Solid waste cleaning device for wax mold casting cutting
By designing a solid waste cleaning device for wax mold casting and cutting with a rotating dust suction component and a barrier mesh structure, the problem of low efficiency in cleaning dead corners and blind spots of wax mold casting and cutting devices has been solved, achieving a highly efficient and flexible cleaning effect and preventing the spread of wax chips and dust.
Patent Information
- Application Number
- CN202520185637.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-06
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2035-02-06
AI Technical Summary
Existing wax mold casting cutting equipment is inefficient in cleaning dead corners and blind spots, resulting in insufficient cleaning and affecting the working environment and production efficiency.
A solid waste cleaning device for wax casting and cutting was designed. It adopts a rotating dust suction component and a barrier net structure. The device collects wax shavings and dust into a collection box by negative pressure suction. The rotating dust suction component bypasses obstacles, and the device combines a pusher and a cover plate structure to squeeze out the wax shavings and dust.
It improves the flexibility and efficiency of cleaning dead corners and blind spots, ensures cleaning quality, and prevents wax debris and dust from escaping during the extraction process.
Smart Images

Figure CN223587912U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to wax mould casting technical field especially relates to a kind of solid waste cleaning device for wax mould casting cutting. BACKGROUND
[0002] In industrial casting, especially wax mould casting, cutting machine is often used to precisely machine workpiece, and a lot of waste chips, such as wax chips and dust, are generated during the machining process. If not cleaned in time, they will accumulate on the workbench and the outer surface of the machine, which will have a negative impact on the working environment and production efficiency.
[0003] The existing solid waste cleaning device for wax mould casting cutting usually uses a dust collection device to suck and collect the wax chips and dust accumulated on the workbench and the outer surface of the machine by negative pressure. However, the equipment and tools on the workbench are arranged densely, leaving many dead angles and blind areas. The existing device is not convenient for cleaning the dead angles and blind areas, which may lead to insufficient cleaning.
[0004] Therefore, in view of the above problems, a solid waste cleaning device for wax mould casting cutting is developed, which can improve flexibility, facilitate cleaning of dead angles and blind areas, and improve cleaning quality and efficiency. SUMMARY
[0005] To overcome the shortcomings of the existing device that is not convenient for cleaning dead angles and blind areas and may lead to insufficient cleaning, the utility model provides a solid waste cleaning device for wax mould casting cutting, which can improve flexibility, facilitate cleaning of dead angles and blind areas, and improve cleaning quality and efficiency.
[0006] The technical scheme of the utility model is as follows: a solid waste cleaning device for wax mould casting cutting includes a handle, a conductor, a dust collection fan, a dust collection pipeline, a shunt box, a dust collection nozzle, a first barrier net, a rotating dust collection component, a first torsional spring, a second barrier net and a storage box. The left part of the handle is connected with the conductor. The conductor is connected with the dust collection fan. The dust collection fan is connected with the dust collection pipeline. The end of the dust collection pipeline is connected with the shunt box. The lower side of the middle part of the shunt box is connected with the dust collection nozzle. The bottom of the dust collection nozzle is connected with the first barrier net. Both ends of the shunt box are rotatably connected with the rotating dust collection component. The rotating dust collection component is connected with the shunt box through the first torsional spring. The bottom of the rotating dust collection component is connected with the second barrier net. The bottom of the handle is connected with the storage box. The storage box is communicated with the conductor. Under the negative pressure suction of the dust collection fan, the wax chips and dust are sucked into the shunt box through the dust collection nozzle and the rotating dust collection component, and then are collected in the storage box through the dust collection pipeline, the dust collection fan and the conductor in sequence. During the cleaning process, the first barrier net and the second barrier net intercept larger foreign matters. The rotating dust collection component rotates on the shunt box to bypass the obstacles on the workbench.
[0007] In a preferred embodiment of the utility model, the upper part of the handle is connected with the antiskid soft pad.
[0008] In a preferred embodiment of the utility model, reinforcing ribs are arranged between the conducting member and the handle.
[0009] In a preferred embodiment of the utility model, the rotating cover plate, the second torsional spring and the limiting member are further arranged, the rotating cover plate is rotatably connected to the storage box, the second torsional spring is connected between the rotating cover plate and the storage box, and the limiting member is connected to the storage box.
[0010] In a preferred embodiment of the utility model, the limiting member is of an elastic structure.
[0011] In a preferred embodiment of the utility model, the pushing member and the spring are further arranged, the pushing member is slidably connected to the storage box, the spring is connected between the pushing member and the storage box, the pushing member is pressed to move in the storage box after cleaning, the spring is compressed under force, the wax chips and dust in the storage box are extruded by the pushing member, the rotating cover plate is rotated and opened after the force applied to the pushing member overcomes the force of the limiting member and the second torsional spring, and thus the wax chips and dust extruded into blocks in the storage box can be pushed out.
[0012] Compared with the prior art, the utility model has the following advantages: 1. The rotating dust collecting member is rotated when contacting the obstacle on the workbench, the rotating dust collecting member is reset under the action of the first torsional spring after moving away from the obstacle, the obstacle on the workbench is bypassed, the flexibility is improved, the dead angle and blind area can be conveniently cleaned, and the cleaning quality and efficiency are improved.
[0013] 2. The wax chips and dust in the storage box are extruded by pressing the pushing member, the rotating cover plate is opened after the force applied to the pushing member overcomes the force of the limiting member and the second torsional spring, and the wax chips and dust extruded into blocks in the storage box are pushed out, and the effect that the wax chips and dust are prevented from escaping during the guiding process is achieved. DRAWINGS
[0014] Figure 1 It is a schematic view of the three-dimensional structure of the utility model.
[0015] Figure 2 It is a schematic view of the structure of the utility model.
[0016] Figure 3 It is an enlarged schematic view of the structure at A of the utility model.
[0017] Figure 4Part of the three-dimensional structure of the utility model.
[0018] Figure 5 Part of the three-dimensional structure of the utility model.
[0019] Figure 6 Part of the three-dimensional structure of the utility model.
[0020] The marks of each component in the drawing are as follows: 1, handle, 2, non-slip soft pad, 3, conducting piece, 4, dust suction fan, 5, dust suction pipeline, 6, shunt box, 7, dust suction nozzle, 71, first barrier net, 8, rotating dust suction piece, 9, first torsional spring, 10, second barrier net, 11, storage box, 12, rotating cover plate, 121, second torsional spring, 13, limiting piece, 14, pushing piece, 15, spring. DETAILED DESCRIPTION
[0021] Although the utility model can be described in relation to a particular application or industry, those skilled in the art will recognize a broader applicability of the utility model. Those of ordinary skill in the art will recognize that terms such as: above, below, upward, downward, etc. are used to describe the drawings and are not meant to limit the scope of the utility model as defined by the appended claims. Any numerical designations such as: first or second are merely illustrative and are not intended to limit the scope of the utility model in any way.
[0022] A kind of solid waste cleaning device for wax mold casting cutting, as shown in Figures 1-6 Fig. 1 shows the utility model, including handle 1, conducting piece 3, dust suction fan 4, dust suction pipeline 5, shunt box 6, dust suction nozzle 7, first barrier net 71, rotating dust suction piece 8, first torsional spring 9, second barrier net 10 and storage box 11, handle 1 left part is connected with conducting piece 3, conducting piece 3 is connected with dust suction fan 4, dust suction fan 4 is connected with dust suction pipeline 5, dust suction pipeline 5 terminal end is connected with shunt box 6, shunt box 6 middle part lower side is connected with dust suction nozzle 7, dust suction nozzle 7 bottom is connected with first barrier net 71, shunt box 6 both ends are rotatably connected with rotating dust suction piece 8, rotating dust suction piece 8 are connected with first torsional spring 9 between shunt box 6, rotating dust suction piece 8 bottom is connected with second barrier net 10, handle 1 bottom is connected with storage box 11, storage box 11 is communicated with conducting piece 3, under the negative pressure suction of dust suction fan 4, wax chips and dust are attracted to shunt box 6 by dust suction nozzle 7 and rotating dust suction piece 8, then sequentially enter storage box 11 by dust suction pipeline 5, dust suction fan 4 and conducting piece 3 and are collected, larger foreign matters are intercepted by first barrier net 71 and second barrier net 10 in the cleaning process, rotating dust suction piece 8 rotates on shunt box 6 to facilitate bypassing the obstacles on the workbench;
[0023] Also include non-slip soft pad 2, handle 1 upper part is connected with non-slip soft pad 2.
[0024] Further comprising a rotating cover plate 12, a second torsion spring 121 and a limiting piece 13, the storage box 11 is rotatably connected with the rotating cover plate 12, two second torsion springs 121 are connected between the rotating cover plate 12 and the storage box 11, and two limiting pieces 13 are connected on the storage box 11, so that the rotating cover plate 12 is closed under the action of the second torsion spring 121, a sealed space is formed between the rotating cover plate 12 and the storage box 11, and the rotating cover plate 12 is clamped and limited under the action of the limiting piece 13;
[0025] Further comprising a pushing piece 14 and a spring 15, the storage box 11 is slidably connected with the pushing piece 14, and the spring 15 is connected between the pushing piece 14 and the storage box 11, so that the pushing piece 14 moves in the storage box 11 after cleaning, the spring 15 is compressed under force, the wax chips and dust in the storage box 11 are extruded by the pushing piece 14, and the rotating cover plate 12 is rotated and opened after the force applied to the pushing piece 14 overcomes the force of the limiting piece 13 and the second torsion spring 121, so that the wax chips and dust extruded into blocks in the storage box 11 can be pushed out.
[0026] The utility model discloses a first need operating personnel to hold the handle 1 makes the utility model to be located in the cleaning area, after the negative pressure suction of dust -collection fan 4, through dust -collection nozzle 7 and rotating dust -collection spare 8 attract the wax scrap and dust to the shunt box 6, again through dust -collection pipeline 5, dust -collection fan 4 and lead through spare 3 into the storage box 11 in the collection, the larger foreign matter is intercepted through first barrier net 71 and second barrier net 10 in the cleaning process, and operating personnel drive dust -collection nozzle 7 and rotating dust -collection spare 8 and move cleaning, and rotating dust -collection spare 8 contacts the obstacle on the workbench, and rotates on the shunt box 6, and first torsional spring 9 is stressed and changes shape, and after rotating dust -collection spare 8 is away from the obstacle, rotating dust -collection spare 8 is driven and rotates reset under the action of first torsional spring 9, thereby in the mobile cleaning process, it is convenient to bypass the obstacle on the workbench, and the flexibility is higher, and after cleaning, press pusher 14 moves in storage box 11, and spring 15 is stressed and compressed, and the wax scrap and dust in storage box 11 are extruded through pusher 14, at this moment, rotating cover plate 12 is closed under the action of second torsional spring 121, and the sealed space is formed between storage box 11, and rotating cover plate 12 is clamped and is positioned under the action of limiting piece 13, and after the force applied to pusher 14 overcomes the force of limiting piece 13 and second torsional spring 121, rotating cover plate 12 can be rotated and opened, and second torsional spring 121 is stressed and changes shape, thereby can push out the wax scrap and dust extruded into pieces in storage box 11, avoid the wax scrap and dust to escape in the lead-out process, after the wax scrap and dust are pushed out, spring 15 rebounds and drives pusher 14 to slide reset, and second torsional spring 121 rebounds and drives rotating cover plate 12 to rotate, and then push rotating cover plate 12 to make it be clamped with limiting piece 13, and form the sealed space with storage box 11, and again limiting piece 13 is positioned to rotating cover plate 12.
[0027] While the utility model has been described with reference to the example embodiments, it is to be understood that the utility model is not limited to the disclosed example embodiments. The scope of the following claims is to be accorded the broadest interpretation so as to encompass all variations and equivalents.
Claims
1. A wax pattern casting cutting solid waste cleaning device, characterized in that: The utility model provides a dust collection device, including handle (1), lead through (3), dust collection fan (4), dust collection pipeline (5), shunt box (6), dust collection nozzle (7), first barrier net (71), rotary dust collection part (8), first torsional spring (9), second barrier net (10) and storage box (11), handle (1) left part is connected with lead through (3), and lead through (3) is connected with dust collection fan (4) on, and dust collection fan (4) is connected with dust collection pipeline (5) on, and dust collection pipeline (5) end is connected with shunt box (6), and shunt box (6) middle part downside is connected with dust collection nozzle (7), and dust collection nozzle (7) bottom is connected with first barrier net (71), and shunt box (6) both ends are rotatablely connected with rotary dust collection part (8), and rotary dust collection part (8) are connected with first torsional spring (9) between shunt box (6), and rotary dust collection part (8) bottom is connected with second barrier net (10) all, and handle (1) bottom is connected with storage box (11), and storage box (11) with lead through (3) intercommunication.
2. A wax pattern casting solid waste cleaning device for cutting according to claim 1, characterized in that: Still include antiskid soft pad (2), handle (1) upper part is connected with antiskid soft pad (2).
3. A wax pattern casting solid waste cleaning device for cutting according to claim 1, characterized in that: Be equipped with reinforcing rib between lead through (3) and handle (1).
4. A wax pattern casting solid waste cleaning device for cutting according to claim 3, characterized in that: Still include rotary cover plate (12), second torsional spring (121) and stop piece (13), storage box (11) is rotatablely connected with rotary cover plate (12) on, and rotary cover plate (12) with storage box (11) between be connected with a plurality of second torsional spring (121), and storage box (11) is connected with a plurality of stop piece (13) on.
5. A wax pattern casting solid waste cleaning device for cutting according to claim 4, characterized in that: Stop piece (13) all are elastic structure.
6. A wax pattern casting solid waste cleaning device for cutting according to claim 5, characterized in that: Still include pusher (14) and spring (15), storage box (11) is slidably connected with pusher (14) on, and pusher (14) with storage box (11) between be connected with spring (15).