Ceramic ball counting device

By designing an automated ceramic ball counting device, which utilizes a motor-driven mechanism and photoelectric sensors to achieve automatic feeding and counting, the problem of labor-intensive manual counting is solved, and the counting efficiency and applicability are improved.

CN223808754UActive Publication Date: 2026-01-16SHANGHAI FANLIAN TECH CO LTD
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
CN202520368714.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-05
Publication Date
2026-01-16
Estimated Expiration
2035-03-05

AI Technical Summary

Technical Problem

Existing ceramic ball counting devices require manual operation, which is labor-intensive and unsuitable for counting large numbers of balls over long periods of time, resulting in high labor consumption and low counting efficiency.

Method used

A ceramic ball counting device was designed, comprising a raw material box, a motor, a pushing mechanism, a guide tube, and a through-beam photoelectric sensor. This device enables automated feeding and counting, adapts to balls of different diameters by adjusting the components, automatically collects the balls using a collection component, and counts them using the photoelectric sensor.

Benefits of technology

It enables automated counting and collection of ceramic beads, reduces labor costs, improves counting efficiency and applicability, and is suitable for ceramic beads of different sizes.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223808754U_ABST
    Figure CN223808754U_ABST
Patent Text Reader

Abstract

The utility model belongs to the technical field of ceramic ball counting, and particularly relates to a ceramic ball counting device which comprises a working table, an adjusting box is fixed on the upper surface of the working table, a raw material box is fixed right above the adjusting box, a cover plate is fixed at a top opening of the raw material box, and a first motor is fixedly installed on the upper surface of the cover plate. A pushing mechanism is rotationally mounted at the axis of the lower surface of the cover plate, and an output shaft of the first motor penetrates through the cover plate and is coaxially connected with the pushing mechanism; by arranging the raw material box, the cover plate, the first motor and the pushing mechanism, ceramic balls can be conveniently integrated, automatic feeding of the ceramic balls in the counting process is achieved, the labor cost is greatly reduced, and labor force is liberated; according to the ceramic ball bead counting device, the ceramic ball beads are automatically counted in the counting process through cooperation with the guide pipe and the correlation type photoelectric sensor, the time cost, the labor cost and the like needed in the processes of subpackaging, counting and the like of the ceramic ball beads are greatly increased, and the counting efficiency is greatly improved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model belongs to ceramic ball counting technical field, especially relate to a ceramic ball counting device. BACKGROUND

[0002] The ceramic ball bearing realizes excellent wear resistance by the combination of ceramic balls (silicon nitride) and metal inner and outer rings of two different materials, and can maintain stable performance for a long time in harsh environments such as high temperature, corrosion, insulation and low dust.

[0003] The ceramic ball is a spherical object made of ceramic material, which has excellent performance and wide application field. In the production process, a counting device is often used to determine the production quantity of ceramic balls. There are some problems in counting the balls in the prior art.

[0004] For example, the Chinese patent with publication number CN219085450U discloses a bearing steel ball counting device, which comprises a counting disc, a top plate, an extension plate, and a handle. The top of the counting disc is provided with a counting groove. The bottom of the top plate is provided with a plug-in plate. The surface of the plug-in plate is provided with a through groove, and the handle is arranged in the through groove. The extension plate is arranged on the top of the counting disc. The beneficial effect is that the surface of the counting disc is provided with a counting groove. The steel balls are poured on the top of the counting disc, and the steel balls are located in the counting groove. The plug-in plate is inserted into the extension plate to block the steel balls. The number of steel balls can be quickly calculated when the counting groove is filled with steel balls. After long-term use, the handle is moved to make the connecting rod push the moving frame to move. The brush is inserted into the counting groove, and the top plate is moved to clean the metal powder in the counting groove. The brush is retracted into the circular groove under the push of the spring, and the plug-in plate is inserted into the extension plate to block the action.

[0005] The patent has some disadvantages when in use, such as: the device is manually placed and counted by the user, which is time-consuming and labor-intensive. After long-term use, the user is prone to fatigue, which is not conducive to counting a large number of ball objects for a long time. Therefore, we propose a ceramic ball counting device. UTILITY MODEL CONTENTS

[0006] The utility model aims to provide a ceramic ball counting device to solve the problems in the background technology.

[0007] Therefore, the utility model provides a ceramic ball counting device, which comprises:

[0008] The upper surface of the workbench is fixed with an adjusting box, the upper surface of the adjusting box is fixed with a raw material box, the top opening of the raw material box is fixed with a cover plate, the upper surface of the cover plate is fixedly installed with a motor one, and the lower surface of the cover plate is rotatably installed with a pushing mechanism.

[0009] The adjusting box is in a cylindrical hollow structure, count ports are symmetrically formed on the upper surface and the lower surface of the adjusting box, and the count ports on the upper surface and the lower surface correspond to each other, guide pipes are arranged between the two count ports on the same axis in the inner cavity of the adjusting box, and the bottom end of the guide pipe is fixed to the inner cavity bottom of the adjusting box, detection ports are symmetrically formed on the circumferential side wall of the guide pipe, and a pair of light emitting and receiving photoelectric sensors are fixedly installed on the side wall of the guide pipe and in the detection ports.

[0010] The adjusting assembly is arranged in the inner cavity of the adjusting box and is used for adjusting the ceramic ball beads of different sizes to pass through.

[0011] The collecting assembly is arranged on the lower surface of the workbench and is used for collecting the counted ceramic ball beads.

[0012] In the above technical scheme, further, the adjusting assembly comprises:

[0013] The adjusting disc is rotatably installed on the top surface of the inner cavity of the adjusting box, a plurality of adjusting ports are formed on the adjusting disc and are distributed at equal intervals around the center, a gear ring is fixed to the lower surface of the adjusting disc, a motor two is fixed to the center of the bottom surface of the inner cavity of the adjusting box, a driving gear is coaxially connected to the output shaft end of the motor two, transmission gears are symmetrically and meshingly connected to the two sides of the driving gear, driven gears are meshingly connected to the circumferential side of the transmission gears, the two driven gears are meshed with the gear ring, T-shaped support arms are symmetrically fixed to the bottom surface of the inner cavity of the adjusting box, bearing seats are fixed to the two ends of the horizontal rod part of the T-shaped support arms, the transmission gears are coaxially connected with the bearing seats on the inner side of the T-shaped support arms, and the driven gears are coaxially connected with the bearing seats on the outer side of the T-shaped support arms.

[0014] In the above technical scheme, further, the collecting assembly comprises:

[0015] The two guide rails are symmetrically arranged and fixedly installed on the lower surface of the workbench, a collecting box is slidingly installed between the two guide rails, and a circular hole is formed in the workbench to accommodate the ceramic ball beads falling from the two count ports.

[0016] In the above technical scheme, further, a soft pad is placed in the inner cavity of the collecting box, the soft pad is elastic, and a plurality of uniformly distributed semispherical protrusions are arranged on the upper surface of the soft pad.

[0017] In the above technical solution, further, the inner cavity bottom of the collecting box is provided with a discharging port at the front side position.

[0018] In the above technical solution, further, the upper surface of the workbench is provided with a display mechanism, and the detection port is electrically connected with the display mechanism.

[0019] In the above technical solution, further, the circumferential side wall of the adjusting box is provided with uniform and dense heat dissipation holes.

[0020] In the above technical solution, further, the material box and the cover plate are both made of organic glass.

[0021] The beneficial effects of the present application are as follows:

[0022] 1. The ceramic ball counting device is provided with a material box, a cover plate, a motor and a pushing mechanism, so as to integrate the ceramic balls, realize automatic feeding of the ceramic balls in the counting process, greatly reduce the labor cost, and liberate the labor force.

[0023] 2. The ceramic ball counting device is matched with a guide pipe and a pair of photoelectric sensors, so as to realize automatic counting of the ceramic balls in the counting process, greatly improve the time and labor cost required in the processes of sub-packaging and counting of the ceramic balls, and greatly improve the counting efficiency.

[0024] 3. The ceramic ball counting device is provided with an adjusting assembly, so that the device can pass and count ceramic balls of different diameters, the application range of the device to ceramic balls of different sizes is enlarged, and the applicability is further improved; the device is provided with a collecting assembly, so as to automatically and conveniently collect the counted ceramic balls. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 It is a schematic diagram of the overall structure of the present application;

[0026] Figure 2 It is a schematic diagram of the internal structure of the feeding mechanism in the present application;

[0027] Figure 3 It is a schematic diagram of the structure of the adjusting box in the present application;

[0028] Figure 4 It is a schematic diagram of the distribution inside the adjusting box in the present application;

[0029] Figure 5 It is a sectional view of the guide pipe in the present application;

[0030] Figure 6It is the exploded schematic view of the adjusting assembly in the utility model;

[0031] Figure 7 It is the structure schematic view of the adjusting disc and adjusting port in the utility model;

[0032] Figure 8 It is the structure schematic view of the collecting assembly in the utility model;

[0033] Figure 9 It is the structure schematic view of the blanking port in the utility model.

[0034] The mark in the drawing indicates that:

[0035] 1, workbench;2, adjusting box;3, raw material box;4, cover plate;5, motor one;6, push mechanism;7, counting port;8, guide pipe;9, detection port;10, opposite type photoelectric sensor;11, adjusting disc;12, adjusting port;13, gear ring;14, motor two;15, driving gear;16, transmission gear;17, driven gear;18, T-shaped support arm;19, bearing seat;20, guide rail;21, collecting box;22, soft pad;23, blanking port. DETAILED DESCRIPTION

[0036] The following will be combined with the drawings Figure 1 - Figure 9 The application is further described in detail.

[0037] In the application, the orientation or position relationship indicated by the terms "upper", "lower", "left", "right", "front", "back", "top", "bottom", "inner", "outer", "middle", "vertical", "horizontal" and the like is the orientation or position relationship shown based on the drawings. These terms are mainly used for better describing the application and its embodiments, and are not used to limit the indicated devices, elements or components to have a specific orientation, or to be constructed and operated in a specific orientation.

[0038] Embodiment 1: The embodiment provides a ceramic ball counting device, which comprises:

[0039] The workbench 1 is fixed with the adjusting box 2 on the upper surface, the raw material box 3 is fixed above the adjusting box 2, the cover plate 4 is fixed at the top opening of the raw material box 3, the motor one 5 is fixed and installed on the upper surface of the cover plate 4, the push mechanism 6 is rotationally installed at the lower surface shaft center of the cover plate 4, and the output shaft of the motor one 5 penetrates through the cover plate 4 and is coaxially connected with the push mechanism 6;

[0040] The adjusting box 2 is a cylindrical hollow structure, the upper surface and the lower surface of the adjusting box 2 are symmetrically provided with counting ports 7, and the counting ports 7 on the upper surface and the lower surface correspond to each other one by one, the inner cavity of the adjusting box 2 and between the two counting ports 7 on the same axis are provided with a guide pipe 8, and the bottom end of the guide pipe 8 is fixed with the inner cavity bottom of the adjusting box 2, the circumferential side wall of the guide pipe 8 is symmetrically provided with a detection port 9, and the side wall of the guide pipe 8 and in the detection port 9 is fixedly installed with a pair of photoelectric sensors 10;

[0041] The adjusting assembly is arranged in the inner cavity of the adjusting box 2 and is used for adjusting the ceramic ball beads of different sizes to pass through;

[0042] The collecting assembly is arranged on the lower surface of the workbench 1 and is used for collecting the counted ceramic ball beads.

[0043] In the initial state, the surface of the adjusting disc 11 in the adjusting assembly is closed with the counting port 7, at this time, the ceramic ball beads cannot pass through, specifically, the smallest adjusting port 12 on the adjusting disc 11 and the surface at the center position of the largest adjusting port 12 block the counting port 7, then the operator pours the ceramic ball beads into the inner cavity of the raw material box 3 through the top opening between the raw material box 3 and the cover plate 4, and selects the adjusting port 12 with a suitable diameter according to the size of the ceramic ball beads, after selection, the adjusting port 12 on the adjusting disc 11 is rotated from small to large to the directly below the counting port 7 in sequence, until the ceramic ball beads can pass through, at this time, the operation of the adjusting assembly is stopped, in the above process, since the adjusting is gradually increased from the smaller adjusting port 12, the situation that the ceramic ball beads cannot pass through gradually changes to the situation that the ceramic ball beads can pass through, therefore, in the process of pouring the ceramic ball beads into the raw material box 3 and adjusting whether the ceramic ball beads can pass through, the ceramic ball beads cannot pass through the counting port 7 and the guide pipe 8, which effectively ensures the reliability of the counting of the device;

[0044] The output shaft of the motor 5 rotates and drives the lower pushing mechanism 6 to rotate. Under the action of the pushing mechanism 6, the ceramic balls in the inner cavity of the raw material box 3 continuously roll in the inner cavity of the raw material box 3. The ceramic balls closest to the counting port 7 enter the counting port 7 under the action of extrusion and gravity, and then pass through the adjusting port 12 and the guide pipe 8, and fall into the collection assembly on the lower surface of the workbench 1 from the lower counting port 7. When the ceramic balls pass through the guide pipe 8, the light beam between the transmitter end and the receiver end of a group of reflective photoelectric sensors 10 arranged on the guide pipe 8 is blocked, thereby completing a signal collection. The specific principle is that when an object passes through, the light beam is blocked, and the sensor detects the change and outputs a signal. This signal can be used for counting. The reflective photoelectric sensor 10 is arranged to count the ceramic balls. In order to increase the technical efficiency of the device, two guide pipes 8 are arranged in the device to improve the passing efficiency of the ceramic balls. Furthermore, the device can increase more passing paths and guide pipes 8 and reflective photoelectric sensors 10 according to the distribution of the space in the inner cavity of the adjusting box 2.

[0045] Under the continuous pushing of the pushing mechanism 6, the ceramic balls in the inner cavity of the raw material box 3 are continuously pushed to the counting port 7. It is worth noting that the pushing mechanism 6 is composed of a rotating rod and a pushing blade fixed to the lower part of the rotating rod. The rotating rod in the pushing mechanism 6 is coaxially connected with the output shaft of the motor 5. In addition, the inner diameter of the counting port 7 is consistent with the maximum diameter of the adjusting port 12. When the number of ceramic balls in the inner cavity of the raw material box 3 is small, the probability of the ceramic balls being pushed to the counting port 7 position decreases. At this time, the remaining few ceramic balls can be counted or collected by manual visual counting. It is worth noting that the opening between the raw material box 3 and the cover plate 4 is sufficient to ensure that the operator's hand can be inserted into the raw material box 3 to take out the ceramic balls in the inner cavity of the raw material box 3.

[0046] By arranging the raw material box 3, the cover plate 4, the motor 5 and the pushing mechanism 6, the ceramic balls can be integrated, so that the ceramic balls can be automatically fed during counting, greatly reducing the labor cost and liberating the labor force. Through cooperation with the guide pipe 8 and the reflective photoelectric sensor 10, automatic counting of the ceramic balls during counting is realized, which greatly improves the time, labor and other costs required during the process of ceramic ball packaging and counting, and greatly improves the counting efficiency.

[0047] Embodiment 2: The ceramic ball counting device provided by the embodiment comprises the following technical features in addition to the technical solutions of the above-mentioned embodiments.

[0048] The adjusting disc 11 is rotationally installed on the top surface of the inner cavity of the adjusting box 2, a plurality of adjusting ports 12 are arranged on the adjusting disc 11, the adjusting disc 11 is fixed with a gear ring 13 on the lower surface, the motor 14 is fixed at the center of the bottom surface of the inner cavity of the adjusting box 2, the output shaft end of the motor 14 is coaxially connected with a driving gear 15, the driving gear 15 is symmetrically meshed with a transmission gear 16 on both sides, the transmission gear 16 is meshed with a driven gear 17 on the side, and the two driven gears 17 are meshed with the gear ring 13, the T-shaped support arm 18 is symmetrically fixed on the bottom surface of the inner cavity of the adjusting box 2, the bearing seat 19 is fixed at the both ends of the horizontal rod part of the T-shaped support arm 18, the transmission gear 16 is coaxially connected with the bearing seat 19 on the inner side of the T-shaped support arm 18, and the driven gear 17 is coaxially connected with the bearing seat 19 on the outer side of the T-shaped support arm 18.

[0049] When the adjusting assembly works, the motor 14 is started, the output shaft of the motor 14 rotates and drives the driving gear 15 to rotate, the driving gear 15 drives the two transmission gears 16 on both sides to rotate, the transmission gear 16 drives the driven gear 17 to rotate, under the action of the two driven gears 17, the gear ring 13 rotates, at this time, the adjusting disc 11 fixed with the gear ring 13 rotates, at this time, the two adjusting ports 12 with the same diameter on the opposite sides of the adjusting disc 11 can be rotated to the corresponding positions of the two counting ports 7 on the adjusting box 2, at this time, the two adjusting ports 12 with the new diameter are respectively penetrated through the two counting ports 7 and the guide pipe 8 on the corresponding sides, it is worth noting that the top end of the guide pipe 8 is close to the lower surface of the adjusting disc 11, and the distance therebetween is 0.5-1mm, and the upper surface of the adjusting disc 11 is close to the top surface of the inner cavity of the adjusting box 2, and the distance therebetween is 0.5-1mm.

[0050] By arranging the adjusting assembly, the device can pass and count ceramic ball beads with different diameters, avoid the case that ceramic ball beads with small diameters are blocked at the counting ports 7 on the top under the condition of the same passing diameter, effectively improve the passing efficiency of the ceramic ball beads, further improve the technical efficiency, in addition, by arranging the adjusting assembly, the application range of the device to ceramic ball beads with different sizes is larger, and the applicability is further improved.

[0051] Embodiment 3: The ceramic ball bead counting device provided by the embodiment has the following technical features in addition to the technical solutions of the above-mentioned embodiments:

[0052] The two guide rails 20 are symmetrically arranged and fixedly installed on the lower surface of the workbench 1, the collecting box 21 is slidingly installed between the two guide rails 20, and the circular holes for accommodating the ceramic ball beads falling from the two counting ports 7 are arranged on the workbench 1.

[0053] The collecting box 21 can freely slide between the slide formed by the two guide rails 20, and the principle is similar to the drawer in real life. After the ceramic ball beads fall from the adjusting box 2, they fall into the inner cavity of the collecting box 21 below through the round hole on the workbench 1, so as to complete the collection of the counted ceramic ball beads.

[0054] By arranging the collecting assembly, the counted ceramic ball beads can be automatically and conveniently collected.

[0055] In embodiment 4, in addition to the technical solutions of the above-mentioned embodiments, the inner cavity of the collecting box 21 is provided with a soft pad 22, the soft pad 22 has elasticity, and the upper surface of the soft pad 22 is provided with a plurality of uniformly distributed semispherical protrusions.

[0056] The soft pad 22 and the semispherical protrusions on the upper surface thereof are both made of soft rubber material and have elasticity, so that the ceramic ball beads will not directly collide with the bottom of the inner cavity of the relatively hard collecting box 21 after falling.

[0057] By arranging the soft pad 22, the ceramic ball beads can be protected, and the damage rate of the ceramic ball beads is effectively reduced.

[0058] In embodiment 5, in addition to the technical solutions of the above-mentioned embodiments, the inner cavity bottom of the collecting box 21 is provided with a discharge port 23 at the front side position.

[0059] The ceramic ball beads collected in the inner cavity of the collecting box 21 have two methods in the further collecting process. One is to directly pull out the collecting box 21 from below the workbench 1, and then directly pour out the ceramic ball beads in the collecting box 21; the other is to pull out the collecting box 21 to the outside of the workbench 1, then pull the soft pad 22 to the rear side, so that the discharge port 23 is no longer blocked by the soft pad 22, and then the ceramic ball beads in the inner cavity of the collecting box 21 are discharged from the discharge port 23. The first method of the above two methods is relatively convenient, but it is relatively laborious to lift the collecting box 21 and the ceramic ball beads in the inner cavity thereof, and is suitable for the condition that the number of ceramic ball beads in the inner cavity of the collecting box 21 is small. The second method is relatively labor-saving compared with the first method, and is suitable for the condition that the number of ceramic ball beads in the inner cavity of the collecting box 21 is large, and of course it can also be used in the condition that the number of ceramic ball beads is small.

[0060] By arranging the discharge port 23, the ceramic ball beads in the collecting box 21 can be easily discharged and further collected.

[0061] Embodiment 6: The embodiment provides a ceramic ball counting device, in addition to comprising the technical solutions of the above embodiments, further having the following technical features: the upper surface of the workbench 1 is provided with a display mechanism, and the detection port 9 is electrically connected with the display mechanism.

[0062] In the present application, the cooperation of the reflection type photoelectric sensor 10 and the display mechanism can refer to the existing patent technology, specifically the patent with the patent announcement number CN221886620U and the patent name of photoelectric sensor and electronic equipment. The patent has fully disclosed how to transmit the counting data detected by the reflection type photoelectric sensor 10 to the display mechanism. In addition, the display mechanism in the present application mainly consists of an LED display screen, a power module, a connecting line, a control mainboard and the like. It is worth noting that the display mechanism includes but is not limited to the above-mentioned parts. For example, the patent with the patent announcement number CN111383585B, a full-screen display device, the connection between the display device and the reflection type photoelectric sensor 10 and the data conversion are not described in detail in the present application, which are all existing technologies and should be well known to those skilled in the art. The present application has fully disclosed and explained them.

[0063] By setting the display mechanism, the data detected by the reflection type photoelectric sensor 10 can be displayed, which is convenient for the operator to obtain specific technical results.

[0064] Embodiment 7: The embodiment provides a ceramic ball counting device, in addition to comprising the technical solutions of the above embodiments, further having the following technical features: the circumferential side wall of the adjusting box 2 is provided with uniform and dense heat dissipation holes.

[0065] In which, the heat generated by the motor two 14 located in the inner cavity of the adjusting box 2 can be discharged to the outside through the air duct formed by the heat dissipation holes on both sides.

[0066] By setting the heat dissipation holes, the heat accumulation phenomenon in the inner cavity of the adjusting box 2 is avoided.

[0067] Embodiment 8: The embodiment provides a ceramic ball counting device, in addition to comprising the technical solutions of the above embodiments, further having the following technical features: the materials of the raw material box 3 and the cover plate 4 are organic glass.

[0068] In which, the organic glass material is specifically high-transparency acrylic material, and the raw material box 3 and the cover plate 4 formed by the high-transparency acrylic material have good high-transparency.

[0069] By selecting the organic glass material for the raw material box 3 and the cover plate 4, the operator can easily observe the number and specific implementation of the ceramic ball in the inner cavity of the raw material box 3.

[0070] Working principle: in the initial state, the surface of the adjusting disc 11 in the adjusting assembly is closed to the counting port 7, at this time the ceramic ball cannot pass through, specifically the smallest adjusting port 12 on the adjusting disc 11 and the surface at the center position of the largest adjusting port 12 block the counting port 7, then the operator pours the ceramic ball into the inner cavity of the raw material box 3 through the top opening between the raw material box 3 and the cover plate 4, and selects the appropriate adjusting port 12 according to the size of the ceramic ball, after selection, the adjusting port 12 on the adjusting disc 11 is rotated from small to large to the directly below the counting port 7, until the ceramic ball can pass through, at this time the operation of the adjusting assembly is stopped; start the motor one 5, the output shaft of the motor one 5 rotates and drives the lower pushing mechanism 6 to rotate, under the action of the pushing mechanism 6, the ceramic ball in the inner cavity of the raw material box 3 constantly rolls in the inner cavity of the raw material box 3, the ceramic ball closest to the counting port 7 position enters the counting port 7 under the action of extrusion and gravity, and successively passes through the adjusting port 12 and the guide pipe 8, and falls into the collecting assembly on the lower surface of the workbench 1 from the counting port 7 below, when the ceramic ball passes through the guide pipe 8, the light beam between the transmitter end and the receiver end of a group of photoelectric sensors 10 arranged on the guide pipe 8 is blocked, thereby completing a signal collection, this signal can be used for counting; when the ceramic ball falls from the adjusting box 2, it falls into the inner cavity of the collecting box 21 below through the round hole on the workbench 1, thereby completing the collection of the counted ceramic ball.

[0071] The embodiments of the present application are described above in combination with the drawings, the embodiments and the features in the embodiments in the present application can be combined with each other without conflict, the present application is not limited to the above specific embodiments, the above specific embodiments are only illustrative, but not limited, the ordinary skilled in the art can make many forms under the inspiration of the present application without departing from the purpose of the present application and the scope protected by the claims, all of which belong to the protection of the present application.

Claims

1. A ceramic ball counting device, characterized by, Include: Workbench (1), the upper surface of the workbench (1) is fixed with the adjusting box (2), the upper surface of the adjusting box (2) is fixed with the raw material box (3), the top opening of the raw material box (3) is fixed with the cover plate (4), the upper surface of the cover plate (4) is fixedly installed with motor one (5), the lower surface of the cover plate (4) is rotatably installed with the push mechanism (6), the output shaft of the motor one (5) penetrates the cover plate (4) and is coaxially connected with the push mechanism (6); The adjusting box (2) is a cylindrical hollow structure, the upper surface and the lower surface of the adjusting box (2) are symmetrically provided with counting ports (7), and the counting ports (7) on the upper surface and the lower surface are one-to-one corresponding, the inner cavity of the adjusting box (2) and between the two counting ports (7) on the same axis are provided with a guide pipe (8), and the bottom end of the guide pipe (8) is fixed with the inner cavity bottom of the adjusting box (2), the circumferential side wall of the guide pipe (8) is symmetrically provided with a detection port (9), and the side wall of the guide pipe (8) and in the detection port (9) is fixedly installed with a pair of photoelectric sensors (10). Adjusting assembly, the adjusting assembly is arranged in the inner cavity of the adjusting box (2), and is used for adjusting the ceramic ball beads of different sizes to pass through; The collecting assembly is arranged on the lower surface of the workbench (1), and is used for collecting the counted ceramic ball beads.

2. A ceramic ball counting device according to claim 1, wherein The adjusting assembly comprises: Adjusting disc (11), the adjusting disc (11) is rotatably installed on the inner cavity top surface of the adjusting box (2), a plurality of adjusting ports (12) are formed on the adjusting disc (11), the adjusting disc (11) is fixedly provided with a gear ring (13) on the lower surface, the inner cavity bottom surface center of the adjusting box (2) is fixedly provided with a motor two (14), the output shaft end of the motor two (14) is coaxially connected with a driving gear (15), the two sides of the driving gear (15) are symmetrically meshed with a transmission gear (16), the circumferential side of the transmission gear (16) is meshed with a driven gear (17), and the two driven gears (17) are meshed with the gear ring (13), the inner cavity bottom surface of the adjusting box (2) is symmetrically fixed with a T-shaped support arm (18), the both ends of the horizontal rod part of the T-shaped support arm (18) are fixedly provided with a bearing seat (19), the transmission gear (16) is coaxially connected with the bearing seat (19) on the inner side of the T-shaped support arm (18), and the driven gear (17) is coaxially connected with the bearing seat (19) on the outer side of the T-shaped support arm (18).

3. A ceramic ball counting device according to claim 1, wherein The collecting assembly comprises: Two guide rails (20), the two guide rails (20) are symmetrically arranged, and the guide rails (20) are fixedly installed on the lower surface of the workbench (1), the collecting box (21) is slidably installed between the two guide rails (20), and the workbench (1) is provided with a circular hole which can accommodate the ceramic ball beads falling from the two counting ports (7).

4. A ceramic ball counting device according to claim 3, wherein The inner cavity of the collecting box (21) is placed with a soft pad (22), the soft pad (22) has elasticity, and the upper surface of the soft pad (22) is provided with a plurality of uniformly distributed semispherical protrusions.

5. A ceramic ball counting device according to claim 4, wherein The inner cavity bottom of the collecting box (21) is provided with a discharging port (23) at the front side position.

6. A ceramic ball counting device according to claim 1, wherein The upper surface of the workbench (1) is provided with a display mechanism, and the detection port (9) is electrically connected with the display mechanism.

7. A ceramic ball counting device according to claim 1, wherein The circumferential side wall of the adjusting box (2) is provided with uniform and dense heat dissipation holes.

8. A ceramic ball counting device according to claim 1, wherein The material of the raw material box (3) and the cover plate (4) is organic glass.

Citation Information

Patent Citations

  • Full-screen display device

    CN111383585B

  • Bearing steel ball counting device

    CN219085450U

  • Photoelectric sensor and electronic equipment

    CN221886620U