Turnover oscillator

By designing a moving mechanism in the flip oscillator, the sample holder is driven to reciprocate horizontally within the rotating frame, the problem of poor oscillation effect of the existing flip oscillator is solved, and a stronger oscillation effect is achieved and production costs are reduced.

CN222829500UActive Publication Date: 2025-05-06荆州科比广告传播有限公司
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Patent Information

Application Number
CN202421326093.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-11
Publication Date
2025-05-06
Estimated Expiration
2034-06-11

AI Technical Summary

Technical Problem

The existing flip oscillator has poor oscillation effect when the reagent cartridge is flipped and oscillated, and the equipment itself does not have a certain oscillation function, which affects the improvement of the oscillation effect.

Method used

A flip oscillator including a drive member, a sample holder, a base and a moving mechanism is designed. The moving mechanism drives the specimen frame to reciprocate horizontally within the rotating frame through the meshing of the first bevel gear and the second bevel gear, increasing the displacement shaking of the oscillation and improving the oscillation effect.

Benefits of technology

Through the arrangement of the moving mechanism, the sample holder performs displacement shaking and oscillation while flipping oscillating, which significantly improves the oscillation effect of the flipping oscillator and reduces the production cost of the equipment.

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    Figure CN222829500U_ABST
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Abstract

The utility model discloses an overturn oscillator, relates to overturn oscillator technical field, including drive piece and sample holder, also include base, drive piece passes through the mounting rack and is installed on the base, drive piece output shaft one end is equipped with the rotation shaft, and the rotation shaft one end passes through and extends to the outside of base, and the rotation shaft one end passes through and extends to the base. A rotating frame is installed on the side, away from the driving part, of the rotating shaft, the sample holder slides in the rotating frame, a moving mechanism is arranged on the rotating frame and used for driving the sample holder to slide in the rotating frame in a reciprocating mode, and through the arrangement of the moving mechanism, the driving part drives a first bevel gear to rotate while driving the sample holder to rotate; the first bevel gear rotates to drive the moving block to do circular motion, so that the moving block can drive the sample holder to do horizontal reciprocating motion in the rotating frame, and the reagent cylinder is subjected to displacement type shaking oscillation while being overturned and oscillated, so that the oscillation effect of the overturning oscillator is enhanced.
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Description

Technical Field

[0001] The utility model relates to the technical field of flip oscillators, in particular to a flip oscillator. Background Art

[0002] The flip oscillator is suitable for the toxic flip method of solid waste leaching. It is widely used in environmental protection, solid waste disposal and other industries related to the toxicity identification, research, treatment and disposal of solid waste. It is also suitable for production tests and scientific research in industries such as chemical industry and teaching.

[0003] Publication No. CN211098755U discloses a flip oscillator, which greatly facilitates the process of taking and placing a sample bottle by providing an electromagnetic clamping device.

[0004] However, the above application still has the following problems: the method of controlling the flipping and oscillation of the reagent cylinder is still to use a motor to drive the sample rack to rotate forward and then switch to reverse rotation, thereby realizing flipping and oscillation. The oscillation of the reagent liquid in the reagent cylinder depends entirely on the forward and reverse rotation of the motor. The flipping oscillator itself does not have a certain oscillation function. In order to improve the oscillation effect of the flipping oscillator, the utility model proposes a flipping oscillator. Utility Model Content

[0005] In order to solve the technical problems existing in the background technology, the utility model proposes a flip oscillator.

[0006] The utility model provides a flip oscillator, comprising a driving member and a sample rack, and also comprising a base, wherein the driving member is mounted on the base via a mounting frame, a rotating shaft is mounted at one end of an output shaft of the driving member, and one end of the rotating shaft penetrates and extends to the outside of the base, the outer periphery of the rotating shaft is rotatably connected to the penetration point of the base, a rotating frame is mounted on a side of the rotating shaft away from the driving member, the sample rack slides in the rotating frame, a moving mechanism is provided on the rotating frame, and the moving mechanism is used to drive the sample rack to slide back and forth in the rotating frame.

[0007] Preferably, the moving mechanism includes a conductive member and a moving member.

[0008] Preferably, the moving member includes a first bevel gear, and the first bevel gear is rotatably connected to the rotating frame, the conductive member is used to drive the first bevel gear to rotate, a rotating rod is installed on the first bevel gear, a fixed rod is installed on the rotating rod, a moving block is installed on the fixed rod, a fixed bar is installed on the sample rack, a sliding groove is opened on the fixed bar, and the moving block slides along the slotting direction of the sliding groove.

[0009] Preferably, the transmission member includes a driven gear, which is sleeved on the rotating shaft, and the driven gear and the rotating shaft are fixedly connected. A transmission shaft passes through the rotating frame, and the connection between the transmission shaft and the rotating frame is rotatably connected. A transmission gear is installed at one end of the transmission shaft, and the transmission gear and the driven gear are meshed with each other. A second bevel gear is installed at the other end of the transmission shaft, and the second bevel gear and the first bevel gear are meshed with each other.

[0010] Preferably, it also includes a base, and the base is installed on the base.

[0011] Preferably, two first sliders are installed on both sides of the sample rack, two first sliding rods are installed in the rotating frame, the two first sliders are sleeved on the first sliding rods, and the two first sliders slide along the first sliding rods, and two second sliders are installed on both sides of the sample rack, two second sliding rods are installed in the rotating frame, the two second sliders are sleeved on the second sliding rods, and the two second sliders slide along the second sliding rods.

[0012] In the present invention, the proposed flip oscillator has the following beneficial technical effects:

[0013] 1. Through the setting of the moving mechanism, the driving member drives the sample rack to rotate, and also drives the first bevel gear to rotate, and the rotation of the first bevel gear drives the moving block to make a circular motion. Therefore, the moving block can drive the sample rack to reciprocate horizontally in the rotating frame, and while the reagent cylinder is flipped and oscillated, it performs displacement shaking and oscillation, thereby enhancing the oscillation effect of the flip oscillator.

[0014] 2. Through the setting of the moving mechanism, the first bevel gear and the second bevel gear are meshed with each other, and the driven gear and the transmission gear are meshed with each other, so that the driving member drives the sample rack to rotate while also driving the first bevel gear to rotate. The first bevel gear does not need to be driven by additional driving equipment, thereby reducing the production cost of the equipment.

[0015] Additional aspects and advantages of the present invention will be given in part in the following description, and in part will become apparent from the following description, or will be learned through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is the front view of the structure of the utility model;

[0017] Figure 2 It is a side view of the sample rack of the utility model.

[0018] In the figure, 1, driving member; 2, sample holder; 3, base; 4, rotating shaft; 5, rotating frame; 6, moving mechanism; 7, transmission member; 71, driven gear; 72, transmission shaft; 73, transmission gear; 74, second bevel gear; 8, moving member; 81, first bevel gear; 82, rotating rod; 83, fixed rod; 84, moving block; 85, fixed bar; 86, sliding groove; 9, base; 10, first slider; 11, first slide bar; 12, second slider; 13, second slide bar. DETAILED DESCRIPTION

[0019] The embodiments of the present invention are described in detail below, and examples of the embodiments are shown in the accompanying drawings, wherein the same or similar symbols throughout represent the same or similar elements or elements with the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and cannot be understood as limiting the present invention.

[0020] like Figure 1-Figure 2 A flip oscillator shown includes a driving member 1 and a sample rack 2, wherein a clamp for clamping a reagent cartridge is installed in the sample rack 2, the driving member 1, the sample rack 2 and the clamp are all prior arts, and further includes a base 3, the driving member 1 is installed on the base 3 through a mounting frame, a rotating shaft 4 is installed at one end of the output shaft of the driving member 1, and one end of the rotating shaft 4 penetrates and extends to the outside of the base 3, the outer periphery of the rotating shaft 4 is rotatably connected to the penetration point of the base 3, a rotating frame 5 is installed on the side of the rotating shaft 4 away from the driving member 1, the sample rack 2 slides in the rotating frame 5, a moving mechanism 6 is provided on the rotating frame 5, and the moving mechanism 6 is used to drive the sample rack 2 to slide back and forth in the rotating frame 5.

[0021] A further improvement of the technical solution is that the moving mechanism 6 includes a conducting member 7 and a moving member 8 .

[0022] A further improvement of the technical solution is that the moving member 8 includes a first bevel gear 81, and the first bevel gear 81 is rotatably connected to the rotating frame 5, the conductive member 7 is used to drive the first bevel gear 81 to rotate, a rotating rod 82 is installed at the top center of the first bevel gear 81, a fixed rod 83 is installed on the rotating rod 82, a moving block 84 is installed on the fixed rod 83, a fixed bar 85 is installed on the sample rack 2, a sliding groove 86 is opened on the fixed bar 85, and the moving block 84 slides along the groove direction of the sliding groove 86.

[0023] A further improvement of the technical solution is that the transmission member 7 includes a driven gear 71, which is sleeved on the rotating shaft 4, and the driven gear 71 and the rotating shaft 4 are fixedly connected, a transmission shaft 72 passes through the rotating frame 5, and the connection between the transmission shaft 72 and the rotating frame 5 is a rotating connection, a transmission gear 73 is installed at one end of the transmission shaft 72, and the transmission gear 73 and the driven gear 71 are meshed with each other, and a second bevel gear 74 is installed at the other end of the transmission shaft 72, and the second bevel gear 74 and the first bevel gear 81 are meshed with each other.

[0024] A further improvement of the technical solution is that the transmission member 7 can be replaced by other existing transmission structures that can drive the first bevel gear 81 to rotate.

[0025] A further improvement of the technical solution is that it further comprises a base 9 , on which the base 3 is mounted.

[0026] In an optional embodiment, the driving member 1 is a motor.

[0027] A further improvement of the technical solution is that two first sliders 10 are installed on both sides of the sample rack 2, two first slide bars 11 are installed in the rotating frame 5, the two first sliders 10 are sleeved on the first slide bars 11, and the two first sliders 10 slide along the first slide bars 11, two second sliders 12 are installed on both sides of the sample rack 2, two second slide bars 13 are installed in the rotating frame 5, the two second sliders 12 are sleeved on the second slide bars 13, and the two second sliders 12 slide along the second slide bars 13. This arrangement can ensure that the sample rack 2 reciprocates horizontally in the rotating frame 5 without flipping.

[0028] In an optional embodiment, the sample rack 2, the rotating frame 5 and the rotating shaft 4 are coaxially arranged.

[0029] By setting the moving mechanism 6, the driving member 1 drives the sample rack 2 to rotate, and also drives the first bevel gear 81 to rotate. The rotation of the first bevel gear 81 drives the moving block 84 to make a circular motion. Therefore, the moving block 84 can drive the sample rack 2 to reciprocate horizontally in the rotating frame 5. When the reagent cartridge is flipped and oscillated, it performs displacement shaking oscillation, thereby enhancing the oscillation effect of the flip oscillator.

[0030] By setting the moving mechanism 6, the first bevel gear 81 and the second bevel gear 74 are meshed with each other, and the driven gear 71 and the transmission gear 73 are meshed with each other, so that the driving member 1 drives the sample rack 2 to rotate while also driving the first bevel gear 81 to rotate. The first bevel gear 81 does not need to be driven by additional driving equipment to rotate, thereby reducing the production cost of the equipment.

[0031] When in use, the reagent cartridge is installed in the sample rack 2, and after being fixed, the driving member 1 is started by remote control. The driving member 1 rotates to drive the rotating shaft 4, the rotating frame 5 and the sample rack 2 to rotate. After the driving member 1 rotates forward for a certain period of time, it switches to reverse rotation for a certain period of time, and the reagent cartridge flips and oscillates following the forward and reverse rotation of the driving member 1;

[0032] The rotation of the rotating shaft 4 drives the driven gear 71 and the transmission gear 73 to rotate, the rotation of the transmission gear 73 drives the transmission shaft 72 and the second bevel gear 74 to rotate, the rotation of the second bevel gear 74 drives the first bevel gear 81, the rotating rod 82, the fixed rod 83 and the moving block 84 to rotate, the moving block 84 rotates to make a circular motion, and the moving block 84 slides in the sliding groove 86, so the moving block 84 drives the fixed bar 85 and the sample rack 2 to reciprocate horizontally in the rotating frame 5;

[0033] When the sample rack 2 reciprocates horizontally in the rotating frame 5 , the first slider 10 slides on the first slider 11 , and the second slider 12 slides on the second slider 13 .

[0034] Meanwhile, the contents not described in detail in this specification belong to the prior art known to those skilled in the art.

[0035] It should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the referred device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present invention.

[0036] In addition, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of the features. In the description of the present utility model, the meaning of "plurality" is at least two, such as two, three, etc., unless otherwise clearly and specifically defined.

[0037] In the present invention, unless otherwise clearly specified and limited, the terms "installed", "connected", "connected", "fixed" and the like should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral one; it can be a mechanical connection, an electrical connection, or communication with each other; it can be a direct connection, or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements, unless otherwise clearly defined. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0038] In the present utility model, unless otherwise clearly specified and limited, a first feature being "above" or "below" a second feature may mean that the first and second features are in direct contact, or the first and second features are in indirect contact through an intermediate medium. Moreover, a first feature being "above", "above" or "above" a second feature may mean that the first feature is directly above or obliquely above the second feature, or simply means that the first feature is higher in level than the second feature. A first feature being "below", "below" or "below" a second feature may mean that the first feature is directly below or obliquely below the second feature, or simply means that the first feature is lower in level than the second feature.

[0039] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes within the technical scope disclosed by the present invention according to the technical scheme and the utility model concept of the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A tumbling oscillator, comprising a driving member (1) and a sample holder (2), characterized in that: The invention also comprises a base (3), wherein the driving member (1) is mounted on the base (3) via a mounting frame, a rotating shaft (4) is mounted on one end of the output shaft of the driving member (1), and one end of the rotating shaft (4) penetrates and extends to the outside of the base (3), the outer periphery of the rotating shaft (4) is rotatably connected to the penetration point of the base (3), a rotating frame (5) is mounted on the side of the rotating shaft (4) away from the driving member (1), the sample rack (2) slides in the rotating frame (5), and a moving mechanism (6) is arranged on the rotating frame (5), and the moving mechanism (6) is used to drive the sample rack (2) to slide back and forth in the rotating frame (5).

2. The flip oscillator according to claim 1, characterized in that: The moving mechanism (6) comprises a conducting member (7) and a moving member (8).

3. The flip oscillator according to claim 2, characterized in that: The moving member (8) comprises a first bevel gear (81), and the first bevel gear (81) is rotatably connected to the rotating frame (5); the transmitting member (7) is used for driving the first bevel gear (81) to rotate; a rotating rod (82) is mounted on the first bevel gear (81); a fixed rod (83) is mounted on the rotating rod (82); a moving block (84) is mounted on the fixed rod (83); a fixing bar (85) is mounted on the sample rack (2); a sliding groove (86) is formed on the fixing bar (85); and the moving block (84) slides along the groove direction of the sliding groove (86).

4. The flip oscillator according to claim 2, characterized in that: The transmission member (7) comprises a driven gear (71), the driven gear (71) is sleeved on the rotating shaft (4), and the driven gear (71) and the rotating shaft (4) are fixedly connected, a transmission shaft (72) passes through the rotating frame (5), and the connection between the transmission shaft (72) and the rotating frame (5) is rotatably connected, a transmission gear (73) is installed at one end of the transmission shaft (72), and the transmission gear (73) and the driven gear (71) are meshed with each other, and a second bevel gear (74) is installed at the other end of the transmission shaft (72), and the second bevel gear (74) and the first bevel gear (81) are meshed with each other.

5. The flip oscillator according to claim 1, characterized in that: It also comprises a base (9), on which the base (3) is mounted.

6. The flip oscillator according to claim 1, characterized in that: Two first sliders (10) are installed on both sides of the sample rack (2); two first slide bars (11) are installed in the rotating frame (5); the two first sliders (10) are sleeved on the first slide bars (11); the two first sliders (10) slide along the first slide bars (11); two second sliders (12) are installed on both sides of the sample rack (2); two second slide bars (13) are installed in the rotating frame (5); the two second sliders (12) are sleeved on the second slide bars (13); the two second sliders (12) slide along the second slide bars (13).

Citation Information

Patent Citations

  • Overturning oscillator

    CN211098755U