Supply equipment shielding device
By designing the semi-closed box of the shielding device and supply devices in different directions, the nozzle spraying problem is solved, effective spraying and environmental protection of the target material is achieved, and production efficiency is improved.
Patent Information
- Application Number
- CN202110356501.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-04-01
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2041-04-01
AI Technical Summary
In the prior art, the nozzle is prone to spraying the discharge agent to the side of the mold when it is sprayed, resulting in damage and failure of the unit around the supply equipment, affecting product quality.
A shielding device is designed, including a stage, side plate and a stop, forming a semi-closed box, which moves the stop through a rail structure, and sprays the target material with a supply device in different directions to avoid diffusion of the target material during the spraying process.
It protects the external environment of the target object, prevents the target material from being sprayed, avoids unit pollution and product defects, and improves production efficiency and environmental protection.
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Figure CN115155854B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a shielding device, in particular to a shielding device for supply equipment. Background Art
[0002] In the injection molding process, the desired product is often produced using a mold. Before the injection molding operation is performed, a release layer is first applied to the mold to facilitate subsequent demolding operations.
[0003] In the conventional process of coating the release layer, Figure 1 As shown, the release agent is sprayed onto the modules 1a and 1b of the mold in the supply direction F by the nozzle 10 of the supply device 1, that is, the release agent is sprayed in a single direction. After a release layer is formed on one of the modules 1a, the nozzle 10 is turned (such as in the rotation direction R) to spray the other module 1b.
[0004] However, in the conventional supply device 1, the nozzle 10 is prone to spraying the release agent around the side 1c of the module 1a, 1b during the spraying process, causing contamination of the units around the supply device 1, and even causing the units around the supply device 1 to malfunction, resulting in defective products.
[0005] Therefore, how to overcome the above-mentioned problems of conventional technology has become a difficult problem that needs to be overcome urgently in the current industry. Summary of the Invention
[0006] In view of the various deficiencies of the above-mentioned conventional technology, the present invention provides a shielding device for a supply equipment, comprising: a carrier for carrying a target object; two (plural) side panels, which are arranged on the front and rear sides of the target object on the carrier; and two (plural) blocking members, which are arranged on the two side panels and each have a groove, so that when the two blocking members are close together, the grooves of the two blocking members form an accommodating space.
[0007] In the aforementioned shielding device, the carrier is provided with a frame and a track structure disposed on the frame, so that the two stoppers are disposed on the track structure, and at least one of the two stoppers is displaced by the track structure. For example, the two side plates are disposed on the frame below the two stoppers and in front and behind the target object.
[0008] In the aforementioned shielding device, one of the side panels of the box is movable to facilitate taking out the target object.
[0009] The aforementioned shielding device further includes at least one wall panel for securing the target object. For example, the wall panel drives the target object to move. Alternatively, the plurality of side panels, the wall panel on the target object, and the plurality of blocking members form a semi-enclosed box.
[0010] In the aforementioned shielding device, a supply assembly corresponding to the target object is configured on the carrier, and the supply assembly includes: a support structure; a first supply device, which is arranged on the support structure to spray the target material onto the target object in a first supply direction; and a second supply device, which is arranged on the support structure to spray the target material onto the target object in a second supply direction, and the first supply direction of the first supply device is different from the second supply direction of the second supply device, so that when the first supply device and the second supply device spray the target material onto the target object, the shielding device of the supply equipment blocks the outer circumference of the target object. For example, the supply assembly further includes an up-down displacement device and a left-right displacement device for displacing the first supply device and the second supply device. Furthermore, the first supply device and the second supply device are arranged below the up-down displacement device and the left-right displacement device.
[0011] From the above, it can be seen that the shielding device of the supply equipment of the present invention mainly carries the target object through the carrier, so that when it is applied to the supply equipment, during the process of the supply equipment spraying the target material, the semi-enclosed box and the accommodating space can protect the external environment of the target object, so that the supply device will not spray the target material to the external environment of the target object during the process of spraying the target material. Therefore, compared with the conventional technology, the shielding device of the present invention can prevent the supply equipment from causing pollution, thereby avoiding damage to other units and causing product defects. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 It is a side plan view schematic diagram of conventional supply equipment in use.
[0013] Figure 2 It is a partial front perspective schematic diagram of the shielding device of the present invention configured in the supply equipment.
[0014] Figure 2-1 It is a partial rear perspective schematic diagram of the shielding device of the present invention configured in the supply equipment.
[0015] Figure 2-2 It is a partial enlarged side plan view of the shielding device of the present invention.
[0016] Figure 2A for Figure 2 A partial front view plan diagram of the supply equipment.
[0017] Figure 2B for Figure 2 A partial side plan view of the supply equipment.
[0018] Figure 2C for Figure 2 A partial top view schematic diagram of the supply equipment.
[0019] Figure 3A for Figure 2 A partial plan view of the internal configuration of the supply equipment.
[0020] Figure 3B for Figure 2 A partial plan view of the internal configuration of the supply equipment.
[0021] Figure 3C for Figure 2 A three-dimensional diagram omitting the side panels.
[0022] Figure 3D for Figure 3C A partial three-dimensional schematic diagram.
[0023] Figure 3E for Figure 3C A partial three-dimensional schematic diagram.
[0024] Figure 4 for Figure 2 A partially enlarged schematic diagram of the supply equipment in use.
[0025] Description of reference numerals:
[0026] 1,2: Supply equipment
[0027] 1a, 1b: Module
[0028] 1c: Side
[0029] 10: Nozzle
[0030] 2a: Shielding device
[0031] 2b: Control seat
[0032] 2c: Supply Components
[0033] 2d: Injection molding device
[0034] 20: Support structure
[0035] 21: First supply device
[0036] 21a: First spraying structure
[0037] 210: First nozzle
[0038] 22: Second supply device
[0039] 22a: Second spraying structure
[0040] 220: Second nozzle
[0041] 23: Carrier
[0042] 24a: First stopper
[0043] 24b: Second stopper
[0044] 25: Frame
[0045] 26: Track structure
[0046] 27,27':Wall Panel
[0047] 27a, 27b: Side panels
[0048] 28,28a: receiving plate
[0049] 28b: receiving groove
[0050] 280,281: pipeline
[0051] 282:Branch Pipeline
[0052] 29,29a: trough
[0053] 30,40: displacement device
[0054] 8: Target material
[0055] 9: Target
[0056] 9a: First mold
[0057] 9b: Second mold
[0058] A: Spraying surface
[0059] F: Supply Direction
[0060] F1: First supply direction
[0061] F2: Second supply direction
[0062] L1, L2: moving direction
[0063] R: Direction of rotation
[0064] S: Accommodation space
[0065] S1: First groove
[0066] S2: Second groove DETAILED DESCRIPTION
[0067] The following describes the implementation of the present invention through specific embodiments. People skilled in the art can easily understand other advantages and effects of the present invention from the contents disclosed in this specification.
[0068] It should be noted that the structures, proportions, sizes, etc. illustrated in the drawings of this specification are only used to match the contents disclosed in this specification for the understanding and reading of those familiar with this technology, and are not used to limit the conditions for the implementation of the present invention. Therefore, they have no substantial technical significance. Any modification of the structure, change in the proportion relationship, or adjustment of the size should still fall within the scope of the technical content disclosed by the present invention without affecting the efficacy and purpose of the present invention. At the same time, the terms such as "upper", "lower", "left", "right", "front", "back", "top", "bottom" and "one" quoted in this specification are only for the convenience of description and are not used to limit the scope of the implementation of the present invention. Changes or adjustments in their relative relationships should also be considered as the scope of the implementation of the present invention without substantially changing the technical content.
[0069] Figure 2 、 Figure 2-1 and Figure 2-2 Schematic diagram of a supply device 2 using a shielding device 2a of the supply device 2 of the present invention. Figure 2 、 Figure 2-1 and Figure 2-2 As shown, the supply device 2 includes a device for carrying at least one target 9 (such as Figure 2-2 ) and a supply assembly 2c corresponding to the target object 9, the supply assembly 2c includes a support structure 20 (as shown Figure 2A As shown), a first supply device 21 (as shown) provided on the support structure 20 Figure 2A As shown) and the second supply device 22 (as Figure 2A ), and the first supply direction F1 of the first supply device 21 is different from the second supply direction F2 of the second supply device 22 (as shown Figure 2A shown).
[0070] In this embodiment, the first supply direction F1 of the first supply device 21 is opposite to the second supply direction F2 of the second supply device 22 .
[0071] The supporting structure 20 can be designed with the required appearance and interior decoration according to the needs, such as layers, frames or other appropriate structures, such as Figure 2A 、 Figure 2B and Figure 2C As shown, there is no special limitation.
[0072] The first supply device 21 includes a device for supplying the target material 8 (such as Figure 4 The first spraying structure 21a (as shown) Figure 2A ), so as to spray the target material 8 onto the target object 9 toward the first supply direction F1.
[0073] In this embodiment, the first spraying structure 21a has at least one first nozzle 210 for spraying the target material 8. For example, the first spraying structure 21a has a plurality of first nozzles 210 arranged in an array, such as Figure 2B and Figure 2C shown.
[0074] Furthermore, the target object 9 of this embodiment is a mold for casting a plate (such as a floor), which has a first mold 9a and a second mold 9b opposite to each other, such as Figure 2-2 As shown, the target material 8 is a release agent, so that the cast target 9 is easy to remove from the mold. The state of the target 9 is not limited to the production of cast plates.
[0075] The second supply device 22 includes a second spraying structure 22 a for supplying the target material 8 so as to spray the target material 8 onto the target object 9 in the second supply direction F2 .
[0076] In this embodiment, the second spraying structure 22a has at least one second nozzle 220 for spraying the target material 8. For example, the second spraying structure 22a has a plurality of second nozzles 220 arranged in an array, such as Figure 2B and Figure 2C shown.
[0077] Furthermore, the first supply device 21 and the second supply device 22 are disposed on two opposite sides of the support structure 20 , such as the left and right sides.
[0078] Furthermore, the supply device 2 further includes a vertical displacement device 30 and a horizontal displacement device 40 provided on the support structure 20 to actuate the first supply device 21 and / or the second supply device 22, as shown in FIG. 3A and FIG. Figure 3B As shown, the first supply device 21 and / or the second supply device 22 are disposed below the vertical displacement device 30. For example, the vertical displacement device 30 and the horizontal displacement device 40 can be driven by a motor or hydraulic device, allowing the vertical displacement device 30 and the horizontal displacement device 40 to move on a slide rail. It should be understood that the displacement device 30 can be of various types and is not particularly limited.
[0079] In addition, the supply device 2 further includes a control base 2b for controlling the operation of the shielding device 2a, the vertical displacement device 30, the horizontal displacement device 40, the first supply device 21 and the second supply device 22, and the vertical displacement device 30, the horizontal displacement device 40, the first supply device 21 and the second supply device 22 are mounted on the control base 2b, and the lower end of the control base 2b is fixed to the preset machine base of the supply device 2.
[0080] The shielding device 2a of the present invention includes a first stopper 24a and a second stopper 24b, and the first stopper 24a and the second stopper 24b are arranged above a carrier 23. Figure 2 and Figure 2-1 shown.
[0081] In this embodiment, the first stopper 24a has a first groove S1, and the second stopper 24b has a second groove S2, and the first stopper 24a and the second stopper 24b can move linearly on a track structure 26. For example, the first stopper 24a is usually stationary, so that when the second stopper 24b is close to the first stopper 24a, the first groove S1 and the second groove S2 form an accommodating space S (such as Figure 2-2 As shown), for accommodating the vertical displacement device 30 and the horizontal displacement device 40, and can prevent the target material 8 from spreading and spraying upward, wherein, because the target material 8 is a toxic substance, it is easy to cause environmental problems.
[0082] Furthermore, the carrier 23 is provided with a frame 25 and a track structure 26 provided on the frame 25, so that the first stopper 24a and the second stopper 24b are provided on the track structure 26, so that the first stopper 24a and the second stopper 24b can move linearly relative to each other. For example, a movable side panel 27a (such as one that can be moved linearly left and right or can be lifted up, etc.) can be provided on the frame 25 below the first stopper 24a and the second stopper 24b and in front of the target object 9 to facilitate the removal of the target object 9 after the casting is completed. A fixed side panel 27b is also provided on the opposite side of the side panel 27a, and forms a semi-enclosed box with the walls of the first mold 9a and the second mold 9b to prevent the target material 8 from spreading and spraying out in all directions and flowing out from the bottom of the box. A receiving tray 28 can be provided at the bottom of the box, such as Figure 3C and Figure 3D As shown, the target material 8 flowing out from the bottom of the box is collected, and the receiving tray 28 is connected to a pipe 280, so that the receiving tray 28 is connected to a tank 29 for collecting waste liquid (such as the target material 8 flowing out from the bottom of the box) through the pipe 280.
[0083] Furthermore, the shielding device 2a further includes at least one wall panel 27, 27' mounted on the frame 25 to secure the target 9, and the wall panel 27, 27' is movable relative to the carrier 23. For example, the wall panel 27, 27' can move the first mold 9a and / or the second mold 9b closer to or further away from each other.
[0084] In addition, an injection molding device 2d is also provided on the carrier 23, which is arranged adjacent to the shielding device 2a to communicate with the target object 9 so that the injection molding device 2d can supply at least one molding material to the target object 9. For example, another rectangular receiving tray 28a can be arranged below the injection molding device 2d, such as Figure 3C and Figure 3E As shown, the waste liquid (such as lubricating oil, water, etc.) flowing out from the bottom of the injection molding device 2d is collected, and the receiving tray 28a is connected to a receiving tank 28b via a slide-shaped branch pipe 282 to divert the waste liquid to the receiving tank 28b to prevent the waste liquid from overflowing from the receiving tray 28a. Specifically, the receiving tank 28b is a rectangular ring that surrounds the injection molding device 2d and the shielding device 2a to collect the lubricating oil and condensed water flowing out from the bottom of the box. The receiving tank 28b is connected to a pipe 281, so that the receiving tank 28b is connected to a tank body 29a for collecting waste liquid through the pipe 281.
[0085] Therefore, when using the supply device 2, when the injection molding device 2d supplies the molding material to the target object 9 and the casting is completed, the first mold 9a and the second mold 9b are opened, and after the casting is taken out, the control device of the control base 2b can move the first supply device 21 and the second supply device 22 (such as Figure 3A and Figure 3B The moving direction L1, L2 shown in FIG. 1 is to the box body and is located in the middle position of the first mold 9a and the second mold 9b (as shown in FIG. Figure 4 As shown), the target material 8 is sprayed on the surface of the first mold 9a and the second mold 9b in a spraying manner in the first supply direction F1 and the second supply direction F2, so that the target material 8 (such as a release agent) is sprayed on the spraying surface A of the first mold 9a (such as Figure 4 As shown) and the spraying surface A of the second mold 9b (as shown Figure 4 A release layer is formed on the molded article to facilitate demoulding of the casting formed in the next casting.
[0086] Furthermore, excess target material 8 (such as release agent) will scatter to the receiving tray 28 at the bottom of the box, and the receiving tray 28 will guide the excess target material 8 into the tank 29 through the pipe 280 to store the excess target material 8 in the tank 29.
[0087] To sum up, the shielding device 2a of the present invention mainly forms a semi-enclosed box by the first block 24a and the second block 24b, the two side panels 27a, 27b and the wall panels 27, 27' (or the wall surfaces of the first mold 9a and the second mold 9b) to shield the outer circumference of the first mold 9a and the outer circumference of the second mold 9b. Therefore, compared with the conventional technology, the shielding device 2a of the present invention is applied to the supply equipment 2, and the target material 8 sprayed outward by the first supply device 21 and the second supply device 22 when spraying the target material 8 will not be sprayed out of the box and pollute the environment, and the waste liquid (such as the target material 8 flowing out from the bottom of the box) can be fully recovered to solve the environmental protection problem.
[0088] Furthermore, by designing the first supply direction F1 of the first supply device 21 to be different from the second supply direction F2 of the second supply device 22, the target material 8 can be sprayed on the first mold 9a and the second mold 9b at the same time, thereby greatly reducing the spraying time. Therefore, the supply equipment 2 is beneficial for reducing the time of producing the product of the target object 9, that is, reducing the time of the molding operation.
[0089] Furthermore, the design of the plurality of arrayed first nozzles 210 and second nozzles 220 facilitates uniform spraying of the target material 8 , so that the target material (release layer) can effectively separate the product made by the target object 9 .
[0090] The above description of the present invention is not intended to limit the scope of the patent rights claimed by the present invention. Any changes or modifications made by persons skilled in the art without departing from the spirit or scope of this patent shall be deemed equivalent changes or designs accomplished within the spirit of the present invention and shall be included in the claims of the present invention.
Claims
1. A shielding device for supply equipment, comprising: The carrier is used to carry a target object, which includes a first mold and a second mold; A plurality of side panels are provided on the front and rear sides of the target object on the carrier; A plurality of stoppers are disposed above the plurality of side plates and each have a groove, so that when the plurality of stoppers are pressed against each other, the grooves of the plurality of stoppers form an accommodating space; and At least one wall panel for fixing the target object; The plurality of side panels, the plurality of baffles and the wall surfaces of the first mold and the second mold form a semi-enclosed box; The carrier is provided with a supply component corresponding to the target object, and the supply component includes: Support structure; a first supply device disposed on the support structure to spray the target material onto the first mold in a first supply direction; and The second supply device is arranged on the supporting structure to spray the target material onto the second mold in a second supply direction, and the first supply direction of the first supply device is different from the second supply direction of the second supply device.
2. The shielding device according to claim 1, wherein: The carrier is provided with a frame and a track structure provided on the frame, so that the plurality of stops are provided on the track structure, and at least one of the plurality of stops is displaced by the track structure.
3. The shielding device according to claim 2, wherein: The frame is provided with the plurality of side plates at positions corresponding to the lower portion of the plurality of blocking members and at the front and rear of the target object.
4. The shielding device according to claim 1, wherein: One side panel of the box is movable to facilitate taking out the target object.
5. The shielding device according to claim 1, wherein: The wall panel drives the target object to move.
6. The shielding device according to claim 1, wherein: The supply assembly further includes an up-down displacement device and a left-right displacement device for displacing the first supply device and the second supply device.
7. The shielding device according to claim 6, wherein: The first supply device and the second supply device are arranged below the up-and-down displacement device and the left-and-right displacement device.
Citation Information
Patent Citations
Automatic coating shielding device, automatic coating system and automatic coating method
CN107297296A
Shielding device of supply equipment
CN215940361U
Supply equipment
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