Adjustable counter

By designing an adjustable counter and utilizing the collision rod assembly of the separation and adjustment device, the problems of inaccurate counting and material jamming were solved, enabling accurate and smooth counting of different materials.

CN223679662UActive Publication Date: 2025-12-16SHENZHEN JIALICHUANG TECH DEV CO LTD
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Patent Information

Application Number
CN202423305709.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-12-16
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

Existing technologies suffer from problems such as inaccurate counting, low efficiency, and easy material jamming when counting bulk materials, especially machined parts such as screws and nuts and electronic components, making it difficult to meet the requirements for high-precision counting.

Method used

An adjustable counter is used, including a frame, a counting device, a separating device, and an adjusting device. By setting collision rods of the first and second separating components and adjusting components, the distance between the collision rods can be flexibly adjusted to adapt to different material sizes, ensuring counting accuracy and smoothness.

Benefits of technology

It enables accurate counting of materials of different sizes, avoids counting errors and material jamming, and improves the adaptability of the counter and the continuity of the counting process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an adjustable counter. The adjustable counter comprises a rack, a counting device, a separating device and an adjusting device, the counting device is arranged on the rack and used for detecting the number of falling materials. The separating device is arranged on the counting device in a penetrating mode so as to separate falling materials. The separating device is connected to the adjusting device, and the adjusting device is connected to the rack in a sliding mode so as to drive the separating device to be connected to the counting device in a sliding mode. The technical problems that a traditional counter is difficult to count accurately due to different sizes of materials or adhesion of the materials, and the counting process is affected by material clamping stagnation are solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to production sorting technical field more specifically refers to a kind of adjustable counter. BACKGROUND

[0002] In the production and warehousing sorting link of modern industry, the accurate counting of bulk materials has always been a major problem that plagues the development of the industry, especially for all kinds of bulk materials such as screw nut machine parts, electronic components and parts, this problem is particularly prominent.

[0003] The existing bulk material counting technology solutions all have different degrees of defects. For example, the traditional weighing counting method first determines the weight of the reference quantity of materials, and then calculates the quantity of bulk materials according to the weight of individual materials. However, individual weight deviation is inevitable in the production process of materials, and even small weight differences will be magnified in bulk calculation, resulting in large counting result error, which is difficult to meet the high-precision counting requirement. Manual counting is the most direct way, but the efficiency is extremely low, a large amount of labor cost needs to be invested, and the accuracy of manual counting depends heavily on the concentration and proficiency of the operator, and the stability and accuracy of the counting result cannot be guaranteed. In the counting scheme of vibration disc combined with photoelectric sensor, the track design of the vibration disc is for materials of specific size and shape, when the size of the material changes, the material may not smoothly enter the track, causing material jamming, blocking and other phenomena, affecting the continuity and accuracy of counting, and complex debugging work of the vibration disc is needed when the material type is frequently changed. When the material falls, the falling posture of the material is unstable due to the influence of gravity, air resistance, friction between materials and other factors, which can easily cause counting omission or repeated counting, especially for materials with adhesion or easy agglomeration. SUMMARY

[0004] The utility model aims at overcoming the defects of the prior art, and provides an adjustable counter, which aims to solve the technical problems that the conventional counter is difficult to accurately count due to different sizes of materials or material adhesion, and the counting process is affected by material jamming.

[0005] To achieve the above-mentioned purpose, the utility model adopts the following technical solutions:

[0006] An adjustable counter, comprising a rack, a counting device, a separation device and an adjusting device; the counting device is arranged on the rack and is used for detecting the quantity of falling materials; the separation device is arranged in the counting device to separate the falling materials; the separation device is connected to the adjusting device, and the adjusting device is slidingly connected to the rack to slidingly connect the separation device to the counting device.

[0007] In an embodiment, the separating device comprises a first separating assembly and a second separating assembly, the first separating assembly is composed of a plurality of arrayed first collision rods, the second separating assembly is composed of a plurality of arrayed second collision rods, the first collision rods are arranged in an interval with the second collision rods.

[0008] In an embodiment, the adjusting device comprises a first adjusting assembly and a second adjusting assembly, the counting device, the first adjusting assembly and the second adjusting assembly are arranged in sequence on the rack, the first adjusting assembly is connected to the first separating assembly, and the second adjusting assembly is connected to the second separating assembly.

[0009] In an embodiment, the first adjusting assembly comprises a first adjusting plate and a first pull rod, the first pull rod is fixedly connected to a side of the first adjusting plate away from the counting device, and the first collision rod is fixedly connected to a side of the first adjusting plate close to the counting device.

[0010] In an embodiment, the second adjusting assembly comprises a second adjusting plate and a second pull rod, the second pull rod is fixedly connected to a side of the second adjusting plate away from the counting device, and the second collision rod is fixedly connected to a side of the second adjusting plate close to the counting device.

[0011] In an embodiment, the first adjusting plate is provided with a first connecting hole corresponding to the second collision rod, so that the second collision rod passes through the first adjusting plate; the second adjusting plate is provided with a second connecting hole corresponding to the first pull rod, so that the first pull rod passes through the second adjusting plate.

[0012] In an embodiment, the counting device comprises a feeding part, a cover plate, a counting baffle and a counting sensor, the cover plate, the counting baffle, the first adjusting plate and the second adjusting plate are arranged in sequence; the cover plate and the counting baffle enclose a counting cavity with an upper opening and a lower opening, the feeding part is arranged at the upper opening of the counting cavity, and the counting sensor is arranged below the counting cavity.

[0013] In an embodiment, the counting baffle is provided with adjusting holes corresponding to the first collision rod and the second collision rod, so that the first collision rod and the second collision rod pass through the counting baffle.

[0014] In an embodiment, the counting baffle is provided with a guide sliding rod, one end of the guide sliding rod is fixedly connected to the counting baffle, and the other end passes through the first adjusting plate and the second adjusting plate in sequence.

[0015] In an embodiment, the counter further comprises an adjusting baffle, the adjusting baffle and the counting baffle enclosing an adjusting cavity, the adjusting device and the separating device being arranged in the adjusting cavity, the adjusting baffle being provided with a third connecting hole for the first pull rod and the second pull rod to pass through and move.

[0016] The utility model discloses compared with prior art has the beneficial effects that: through setting up the separating device including first separating subassembly and second separating subassembly and the adjusting device of sliding connection in separating device, drive corresponding collision rod sliding, thereby realize according to the flexible adjustment of the interval between different collision rods according to the size of material, so that the material of size bigger or smaller can realize reasonable dispersion under the action of separating device, and then adapt to different size material and carry out accurate counting, effectively solved the problem of traditional counting mode difficult to deal with different material size and appear inaccurate counting.

[0017] The above description is only a summary of the technical scheme of the utility model, in order to can more clearly understand the technical means of the utility model, can be implemented according to the content of specification, and in order to let the above and other purposes, characteristics and advantages of the utility model can be more obvious and easy to understand, the following preferred embodiments are described in detail as follows. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 A front view of the adjustable counter provided by the utility model is shown in the figure.

[0019] Figure 2 A side view of the adjustable counter provided by the utility model is shown in the figure.

[0020] Figure 3 A back view of the adjustable counter provided by the utility model is shown in the figure.

[0021] Figure 4 A partial structure diagram of the adjustable counter provided by the utility model in the first state is shown in the figure.

[0022] Figure 5 A partial structure diagram of the adjustable counter provided by the utility model in the second state is shown in the figure.

[0023] Figure 6 Another angle of the partial structure diagram of the adjustable counter provided by the utility model in the second state is shown in the figure.

[0024] Figure 7Part structure diagram of another angle of the adjustable counter in the second state is provided.

[0025] Figure 8 Part structure diagram of the adjustable counter in the third state is provided.

[0026] Reference signs

[0027] 1, rack; 2, counting device; 21, feeding part; 22, cover plate; 23, counting baffle; 231, adjusting hole; 24, counting sensor; 25, collecting box; 26, guide slide rod; 27, discharging part; 3, separating device; 31, first collision rod; 32, second collision rod; 4, adjusting device; 41, first adjusting assembly; 411, first adjusting plate; 4111, first connecting hole; 412, first pull rod; 42, second adjusting assembly; 421, second adjusting plate; 4211, second connecting hole; 422, second pull rod; 43, adjusting baffle; 431, third connecting hole; 44, guide sleeve. DETAILED DESCRIPTION

[0028] In order to make the purpose, technical scheme and advantages of the utility model more clearly, the following will combine with the drawings and specific implementation to make further detailed description to the utility model.

[0029] The technical scheme in the embodiments of the utility model will be described clearly and completely in the following combined with the drawings in the embodiments of the utility model, and obviously, the described embodiments are a part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without making creative labor are within the protection scope of the utility model.

[0030] It should be understood that, when using in the specification and the attached claims, the terms "include" and "contain" indicate the existence of the described features, whole, step, operation, element and / or component, but do not exclude the existence or addition of one or more other features, whole, step, operation, element, component and / or its set.

[0031] It should also be understood that the terms used in the utility model specification herein are only for the purpose of describing specific embodiments and do not intend to limit the utility model. As used in the utility model specification and the attached claims, unless the context clearly indicates otherwise, the singular form "a", "an" and "the" is intended to include the plural form.

[0032] It should be further understood that the term "and / or" as used in the specification and in the claims, if any, means any one and all possible combinations of one or more of the associated listed items.

[0033] Referring to Figures 1 to 8 As shown in the figure, the utility model discloses a kind of adjustable counter, including rack 1, counting device 2, separation device 3 and adjusting device 4;The counting device 2 is arranged on the rack 1, for detecting the quantity of falling material;The separation device 3 is worn in the counting device 2, to separate falling material;The separation device 3 is connected to the adjusting device 4, and the adjusting device 4 is slidingly connected to the rack 1, to drive the separation device 3 slidingly connected to the counting device 2.

[0034] Specifically, the adjustable counter in the embodiment is mainly combined by rack 1, counting device 2, separation device 3 and adjusting device 4 several parts. Rack 1 is the basic framework of the whole counter, provides stable installation for other components, ensures that the relative position relationship of each component remains stable during operation, to prevent component damage or operation obstruction caused by external interference. Counting device 2 undertakes the core task of detecting material quantity, to realize the key of accurate counting function. Separation device 3 is specially used for processing falling material, effectively separates material, avoids mutual interference between materials to affect the accuracy of counting. Through the detection of material by counting device 2, combined with the effective separation of material by separation device 3, the counting error caused by material agglomeration, overlap or uneven distribution is effectively avoided, which can provide extremely accurate material quantity data for production, storage and other links, greatly improves the accuracy and reliability of material management.

[0035] Meanwhile, adjusting device 4 is closely connected with separation device 3, and is slidingly connected with rack 1, to realize flexible control of separation device 3, so that separation device 3 can be adjusted according to different material characteristics and counting requirements, so that the counter can adapt to materials of different sizes, shapes and physical properties. Whether it is a small part or a larger object, accurate counting processing can be obtained in this counter, reducing the cost and time consumption caused by frequent replacement of counting equipment due to material changes, so that the whole counter has better adaptability and flexibility.

[0036] In an embodiment, the separation device 3 includes a first separation assembly and a second separation assembly, the first separation assembly is composed of a plurality of arrayed first collision rods 31, the second separation assembly is composed of a plurality of arrayed second collision rods 32, and the first collision rods 31 and the second collision rods 32 are arranged at intervals.

[0037] Specifically, the first separation assembly is composed of a plurality of first collision rods 31 arranged in a certain array, which form an orderly layout in space, and the arrangement ensures that the falling materials can fully contact and interact with the first collision rods 31 when entering the counting area. The second separation assembly is also composed of a plurality of second collision rods 32 arranged in an array and spaced apart from the first collision rods 31. The arrangement of the second collision rods 32 also follows a certain rule, and the array form cooperates with the first collision rods 31 to form a more refined material separation network.

[0038] Further, in the present embodiment, the counter is divided into three counting states.

[0039] In the first state, no collision rod in the counting device 2 performs separation, and neither the first collision rods 31 nor the second collision rods 32 enter the counting device 2. This state is used to separate larger size and relatively independent materials that are not easy to stick together.

[0040] In the second state, only the first collision rods 31 in the counting device 2 perform separation, and the first collision rods 31 are arranged with a larger spacing therebetween. This state is used to separate smaller size materials, so that the materials are moderately dispersed when falling, avoiding their concentrated accumulation in the counting area, thereby ensuring that the counting device 2 can accurately identify and count individual materials.

[0041] In the third state, the first collision rods 31 and the second collision rods 32 in the counting device 2 simultaneously perform separation. Since the first collision rods 31 and the second collision rods 32 cooperate with each other, they form smaller spacing ranges through staggered arrangement to separate smaller diameter materials, such as small parts with high viscosity or small size. During the falling process, the small size materials that stick together are subjected to more detailed separation operation under the alternating collision and guidance of the first collision rods 31 and the second collision rods 32, further improving the adaptability of the separation device 3 to different size materials.

[0042] Through this design of matching the diameter range of materials according to the spacing between different collision rods and the new spacing formed when the double rods work simultaneously, the separation device 3 can accurately separate materials of different sizes. Whether the materials are of larger diameter or smaller diameter, they can be dispersed in the appropriate spacing environment, thereby avoiding the problems of incomplete separation and material aggregation caused by the mismatch between the size of the materials and the separation spacing, so that the counting device 2 can more accurately count the materials and provide accurate material quantity data for production and warehousing links.

[0043] In an embodiment, the adjusting device 4 comprises a first adjusting assembly 41 and a second adjusting assembly 42, the counting device 2, the first adjusting assembly 41 and the second adjusting assembly 42 are sequentially arranged on the rack 1, the first adjusting assembly 41 is connected to the first separating assembly, and the second adjusting assembly 42 is connected to the second separating assembly.

[0044] Specifically, by adjusting the separating device 3 through the first adjusting assembly 41 and the second adjusting assembly 42 respectively, the counting error caused by incomplete separation of the materials can be effectively avoided. When processing small-diameter materials, the first separating assembly and the second separating assembly can be moved into the counting device 2 to reduce the spacing between the collision rods, thereby preventing the materials from sticking or clustering through the counting area; when processing large-diameter materials, the first separating assembly can be adjusted to enter the counting device 2 or the separating device 3 can be moved out of the counting device 2 to increase the spacing, thereby ensuring that the materials pass through smoothly. In this way, materials of different diameters can enter the counting device 2 in a more uniform and independent state after being processed by the separating device 3, so that the counting device 2 can count each material more accurately, providing highly reliable material quantity data for production and storage links, which helps enterprises to achieve fine material management and quality control.

[0045] In an embodiment, the first adjusting assembly 41 comprises a first adjusting plate 411 and a first pull rod 412, the first pull rod 412 is fixedly connected to one side of the first adjusting plate 411 away from the counting device 2, and the first collision rod 31 is fixedly connected to one side of the first adjusting plate 411 close to the counting device 2.

[0046] Specifically, the first adjusting assembly 41 mainly comprises a first adjusting plate 411 and a first pull rod 412. The first pull rod 412 serves as an operating medium between the operator and the first adjusting plate 411, and is fixedly connected to one side of the first adjusting plate 411 away from the counting device 2, so that the operator can conveniently apply a force to the first adjusting plate 411 outside the equipment. The connection of one side of the first adjusting plate 411 close to the counting device 2 with the first separating assembly enables the first adjusting plate 411 to convert the operating force transmitted by the first pull rod 412 into a change in the position of the first separating assembly.

[0047] Further, in the adjusting device 4, the first adjusting assembly 41 is used to cope with the size change of the materials, and is used to realize flexible adjustment of the first collision rod 31 during the entire adjusting process. When encountering small-diameter materials, the operator pushes the first pull rod 412 to drive the first adjusting plate 411 and the first collision rod 31 connected thereto to move into the counting device 2, thereby reducing the spacing between the collision rods in the counting device 2 by a small amount, so that the materials can pass through the preliminary separation link of the first separating assembly smoothly.

[0048] In an embodiment, the second adjusting assembly 42 comprises a second adjusting plate 421 and a second pull rod 422, the second pull rod 422 being fixedly connected to a side of the second adjusting plate 421 away from the counting device 2, and the second impact rod 32 being fixedly connected to a side of the second adjusting plate 421 close to the counting device 2.

[0049] Specifically, the second adjusting assembly 42 comprises a second adjusting plate 421 and a second pull rod 422. The second pull rod 422 is fixed to a side of the second adjusting plate 421 away from the counting device 2 for facilitating the operation of the operator. The second adjusting plate 421 is connected to the second separating assembly at a side close to the counting device 2, so that the second adjusting plate 421 can drive the second separating assembly to make corresponding adjustment under the action of the second pull rod 422, and the first adjusting assembly 41 and the second adjusting assembly 42 cooperate to complete the overall regulation of the separating device 3.

[0050] In the process of material processing, the second adjusting assembly 42 plays a role of supplementary and refined adjustment. When the adjustment of the first separating assembly cannot fully meet the separation requirements of the material, the second adjusting assembly 42 starts to play a role. For example, when processing some smaller diameter materials, the operator can operate the first pull rod 412 and the second pull rod 422 to make the first impact rod 31 and the second impact rod 32 enter the counting device 2 at the same time, so as to greatly reduce the spacing of the impact rods in the technical device. It can be understood that when the first impact rod 31 and the second impact rod 32 act at the same time, the spacing of the impact rods in the counting device 2 is reduced to the distance between the adjacent first impact rod 31 and the second impact rod 32. Through the cooperative work of the first adjusting assembly 41 and the second adjusting assembly 42, the relative arrangement mode (such as staggered arrangement) of the first impact rod 31 and the second impact rod 32 and the spacing of each other are adjusted, so that the separating device 3 can better adapt to the characteristics of the material, realize more accurate separation of the material, and further improve the reliability of counting.

[0051] In an embodiment, the first adjusting plate 411 is provided with a first connecting hole 4111 corresponding to the second impact rod 32, so that the second impact rod 32 penetrates the first adjusting plate 411; and the second adjusting plate 421 is provided with a second connecting hole 4211 corresponding to the first pull rod 412, so that the first pull rod 412 penetrates the second adjusting plate 421.

[0052] Specifically, when the first adjusting plate 411 is installed in the corresponding position, the first connecting hole 4111 is just in the same plane with the second collision rod 32, so that the second collision rod 32 can pass through the first adjusting plate 411 and smoothly enter the counting device 2, and during the adjustment process, the second collision rod 32 will not interfere or hinder the first separating assembly or the first adjusting assembly 41. In this embodiment, the first connecting hole 4111 is circular, and its diameter is slightly larger than the outer diameter of the second collision rod 32, so as to ensure that the second collision rod 32 can pass freely, making the overall structure more compact and stable.

[0053] The second adjusting plate 421 is provided with a second connecting hole 4211 corresponding to the first pull rod 412, and the size and shape of the second connecting hole 4211 are adapted to the outer dimensions of the first pull rod 412, so as to ensure that the first pull rod 412 can pass through the second adjusting plate 421 without any obstruction. The second connecting hole 4211 provides a movable channel for the first pull rod 412, so that the operator can smoothly pass through the second adjusting plate 421 to pull or push the first pull rod 412, while maintaining a relatively stable positional relationship. It can be understood that this design forms a mutual nesting and interrelated structure relationship between the first adjusting assembly 41 and the second adjusting assembly 42, so that the two assemblies can closely cooperate and mutually influence each other during the movement and adjustment process, and together realize the fine adjustment of the entire separating device 3.

[0054] In an embodiment, the counting device 2 comprises a feeding part 21, a cover plate 22, a counting baffle 23 and a counting sensor 24, the cover plate 22, the counting baffle 23, the first adjusting plate 411 and the second adjusting plate 421 are sequentially arranged; the cover plate 22 and the counting baffle 23 enclose a counting cavity with an upper opening and a lower opening, the feeding part 21 is arranged at the upper opening of the counting cavity, and the counting sensor 24 is arranged below the counting cavity.

[0055] Specifically, the feeding part 21 is the starting part of the material entering the entire counting device 2, and makes the material enter the counting cavity smoothly and orderly. In this embodiment, the feeding part 21 adopts a funnel shape, and the large opening faces upward to receive the material from the outside. The size of the large opening is determined according to the batch delivery specification of the common material, so as to ensure that a large amount of material can be accommodated at one time and the material does not overflow. The gradually reduced small opening is connected with the upper opening of the counting cavity, and guides the material to accurately fall into the counting area below. The cover plate 22 cooperates with the counting baffle 23 to enclose the counting cavity, and the cover plate 22 is used to prevent the material from jumping out of the counting cavity from above during falling, so as to avoid the material scattering to the outside of the equipment, causing inaccurate counting and confusion of the scene environment. The counting baffle 23 and the cover plate 22 jointly construct the counting cavity, and are arranged in sequence with the first adjusting plate 411 and the second adjusting plate 421. The counting baffle 23 defines the falling path and range of the material during counting, so as to ensure that the material can be in a relatively regular state when passing through the area below, which is convenient for the counting sensor 24 to detect, and avoids problems such as counting omission or repeated counting due to disordered scattering, thereby laying a foundation for the counting sensor 24 to accurately obtain the passing information of the material.

[0056] The counting sensor 24 is arranged at the lower opening of the counting cavity and on the path that the material must pass through during falling. It uses sensing technology to detect the number of materials falling through the counting cavity, and common ones are photoelectric sensors based on photoelectric sensing principle. When the material falls through the counting cavity from above and passes through the position of the sensor, the light is blocked or the reflection of the light is changed, and the sensor can sensitively capture these changes in the light signal and convert them into corresponding electrical signals, thereby realizing the counting function of the material. In this embodiment, the type of the counting sensor 24 is not limited.

[0057] Further, the lower opening of the counting cavity is also provided with a discharging part 27, which adopts a funnel shape, and the large opening faces upward to receive the material from the outside, and the gradually reduced small opening accurately guides the material scattered by the separating device to the counting sensor 24 below the counting cavity, thereby realizing the counting function. The counting sensor 24 is arranged on the collection box 25, so that the material counted by the counting sensor 24 can be directly collected without being manually collected again.

[0058] In an embodiment, the counting baffle 23 is provided with adjusting holes 231 corresponding to the first collision rod 31 and the second collision rod 32, so that the first collision rod 31 and the second collision rod 32 pass through the counting baffle 23.

[0059] Specifically, the count baffle 23 is provided with adjusting holes 231 corresponding to the first collision rods 31 and the second collision rods 32, and the position distribution of the adjusting holes 231 matches the array arrangement mode of the first collision rods 31 and the second collision rods 32 in the separation device 3, so that the first collision rods 31 and the second collision rods 32 can smoothly pass through the count baffle 23 into the count cavity to realize the separation of the materials, and the mutual interference does not occur. The size of the adjusting holes 231 is slightly larger than the outer diameter of the first collision rods 31 and the second collision rods 32, so that the collision rods can smoothly pass through, and the phenomenon of jamming does not occur, and at the same time, a certain matching precision can be maintained, so that the collision rods do not have a large shaking space after passing through, thereby ensuring that they can be stably and accurately positioned in the plane defined by the count baffle 23.

[0060] In an embodiment, the count baffle 23 is provided with guide sliding rods 26, one end of the guide sliding rods 26 is fixedly connected to the count baffle 23, and the other end sequentially passes through the first adjusting plate 411 and the second adjusting plate 421.

[0061] Specifically, the guide sliding rods 26 provided on the count baffle 23 are used to ensure the accurate movement and cooperative work of the related components, and have a certain length and strength to ensure that they can stably function in the long-term use process. One end of the guide sliding rods 26 is fixedly connected to the count baffle 23, and the fixed connection can adopt a reliable mode such as welding, threaded connection or riveting, so as to ensure that the guide sliding rods 26 and the count baffle 23 form a stable whole and do not appear loose or displacement during the operation of the equipment, and the connection mode is not specifically limited in the embodiment. The other end of the guide sliding rods 26 sequentially passes through the first adjusting plate 411 and the second adjusting plate 421, and there is a reasonable matching gap between the passing part and the corresponding adjusting plate hole, which can ensure that the guide sliding rods 26 smoothly pass through the adjusting plate and can limit the movement of the adjusting plate in a specific direction, thereby playing an accurate guiding role.

[0062] It can be understood that the first adjusting plate 411 and the second adjusting plate 421 are provided with guide sleeves 44, and the guide sliding rods 26 pass through the guide sleeves 44, so that the first adjusting plate 411 and the second adjusting plate 421 can smoothly slide along the guide sliding rods 26 to realize the accurate adjustment of the separation device 3. It can be understood that in the embodiment, the guide sliding rods 26 are preferably provided as four groups and are located at the four corners of the count baffle 23 to increase the stability of the movement of the first adjusting plate 411 and the second adjusting plate 421.

[0063] In an embodiment, the counter further comprises an adjusting baffle 43, which, together with the counting baffle 23, encloses an adjusting cavity, and the adjusting device 4 and the separating device 3 are arranged in the adjusting cavity, and the adjusting baffle 43 is provided with a third connecting hole 431 through which the first pull rod 412 and the second pull rod 422 move.

[0064] Specifically, by accommodating the adjusting device 4 and the separating device 3 in the adjusting cavity, these key components can be better protected from external dust, impurities, and possible external force collisions and other disturbances, ensuring that they operate in a relatively stable and clean environment, which helps to maintain the working accuracy and service life of the entire counter. The adjusting baffle 43 is closely adjacent to the counting baffle 23 in position, and the connection between them is close and stable, and together they define the range of the adjusting cavity. The shape and size are determined according to the overall shape and movement space requirements of the adjusting device 4 and the separating device 3, to ensure that the internal components can be reasonably placed and have sufficient movement allowance to achieve the corresponding adjusting and separating functions. The third connecting hole 431 provided on the adjusting baffle 43 for the first pull rod 412 and the second pull rod 422 to move through is a structure for the operator to operate the internal adjusting device 4. That is, the operator adjusts the position of the first adjusting plate 411 or the second adjusting plate 421 by pushing and pulling the first pull rod 412 and the second pull rod 422 outside the counter according to the size of the material to be counted, which can flexibly adjust the spacing of the collision rods in the counting device 2, so that the counting device 2 reaches the best material separating state, and then accurate counting is achieved.

[0065] The above only further illustrates the technical content of the present application with examples, so that the reader can more easily understand, but does not represent that the embodiments of the present application are limited to this. Any technical extension or re-creation made according to the present application is protected by the present application. The protection scope of the present application is subject to the claims.

Claims

1. An adjustable counter, characterized by Including rack, counting device, separation device and adjusting device; The counting device is arranged on the rack and is used for detecting the number of falling materials; The separation device is arranged in the counting device to separate the falling materials; The separation device is connected to the adjusting device, and the adjusting device is slidingly connected to the rack to slidingly connect the separation device to the counting device.

2. An adjustable counter according to claim 1, wherein, The separation device includes a first separation assembly and a second separation assembly, the first separation assembly is composed of a plurality of arrayed first collision rods, the second separation assembly is composed of a plurality of arrayed second collision rods, and the first collision rods and the second collision rods are arranged at intervals.

3. An adjustable counter according to claim 2, wherein, The adjusting device includes a first adjusting assembly and a second adjusting assembly, the counting device, the first adjusting assembly and the second adjusting assembly are sequentially arranged on the rack, the first adjusting assembly is connected to the first separation assembly, and the second adjusting assembly is connected to the second separation assembly.

4. A programmable counter according to claim 3, wherein, The first adjusting assembly includes a first adjusting plate and a first pull rod, the first pull rod is fixedly connected to one side of the first adjusting plate away from the counting device, and the first collision rod is fixedly connected to one side of the first adjusting plate close to the counting device.

5. An adjustable counter according to claim 4, wherein, The second adjusting assembly includes a second adjusting plate and a second pull rod, the second pull rod is fixedly connected to one side of the second adjusting plate away from the counting device, and the second collision rod is fixedly connected to one side of the second adjusting plate close to the counting device.

6. An adjustable counter according to claim 5, wherein, The first adjusting plate is provided with a first connecting hole corresponding to the second collision rod, so that the second collision rod passes through the first adjusting plate; The second adjusting plate is provided with a second connecting hole corresponding to the first pull rod, so that the first pull rod passes through the second adjusting plate.

7. An adjustable counter according to claim 5, wherein, The counting device includes a feeding part, a cover plate, a counting baffle and a counting sensor, the cover plate, the counting baffle, the first adjusting plate and the second adjusting plate are sequentially arranged; The cover plate and the counting baffle enclose a counting cavity with an upper opening and a lower opening, the feeding part is arranged at the upper opening of the counting cavity, and the counting sensor is arranged below the counting cavity.

8. An adjustable counter according to claim 7, wherein, The counting baffle is provided with adjusting holes corresponding to the first collision rod and the second collision rod, so that the first collision rod and the second collision rod pass through the counting baffle.

9. An adjustable counter according to claim 8, wherein, The counting baffle is provided with a guide sliding rod, one end of the guide sliding rod is fixedly connected to the counting baffle, and the other end sequentially passes through the first adjusting plate and the second adjusting plate.

10. An adjustable counter according to claim 9, wherein, The counter further includes an adjusting baffle, the adjusting baffle and the counting baffle enclose an adjusting cavity, the adjusting device and the separation device are arranged in the adjusting cavity, and the adjusting baffle is provided with a third connecting hole for the first pull rod and the second pull rod to pass through and move.