Vibrating disc blanking orientation track
By designing the directional track of the vibration disk discharge, the horizontal and inverted states of the valve core are screened out by using the horizontal and inverted grooves in the screening track, the problem of incorrect state of the valve core before detection is solved and the detection efficiency is improved.
Patent Information
- Application Number
- CN202421206149.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-30
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-05-30
AI Technical Summary
During the valve core detection process, the valve core is prone to lying down or small head facing down during the transportation process, resulting in low detection efficiency. Special detection equipment is required to ensure that the valve core is in a large head facing down and upright state before detection.
A vibrating disk discharge orientation track is designed, including screen tracks and discharge tracks. The screen track is equipped with multiple horizontal troughs and inverted grooves. The horizontal and inverted valve cores are screened through the vibration feeding process to ensure that all valve cores are in a large head facing down and upright state before entering the detection equipment.
Through this design, the valve core can be effectively guaranteed to be in the correct state before detection, and the detection efficiency can be improved, and detection failure caused by incorrect valve core status can be avoided.
Smart Images

Figure CN222876899U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a vibrating plate, in particular to a directional track for blanking materials on the vibrating plate. Background Art
[0002] like Figure 1 As shown, the valve core 100 is a major accessory for medical equipment, massage chairs, and air nozzles. Due to the small size of the valve core 100, it is difficult to inspect the finished valve core 100. For this reason, the industry needs to design a special inspection equipment for inspecting the valve core to improve the production efficiency of the inspection. Since the valve core will be in different states such as lying down and with the small end facing down during the transportation process, it is necessary to ensure that all the valve cores 100 are in a state with the large end facing down and upright before entering the inspection equipment. Utility Model Content
[0003] The utility model aims to provide a vibration plate unloading directional track which can ensure that the product is in an upright state with its big end facing downward.
[0004] To achieve the above objectives, the technical solution of the present invention is:
[0005] The utility model is a vibration plate unloading directional track, comprising a screening track and a discharging track. The screening track is arranged around a silo, the inner end of the feeding end of the screening track is connected to the silo, and the discharging end of the screening track is connected to the feeding end of the discharging track.
[0006] The screening track includes an inner wall, an outer wall and a bottom plate, and the lower ends of the inner wall and the outer wall are respectively connected to the two sides of the bottom plate, so that the cross section of the screening track is U-shaped;
[0007] The middle part of the screening track is provided with a first material trough for screening out the lying material, an inverted trough for removing the inverted material, and a second material trough for screening out the lying material in sequence; the first material trough is a long strip through trough, which is opened on the bottom plate of the screening track; the inverted trough is opened on the bottom plate and the outer wall of the screening track, so that the outer wall of the screening track forms a long strip of notched groove; the second material trough is opened on the outer wall of the screening track, so that the outer wall of the screening track forms a long strip of through groove.
[0008] The discharging track is an arc-shaped tube with a rectangular channel.
[0009] After adopting the above scheme, since the screening track of the utility model is provided with a first lying material trough for screening out lying materials, an inverted trough for removing inverted materials, and a second lying material trough for screening out lying materials, the first lying material trough can screen out lying valve cores, the inverted trough can screen out valve cores with their small heads facing downwards, and the second lying material trough can screen out lying valve cores again during the vibration feeding process, so that all valve cores are in an upright state with their large heads facing downwards before entering the detection equipment, thereby ensuring the smooth progress of the detection.
[0010] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 It is an axonometric view of the valve core;
[0012] Figure 2 It is an axonometric drawing of the present utility model. DETAILED DESCRIPTION
[0013] like Figure 2 As shown, the utility model is a vibration plate unloading directional track, including a screening track 1 and a discharge track 2. The screening track 1 is arranged around the silo 10, the inner end of the feed end of the screening track 1 is connected to the silo 10, and the discharge end of the screening track 1 is connected to the feed end of the discharge track 2.
[0014] The screening track 1 includes an inner wall 11, an outer wall 12 and a bottom plate 13. The lower ends of the inner wall 11 and the outer wall 12 are respectively connected to two sides of the bottom plate 13, so that the cross section of the screening track 1 is U-shaped.
[0015] The middle part of the screening track 1 is provided with a first material trough 14 for screening out the lying material, an inverted trough 15 for removing the inverted material, and a second material trough 16 for screening out the lying material in sequence; the first material trough 14 is a long strip through trough, which is opened on the bottom plate 13 of the screening track 1; the inverted trough 15 is opened on the bottom plate 13 and the outer wall 12 of the screening track 1, so that the outer wall 12 of the screening track 1 forms a long strip of notch; the second material trough 16 is opened on the outer wall 12 of the screening track 1, so that the outer wall 12 of the screening track 1 forms a long strip of through trough.
[0016] The discharge track 2 is an arc-shaped tube with a rectangular channel.
[0017] The working principle of this utility model:
[0018] Combine Figure 1 As shown, since the screening track 1 of the utility model is provided with a first material trough 14 for screening out the lying material, an inverted trough 15 for removing the inverted material, and a second material trough 16 for screening out the lying material, the first material trough 14 can screen out the lying valve core 100, the inverted trough 15 can screen out the valve core 100 with the small end facing downward, and the second material trough 16 can screen out the lying valve core 100 again during the vibration feeding process, so that all the valve cores 100 are in an upright state with the large end facing downward before entering the detection equipment.
[0019] The above description is merely a preferred embodiment of the present invention and therefore cannot be used to limit the scope of implementation of the present invention. In other words, equivalent changes and modifications made according to the scope of the patent application and the contents of the specification of the present invention should still fall within the scope of the present patent.
Claims
1. A vibrating plate unloading directional track, characterized in that: It includes a screening track and a discharging track, wherein the screening track is arranged around the silo, the inner end of the feeding end of the screening track is connected to the silo, and the discharging end of the screening track is connected to the feeding end of the discharging track; The screening track comprises an inner wall, an outer wall and a bottom plate, the lower ends of the inner wall and the outer wall are respectively connected to the two sides of the bottom plate, so that the cross section of the screening track is U-shaped; The middle part of the screening track is provided with a first material trough for screening out the lying material, an inverted trough for removing the inverted material, and a second material trough for screening out the lying material in sequence; the first material trough is a long strip through groove, which is arranged on the bottom plate of the screening track; the inverted trough is arranged on the bottom plate and the outer wall of the screening track, so that the outer wall of the screening track forms a long strip of missing groove; the second material trough is arranged on the outer wall of the screening track, so that the outer wall of the screening track forms a long strip of through groove.
2. The vibration plate unloading directional track according to claim 1, characterized in that: The discharging track is an arc-shaped tube with a rectangular channel.