Support for stirring of organic carriers
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-29
- Publication Date
- 2026-08-11
AI Technical Summary
由于电钻工作时产生的高频振动,配合搅拌桨遇到的物料阻力,极易造成设备滑脱,这不仅造成电钻本体损坏,更可能引发人员机械伤害
[0009]在一种变型中,在锁定位置中锁定装置的扣片抵靠万向轮,从而限制万向轮的移动,并且在解锁位置中锁定装置的扣片远离万向轮,从而允许万向轮的移动。该自动锁定机构有效防止搅拌过程中的意外移动,使得操作安全性显著提升。
Smart Images

Figure CN224613737U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a support for a mixing device, and more particularly to a support for mixing organic carriers. Background Technology
[0002] In traditional handheld electric drill mixing operations, the operator needs to hold the drill and insert it directly into the mixing container to mix materials. This operating mode has several technical defects and safety hazards. First, there is a significant risk to equipment stability. Due to the high-frequency vibration generated by the drill during operation, combined with the resistance of the material encountered by the mixing blade, the equipment is prone to slippage, which not only damages the drill itself but may also cause mechanical injury to personnel. Second, serious problems are exposed in terms of operational safety. When mixing highly viscous materials, the high-speed rotating mixing blade will produce centrifugal splashing, which can cause environmental pollution or burns to personnel. Third, ergonomic defects lead to low efficiency. The operator needs to bend over and apply pressure continuously, which is a major cause of operator fatigue, and the uniformity of mixing will decrease as the working time increases. Finally, there are also defects in process quality. Because it is difficult to maintain constant downward pressure and verticality manually, the mixture may stratify or agglomerate.
[0003] This traditional operating method not only poses safety hazards but also has low operating efficiency, making it difficult to meet the quality and efficiency requirements of modern production. Utility Model Content
[0004] To solve the above-mentioned technical problems, this utility model provides a support for stirring organic carriers, comprising: a vertical rod; a drill fixing device that can slide up and down along the vertical rod and is provided with a height adjustment device for adjusting the height of the drill fixing device relative to the vertical rod and a slot for fixing the drill; a clamping mechanism including a pair of clamping devices; a caster wheel; and a locking device including a latch plate that can move between a locked position for locking the caster wheel and an unlocked position for unlocking the caster wheel; wherein the drill fixing device is further provided with a detection device for detecting the working or non-working state of the drill, and the locking device further includes a drive mechanism and a reset mechanism. When the detection device detects that the drill is in a working state, the drive mechanism drives the latch plate to move to the locking position to lock the caster wheel, and when the detection device detects that the drill is in a non-working state, the reset mechanism resets the latch plate to the unlocked position. The bracket according to this utility model fixes the material bucket with a clamping device, and the fastener automatically moves to the locking position to lock the casters when the electric drill is in operation, which can significantly improve safety performance and effectively prevent the bracket from moving accidentally during the mixing process. In addition, the electric drill fixing device of the bracket can also eliminate the risk of electric drill slippage in traditional hand operation and avoid muscle fatigue caused by operators holding the electric drill for a long time. The adjustable clamping mechanism is compatible with various sizes of material buckets, which can realize quick switching between different working scenarios and significantly optimize work efficiency. The compact structure design of the bracket is suitable for the needs of working in narrow workshop spaces.
[0005] In one variation, the clamping mechanism is constructed as a telescopic rod. This design allows the clamping mechanism to be adapted to various sizes of hoppers and is easy to operate.
[0006] In one variation, the support includes a first rod at the bottom of the vertical rod, arranged perpendicularly to the vertical rod and extending laterally. The support also includes a second and a third rod, parallel to each other and extending perpendicularly to the first rod, on the same horizontal plane. This structure significantly improves the stability and operability of the support, further effectively preventing accidents during stirring. In another variation, a clamping mechanism is connected to the second and third rods and arranged perpendicular to them and parallel to the first rod. This structure allows for easier operation of the clamping mechanism and improves clamping stability. In yet another variation, the second and third rods are constructed as telescopic rods. This structure allows for a more compact support structure, adapting to operational needs in different spaces.
[0007] In one variation, the clamping mechanism includes a handle, which, when rotated, allows adjustment of the spacing between the clamping devices. This design allows for easier adjustment of the spacing between the clamping devices to accommodate various sizes of material buckets, enabling rapid switching between different operating scenarios. Furthermore, in another variation, the clamping devices are located at the ends of the clamping mechanism and are configured in a V-shape to secure and clamp the material bucket. This design allows for more convenient and stable clamping of the material bucket, improving operational safety.
[0008] In one variation, the slot of the drill holder mates with the shape of the drill's locking block, thereby securing the drill to the drill holder. Furthermore, the drill holder is detachable. The design of the slot and locking block of the drill holder makes the installation and removal of the drill relative to the drill holder very convenient, enabling rapid switching between different work scenarios.
[0009] In one variation, in the locked position, the locking device's latch abuts against the caster wheel, thereby restricting the caster wheel's movement; and in the unlocked position, the locking device's latch moves away from the caster wheel, thereby allowing the caster wheel to move. This automatic locking mechanism effectively prevents accidental movement during the mixing process, significantly improving operational safety.
[0010] The support according to this invention significantly improves safety, effectively prevents accidental movement during mixing, eliminates the risk of the electric drill slipping during traditional handheld operation, and avoids muscle fatigue caused by prolonged drill holding. Furthermore, the support is compatible with various sizes of material containers, enabling rapid switching between different work scenarios and significantly optimizing work efficiency. Its compact design adapts to the needs of working in confined workshop spaces. These innovative designs make the support according to this invention significantly superior to traditional mixing equipment or mixing supports in terms of safety, work efficiency, and ease of movement, making it particularly suitable for the high-standard operational requirements of modern production workshops. Attached Figure Description
[0011] One or more embodiments are illustrated by way of example in the corresponding accompanying drawings. These illustrative descriptions do not constitute a limitation on the embodiments. Elements having the same reference numerals in the drawings represent similar elements. Unless otherwise stated, the figures in the drawings are not to be limited by scale.
[0012] Figure 1 This is a front view of the support for stirring organic carriers according to the present invention.
[0013] Figure 2 This is a rear view of the support for stirring organic carriers according to the present invention;
[0014] Figure 3This is a schematic block diagram of the electric drill fixing device according to the present utility model;
[0015] Figure 4 This is a schematic block diagram of the locking device according to the present invention;
[0016] Figure 5 This is a schematic diagram of a support frame for stirring organic carriers according to the present invention, equipped with an electric drill.
[0017] Figure 6 This is a schematic diagram of the support for stirring an organic carrier according to the present invention in the stirring state. Detailed Implementation
[0018] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the various embodiments of this utility model will be described in detail below with reference to the accompanying drawings. The following detailed description of the embodiments of this utility model provided in the accompanying drawings is not intended to limit the scope of the claimed utility model, but merely to illustrate selected embodiments of the utility model. The technical solutions claimed by this utility model can be implemented even without these technical details and various variations and modifications based on the following embodiments.
[0019] In the description of this utility model, the terms "first," "second," and "third" are used only to describe features and should not be construed as indicating or implying relative importance, or implicitly indicating the number of indicated technical features, or implicitly indicating the sequential relationship of the indicated technical features. Furthermore, in the description of this utility model, the terms "front" and "rear," "left" and "right," and "upper" are used only to describe features and should not be construed as indicating or implying the positional relationship of these technical features.
[0020] In the description of this utility model, unless otherwise explicitly defined, terms such as "provided," "set up," "connected," and "linked" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this utility model in conjunction with the specific content of the technical solution.
[0021] This utility model relates to a support for stirring organic carriers, which can be used, for example, in the stirring process of organic carriers in the production of photovoltaic silver paste, and can also be used in other chemical scenarios that require small-batch liquid stirring, such as stirring electronic pastes, coatings or other chemical products.
[0022] like Figures 1 to 6 As shown, the support 1 for stirring organic carriers according to the present invention includes a vertical rod 10, an electric drill fixing device 12, a clamping mechanism 20, casters 30 set at the bottom of the support 1, and a locking device 40.
[0023] At least a portion of the vertical rod 10 is provided with threads 11. Preferably, the vertical rod 10 is provided with threads 11 along one-third of its length. Preferably, the vertical rod 10 is provided with threads 11 along half its length.
[0024] The drill holder 12 is arranged on the vertical rod 10 and can slide up and down along the vertical rod 10. Preferably, the drill holder 12 slides along the threaded portion 11 of the vertical rod 10 to adjust the height of the drill holder 12 relative to the vertical rod 10. The drill holder 12 is provided with a height adjustment device 13 for adjusting the height of the drill holder relative to the vertical rod. The threaded structure of the vertical rod 10 and the height adjustment device 13 of the drill holder 12 cooperate to allow the height of the drill holder 12 and the drill to be freely adjusted according to the operator's height or usage scenario. The drill holder 12 is also provided with a slot 14 for fixing the drill 2. The drill 2 can be fixed by placing it into the slot 14 of the drill holder 12. The drill holder 12 is also provided with a detection device 15 for detecting the working or non-working state of the drill 2. In one embodiment, the drill holder 12 also includes an internal thread that matches the thread 11 of the vertical rod 10 and an external knob. The engagement position of the internal thread of the drill fixing device 12 with the thread 11 of the vertical rod 10 can be adjusted by rotating the external knob, thereby making it very convenient to adjust the height of the drill fixing device 12 and the drill 2 relative to the vertical rod 10. Figure 3 A schematic block diagram of a drill fixing device 12 is shown, which includes a height adjustment device 13, a slot 14, and a detection device 15.
[0025] In one embodiment, the drill fixing device 12 further includes an angle adjustment device for adjusting the offset angle of the slot 14 of the drill fixing device 12 relative to the longitudinal direction (i.e., the length direction of the vertical rod 10). By adjusting the offset angle of the slot 14 relative to the longitudinal direction of the vertical rod 10, the user can freely adjust the working posture of the drill according to actual work requirements, without changing the clamp or relying on other auxiliary tools, significantly improving the uniformity of mixing. In addition, the angle adjustment function enables the drill fixing device to adapt to various complex working conditions, solving the limitation of traditional fixing devices that only support a single vertical direction, and expanding the application scenarios of the drill in confined spaces or at non-standard angles.
[0026] The clamping mechanism 2 includes a pair of clamping devices 21 and is adjustable to accommodate buckets 3 of different diameters. When dealing with buckets of larger diameters, the clamping mechanism 2 can be adjusted so that the distance between the two clamping devices 21 is greater; when dealing with buckets of smaller diameters, the clamping mechanism 2 can be adjusted so that the distance between the two clamping devices 21 is closer. Therefore, the adjustability of the clamping mechanism 2 allows it to be adapted to buckets of various sizes.
[0027] Preferably, four casters 30 are provided at the bottom of the bracket 1, which can improve the ease of movement of the bracket. Optionally, multiple grooves are provided on the casters 30, which can be evenly arranged on a part or the entire periphery of the casters 30.
[0028] The locking device 40 includes a latch 41 movable between a locked position for locking the caster wheel 30 and an unlocked position for unlocking the caster wheel 30. When the latch 41 is abutting against the caster wheel 30, it is in the locked position. When the latch 41 is moving away from the caster wheel 30, it is in the unlocked position. The locking device 40 also includes a drive mechanism 42 for moving the latch 41 to the locked position and a reset mechanism 43 for returning the latch 41 to the unlocked position. Figure 4 A schematic block diagram of a locking device 40 is shown, which includes a latch 41, a drive mechanism 42, and a reset mechanism 43.
[0029] The electric drill fixing device 12 is equipped with a detection device 15 for detecting the working or non-working state of the electric drill 2. The locking device 40 also includes a drive mechanism 42 and a reset mechanism 43, such as... Figure 3 and Figure 4 As shown. When the detection device 15 detects that the electric drill 2 is in a working state, the drive mechanism 42 drives the latch 41 to automatically move to the locking position to lock the caster 30. When the detection device 15 detects that the electric drill 2 is in a non-working state, the reset mechanism 43 causes the latch 41 to automatically reset to the unlocked position. Therefore, the cooperation of the detection device 15, the drive mechanism 42, and the reset mechanism 43 ensures that when the electric drill 2 is in a working state, i.e., when the electric drill 2 is stirring an organic carrier, the caster 30 is locked to prevent accidental movement of the caster 30, thereby improving safety. In one variation, the detection device 15 is configured as a sensor, and its method of detecting the working or non-working state of the electric drill 2 is known; for example, when the electric drill 2 is detected to be in a stirring operation, it is considered to be in a working state; when the electric drill 2 is detected to have stopped stirring, it is considered to be in a non-working state. In one variation, the drive mechanism 42 is configured as an actuator to drive the latch 41 to move to the locking position to lock the caster 30. It is worth noting that other suitable drive mechanisms are also readily conceivable. In one variation, the reset mechanism 43 is configured as a spring for automatically resetting the latch 41 to the unlocked position to allow free movement of the caster wheel 30. It is worth noting that other suitable reset mechanisms are also readily conceivable.
[0030] In one embodiment, the bracket according to the present invention further includes a control unit, which is electrically connected to the detection device 15 of the electric drill fixing device 12 on one hand, and to the drive mechanism 42 and reset mechanism 43 of the locking device 40 on the other hand. The control unit is configured to activate the drive mechanism 42 or reset mechanism 43 of the locking device 40 accordingly based on the working or non-working state of the electric drill 2 detected by the detection device 15. Therefore, once the electric drill 2 is in the working state, the automatic locking mechanism according to the present invention can immediately lock the caster 30, effectively preventing the caster 30 from moving accidentally during the stirring process, thus significantly improving operational safety. And once the electric drill 2 is in the non-working state, the automatic locking mechanism according to the present invention can immediately unlock the caster 30, allowing the caster to move freely, improving the convenience and operability of the bracket.
[0031] In one embodiment, the clamping mechanism 20 is configured as a telescopic rod, which allows the clamping mechanism to be adapted to various sizes of buckets and is easy to operate.
[0032] In one embodiment, the bracket 1 includes a first rod 101 at the bottom of the vertical rod 10, which is arranged perpendicularly to the vertical rod 10 and extends laterally. Preferably, the vertical rod 10 is located at the middle position of the first rod 101. Preferably, the vertical rod 10 and the first rod 101 are fixedly connected by welding or screws, or the vertical rod 10 and the first rod 101 are integrally formed. The bracket 1 also includes a second rod 102 and a third rod 103 that are parallel to each other, are on the same horizontal plane as the first rod 101, and extend perpendicularly to the first rod 101. Preferably, the second rod 102 extends perpendicularly to the first rod 101 in a longitudinal direction from one end of the first rod 101, and the third rod 103 extends perpendicularly to the first rod 101 in a longitudinal direction from the other end of the first rod 101. Preferably, the first rod 101 is located at two-thirds or three-quarters of the distance between the second rod 102 and the third rod 103. Preferably, the first rod 101 is fixedly connected to the second rod 102 and the third rod 103 by welding or screws, or the first rod 101 is integrally formed with the second rod 102 and the third rod 103. The interconnection and positional relationship of the vertical rod 10, the first rod 101, the second rod 102, and the third rod 103 allow for improved operational convenience and clamping stability of the clamping mechanism while maintaining the compact structural design of the support, further effectively preventing accidental collapse or unintentional movement of the support during the mixing process. Further, in a variation, the clamping mechanism 20 is connected to the second rod 102 and the third rod 103 and arranged perpendicular to the second rod 102 and the third rod 103 and parallel to the first rod 101. In a further variation, the second rod 102 and the third rod 103 are constructed as telescopic rods, further enhancing the compact structure of the support and adapting to operational needs in different spaces.
[0033] In one embodiment, the clamping mechanism 20 includes a handle 22, which allows for adjustment of the spacing between the clamping devices 21. This enables more convenient adjustment of the spacing between the clamping devices to accommodate various sizes of buckets, facilitating rapid switching between different operational scenarios. Further, in a variant, the clamping devices 21 are located at the ends of the clamping mechanism 20 and configured in a figure-eight shape to fix and clamp the bucket 3. This allows for more convenient and stable clamping of the bucket, improving operational safety. In another variant, the clamping mechanism 20 also includes a target detection unit for detecting the bucket and a control unit for controlling the spacing between the clamping devices 21. When a bucket is placed between the clamping devices 21, the clamping mechanism 20 detects the presence of the bucket and transmits the detected bucket size information to the control unit. Based on the detected bucket size information, the control unit automatically adjusts and controls the spacing between the clamping devices 21 to fix the bucket for mixing operations.
[0034] In one embodiment, the slot 14 of the drill holder 12 is designed to mate with the shape of the drill block of the drill 2, thereby securing the drill 2 to the drill holder 12. In a variant, the drill holder 12 is detachable. This design allows the drill to be easily removed from the support, enabling quick switching between different work scenarios. In another variant, the inner wall of the slot 14 of the drill holder 12 is provided with multiple circumferential grooves, which further match the drill block and increase the friction between them, thereby making the drill holder 12 more securely secure the drill 2.
[0035] In one embodiment, in the locked position, the latch 41 of the locking device 40 abuts against the caster 30, thereby restricting the movement of the caster 30, and in the unlocked position, the latch 41 of the locking device 40 moves away from the caster, thereby allowing the caster 30 to move. This automatic locking mechanism effectively prevents accidental movement during the mixing process, significantly improving operational safety.
[0036] like Figure 5 As shown, the electric drill 2 is mounted on the electric drill fixing device 12, and its height can be adjusted by moving the electric drill fixing device 12 up and down along the threaded portion of the vertical rod 10. When the height is properly adjusted, the height adjustment device 13 of the electric drill fixing device 12 fixes the electric drill fixing device 12 and the electric drill together to the vertical rod 10. The electric drill 2 can be fixed to the electric drill fixing device 12 by inserting its locking block into the locking slot 14 of the electric drill fixing device 12. The electric drill 2 includes a stirring rod at its lower part, and the stirring rod includes a triangular stirring component at its lower end, which helps to improve the uniformity and efficiency of stirring.
[0037] Figure 6A schematic diagram of the support for stirring organic carriers according to the present invention in the stirring state is shown. During use, the operator first places the bucket 3 containing the organic carrier on the platform of the support 1, and then rotates the hand 22 to adjust the distance between the clamping devices 21 of the clamping mechanism 20 until the clamping devices 21 contact and fix the bucket 3. Further, the operator inserts the electric drill 2 into the slot 14 of the electric drill fixing device 12, and then adjusts and fixes the height of the electric drill fixing device 12 and the electric drill relative to the bucket 3 below using the height adjustment device of the electric drill fixing device 12. Further still, the operator connects the electric drill 2 to the power supply and starts the electric drill. The electric drill begins stirring. At this time, the detection device 15 on the electric drill fixing device 12 detects the working status of the electric drill 2 and transmits the detected working status signal to the drive mechanism 42 of the locking device 40. In response to the received working status signal, the drive mechanism 42 of the locking device 40 drives the latch 41 to automatically move to the locking position to lock the caster wheel 30. When mixing is complete, the operator stops the electric drill. At this time, the detection device 15 detects that the electric drill 2 is in a non-working state and transmits the detected non-working state signal to the reset mechanism 43 of the locking device 40. In response to the received non-working state signal, the reset mechanism 43 of the locking device 40 automatically resets the latch 41 to the unlocked position, thereby restoring the free movement of the caster wheel 30.
[0038] The applicant conducted comparative tests on 10 groups of identical materials in the standardized environment of the HPT production base, using both traditional methods and the support according to this invention. The test results showed that the traditional method involved longer mixing times and posed risks of splashing and equipment displacement. Using the support according to this invention, the single mixing operation time was reduced from 15 minutes to 9 minutes, the mixing efficiency was increased by 40%, and the incidence of accidents such as material splashing and equipment detachment was reduced by 90%, significantly enhancing operational stability.
[0039] Therefore, the bracket according to this utility model, by fixing the material bucket with a clamping device and automatically moving the fastener to the locking position to lock the caster when the electric drill is in operation, can significantly improve safety performance and effectively prevent accidental movement during the mixing process. In addition, the electric drill fixing device of the bracket can also eliminate the risk of electric drill slippage in traditional hand operation and avoid muscle fatigue caused by prolonged holding of the electric drill by the operator. The adjustable clamping mechanism is compatible with various sizes of material buckets, enabling quick switching between different work scenarios and significantly optimizing work efficiency. The compact structure design of the bracket is suitable for the needs of working in narrow workshop spaces.
[0040] The above description is merely a preferred embodiment of this utility model and is not intended to limit the scope of this utility model. Various modifications and variations can be made to this utility model by those skilled in the art. All embodiments of this utility model can be combined with each other, and any such combination falls within the protection scope of the claims of this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A support (1) for stirring an organic carrier, characterized in that, include: Vertical rod (10); The electric drill fixing device (12) slides up and down along the vertical rod (10) and is provided with a height adjustment device (13) and a slot (14) for fixing the electric drill (2). A clamping mechanism (20) including a pair of clamping devices (21); 30; The locking device (40) includes a latch (41) movable between a locked position for locking the caster wheel (30) and an unlocked position for unlocking the caster wheel (30); The electric drill fixing device (12) is provided with a detection device (15) for detecting the working or non-working state of the electric drill (2). The locking device (40) further includes a drive mechanism (42) and a reset mechanism (43). When the detection device (15) detects that the electric drill (2) is in a working state, the drive mechanism (42) drives the latch (41) to move to the locking position. When the detection device (15) detects that the electric drill (2) is in a non-working state, the reset mechanism (43) resets the latch (41) to the unlock position.
2. The bracket (1) according to claim 1, characterized in that, The clamping mechanism (20) is configured as a telescopic rod.
3. The bracket (1) according to claim 1, characterized in that, The bracket (1) includes a first rod (101) at the bottom of the vertical rod (10) that is arranged vertically relative to the vertical rod (10) and extends laterally. The bracket (1) also includes a second rod (102) and a third rod (103) that are parallel to each other, are on the same horizontal plane as the first rod (101) and extend perpendicularly to the first rod (101).
4. The bracket (1) according to claim 3, characterized in that, The clamping mechanism (20) is connected to the second rod (102) and the third rod (103) and is arranged to be perpendicular to the second rod (102) and the third rod (103) and parallel to the first rod (101).
5. The bracket (1) according to claim 3, characterized in that, The second rod (102) and the third rod (103) are constructed as telescopic rods.
6. The bracket (1) according to claim 1, characterized in that, The clamping mechanism (20) includes a handle (22), which can adjust the spacing between the clamping devices (21) of the clamping mechanism (20) by rotating the handle (22).
7. The bracket (1) according to claim 6, characterized in that, The clamping device (21) is located at the end of the clamping mechanism (20) and is configured in a figure-eight shape to fix and clamp the bucket (3).
8. The bracket (1) according to claim 1, characterized in that, The slot (14) of the electric drill fixing device (12) is used to cooperate with the shape of the locking block of the electric drill (2) to fix the electric drill (2) on the electric drill fixing device (12).
9. The bracket (1) according to claim 8, characterized in that, The electric drill fixing device (12) is detachable.
10. The bracket (1) according to claim 1, characterized in that, In the locked position, the latch (41) of the locking device (40) abuts against the caster (30), thereby restricting the movement of the caster (30), and in the unlocked position, the latch (41) of the locking device (40) moves away from the caster (30), thereby allowing the movement of the caster (30).