A processing device for processing a vacuum cleaner housing
By combining material guiding, pressing, and transmission devices, and using a servo motor to drive the transmission crankshaft and synchronous pulley, the vacuum cleaner housing is automatically processed. This solves the problem of low efficiency in integrated feeding and pressing in existing technologies, improves processing efficiency and stability, and reduces costs.
Patent Information
- Application Number
- CN202411874415.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2044-12-19
AI Technical Summary
The vacuum cleaner shell processing equipment in the prior art is not convenient for integrated loading and pressing operations, resulting in reduced processing efficiency and speed.
The system employs a combination of a material guiding device, a pressing device, a transmission device, and a shaping device. A servo motor drives the transmission crankshaft and synchronous pulley to achieve automated material guiding, pressing, and shaping of the vacuum cleaner housing. The vacuum cleaner housing pressing mold and punching mold are used for cyclic up-and-down displacement and power transmission to achieve precise workpiece loading and stable processing.
This improved the efficiency and stability of vacuum cleaner housing processing, reduced processing costs, and achieved efficient integrated processing of vacuum cleaner housings.
Smart Images

Figure CN119427770B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of dust collector shell processing equipment, in particular to a dust collector shell processing treatment device. BACKGROUND
[0002] The dust collector is a kind of household appliance, mainly used for cleaning dust and sundries on the surface of ground, carpet, furniture, wall, etc., which generates suction through motor, and dust and sundries are sucked into a dust collecting container, so as to achieve the purpose of cleaning. When the dust collector is processed, the dust collector shell is the most common accessory. When the dust collector shell is processed, the pressing and shaping is the most common processing step, which can effectively improve the efficiency of dust collector shell processing.
[0003] For example, the publication number is CN208864197U, which discloses a pressing device for dust collector brush shell, the shell includes upper shell and lower shell, and disc-shaped brush is fixed on the lower shell, the pressing device is used for pressing the upper shell and the lower shell, the pressing device includes device frame, positioning mechanism arranged at the lower part of the device frame, pressing mechanism for pressing the upper shell and the lower shell in the up-down direction, control system for controlling the working of the pressing mechanism, the pressing mechanism includes pressing plate arranged on the device frame and sliding in the up-down direction, driving device for providing power for the up-down movement of the pressing plate, the driving device is signal connected with the control system, the control system includes control knob, through the automatic design structure, the installation work of the upper shell and the lower shell is facilitated, the manual pressing in the prior art is facilitated, and the whole pressing work is facilitated. After placing the upper shell and the lower shell, press the control knob, and the pressing device can automatically perform the pressing work.
[0004] Although the above-mentioned device can press and shape the dust collector shell, it is not convenient for the dust collector shell to be integrated with feeding and pressing operation, thereby reducing the efficiency and speed of the device for processing the dust collector shell. Therefore, a dust collector shell processing treatment device is needed to solve the problems in the above-mentioned background. SUMMARY
[0005] The present application aims to provide a dust collector shell processing treatment device to solve the problems in the above-mentioned background.
[0006] To achieve the above-mentioned purpose, the present application provides the following technical scheme: a dust collector shell processing treatment device, including a material guiding device for guiding and supporting, a workpiece discharging bin is arranged at the upper end face of the material guiding device near the middle part, and a driven gear is arranged at the side end face of the material guiding device near the rear end,
[0007] A pressing device, wherein the pressing device is fixedly arranged on the upper end surface of the material guiding device near the rear portion, a reduction motor is arranged on the side end surface of the pressing device near the front portion, and a servo motor is arranged on the lower end surface of the reduction motor;
[0008] A transmission device is fixedly arranged at the rear part of the side end surface of the material guiding device, and the transmission device is meshed and connected with the pressing device through a first synchronous belt, and the side of the transmission device is meshed and connected with the driven gear.
[0009] Preferably, the material guiding device includes a supporting guide seat, and conveying guide rollers are rotatably connected at both ends of the inner end surface of the supporting guide seat, and the two groups of conveying guide rollers are meshed and connected through a conveyor belt, and limiting slots are equidistantly provided on the inner end surface of the conveyor belt, and the inner end surface of the conveyor belt is fixedly connected to a pressing mold at equal distances through the limiting slots, and a positioning seat is symmetrically provided on the side end surface of the pressing mold.
[0010] Preferably, the transmission device includes a supporting base, a driving gear is rotatably engaged on one side of the inner end surface of the supporting base, and a sheave housing is fixedly provided at the center of the upper end surface of the driving gear, four groups of lever guide grooves are equidistantly provided on the inner end surface of the sheave housing, and a limited rotation groove is provided between two adjacent groups of the lever guide grooves, a notched disc is rotatably engaged on the other side of the inner end surface of the supporting base, and a guide lever is fixedly provided at the center of the upper end surface of the notched disc, and a first synchronous pulley is fixedly provided on the upper end surface of the guide lever.
[0011] Preferably, the pressing device includes two groups of guide clamps for limiting, and the top of the inner end surfaces of the two groups of guide clamps are rotatably clamped with two groups of transmission crankshafts, and two groups of second synchronous pulleys are fixedly provided on the inner end surfaces of the two groups of transmission crankshafts, and the two groups of second synchronous pulleys located on the same side are meshed and connected through the second synchronous belt, and a third synchronous pulley is provided at the end of the side end surface of the transmission crankshaft located at the front, and the inner end surface of the guide clamp is symmetrically provided with a fixed guide groove near the bottom, and the inner end surface of the guide clamp is slidably clamped with a shaping device through the fixed guide groove, and the transmission crankshaft is rotatably clamped with the shaping device through the transmission guide plate.
[0012] Preferably, the shaping device includes a fixed base for support, the upper end surface of the fixed base is provided with two groups of limit rotating seats for limiting, a vacuum cleaner shell pressing mold is provided on one side of the lower end surface of the fixed base, and a vacuum cleaner shell punching die is provided on the other side of the lower end surface of the fixed base.
[0013] Preferably, the lower end surface of the press mold is connected with the upper end surface of the workpiece blanking bin and the conveying belt, and the press mold is fixedly connected to the inner end surface of the conveying belt through the alignment clamping base, which can effectively improve the stability of the subsequent press mold limiting in the conveying belt, and further improve the efficiency of subsequent processing and shaping.
[0014] Preferably, the notch disc is rotatably connected with the groove wheel housing through the limiting rotation groove, and the notch disc drives the intermittent rotation connection of the groove wheel housing through the guide lever and the lever guide groove, the driving gear is engaged with the driven gear, the guide lever can drive the groove wheel housing to turn over by 90 degrees through the lever guide groove, and the notch disc can lock and limit the subsequent groove wheel housing after turning over through the limiting rotation groove, thereby improving the stability of subsequent shaping.
[0015] Preferably, the first synchronous pulley is engaged with the third synchronous pulley through the first synchronous belt, and the fixed base is slidably connected to the inner end surface of the guide clamping plate through the fixed guide groove, which can provide a sufficient guide basis for the fixed base, thereby improving the stability of the shaping device in the guide clamping plate.
[0016] Preferably, the dust collector shell die and the dust collector shell press mold are slidably connected with the press mold, and the dust collector shell die and the dust collector shell press mold are opposite to the press mold, the dust collector shell press mold can press the workpiece in the press mold, and the dust collector shell die can perform secondary pressing and punching on the pressed workpiece, thereby effectively improving the stability of the workpiece punching and shaping.
[0017] Compared with the prior art, the present application has the following advantages:
[0018] 1. When shaping the dust collector workpiece, the servo motor can drive the dust collector shell press mold and the dust collector shell die to perform cyclic up-down displacement on the upper part of the press mold through the two groups of transmission crankshafts and transmission guide plates, and the transmission crankshafts can provide intermittent power for the material guiding device through the first synchronous belt, the driven gear and the transmission device, so that the material guiding device can accurately guide the workpiece in the press mold to the bottom of the machining station, thereby improving the efficiency of the equipment in processing the dust collector shell workpiece.
[0019] 2. The application can drive the transmission guide plate and the third synchronous pulley to rotate by the transmission crank synchronous belt, the transmission guide plate can drive the plastic device to move up and down circularly, and the third synchronous pulley can provide power for the material guiding device through the first synchronous belt and the transmission device, so as to improve the power utilization efficiency and reduce the processing cost. BRIEF DESCRIPTION OF DRAWINGS
[0020] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings needed for the embodiments will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0021] Figure 1 is a split view of the main body of the present application;
[0022] Figure 2 is a structural schematic view of the main body of the present application;
[0023] Figure 3 is a split view of the material guiding device of the present application;
[0024] Figure 4 is a structural schematic view of the material guiding device of the present application;
[0025] Figure 5 is a structural schematic view of the transmission device of the present application;
[0026] Figure 6 is a side view of the transmission device of the present application;
[0027] Figure 7 is a structural schematic view of the pressing device of the present application;
[0028] Figure 8 is a side view of the pressing device of the present application;
[0029] Figure 9 is a structural schematic view of the plastic device of the present application.
[0030] In the figure: 1 - workpiece blanking bin, 2 - material guiding device, 3 - first synchronous belt, 4 - driven gear, 5 - transmission device, 6 - pressing device, 7 - speed reducer motor, 8 - servo motor, 21 - alignment clamping seat, 22 - pressing die, 23 - conveying belt, 24 - limit clamping groove, 25 - support guide base, 26 - conveying guide roller, 51 - limit rotating groove, 52 - groove wheel housing, 53 - first synchronous pulley, 54 - guide shifting lever, 55 - gap disc, 56 - support base, 57 - shifting lever guide groove, 58 - driving gear, 61 - second synchronous pulley, 62 - second synchronous belt, 63 - guide clamping plate, 64 - transmission crankshaft, 65 - transmission guide plate, 66 - shaping device, 67 - third synchronous pulley, 68 - fixed guide groove, 661 - limit rotating seat, 662 - fixed base, 663 - dust collector shell die, 664 - dust collector shell pressing die. DETAILED DESCRIPTION
[0031] In order to make the person skilled in the art better understand the scheme of the present application, the technical scheme in the embodiments of the present application will be described clearly and completely below in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by the person skilled in the art without creative labor should belong to the protection scope of the present application.
[0032] It should be noted that the terms "first", "second" and the like in the specification and claims of the present application and the above-described drawings are used to distinguish similar objects, and do not necessarily indicate a specific order or a chronological sequence. It should be understood that the data thus used can be interchanged under appropriate circumstances, so that the embodiments of the present application described herein can be implemented. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion, for example, a process, method, system, product or device including a series of steps or units does not necessarily limit to those steps or units clearly listed, but can include other steps or units not clearly listed or inherent to these processes, methods, products or devices.
[0033] The present application will be further described below in combination with the drawings.
[0034] Embodiment 1
[0035] Please refer to Figures 1-9 An embodiment provided by the present application: a processing device for dust collector shell processing, comprising a material guiding and supporting device 2, a workpiece blanking bin 1 is arranged at the upper end face of the material guiding device 2 near the middle part, and a driven gear 4 is arranged at the side end face of the material guiding device 2 near the rear end,
[0036] The pressing device 6 is fixedly arranged at the upper end face of the material guiding device 2 near the rear part, a reduction motor 7 is arranged at the side end face of the pressing device 6 near the front part, and a servo motor 8 is arranged at the lower end face of the reduction motor 7.
[0037] The transmission device 5 is fixedly arranged at the side end face of the material guiding device 2 near the rear part, and is meshingly connected with the pressing device 6 through the first synchronous belt 3, and the side part of the transmission device 5 is meshingly connected with the driven gear 4.
[0038] The material guiding device 2 comprises a supporting guide base 25, and conveying guide rollers 26 are rotatably clamped at the inner end faces of the supporting guide base 25 at both ends, and the two groups of conveying guide rollers 26 are meshingly connected through a conveying belt 23, limit clamping grooves 24 are equidistantly arranged at the inner end face of the conveying belt 23, and pressing dies 22 are equidistantly fixedly clamped at the inner end face of the conveying belt 23 through the limit clamping grooves 24, and alignment clamping seats 21 are symmetrically arranged at the side end faces of the pressing dies 22.
[0039] The transmission device 5 comprises a supporting base 56, a driving gear 58 is rotatably clamped at one side of the inner end face of the supporting base 56, a groove wheel shell 52 is fixedly arranged at the center of the upper end face of the driving gear 58, four groups of lever guide grooves 57 are equidistantly arranged at the inner end face of the groove wheel shell 52, limit rotating grooves 51 are arranged between any two adjacent groups of lever guide grooves 57, a notched disc 55 is rotatably clamped at the other side of the inner end face of the supporting base 56, a guide lever 54 is fixedly arranged at the center of the upper end face of the notched disc 55, and a first synchronous pulley 53 is fixedly arranged at the upper end face of the guide lever 54.
[0040] The pressing device 6 comprises two groups of guide clamping plates 63 for limiting, two groups of transmission crankshafts 64 are rotatably clamped at the inner end face top of the two groups of guide clamping plates 63, two groups of second synchronous pulleys 61 are fixedly arranged at the inner end face of the two groups of transmission crankshafts 64, the two groups of second synchronous pulleys 61 on the same side are meshingly connected through a second synchronous belt 62, a third synchronous pulley 67 is arranged at the side end face end of the transmission crankshaft 64 at the front part, fixed guide grooves 68 are symmetrically arranged at the inner end face near the bottom of the guide clamping plate 63, a shaping device 66 is slidably clamped at the inner end face of the guide clamping plate 63 through the fixed guide grooves 68, and the transmission crankshaft 64 is rotatably clamped with the shaping device 66 through a transmission guide plate 65.
[0041] The shaping device 66 comprises a fixed base 662 for supporting, two groups of limit rotating seats 661 for limiting are arranged at the upper end face of the fixed base 662, a dust collector shell pressing die 664 is arranged at one side of the lower end face of the fixed base 662, and a dust collector shell punching die 663 is arranged at the other side of the lower end face of the fixed base 662.
[0042] The lower end surface of the compression mold 22 is connected with the upper end surface of the workpiece blanking bin 1 and the conveying belt 23, the compression mold 22 is fixed and clamped to the inner end surface of the conveying belt 23 through the positioning clamp holder 21, which can effectively improve the stability of the subsequent compression mold 22 limiting in the conveying belt 23, and then improve the efficiency of subsequent processing and shaping.
[0043] The notch disc 55 is rotationally clamped with the slot wheel housing 52 through the limiting rotation slot 51, and the notch disc 55 is adapted with the lever guide slot 57 through the guide lever 54 to drive the intermittent rotation connection of the slot wheel housing 52, the driving gear 58 is meshed and connected with the driven gear 4, the guide lever 54 can drive the slot wheel housing 52 to turn over by 90 degrees through the lever guide slot 57, and the notch disc 55 can lock and limit the subsequent slot wheel housing 52 after turning over through the limiting rotation slot 51, thereby improving the stability of subsequent shaping.
[0044] The first synchronous pulley 53 is meshed and connected with the third synchronous pulley 67 through the first synchronous belt 3, the fixed base 662 is slidingly clamped to the inner end surface of the guide clamping plate 63 through the fixed guide slot 68, the fixed guide slot 68 can provide sufficient guide basis for the fixed base 662, thereby improving the stability of the shaping device 66 in the guide clamping plate 63.
[0045] The dust collector shell punch 663 and the dust collector shell compression mold 664 are slidingly clamped with the compression mold 22, and the dust collector shell punch 663 and the dust collector shell compression mold 664 are opposite to the compression mold 22, the dust collector shell compression mold 664 can compress the workpiece in the compression mold 22, and the dust collector shell punch 663 can perform secondary compression and punching on the compressed workpiece, thereby effectively improving the stability of the workpiece punching and shaping.
[0046] Working principle: before using, workers can guide the dust collector shell workpiece to be pressed into the inside of workpiece blanking bin 1, then can start servo motor 8 through external control device, at this moment, servo motor 8 can drive reduction motor 7 to rotate, reduction motor 7 can drive the inside transmission crankshaft 64 to rotate when rotating, the transmission crankshaft 64 in front can drive the transmission crankshaft 64 in back through second synchronous pulley 61 and second synchronous belt 62, two groups of transmission crankshafts 64 can drive transmission guide plate 65 and shaping device 66 to cyclically displace up and down when rotating, the transmission crankshaft 64 in front can drive first synchronous pulley 53 to meshing rotation through third synchronous pulley 67 and first synchronous belt 3, so that first synchronous pulley 53 can drive notch disc 55 and guide lever 54 to intermittently drive groove wheel shell 52 to rotate, when groove wheel shell 52 rotates, groove wheel shell 52 can drive driven gear 4 to rotate through driving gear 58, driven gear 4 can drive pressing die 22 to cyclically displace to dust collector shell pressing die 664 and dust collector shell punch die 663 bottom through conveying guide roller 26 and conveying belt 23, at this moment, the above transmission crankshaft 64 can drive dust collector shell pressing die 664 and dust collector shell punch die 663 to synchronously press and shape and punch the workpiece in pressing die 22 through transmission guide plate 65 and limiting rotation seat 661, thereby completing the processing operation of dust collector workpiece.
[0047] Although embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, replacements and variations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of the present application being defined by the appended claims and their equivalents.
Claims
1. A processing device for processing a vacuum cleaner housing, comprising a material guide device (2) for guiding and supporting materials, a workpiece unloading bin (1) being provided near the middle of the upper end surface of the material guide device (2), and a driven gear (4) being provided near the rear end of the side end surface of the material guide device (2), characterized in that: A pressing device (6), the pressing device (6) is fixedly arranged on the upper end surface of the material guiding device (2) near the rear, a reduction motor (7) is arranged on the side end surface of the pressing device (6) near the front, and a servo motor (8) is arranged on the lower end surface of the reduction motor (7); A transmission device (5), the transmission device (5) is fixedly arranged at the rear portion of the side end surface of the material guiding device (2), and the transmission device (5) is meshedly connected with the pressing device (6) via a first synchronous belt (3), and the side portion of the transmission device (5) is meshedly connected with the driven gear (4); The pressing device (6) includes two groups of guide clamps (63) for limiting, the top of the inner end surfaces of the two groups of guide clamps (63) are rotatably clamped with two groups of transmission crankshafts (64), and two groups of second synchronous pulleys (61) are fixedly provided on the inner end surfaces of the two groups of transmission crankshafts (64), the two groups of second synchronous pulleys (61) located on the same side are meshed and connected through the second synchronous belt (62), and a third synchronous pulley (67) is provided at the end of the side end surface of the transmission crankshaft (64) located at the front, and the inner end surface of the guide clamp (63) is symmetrically provided with a fixed guide groove (68) near the bottom, and the inner end surface of the guide clamp (63) is slidably clamped with a shaping device (66) through the fixed guide groove (68), and the transmission crankshaft (64) is rotatably clamped with the shaping device (66) through the transmission guide plate (65); The shaping device (66) comprises a fixed base (662) for support, the upper end surface of the fixed base (662) being provided with two sets of position-limiting rotating seats (661) for limiting, a vacuum cleaner housing pressing die (664) being provided on one side of the lower end surface of the fixed base (662), and a vacuum cleaner housing punching die (663) being provided on the other side of the lower end surface of the fixed base (662).
2. The processing device for processing a vacuum cleaner housing according to claim 1, characterized in that: The material guiding device (2) includes a support guide seat (25), and conveying guide rollers (26) are rotatably connected at both ends of the inner end surface of the support guide seat (25), and two groups of the conveying guide rollers (26) are meshed and connected through a conveyor belt (23). Limiting slots (24) are equidistantly provided on the inner end surface of the conveyor belt (23), and the inner end surface of the conveyor belt (23) is fixedly connected to a pressing mold (22) at an equidistant distance through the limiting slots (24), and a positioning seat (21) is symmetrically provided on the side end surface of the pressing mold (22).
3. The processing device for processing a vacuum cleaner housing according to claim 2, characterized in that: The transmission device (5) includes a support base (56), a driving gear (58) is rotatably engaged on one side of the inner end surface of the support base (56), and a sheave housing (52) is fixedly provided at the center of the upper end surface of the driving gear (58), four groups of shift rod guide grooves (57) are equidistantly provided on the inner end surface of the sheave housing (52), and a limited rotation groove (51) is provided between two adjacent groups of the shift rod guide grooves (57), a notched disc (55) is rotatably engaged on the other side of the inner end surface of the support base (56), and a guide shift rod (54) is fixedly provided at the center of the upper end surface of the notched disc (55), and a first synchronous pulley (53) is fixedly provided on the upper end surface of the guide shift rod (54).
4. The processing device for processing a vacuum cleaner housing according to claim 3, characterized in that: The lower end surface of the pressing mold (22) is fitted and connected to the workpiece unloading bin (1) and the upper end surface of the conveyor belt (23), and the pressing mold (22) is fixedly clamped to the inner end surface of the conveyor belt (23) through the alignment clamping seat (21).
5. The processing device for processing a vacuum cleaner housing according to claim 4, characterized in that: The notched disc (55) is rotatably engaged with the sheave housing (52) via the limiting rotation groove (51), and the notched disc (55) is adapted to the lever guide groove (57) via the guide lever (54) to drive the sheave housing (52) to be intermittently rotatably connected, and the driving gear (58) is meshedly connected with the driven gear (4).
6. The processing device for processing a vacuum cleaner housing according to claim 5, characterized in that: The first synchronous pulley (53) is meshedly connected with the third synchronous pulley (67) via the first synchronous belt (3), and the fixed base (662) is slidably engaged with the inner end surface of the guide clamping plate (63) via the fixed guide groove (68).
7. The processing device for processing a vacuum cleaner housing according to claim 6, characterized in that: The vacuum cleaner housing punch die (663) and the vacuum cleaner housing press die (664) are slidably engaged with the pressing die (22), and both the vacuum cleaner housing punch die (663) and the vacuum cleaner housing press die (664) are directly opposite to the pressing die (22).
Citation Information
Patent Citations
Pressing device of dust collector floor brush shell
CN208864197U
Die machining stamping equipment with automatic positioning and guiding functions
CN117960873A
High-efficiency metal pipe indenting and punching device
CN213530412U