screen plate vibrates, it drives the material to vibrate, and the casting sand on the material is shaken off. The shaken casting sand falls onto the slide through the holes on the screen plate.
[0013] 2. One end of the second connecting rod is connected to the slide and the other end is connected to the support rod. When the support rod shakes, the second connecting rod drives the slide to shake and discharge the casting sand that falls on the slide through the slot on the sand falling box. The casting sand can be collected at the same time as it is shaken off, saving time and increasing work efficiency.
[0014] 3. The limit rod is slidingly arranged in the limit hole to limit the support rod and a compression spring is sleeved on the limit rod. When the vibration motor drives the support rod to shake, the support rod compresses the compression spring, and the support plate slides up and down in the limit groove, thereby preventing the sand box from vibrating when the vibration assembly vibrates the material to shake out the sand, resulting in incomplete sand falling. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a schematic diagram of the main structure of a multi-dimensional vibration sand-shaking machine for casting in the utility model;
[0016] Figure 2 This is a schematic diagram of the left side cross-sectional structure of the present invention;
[0017] Figure 3 This is a schematic diagram of the right side cross-sectional structure of the present utility model;
[0018] Figure 4 It is a rear view structural schematic diagram of the present utility model.
[0019] Explanation of the accompanying drawings: 100, sand box; 101, limiting groove; 110, vibration assembly; 111, support rod; 112, limiting hole; 113, limiting rod; 114, compression spring; 115, support plate; 116, connecting plate; 117, vibration motor; 118, first connecting rod; 119, screen plate; 120, recovery assembly; 121, second connecting rod; 122, slide plate; 123, slot. DETAILED DESCRIPTION
[0020] In order to make the purpose, technical solutions and advantages of the embodiment of the present invention clearer, the following will be combined with the appended drawings of the embodiment of the present invention. Figure 1-4 , clearly and completely describing the technical solutions of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. Based on the described embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field fall within the scope of protection of the present invention.
[0021] like Figure 1-4 As shown:
[0022] This embodiment provides a multi-dimensional vibration sand-shaking machine for casting, including a sand-shaking box 100, which is used to place materials. Limiting grooves 101 are symmetrically provided on both sides of the sand-shaking box 100, and the limiting grooves 101 are used to limit support rods 111. A vibration component 110 is provided in the limiting groove 101, and the vibration component 110 is used to shake off the casting sand on the material. A recovery component 120 is connected to the bottom of the vibration component 110, and the recovery component 120 is used to collect the shaken casting sand.
[0023] The vibration assembly 110 includes a support rod 111, which is used to connect and support the first connecting rod 118 and the support plate 115. The support rod 111 is set in the limit groove 101 for sliding up and down. The sand box 100 is provided with a limit hole 112, which is used to limit the limit rod 113.
[0024] The limiting holes 112 are symmetrically arranged at both ends of the limiting groove 101. A limiting rod 113 is connected to the upper base surface and the lower base surface of the support rod 111. The limiting rod 113 is fixedly connected to the support plate 115. The limiting rod 113 is used to limit the support rod 111 to prevent the support rod 111 from moving left and right in the limiting groove 101. The limiting rod 113 is slidably arranged in the limiting hole 112.
[0025] A compression spring 114 is sleeved on the limiting rod 113. The compression spring 114 is used to support the support plate 115 and facilitate the support rod 111 to shake better when the vibration motor 117 drives the support rod 111 to shake. One end of the compression spring 114 is placed on the support rod 111, and the other end of the compression spring 114 is placed on one end of the limiting slot 101.
[0026] Support plates 115 are symmetrically provided on the lower base surfaces at both ends of the support rod 111. The support plates 115 are fixedly arranged on the lower base surfaces of the support rod 111. The support plates 115 are connected to the support connecting plates 116. The support plates 115 are fixedly connected with connecting plates 116. The connecting plates 116 are used to connect the vibration motor 117. The connecting plates 116 are fixedly connected with the vibration motor 117. The vibration motor 117 is used to drive the screen plate 119 to vibrate.
[0027] A first connecting rod 118 is fixedly connected to the base surface of the support rod 111. The first connecting rod 118 is used to connect the screen plate 119. The screen plate 119 is fixedly connected to the first connecting rod 118. The first connecting rod 118 is connected to the screen plate 119. The screen plate 119 is used to place materials and facilitate the falling of casting sand. The recovery assembly 120 includes a second connecting rod 121, which is used to connect the slide plate 122.
[0028] The second connecting plate 116 is fixedly connected to the lower base surface of the support plate 115, and a slide plate 122 is fixedly connected to one end of the second connecting plate 116. The slide plate 122 is used to collect the casting sand falling from the screen plate 119. The front end of the sand falling box 100 is provided with a slot 123. The slot 123 facilitates the casting sand to flow out of the sand falling box 100 and be collected. The slide plate 122 is movably set in the slot 123.
[0029] Working principle: When in use, place the cast material on the screen plate 119, start the vibration motor 117, the vibration motor 117 drives the connecting plate 116 to vibrate, the connecting plate 116 drives the support plate 115 to vibrate, the support plate 115 drives the support rod 111 to vibrate, the support rod 111 drives the first connecting rod 118 to vibrate, the first connecting rod 118 drives the screen plate 119 to vibrate, and when the screen plate 119 vibrates, it drives the material to vibrate, and shakes off the casting sand on the material. The shaken casting sand falls onto the slide plate 122 through the holes on the screen plate 119, and one end of the second connecting rod 121 is connected to the slide plate 122 and the other end is connected to the support rod 111. When the support rod 111 vibrates, it drives the second connecting rod 12 1 shakes, the second connecting rod 121 drives the slide plate 122 to shake and discharge the casting sand that falls on the slide plate 122 through the slot 123 on the sand falling box 100, and the casting sand can be collected at the same time when the casting sand is shaken off, saving time and increasing work efficiency. The limiting rod 113 is slidably set in the limiting hole 112 to limit the support rod 111, and a compression spring 114 is sleeved on the limiting rod 113. When the vibration motor 117 drives the support rod 111 to shake, the support rod 111 compresses the compression spring 114, and the support plate 115 slides up and down in the limiting slot 101, avoiding the sand falling box 100 from vibrating when the vibration assembly 110 vibrates the material to shake out the sand, resulting in incomplete sand falling.
[0030] Furthermore, it should be noted that, in the description of this utility model, unless otherwise expressly specified or limited, the terms "installed," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections; direct connections, indirect connections through an intermediate medium, and internal connections between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on specific circumstances.
[0031] The above is a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles described in the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.
Claims
1. A multi-dimensional vibrating sand shakeout machine for casting, characterized by: The invention comprises a shakeout box (100), wherein limiting grooves (101) are symmetrically provided on both sides of the shakeout box (100), a vibration component (110) is provided in the limiting groove (101), and a recovery component (120) is connected to the lower side of the vibration component (110).
2. A multi-dimensional vibrating sand shakeout machine for casting according to claim 1, characterized in that: The vibration assembly (110) includes a support rod (111) symmetrically arranged at both ends of the sand-falling box (100). The support rod (111) is slidably arranged in the limiting groove (101) up and down, and a limiting hole (112) is provided on the sand-falling box (100).
3. A multi-dimensional vibrating sand shakeout machine for casting according to claim 2, characterized in that: The limiting holes (112) are symmetrically arranged at both ends of the limiting groove (101) in an upper and lower manner. A limiting rod (113) is connected between the upper base surface and the lower base surface of the support rod (111). The limiting rod (113) is slidably arranged in the limiting hole (112).
4. A multi-dimensional vibrating sand shakeout machine for casting according to claim 3, characterized in that: A compression spring (114) is sleeved on the limiting rod (113), one end of the compression spring (114) is mounted on the support rod (111), and the other end of the compression spring (114) is mounted on one end of the limiting slot (101).
5. A multi-dimensional vibrating sand shakeout machine for casting according to claim 4, characterized in that: Support plates (115) are symmetrically provided on the lower base surfaces of both ends of the support rod (111), a connecting plate (116) is connected to the support plate (115), and a vibration motor (117) is connected to the connecting plate (116).
6. A multi-dimensional vibrating sand shakeout machine for casting according to claim 5, characterized in that: A first connecting rod (118) is connected to the upper base surface of the support rod (111), a screen plate (119) is connected to the first connecting rod (118), and the recovery assembly (120) includes a second connecting rod (121).
7. A multi-dimensional vibrating sand shakeout machine for casting according to claim 6, characterized in that: A second connecting plate (116) is connected to the lower base surface of the support plate (115); one end of the second connecting plate (116) is connected to a slide plate (122); a front end of the shakeout box (100) is provided with a slot (123); and the slide plate (122) is movably arranged in the slot (123).