Magnetic sponge and production equipment thereof
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-27
- Publication Date
- 2026-08-11
AI Technical Summary
但是随之产生的,内置磁块有可能会在使用过程中发生位移,或有异物感,并且,内置磁块依赖于工人操作,内置位置和操作效率得不到保障
[0027]本申请将吸磁装置、海绵模具和驱动装置都设为与支架连接,一体化成型,无需额外设备。通过操作位移驱动装置使吸磁装置和海绵模具在对合状态和分离状态之间移动,以围成发泡腔完成海绵的发泡制作。这种设计简化了操作方式,提高了磁性海绵的生产效率。由于磁性材料本身的特性,生产出的磁性海绵不需要额外的固定装置进行固定。
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Figure CN117124524B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of mattress materials and their manufacturing technology, and in particular to a magnetic sponge and its production equipment. Background Technology
[0002] In the field of mattress technology, especially multi-layer mattresses, fixing devices are usually needed to fix the multiple layers of mattresses together, such as glue and nails. This method has problems such as unstable fixing and troublesome fixing operation.
[0003] Therefore, related technologies propose adding magnetic blocks into mattresses to achieve fixation. However, this results in the possibility of the built-in magnetic blocks shifting during use, causing a foreign object sensation. Furthermore, the built-in magnetic blocks rely on operator intervention, and their placement and operational efficiency cannot be guaranteed. Summary of the Invention
[0004] This application discloses a magnetic sponge and its production equipment, which can improve the efficiency of magnetic sponge production in related technologies. Furthermore, due to the inherent characteristics of magnetic materials, no fixing device is needed to fix the magnetic sponges together.
[0005] To achieve the above objectives, in a first aspect, this application discloses a magnetic sponge production apparatus, the magnetic sponge production apparatus comprising:
[0006] support;
[0007] A magnetic attracting device is connected to the bracket and is used to attract magnetic powder.
[0008] A sponge mold, connected to the support frame, to constrain the outer contour of the magnetic sponge; and,
[0009] A displacement driving device is provided to drive the magnetic attracting device and the sponge mold to move between an engaged state and a disengaged state. When the magnetic attracting device and the sponge mold are in the engaged state, a foaming cavity is formed between the magnetic attracting device and the sponge mold, and the surface of the magnetic attracting device used to attract magnetic powder faces the inside of the foaming cavity. The foaming cavity is configured to receive sponge raw material to combine the sponge raw material with the magnetic powder to form a magnetic sponge.
[0010] As an optional implementation, the magnetic attraction device includes a first magnetic component and a second magnetic component, and the sponge mold includes a frame-shaped component. When the magnetic attraction device and the sponge mold are in the mating state, the first magnetic component and the second magnetic component are respectively attached to both sides of the frame-shaped component to form the foaming cavity.
[0011] As an optional implementation, the magnetic attraction device further includes a magnetic control element, which is configured to:
[0012] When the first magnetic element and the second magnetic element move toward the engagement state, the magnetic control element controls the magnetic poles of the adsorption surfaces of the first magnetic element and the second magnetic element to be opposite; and / or,
[0013] When the first magnetic component and the second magnetic component move toward the separated state, the magnetic control component controls the magnetic poles of the adsorption surface of the first magnetic component and the magnetic poles of the adsorption surface of the second magnetic component to be the same.
[0014] As an optional implementation, the magnetic control element is also configured to control the magnitude of the magnetic attraction force of the first magnetic element and / or the second magnetic element.
[0015] As an optional implementation, the magnetic sponge production equipment further includes a magnetic powder tank, and the magnetic attraction device further includes a first flipping drive device. The first flipping drive device is configured to drive the first magnetic element and the second magnetic element to flip between a first angle and a second angle. The first angle is the angle between the first magnetic element and the magnetic powder tank when the first magnetic element and the second magnetic element attract magnetic powder, and the second angle is the angle at which the first magnetic element and the second magnetic element are aligned.
[0016] As an optional implementation, the sponge mold includes a second flipping drive device, which is configured to drive the frame member to flip between a third angle and a fourth angle. The third angle is the angle at which the frame member is in the mating state, and the fourth angle is the angle at which the frame member is used to demold the magnetic sponge.
[0017] As an optional implementation, the frame member includes multiple frame edges, which are detachably connected, and a hydraulic component is provided at the connection between two adjacent frame edges;
[0018] The magnetic sponge production equipment also includes a disassembly device configured to extend the hydraulic components to open up two adjacent frame edges.
[0019] As an optional implementation, the support is provided with a feeding device, the frame is provided with a feeding port, and the feeding device is connected to the feeding port to deliver sponge raw material into the foaming cavity.
[0020] As an optional implementation, the displacement driving device includes:
[0021] A first translation component is connected to the first magnetic component and the second magnetic component to drive the first magnetic component and the second magnetic component to move along a first horizontal direction;
[0022] A first lifting assembly is connected to the magnetic attraction device to drive the magnetic attraction device to move vertically.
[0023] A second translation component, connected to the sponge mold, is used to move the sponge mold along a second horizontal direction; and,
[0024] The first horizontal direction is perpendicular to the second horizontal direction, and the movement trajectory of the sponge mold is located between the first magnetic component and the second magnetic component.
[0025] Secondly, this application discloses a magnetic sponge, which is produced by the magnetic sponge production equipment described in any embodiment of the first aspect above.
[0026] Compared with the prior art, the beneficial effects of this application are:
[0027] This application integrates the magnetic attracting device, sponge mold, and driving device, all connected to a support frame and molded as a single unit, eliminating the need for additional equipment. The magnetic attracting device and sponge mold are moved between an engaged and disengaged state by an operational displacement driving device to form a foaming cavity, thus completing the foaming process of the sponge. This design simplifies operation and improves the production efficiency of magnetic sponges. Due to the inherent properties of magnetic materials, the produced magnetic sponges do not require additional fixing devices for securement. Attached Figure Description
[0028] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0029] Figure 1 This application discloses a magnetic sponge production equipment.
[0030] Figure 2 yes Figure 1 Another view of the magnetic sponge production equipment;
[0031] Figure 3 yes Figure 1 Disassembly diagram of the mold for the magnetic sponge production equipment.
[0032] Explanation of reference numerals in the attached figures:
[0033] 1-Support; 11-Feeding device; 111-Storage bin; 112-Injection pipe;
[0034] 2-Magnetic attraction device; 21-First magnetic component; 22-Second magnetic component; 23-Magnetic control component; 24-First flipping drive device; 241-First flipping shaft; 242-First motor;
[0035] 3-Sponge mold; 31-Foaming cavity; 32-Frame component; 321-Frame edge; 33-Hydraulic component; 34-Feed inlet; 35-Second motor;
[0036] 4-Displacement drive device; 41-First translation component; 411-First horizontal guide rail; 412-First translation motor; 42-First vertical rack; 43-Second horizontal guide rail; 43a-Second translation motor;
[0037] 5-Magnetic powder tank;
[0038] 6-Discharge area;
[0039] X - First direction; Y - Second direction; Z - Third direction. Detailed Implementation
[0040] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0041] In this invention, the terms "upper," "lower," "left," "right," "front," "rear," "top," "bottom," "inner," "outer," "vertical," "horizontal," "lateral," and "longitudinal" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. These terms are primarily for the purpose of better describing the invention and its embodiments, and are not intended to limit the indicated device, element, or component to having a specific orientation, or to be constructed and operated in a specific orientation.
[0042] Furthermore, in addition to indicating direction or positional relationship, some of the aforementioned terms may also have other meanings. For example, the term "above" may also be used in certain situations to indicate a dependency or connection. Those skilled in the art can understand the specific meaning of these terms in this invention based on the specific circumstances.
[0043] Furthermore, the terms "installation," "setup," "equipped with," "connection," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral structure; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium, or an internal connection between two devices, components, or parts. Those skilled in the art can understand the specific meaning of these terms in this invention based on the specific circumstances.
[0044] Furthermore, the terms "first," "second," etc., are primarily used to distinguish different devices, elements, or components (which may be the same or different in specific type and construction), and are not intended to indicate or imply the relative importance or quantity of the indicated devices, elements, or components. Unless otherwise stated, "a plurality of" means two or more.
[0045] The technical solution of this application will be further described below with reference to specific embodiments and accompanying drawings.
[0046] Firstly, please refer to Figure 1 This application discloses a magnetic sponge production equipment, which includes: a support 1, a magnetic adsorption device 2, a sponge mold 3, and a displacement driving device 4. The magnetic adsorption device 2 is connected to the support 1 and is used to adsorb magnetic powder. The sponge mold 3 is connected to the support 1 to limit the outer contour, size, and shape of the magnetic sponge. The displacement driving device 4 drives the magnetic adsorption device 2 and the sponge mold 3 to move between an engaged state and a disengaged state. When the magnetic adsorption device 2 and the sponge mold 3 are in the engaged state, they form a foaming cavity 31, with the surface of the magnetic adsorption device 2 used to adsorb magnetic powder facing into the foaming cavity 31. The foaming cavity 31 is configured to receive sponge raw materials to combine the sponge raw materials with magnetic powder to form a magnetic sponge.
[0047] The "paired state" refers to the magnetic attraction device 2 and the sponge mold 3 being in contact, while the "separated state" refers to the magnetic attraction device 2 and the sponge mold 3 being separated.
[0048] Optionally, the support 1 is made of metal frame to ensure the connection strength of the magnetic sponge production device and the stability during the production of magnetic sponge.
[0049] Preferably, the displacement drive device 4 is an electric motor, which is convenient and quick. In other embodiments, a hydraulic device or other power device may also be used for driving, and this application does not limit this.
[0050] The magnetic attracting device 2, the sponge mold 3, and the displacement driving device 4 are integrated into a single unit, eliminating the need for additional equipment. By operating the displacement driving device 4, the magnetic attracting device 2 and the sponge mold 3 are moved between an engaged state and a disengaged state to form the foaming cavity 31, completing the foaming process of the sponge. This design simplifies the operation and improves the production efficiency of magnetic sponges. Due to the inherent properties of magnetic materials, the produced magnetic sponges do not require additional fixing devices for securement.
[0051] Please see Figure 2 and Figure 3 In some embodiments, the magnetic attraction device 2 includes a first magnetic element 21 and a second magnetic element 22, and the sponge mold 3 includes a frame-shaped element 32. When the magnetic attraction device 2 and the sponge mold 3 are in a mating state, the first magnetic element 21 and the second magnetic element 22 are respectively attached to the two sides of the frame-shaped element 32 to form a foaming cavity 31.
[0052] Optionally, the first magnetic component 21 and the second magnetic component 22 are plate-shaped, and the frame component is a square frame, with the two corresponding to each other, so as to facilitate the foaming of the magnetic sponge.
[0053] Please see Figure 2 In some embodiments, the magnetic attracting device 2 further includes a magnetic control element 23, which is configured to:
[0054] When the first magnetic element 21 and the second magnetic element 22 move towards the mating state, the magnetic control element 23 controls the magnetic poles of the adsorption surface of the first magnetic element 21 and the second magnetic element 22 to be opposite; and / or,
[0055] When the first magnetic element 21 and the second magnetic element 22 move toward a separated state, the magnetic control element 23 controls the magnetic poles of the adsorption surface of the first magnetic element 21 and the adsorption surface of the second magnetic element 22 to be the same.
[0056] Understandably, when the first magnetic component 21 and the second magnetic component 22 are in a separated state, the magnetic control component 23 controls the magnetic attraction force of the first magnetic component 21 to increase, thereby allowing for tighter adsorption of magnetic powder. When the first magnetic component 21 and the second magnetic component 22 are in a mating state and foaming is complete, the magnetic control component 23 controls the magnetic attraction force of the first magnetic component 21 to decrease, thereby facilitating the detachment of magnetic powder from the first magnetic component 21 and the second magnetic component 22, so that the magnetic powder and the sponge raw material can combine to form a magnetic sponge.
[0057] It is understandable that the first magnetic component 21 and the second magnetic component 22 are electromagnets, and the direction of the magnetic poles of the electromagnets is controlled by changing the direction of the current in the electromagnets.
[0058] Among them, the magnetic control component 23 can be a power distribution box, providing driving force for the entire magnetic sponge production equipment.
[0059] Furthermore, the magnetic control element 23 is also configured to control the magnitude of the magnetic attraction force of the first magnetic element 21 and / or the second magnetic element 22.
[0060] It is understandable that the magnitude of the current in the electromagnet can be changed to control the magnitude of the electromagnet's magnetic attraction force.
[0061] Please see Figure 1 and Figure 2 In some embodiments, the magnetic sponge production equipment further includes a magnetic powder tank 5, and the magnetic adsorption device 2 further includes a first flipping drive device 24. The first flipping drive device 24 is configured to drive the first magnetic element 21 and the second magnetic element 22 to flip between a first angle and a second angle. The first angle is the angle between the first magnetic element 21 and the second magnetic element 22 and the magnetic powder tank 5 when the first magnetic element 21 and the second magnetic element 22 adsorb magnetic powder, and the second angle is the angle at which the first magnetic element 21 and the second magnetic element 22 are aligned.
[0062] Optionally, the magnetic powder tank 5 is equipped with a magnetic powder tank moving motor to make the magnetic powder tank 5 slide back and forth, so that the magnetic powder in the magnetic powder tank 5 remains uniform.
[0063] The first flipping drive device 24 may include two first flipping shafts 241 and two first flipping motors, as shown in the figure. The two first flipping shafts 241 may be arranged parallel to each other. A first magnetic element 21 is disposed on one of the first flipping shafts 241, and a second magnetic element 22 is disposed on the other first flipping shaft 241. The two first flipping motors are used to drive the two first flipping shafts 241 to rotate. The first flipping motors and the first flipping shafts 241 may be directly connected or indirectly connected through a transmission device, such as a gear transmission structure, a belt transmission structure, or a chain transmission structure. In addition, the two first flipping shafts 241 may also be driven by two rotary cylinders, which drive the two first flipping shafts 241 to reciprocate, thereby realizing the reciprocating oscillation of the first magnetic element 21 and the second magnetic element 22 between a first angle and a second angle.
[0064] The first flipping motor can be a first motor 242.
[0065] The first angle can be the angle when the first magnetic component 21 and the second magnetic component 22 are parallel to the magnetic powder tank 5, and the second angle can be the angle when the first magnetic component 21 and the second magnetic component 22 are parallel to the sponge mold 3.
[0066] This makes the flipping operation of the first magnetic component 21 and the second magnetic component 22 flexible and convenient.
[0067] Please see Figures 1 to 3In some embodiments, the sponge mold 3 includes a second flipping drive device configured to drive the frame member 32 to flip between a third angle and a fourth angle, wherein the third angle is the angle when the frame member 32 is in an engaged state, and the fourth angle is the angle at which the frame member 32 is used to demold the magnetic sponge.
[0068] The second flipping drive device may include a second flipping motor. The second flipping motor is used to drive the sponge mold 3 to rotate, so as to realize the reciprocating oscillation of the sponge mold 3 between the third angle and the fourth angle.
[0069] The third angle can be the angle when the sponge mold 3 is parallel to the first magnetic component 21 and the second magnetic component 22, and the fourth angle can be the angle when the sponge mold 3 is perpendicular to the first magnetic component 21 and the second magnetic component 22.
[0070] The second flipping motor is the second motor 35.
[0071] This makes the flipping operation of the sponge mold 3 flexible and convenient.
[0072] Please see Figure 3 In some embodiments, the frame member 32 includes multiple frame edges 321, which are detachably connected, and a hydraulic component 33 is provided at the connection between two adjacent frame edges 321.
[0073] The magnetic sponge production equipment also includes a disassembly device, which is configured to extend a hydraulic component 33 to open up two adjacent frame edges 321. The hydraulic component 33 can be a piston device, and the disassembly device is a second motor 35.
[0074] This makes the demolding operation simple and controllable, and also facilitates the reassembly of the sponge mold 3 for the next demolding.
[0075] Please see Figures 1 to 3 In some embodiments, the support 1 is provided with a feeding device 11, and the frame 32 is provided with a feeding port 34. The feeding device 11 is connected to the feeding port 34 to deliver sponge raw materials into the foaming cavity 31.
[0076] Optionally, the feeding device 11 includes a storage bin 111 and an injection pipe 112. The storage bin 111 is used to hold the sponge raw material, and the injection pipe 112 cooperates with the inlet 34 to inject the sponge raw material.
[0077] The feed inlet 34 is connected to the foaming chamber 31 so that the sponge raw material can enter the foaming chamber 31.
[0078] Please see Figures 1 to 3 In some embodiments, the displacement driving device 4 includes:
[0079] The first translation component 41 is connected to the first magnetic component 21 and the second magnetic component 22 to drive the first magnetic component 21 and the second magnetic component 22 to move along the first horizontal direction, thereby allowing the first magnetic component 21 and the second magnetic component 22 to move closer to each other or further away from each other.
[0080] The first lifting component is connected to the magnetic attraction device 2 to drive the magnetic attraction device 2 to move in the vertical direction;
[0081] The second translation component is connected to the sponge mold 3 to drive the sponge mold 3 to move along the second horizontal direction; wherein, the second translation component can be a gear and rack device or a linear cylinder device.
[0082] The first horizontal direction is perpendicular to the second horizontal direction, and the movement trajectory of the sponge mold 3 is located between the first magnetic component 21 and the second magnetic component 22.
[0083] Optionally, the first translation component 41 includes a first horizontal guide rail 411 and a first translation motor 412. The first horizontal guide rail 411 is fixed relative to the bracket 1 and extends along the first direction X. The first translation motor 412 is used to drive the magnetic attraction device 2 to translate along the first horizontal guide rail 411.
[0084] Optionally, the first lifting assembly includes a first vertical rack 42 and a first lifting motor. The first vertical rack 42 is fixed relative to the bracket 1 and extends along the second direction Y. The first lifting motor is used to drive the magnetic attraction device 2 to move vertically up and down along the first vertical rack 42. The first lifting motor can be a first motor 242, which moves via gear transmission.
[0085] Optionally, the second translation component includes a second horizontal guide rail 43 and a second translation motor 43a. The second horizontal guide rail 43 is fixed relative to the bracket 1 and extends along the third direction Z. The second translation motor 43a is used to drive the sponge mold 3 to translate along the third horizontal guide rail.
[0086] Secondly, this application also discloses a magnetic sponge, which is produced by the magnetic sponge production equipment described in any embodiment of the first aspect above.
[0087] Specifically, the produced magnetic sponges can be attracted and fixed together by the magnetic force of the magnetic powder in the sponge. Therefore, no additional fixing device is required.
[0088] To facilitate a better understanding of the magnetic sponge and its production equipment disclosed in this application, one embodiment is described below.
[0089] 1. Place the raw materials required for foaming sponge in the storage box 111, and at the same time place the magnetic powder in the magnetic powder tank 5. Start the power distribution box and first control the first translation component 41 to drive the magnetic attraction device 2 to move in the second direction Y close to the magnetic powder tank 5. Control the magnetic attraction component to attract the magnetic powder in the magnetic powder tank 5. During this process, it is necessary to ensure that the magnetic poles generated by the first magnetic component 21 and the second magnetic component 22 are opposite.
[0090] Second: After the magnetic powder is attracted, the second translation motor 43a is controlled to move the sponge mold 3 along the third direction Z on the second horizontal guide rail 43 to above the magnetic powder tank 5 (i.e. below the injection tube 112), so that the injection tube 112 and the injection hole are aligned and engaged. Then, the first motor 242 is controlled to lift and rotate the magnetic attraction device 2, and at the same time, the first motor 242 is controlled to align the magnetic attraction device 2 with the sponge mold 3 and make it fit against the sponge mold 3. During this process, the magnetic force of the first magnetic component 21 and the second magnetic component 22 is adjusted to the maximum to prevent the magnetic pole direction of the magnetic powder from being disturbed and changed when the raw material is injected.
[0091] 3. The raw material in storage bin 111 is injected into sponge mold 3 to begin the foaming process of the magnetic sponge. During foaming, the sponge raw material expands into the foaming cavity 31 of sponge mold 3, and the magnetic powder is evenly distributed on the surface of the sponge. Due to the adsorption between the magnetic powder particles, the magnetic powder can be well fixed on the sponge. After the foaming process is completed, the first motor 242 is reset. Then, the second translation motor 43a is controlled to move the sponge mold 3 along the third direction Z above the feeding area 6. At this time, the magnetic powder tank moving motor is controlled to slide the magnetic powder tank 5 back and forth quickly to make the magnetic powder in the magnetic powder tank 5 evenly distributed. At the same time, the second motor 35 is controlled to rotate the sponge mold 3 parallel to the feeding area 6. Then, the disassembly device is controlled to disassemble the sponge mold 3, so that the magnetic sponge is demolded and placed in the feeding area 6. Finally, all devices are reset.
[0092] 4. Repeat the above steps.
[0093] The foregoing has provided a detailed description of a magnetic sponge and its production equipment disclosed in the embodiments of this application. Specific examples have been used to illustrate the principles and implementation methods of this application. The descriptions of the embodiments above are only for the purpose of helping to understand the core ideas of the magnetic sponge and its production equipment of this application. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the ideas of this application. Therefore, the content of this specification should not be construed as a limitation of this application.
Claims
1. A magnetic sponge production apparatus, characterized by comprising: include: support; A magnetic attracting device is connected to the bracket and is used to attract magnetic powder. A sponge mold, which is connected to the support to restrict the outer contour of the magnetic sponge; as well as, A displacement driving device is provided to drive the magnetic attracting device and the sponge mold to move between an engaged state and a disengaged state. When the magnetic attracting device and the sponge mold are in the engaged state, a foaming cavity is formed between the magnetic attracting device and the sponge mold, and the surface of the magnetic attracting device used to attract magnetic powder faces the inside of the foaming cavity. The foaming cavity is configured to receive sponge raw material to combine the sponge raw material with the magnetic powder to form a magnetic sponge.
2. The magnetic sponge production equipment according to claim 1, characterized in that, The magnetic attraction device includes a first magnetic component and a second magnetic component, and the sponge mold includes a frame-shaped component. When the magnetic attraction device and the sponge mold are in the mating state, the first magnetic component and the second magnetic component are respectively attached to both sides of the frame-shaped component to form the foaming cavity.
3. The magnetic sponge production equipment according to claim 2, characterized in that, The magnetic attraction device further includes a magnetic control element, which is configured to: When the first magnetic element and the second magnetic element move toward the engagement state, the magnetic control element controls the magnetic poles of the adsorption surfaces of the first magnetic element and the second magnetic element to be opposite; and / or, When the first magnetic component and the second magnetic component move toward the separated state, the magnetic control component controls the magnetic poles of the adsorption surface of the first magnetic component and the magnetic poles of the adsorption surface of the second magnetic component to be the same.
4. The magnetic sponge production equipment according to claim 3, characterized in that, The magnetic control element is also configured to control the magnitude of the magnetic attraction force of the first magnetic element and / or the second magnetic element.
5. The magnetic sponge production equipment according to claim 2, characterized in that, The magnetic sponge production equipment also includes a magnetic powder tank, and the magnetic attraction device also includes a first flipping drive device. The first flipping drive device is configured to drive the first magnetic element and the second magnetic element to flip between a first angle and a second angle. The first angle is the angle between the first magnetic element and the magnetic powder tank when the first magnetic element and the second magnetic element attract magnetic powder, and the second angle is the angle at which the first magnetic element and the second magnetic element are aligned.
6. The magnetic sponge production equipment according to claim 2, characterized in that, The sponge mold includes a second flipping drive device, which is configured to drive the frame member to flip between a third angle and a fourth angle. The third angle is the angle when the frame member is in the mating state, and the fourth angle is the angle at which the frame member is used to demold the magnetic sponge.
7. The magnetic sponge production equipment according to claim 2, characterized in that, The frame component includes multiple frame edges, which are detachably connected, and a hydraulic component is provided at the connection between two adjacent frame edges. The magnetic sponge production equipment also includes a disassembly device configured to extend the hydraulic components to open up two adjacent frame edges.
8. The magnetic sponge production equipment according to claim 2, characterized in that, The support is equipped with a feeding device, and the frame is equipped with a feeding port. The feeding device is connected to the feeding port to deliver sponge raw materials into the foaming cavity.
9. The magnetic sponge production equipment according to claim 2, characterized in that, The displacement driving device includes: A first translation component is connected to the first magnetic component and the second magnetic component to drive the first magnetic component and the second magnetic component to move along a first horizontal direction; A first lifting assembly is connected to the magnetic attraction device to drive the magnetic attraction device to move vertically. A second translation component, connected to the sponge mold, is used to move the sponge mold along a second horizontal direction; and, The first horizontal direction is perpendicular to the second horizontal direction, and the movement trajectory of the sponge mold is located between the first magnetic component and the second magnetic component.
Citation Information
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