Diamond micro-powder drying device
By designing a diamond micro powder drying device that includes a material collection, stirring, and pore-refining mechanism, the problems of low efficiency and poor steam dissipation in existing devices have been solved, achieving efficient steam discharge and stable operation of the device.
Patent Information
- Application Number
- CN202422843090.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-21
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-11-21
AI Technical Summary
The existing diamond micron powder drying equipment has unsatisfactory drying efficiency and effect, lacks steam emission devices, and has incomplete anti-clogging measures for steam emission pipelines.
A diamond micro powder drying device was designed, which includes a material receiving mechanism, a stirring mechanism, a pore-removing mechanism, and a heating box. The stirring structure driven by a motor ensures uniform heating, the pore-removing mechanism enables steam discharge, and a pore-clearing component is equipped to automatically clean the pores.
This improved the efficiency and effectiveness of diamond powder drying, ensured smooth steam discharge, prevented pipe blockage, and achieved efficient steam dissipation and normal operation of the equipment.
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Figure CN223448833U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to processing machinery technical field especially, relates to a diamond micro powder drying device. BACKGROUND
[0002] Diamond micro powder has wide application in industrial field, for example is used as abrasive, coating, cutting tool etc. The quality and performance of diamond micro powder directly influence the quality and cost of final product. In the production process of diamond micro powder, it is usually needed to separate it from suspension and dry to obtain dry powder product. This process needs to remove water efficiently and uniformly to avoid micro powder agglomeration or quality loss;
[0003] The existing diamond micro powder drying device generally has very simple and efficient feeding device for conveying the suspension or wet material containing diamond micro powder to the inside of drying device. The feeding device usually includes conveying belt, screw conveyor etc. to ensure that the liquid enters the drying area uniformly;
[0004] But the existing diamond micro powder drying device only simply heats when drying, so that the efficiency and effect of drying are not ideal, in addition, the traditional diamond micro powder drying device lacks steam emission and the pipeline anti-blocking measure for steam emission is not complete, therefore a diamond micro powder drying device is provided to solve the above problems. UTILITY MODEL CONTENT
[0005] In order to make up for the above shortage, the utility model provides a diamond micro powder drying device, aims at improving the problems of the existing technology that the drying efficiency and effect are not ideal, lacking steam emission device and the pipeline anti-blocking measure for steam emission is not complete.
[0006] In order to achieve the above object, the utility model adopts the following technical scheme: a diamond micro-powder drying device, including material receiving mechanism, one side of material receiving mechanism is connected with stirring mechanism slidingly, the lower end of stirring mechanism is fixedly connected with heating box, both sides upper portions of stirring mechanism are fixedly connected with porous mechanism, the stirring mechanism includes box, the upper end one side of box is opened and has feeding port, the side of feeding port is rotatably connected with lid through hundred-petal page, the upper end one side of lid is fixedly connected with handle, one side of box is fixedly connected with right circular plate, the other side of box is fixedly connected with left circular plate, the middle part of one side of left circular plate is fixedly connected with motor one, the output of motor one is fixedly connected with straight rod, a plurality of fixed rods are uniformly and equidistantly fixedly connected on straight rod, one end of a plurality of fixed rods is fixedly connected with wedge-shaped stirring block, the arc-shaped end of wedge-shaped stirring block is close to the inner wall of box, one end of straight rod is connected in the middle part of one side of left circular plate slidingly, the other end of straight rod is connected in the middle part of one side of right circular plate slidingly, the upper side of the middle part of one side of left circular plate is fixedly connected with valve air inlet hole, the upper end of one side of left circular plate is fixedly connected on porous mechanism, the upper end of one side of right circular plate is fixedly connected on porous mechanism, the bottom end of the middle part of one side of right circular plate is connected in material receiving mechanism slidingly, one end of the lower side of material receiving mechanism is connected in the middle part of one side of heating box upper end slidingly.
[0007] The material collecting mechanism ensures that the dried diamond powder can be collected, and the stirring mechanism ensures that the device has higher efficiency and better effect on drying the diamond powder. The heating box ensures the heat required by the device for drying the diamond powder. The hole clearing mechanism ensures that the water vapor released during drying can be discharged and can be automatically cleaned out of the air hole, ensuring the normal discharge of water vapor to ensure the normal operation of the device for drying the diamond powder. The box provides a drying space for the diamond powder to be dried. The feeding port ensures that the diamond powder to be dried can be put into the device. The cover ensures the slow loss of heat during the drying process and ensures the safety of the device users. The handle ensures that the cover is more convenient to open and close. The right circular plate ensures the sealing of the device and provides a sliding connection position for the material collecting mechanism to ensure normal discharge. The left circular plate ensures the sealing of the device and also provides a fixed position for the motor and the air inlet hole with valve. The motor drives the straight rod, the fixed rod and the wedge-shaped stirring block to rotate. The motor drives the straight rod to rotate, the straight rod drives the fixed rod to rotate, and the fixed rod drives the wedge-shaped stirring block to rotate. The rotation of the wedge-shaped stirring block ensures that the diamond powder can be stirred during the heating process, so that the diamond powder is evenly heated and the evaporation of moisture is accelerated. The air inlet hole with valve ensures that the pressure in the device is appropriate when the material collecting mechanism is working. The upper end of one side of the left circular plate is fixedly connected to the hole clearing mechanism, and the upper end of one side of the right circular plate is fixedly connected to the hole clearing mechanism, so that the water vapor can enter the hole clearing mechanism. The middle bottom of one side of the right circular plate is slidingly connected to the material collecting mechanism to ensure the discharge operation.
[0008] As a further description of the above technical solution: the material collecting mechanism includes a discharge port, the discharge port is slidingly connected to one side of the right circular plate, the outer middle of the discharge port is fixedly connected with a sliding ring, the inner side of the discharge port is fixedly connected with a blocking plate at one end, the outer side of the sliding ring is slidingly connected with a sliding groove ring, one side of the sliding groove ring is fixedly connected to the right circular plate, and the lower end of the discharge port is slidingly connected to the middle upper end of one side of the heating box.
[0009] The discharge port ensures that the dried diamond powder can enter the collection box, the sliding ring ensures the normal rotation of the discharge port, the sliding groove ring is fixed to the right circular plate to ensure the stability of the discharge port during rotation. The blocking plate is fixed to the discharge port and rotates with the discharge port. During the drying operation of the diamond powder, the discharge port is rotated, the blocking plate blocks the discharge hole at the middle lower end of one side of the right circular plate, prevents the un-dried diamond powder from entering the discharge port, and collects the dried diamond powder, so as to ensure the dryness of the collected diamond powder;
[0010] Further as a further description of the above technical solutions: the other side of the discharge port is slidingly connected with a collecting box, a filter screen is fixedly connected to the middle of one side of the collecting box, and a negative pressure machine is fixedly connected to one end of the filter screen.
[0011] The collecting box ensures that the collected diamond micro-powder has a place to be placed, and the filter screen can prevent the diamond micro-powder from entering the negative pressure machine when the dry diamond micro-powder is collected. Secondly, the negative pressure machine ensures that the air is extracted, and in the case that the valve air inlet hole is opened, the dry diamond micro-powder can flow into the collecting box with the airflow, so as to achieve the purpose of collection.
[0012] Further as a further description of the above technical solutions: the hole-removing mechanism comprises air pipes, a plurality of air pipes are provided, the air pipes on the left side are fixedly connected to the left circular plate, the air pipes on the right side are fixedly connected to the right circular plate, the upper ends of the plurality of air pipes are fixedly connected with a plurality of straight pipes, the upper ends of the plurality of straight pipes are fixedly connected with a plurality of hole-equipped air diffusers, a plurality of limiting strips are fixedly connected to the hole-equipped air diffusers at equal intervals, a hole-removing assembly is arranged on the hole-equipped air diffusers, the hole-removing assembly is slidingly connected to the limiting strips, and a plurality of valves are arranged on the plurality of straight pipes.
[0013] The air pipes can suck the water vapor in the stirring mechanism into the straight pipes. The straight pipes can guide the water vapor into the hole-equipped air diffusers, so that the water vapor is released out of the device. The valves ensure that the water vapor in the hole-equipped air diffusers flows back when the dry diamond micro-powder is collected, which affects the dry diamond micro-powder. The hole-equipped air diffusers ensure that the water vapor can be diffused. The hole-removing assembly cleans the air outlets on the hole-equipped air diffusers to ensure normal exhaust. The limiting strips ensure that the hole-removing assembly can move stably on the hole-equipped air diffusers and cannot rotate.
[0014] Further as a further description of the above technical solutions: the hole-removing assembly comprises a first air cylinder, a cotton plug is fixedly connected to the lower end of the first air cylinder, a fixed plate is fixedly connected to the upper end of the first air cylinder, and a large gear is fixedly connected to one side of the fixed plate.
[0015] The first air cylinder can drive the cotton plug to stretch and retract, ensuring that the air outlets on the hole-equipped air diffusers are cleaned. The first air cylinder provides a fixed position for the cotton plug, and the cotton plug can directly clean the air outlets on the hole-equipped air diffusers under the cooperation of the first air cylinder. The fixed plate ensures that the first air cylinder has a suitable fixed position. The large gear ensures that the fixed plate, the first air cylinder, and the cotton plug can rotate, ensuring that the cotton plug can clean every air outlet on the hole-equipped air diffusers.
[0016] As a further description of the above technical scheme: one side of the large gear is provided with a T-shaped sliding groove, the lower end of the large gear is connected with a pinion, one end of the pinion is fixedly connected with a motor two, the pinion is fixedly connected at the output end of the motor two, the upper end of the motor two is fixedly connected with a shell two, a plurality of slide rods are fixedly connected on one side of the shell two, and one end of the slide rod is slidably connected on the T-shaped sliding groove.
[0017] The T-shaped sliding groove and the slide rod are slidably connected, so that the large gear can normally rotate and move left and right. The pinion can drive the large gear to rotate, and the motor two can provide power for the rotation of the pinion. The shell two can provide a fixing point for some parts, so that the parts attached thereto can normally work. The slide rod ensures that the large gear, the fixed plate, the air cylinder one and the tampon can move along the hole-dispersing air pipe, so that the hole-dispersing air pipe can be cleaned;
[0018] As a further description of the above technical scheme: one side of the shell two is fixedly connected with a shell one, the shell two and the shell one are axisymmetric, a plurality of groove ones are formed on one side of the shell one, a plurality of groove twos are formed on one side of the shell one, a plurality of groove ones are formed on one end of the shell two, a plurality of groove twos are formed on one side of the shell two, a groove three is formed on the lower end of one side of the shell one, and a groove three is formed on the lower end of the shell two. The upper side of the plurality of groove ones is fixedly connected with a plurality of dampers, the outer side of the plurality of dampers is provided with a plurality of springs, and the plurality of springs are fixedly connected at the upper end of the plurality of groove ones.
[0019] The shell one can provide a fixing point for some parts, so that the parts attached thereto can normally work. The shell two and the shell one are axisymmetric, so that the positions of the groove twos, the groove ones and the groove threes are the same, and the parts fixed on the groove twos, the groove ones and the groove threes belong to the same part but different positions of the same part. The groove one provides a position for the fixation of the damper and the spring, and the groove one provides a movement space for the damper, the spring, the slide rod one and the anti-skid wheel one. The spring and the damper ensure that the dredging assembly can still move relatively smoothly when there is foreign matter on the hole-dispersing air pipe, and play a certain damping role. The slide rod one ensures the rotation of the anti-skid wheel one and a relatively stable rotation point. The anti-skid wheel one ensures that the dredging assembly can move along the hole-dispersing air pipe, so that the tampon can clean the hole-dispersing air pipe;
[0020] As a further description of the above technical scheme: one end of the plurality of springs is fixedly connected on the plurality of slide rods one, the middle part of the plurality of slide rods one is slidably connected with a plurality of anti-skid wheels one, and one end of the plurality of anti-skid wheels one is close to the hole-dispersing air pipe.
[0021] The sliding rod guarantees the rotation of the anti-skid wheel one and a relatively stable rotation point, and guarantees the normal rotation of the anti-skid wheel one. The anti-skid wheel one guarantees that the dredging assembly can move along the hole air pipe, so that the tampon can clean the air holes on the hole air pipe. One end of the anti-skid wheel one is close to the hole air pipe, so that the anti-skid wheel one can drive the dredging assembly to move along the hole air pipe.
[0022] As a further description of the above technical solution: a plurality of said groove two is fixedly connected with a plurality of air cylinders two, one end of a plurality of said air cylinders two is fixedly connected with a plurality of arc-shaped sliding blocks, the recess on one side of a plurality of said arc-shaped sliding blocks is slidably connected in the limiting strip.
[0023] The air cylinder two can appropriately adjust the pressure between the arc-shaped sliding block and the limiting strip, so that the tampon will not sway when cleaning the air holes on the hole air pipe. The arc-shaped sliding block and the limiting strip jointly play a limiting role, so that the dredging assembly will not rotate when moving along the hole air pipe.
[0024] As a further description of the above technical solution: one end of said groove three is fixedly connected with a motor three, the output end of said motor three is fixedly connected with an anti-skid wheel two, one side of said anti-skid wheel two is close to the hole air pipe.
[0025] The groove three guarantees that the motor three has a fixed place, so that the anti-skid wheel two has space to rotate. The motor three provides power for the rotation of the anti-skid wheel two, and the rotation of the anti-skid wheel two drives the dredging assembly to move along the hole air pipe.
[0026] The utility model has the advantages of the following beneficial effects:
[0027] 1、The utility model discloses a motor one structure drives straight rod, fixed rod, wedge-shaped stirring piece structure work to the effect that the efficiency of diamond micro powder drying is higher and the effect is better under the action of heating box, negative pressure machine, filter screen, valve inlet hole and box.
[0028] 2、The utility model discloses under the cooperation of left circular plate, right circular plate, air pipe, straight pipe and valve structure, make hole air pipe work, solve the traditional device lacks the device that discharges steam.
[0029] 3、The utility model discloses in the dredging assembly, motor three drives anti-skid wheel two to move, air cylinder one drives tampon to move, motor two drives pinion and gear to move, under the action of sliding rod, T -shaped sliding slot, sliding rod one, spring, damper and air cylinder two and arc -shaped sliding block, realize the effect that the exhaust pipe of device can clean up automatically. DRAWINGS
[0030] Figure 1 The utility model proposes a kind of overall front view of diamond micro powder drying device;
[0031] Figure 2 The overall side view of the diamond micro-powder drying device is shown in the utility model;
[0032] Figure 3 The overall top view of the diamond micro-powder drying device is shown in the utility model;
[0033] Figure 4 The overall exploded view of the diamond micro-powder drying device is shown in the utility model;
[0034] Figure 5 The partial structure schematic view of the diamond micro-powder drying device is shown in the utility model;
[0035] Figure 6 The overall schematic view of the material collecting mechanism of the diamond micro-powder drying device is shown in the utility model;
[0036] Figure 7 The overall exploded view of the material collecting mechanism of the diamond micro-powder drying device is shown in the utility model;
[0037] Figure 8 The overall exploded view of the stirring mechanism of the diamond micro-powder drying device is shown in the utility model;
[0038] Figure 9 The overall schematic view of the hole dredging mechanism of the diamond micro-powder drying device is shown in the utility model;
[0039] Figure 10 The overall exploded view of the hole dredging mechanism of the diamond micro-powder drying device is shown in the utility model;
[0040] Figure 11 The overall schematic view of the dredging assembly of the diamond micro-powder drying device is shown in the utility model;
[0041] Figure 12 The overall exploded view of the dredging assembly of the diamond micro-powder drying device is shown in the utility model;
[0042] Figure 13 The partial schematic view of the dredging mechanism of the diamond micro-powder drying device is shown in the utility model;
[0043] Figure 14 The Figure 12 The enlarged view of B in the middle;
[0044] Figure 15 The blocking plate schematic view of the diamond micro-powder drying device is shown in the utility model;
[0045] Figure 16 TheFigure 15 Enlarged view of the middle A.
[0046] Legend:
[0047] 1, receiving mechanism; 101, negative pressure machine; 102, filter screen; 103, collection box; 104, chute ring; 105, discharge port; 106, slide ring; 107, blocking plate; 2, stirring mechanism; 201, box body; 202, right circular plate; 203, cover; 204, handle; 205, wedge-shaped stirring block; 206, straight rod; 207, fixed rod; 208, air inlet hole with valve; 209, motor one; 210, left circular plate; 211, feed inlet; 3, hole dredging mechanism; 301, air pipe; 302, straight pipe; 303, perforated air pipe; 304, limiting strip; 305, dredging assembly; 3051, shell one; 3052, groove one; 3053, groove two; 3054, slide bar; 3055, motor two; 3056, pinion; 3057, gear; 3058, T-shaped slide; 3059, fixed plate; 3060, air cylinder one; 3061, damper; 3062, spring; 3063, anti-skid wheel one; 3064, slide rod one; 3065, anti-skid wheel two; 3066, motor three; 3067, air cylinder two; 3068, arc-shaped slide block; 3069, groove three; 3070, cotton plug; 3071, shell two; 306, valve; 4, heating box. DETAILED DESCRIPTION
[0048] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0049] Reference Figures 1-4 , Figure 8The utility model provides a kind of embodiment: a kind of diamond micro-powder drying device, including material receiving mechanism 1, the one side of material receiving mechanism 1 is slidably connected with stirring mechanism 2, the lower end of stirring mechanism 2 is fixedly connected with heating box 4, the upper portion of the both sides of stirring mechanism 2 is fixedly connected with porous mechanism 3, stirring mechanism 2 includes box 201, the upper end one side of box 201 is equipped with feed inlet 211, the one side of feed inlet 211 is rotatably connected with lid 203 by hundred-petal page, the upper end one side of lid 203 is fixedly connected with handle 204, the one side of box 201 is fixedly connected with right circular plate 202, the other side of box 201 is fixedly connected with left circular plate 210, the middle part of the one side of left circular plate 210 is fixedly connected with motor one 209, the output of motor one 209 is fixedly connected with straight rod 206, a plurality of fixed rods 207 are fixedly connected with on straight rod 206 equidistantly and uniformly, the one end of a plurality of fixed rods 207 is fixedly connected with wedge-shaped stirring block 205, the arc-shaped end of wedge-shaped stirring block 205 is close to the inner wall of box 201, the one end of straight rod 206 is slidably connected in the middle part of the one side of left circular plate 210, the other end of straight rod 206 is slidably connected in the middle part of the one side of right circular plate 202, the upper side of the middle part of the one side of left circular plate 210 is fixedly connected with valve air inlet hole 208, the one side upper end of left circular plate 210 is fixedly connected on porous mechanism 3, the one side upper end of right circular plate 202 is fixedly connected on porous mechanism 3, the middle part bottom end of the one side of right circular plate 202 is slidably connected on material receiving mechanism 1, the one end of the lower side of material receiving mechanism 1 is slidably connected in the middle part upper end of heating box 4.
[0050] The material collecting mechanism 1 ensures that the dried diamond powder can be collected, the stirring mechanism 2 ensures that the device has higher efficiency and better effect on drying the diamond powder. The heating box 4 ensures the heat required by the device for drying the diamond powder. The porous mechanism 3 ensures that the water vapor released during drying can be discharged, and can automatically clean the air holes, ensures the normal discharge of water vapor, so as to ensure the normal operation of the device for drying the diamond powder. The box body 201 provides a drying space for the diamond powder to be dried. The feeding port 211 ensures that the diamond powder to be dried can be put into the device. The cover 203 ensures the slow loss of heat during the drying process, and can also ensure the safety of the device users. The handle 204 can ensure that the cover 203 is opened and closed more conveniently. The right circular plate 202 ensures the sealing of the device, and also provides a sliding connection position for the material collecting mechanism 1, ensuring the normal discharge. The left circular plate 210 ensures the sealing of the device, and also provides a fixed position for the motor 209 and the valve air inlet hole 208. The motor 209 provides power for the rotation of the straight rod 206, the fixed rod 207 and the wedge-shaped stirring block 205. The motor 209 drives the straight rod 206 to rotate, the straight rod 206 drives the fixed rod 207 to rotate, the fixed rod 207 drives the wedge-shaped stirring block 205 to rotate, and the wedge-shaped stirring block 205 rotates to ensure that the diamond powder can be stirred during the heating process, so that the diamond powder is evenly heated and the evaporation of moisture is accelerated. The valve air inlet hole 208 ensures that the pressure in the device is appropriate when the material collecting mechanism 1 is working. The left side of the left circular plate 210 is fixedly connected to the porous mechanism 3, and the right side of the right circular plate 202 is fixedly connected to the porous mechanism 3, so that the water vapor can enter the porous mechanism 3. The right side of the right circular plate 202 is slidably connected to the material collecting mechanism 1 at the middle bottom, ensuring the discharge of the material collecting mechanism 1;
[0051] Reference Figures 5-12, the receiving mechanism 1, including the discharge port 105, the discharge port 105 is slidably connected on the right circular plate 202 on one side, the outer side of the discharge port 105 is fixedly connected with the slide ring 106 in the middle, the inner side of the discharge port 105 is fixedly connected with the blanking plate 107 on one end, the outer side of the slide ring 106 is slidably connected with the chute ring 104, the chute ring 104 is fixedly connected on one side of the right circular plate 202, the lower side of the discharge port 105 is slidably connected on the upper end of the middle of one side of the heating box 4. As a further description of the above technical solution: the other side of the discharge port 105 is slidably connected with the collecting box 103, the upper middle of one side of the collecting box 103 is fixedly connected with the filter screen 102, one end of the filter screen 102 is fixedly connected with the negative pressure machine 101. The porous mechanism 3, including the air pipe 301, the air pipe 301 is provided with a plurality of, the left air pipe 301 is fixedly connected on the left circular plate 210, the right air pipe 301 is fixedly connected on the right circular plate 202, the upper end of the plurality of air pipes 301 is fixedly connected with a plurality of straight pipes 302, the upper end of the plurality of straight pipes 302 is fixedly connected with a porous air pipe 303, the porous air pipe 303 is fixedly connected with a limiting strip 304 at equal intervals, the porous air pipe 303 is provided with a dredging assembly 305, the dredging assembly 305 is slidably connected on the limiting strip 304, and a plurality of valves 306 are arranged on the plurality of straight pipes 302. The dredging assembly 305, including the air cylinder one 3060, the lower end of the air cylinder one 3060 is fixedly connected with the tampon 3070, the upper end of the air cylinder one 3060 is fixedly connected with the fixed plate 3059, one side of the fixed plate 3059 is fixedly connected with the large gear 3057. One side of the large gear 3057 is provided with a T-shaped sliding groove 3058, the lower end of the large gear 3057 is engagedly connected with the small gear 3056, one end of the small gear 3056 is fixedly connected with the motor two 3055, the small gear 3056 is fixedly connected on the output end of the motor two 3055, the upper end of the motor two 3055 is fixedly connected with the shell two 3071, a plurality of slide rods 3054 are fixedly connected at equal intervals on one side of the shell two 3071, one end of the slide rod 3054 is slidably connected on the T-shaped sliding groove 3058. One side of the shell two 3071 is fixedly connected with the shell one 3051, the shell two 3071 and the shell one 3051 are axisymmetric, a plurality of grooves one 3052 are formed on one side of the shell one 3051, a plurality of grooves two 3053 are formed on one side of the shell one 3051, a plurality of grooves one 3052 are formed on one end of the shell two 3071, a plurality of grooves two 3053 are formed on one side of the shell two 3071, a groove three 3069 is formed on the lower end of one side of the shell one 3051, a groove three 3069 is formed on the lower end of the shell two 3071, a plurality of dampers 3061 are fixedly connected on the upper side of the plurality of grooves one 3052, a plurality of springs 3062 are arranged on the outer side of the plurality of dampers 3061, and the plurality of springs 3062 are fixedly connected on the upper end of the plurality of grooves one 3052.
[0052] The blocking plate 107 is fixed on the discharge port 105, when the discharge port 105 rotates, the blocking plate 107 also rotates, when the drying of the diamond powder is carried out, the discharge port 105 is rotated, the blocking plate 107 blocks the discharge hole on the right side of the middle lower end of the right circular plate 202, prevents the un-dried diamond powder from entering the discharge port 105, and ensures the dryness of the collected diamond powder. The air pipe 301 can suck the water vapor in the stirring mechanism 2 into the straight pipe 302. The discharge port 105 ensures that the dried diamond powder can enter the collection box 103, the sliding ring 106 ensures the normal rotation of the discharge port 105, the sliding groove ring 104 is fixed on the right circular plate 202, and the stability of the discharge port 105 is ensured when it rotates. The collection box 103 ensures that the collected diamond powder has a place to be placed, and the filter screen 102 can prevent the diamond powder from entering the negative pressure machine 101 when collecting the dried diamond powder. Secondly, the negative pressure machine 101 ensures that the air is sucked, and under the condition that the valve air inlet hole 208 is opened, the dried diamond powder can flow into the collection box 103 with the airflow, so as to achieve the purpose of collection. The straight pipe 302 can guide the water vapor into the hole air pipe 303, so that the water vapor is released from the device. The hole air pipe 303 ensures that the water vapor can be released. The dredging assembly 305 cleans the air outlet hole on the hole air pipe 303, and ensures the normal exhaust. The limiting strip 304 ensures that the dredging assembly 305 can move stably on the hole air pipe 303 and cannot rotate. The air cylinder one 3060 can drive the cotton plug 3070 to expand and contract, and ensure that the air outlet hole on the hole air pipe 303 is cleaned. The air cylinder one 3060 provides a fixed position for the cotton plug 3070, and the cotton plug 3070 can directly clean the air outlet hole on the hole air pipe 303 under the cooperation of the air cylinder one 3060. The fixed plate 3059 ensures that the air cylinder one 3060 has a suitable fixed position. The valve 306 ensures that the water vapor in the hole air pipe 303 returns when the dried diamond powder is collected, which affects the dried diamond powder. The T-shaped sliding groove 3058 is connected with the sliding rod 3054, which ensures the normal rotation of the large gear 3057 and can achieve the purpose of moving left and right. The small gear 3056 can drive the large gear 3057 to rotate, and the motor two 3055 can provide power for the rotation of the small gear 3056. The shell two 3071 can provide a fixed point for some parts, so that the parts attached thereto can work normally. The large gear 3057 ensures that the fixed plate 3059, the air cylinder one 3060 and the cotton plug 3070 can rotate, and the cotton plug 3070 can clean every air outlet hole on the hole air pipe 303. The sliding rod 3054 ensures that the large gear 3057, the fixed plate 3059, the air cylinder one 3060 and the cotton plug 3070 can move along the hole air pipe 303, so that every air outlet hole on the hole air pipe 303 can be cleaned.The shell one 3051 can provide fixing points for some parts, so that the parts attached thereto can work normally. The shell two 3071 and the shell one 3051 are axisymmetric, ensuring that the positions of the groove two 3053, the groove one 3052 and the groove three 3069 are the same, ensuring that the parts fixed on the groove two 3053, the groove one 3052 and the groove three 3069 belong to the same part, only different positions of the same part. The groove one 3052 provides a position for the fixing of the damper 3061 and the spring 3062, and the groove one 3052 provides a movement space for the damper 3061, the spring 3062, the slide rod one 3064 and the anti-skid wheel one 3063. The spring 3062 and the damper 3061 ensure that the unclogging assembly 305 can still move normally and stably when there is foreign matter on the hole-porous air pipe 303, and play a certain damping role. The slide rod one 3064 ensures the rotation of the anti-skid wheel one 3063 and has a relatively stable rotation point. The anti-skid wheel one 3063 ensures that the unclogging assembly 305 can move along the hole-porous air pipe 303, so that the tampon 3070 can clean the air holes on each hole-porous air pipe 303.
[0053] With reference to Figures 11-16 , as a further description of the above technical solution: one end of the plurality of springs 3062 is fixedly connected to the plurality of slide rods one 3064, the middle part of the plurality of slide rods one 3064 is slidably connected with the plurality of anti-skid wheels one 3063, one end of the plurality of anti-skid wheels one 3063 is close to the hole-porous air pipe 303. The plurality of groove two 3053 is fixedly connected with the plurality of air cylinders two 3067, one end of the plurality of air cylinders two 3067 is fixedly connected with the plurality of arc-shaped sliding blocks 3068, and the recess on one side of the plurality of arc-shaped sliding blocks 3068 is slidably connected to the limiting strip 304. One end of the groove three 3069 is fixedly connected with the motor three 3066, the output end of the motor three 3066 is fixedly connected with the anti-skid wheel two 3065, and one side of the anti-skid wheel two 3065 is close to the hole-porous air pipe 303.
[0054] The anti-skid wheel 3063 ensures that the dredging assembly 305 can move along the perforated air pipe 303, so that the cotton plug 3070 can clean the air holes on each perforated air pipe 303. The anti-skid wheel 3063 has a relatively stable rotation point to ensure normal rotation of the anti-skid wheel 3063. One end of the anti-skid wheel 3063 is in close contact with the perforated air pipe 303, so that the anti-skid wheel 3063 can drive the dredging assembly 305 to move along the perforated air pipe 303. The arc-shaped sliding block 3068 and the limiting strip 304 jointly function as a limiting mechanism to ensure that the dredging assembly 305 does not rotate when moving along the perforated air pipe 303. The groove three 3069 ensures that the motor three 3066 has a fixed place, and ensures that the anti-skid wheel two 3065 has space to rotate. The air cylinder two 3067 can appropriately adjust the pressure between the arc-shaped sliding block 3068 and the limiting strip 304, so that the cotton plug 3070 does not sway when cleaning the air holes on the perforated air pipe 303. The motor three 3066 provides power for the rotation of the anti-skid wheel two 3065, and the rotation of the anti-skid wheel two 3065 drives the dredging assembly 305 to move along the perforated air pipe 303.
[0055] Working principle: hold the handle 204 to open the cover 203, add the diamond micro powder to be handled to the feeding port 211, hold the handle 204 to close the cover 203. Open the heating box 4, and the heating box 4 is heated for the device, open the motor 1 209, and let the motor 1 209 drive the straight rod 206, the fixed rod 207 and the wedge-shaped stirring block 205 to rotate. The rotation of the wedge-shaped stirring block 205 stirs the diamond micro powder, so that the diamond micro powder is evenly heated, and the drying effect is accelerated. When the diamond micro powder is dried, the fan in the air pipe 301 can exhaust the water vapor in the device. The water vapor enters the hole air pipe 303 through the straight pipe 302, and is then exhausted. The limiting strip 304 slides with the arc-shaped sliding block 3068, so that the dredging assembly 305 can move along the hole air pipe 303. In addition, the limiting strip 304 is also clamped with the arc-shaped sliding block 3068, so that the dredging assembly 305 cannot rotate. The cotton plug 3070 can clean the air holes on the hole air pipe 303 to prevent the air holes from being blocked and affecting the exhaust of water vapor. Opening the air cylinder 1 3060 ensures that the cotton plug 3070 can be retracted with the air cylinder 1 3060, without affecting the rotation of the T-shaped sliding groove 3058, so that more air holes on the hole air pipe 303 can be cleaned. Open the motor 2 3055, and the motor 2 3055 drives the pinion 3056 to rotate, and the pinion 3056 drives the gear 3057 to rotate. The rotation of the gear 3057 can ensure that the cotton plug 3070 can clean every air hole on the hole air pipe 303. Open the motor 3 3066, and the motor 3 3066 drives the anti-skid wheel 2 3065 to rotate, so that the dredging assembly 305 can move along the hole air pipe 303. Open the air cylinder 2 3067, and let the arc-shaped sliding block 3068 press the limiting strip 304, so that the device will not shake when the cotton plug 3070 is cleaning the air holes on the hole air pipe 303. The damper 3061 and the spring 3062 can reduce the shaking of the dredging assembly 305 when the dredging assembly 305 passes through a place with stains. When the diamond micro powder is processed, the discharge port 105 is rotated, the blocking plate 107 and the discharge hole in the middle of the bottom of the box body 201 are staggered, the switch valve on the valve air inlet hole 208 is opened, the valve 306 is closed, and the water vapor is prevented from flowing back when the negative pressure machine 101 is opened. Open the negative pressure machine 101 to start collecting the dried diamond micro powder.
[0056] Finally, it should be pointed out that the above-mentioned is only the preferred embodiment of the present application, and is not used to limit the present application, although the present application has been described in detail with reference to the foregoing embodiments, and for those skilled in the art, the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced, and any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application should be included in the protection scope of the present application.
Claims
1. A diamond powder drying device, comprising a material receiving mechanism (1), characterized in that: One side of the material receiving mechanism (1) is slidably connected to a stirring mechanism (2), the lower end of the stirring mechanism (2) is fixedly connected to a heating box (4), and the upper parts of both sides of the stirring mechanism (2) are fixedly connected to pore-forming mechanisms (3), and the stirring mechanism (2) comprises a box body (201), a feeding port (211) is provided on one side of the upper end of the box body (201), a cover (203) is rotatably connected to one side of the feeding port (211) through a hinge, and a handle (204) is fixedly connected to one side of the upper end of the cover (203), a right circular plate (202) is fixedly connected to one side of the box body (201), a left circular plate (210) is fixedly connected to the other side of the box body (201), a motor (209) is fixedly connected to the middle part of one side of the left circular plate (210), and a straight rod (206) is fixedly connected to the output end of the motor (209), and the straight rod (206) A plurality of fixed rods (207) are evenly and evenly fixedly connected at equal intervals on the upper side, one end of each of the fixed rods (207) is fixedly connected to a wedge-shaped stirring block (205), the arc-shaped end of the wedge-shaped stirring block (205) is in close contact with the inner wall of the box body (201), one end of the straight rod (206) is slidably connected to the middle of one side of the left circular plate (210), and the other end of the straight rod (206) is slidably connected to the middle of one side of the right circular plate (202), and the left circular plate ( An air inlet hole with a valve (208) is fixedly connected to the upper middle side of one side of the left circular plate (210), an upper end of one side of the left circular plate (210) is fixedly connected to the hole-clearing mechanism (3), an upper end of one side of the right circular plate (202) is fixedly connected to the hole-clearing mechanism (3), a bottom end of one side of the middle part of the right circular plate (202) is slidably connected to the material receiving mechanism (1), and a lower end of the material receiving mechanism (1) is slidably connected to the upper middle end of one side of the heating box (4).
2. The diamond powder drying device according to claim 1, characterized in that: The material receiving mechanism (1) includes a discharge port (105), one side of the discharge port (105) is slidably connected to the right circular plate (202), a sliding ring (106) is fixedly connected to the middle part of the outer side of the discharge port (105), an inner end of the discharge port (105) is fixedly connected to a blocking plate (107), the outer side of the sliding ring (106) is slidably connected to a chute ring (104), one side of the chute ring (104) is fixedly connected to the right circular plate (202), and the lower end of the discharge port (105) is slidably connected to the upper end of the middle part of one side of the heating box (4).
3. The diamond powder drying device according to claim 2, characterized in that: The other side of the discharge port (105) is slidably connected to a collection box (103), a filter screen (102) is fixedly connected to the upper middle portion of one side of the collection box (103), and one end of the filter screen (102) is fixedly connected to a negative pressure machine (101).
4. The diamond powder drying device according to claim 1, characterized in that: The dredging mechanism (3) comprises a vent pipe (301), wherein a plurality of vent pipes (301) are provided. The left vent pipe (301) is fixedly connected to the left circular plate (210), and the right vent pipe (301) is fixedly connected to the right circular plate (202). The upper ends of the plurality of vent pipes (301) are fixedly connected to a plurality of straight pipes (302), and the upper ends of the plurality of straight pipes (302) are fixedly connected to a porous air diffusion pipe (303). The porous air diffusion pipe (303) is evenly and evenly fixedly connected to a limit strip (304). A dredging assembly (305) is provided on the porous air diffusion pipe (303), and the dredging assembly (305) is slidably connected to the limit strip (304). The plurality of straight pipes (302) are provided with a plurality of valves (306).
5. The diamond powder drying device according to claim 4, characterized in that: The dredging component (305) includes a cylinder (3060), the lower end of the cylinder (3060) is fixedly connected to a cotton plug (3070), the upper end of the cylinder (3060) is fixedly connected to a fixed plate (3059), and one side of the fixed plate (3059) is fixedly connected to a large gear (3057).
6. The diamond powder drying device according to claim 5, characterized in that: A T-shaped slot (3058) is provided on one side of the large gear (3057), and a small gear (3056) is meshedly connected to the lower end of the large gear (3057), and one end of the small gear (3056) is fixedly connected to the second motor (3055), and the small gear (3056) is fixedly connected to the output end of the second motor (3055). The upper end of the second motor (3055) is fixedly connected to the second housing (3071), and a plurality of sliding rods (3054) are evenly and equidistantly fixedly connected to one side of the second housing (3071), and one end of the sliding rod (3054) is slidably connected to the T-shaped slot (3058).
7. The diamond powder drying device according to claim 6, characterized in that: One side of the shell 2 (3071) is fixedly connected to the shell 1 (3051), the shell 2 (3071) and the shell 1 (3051) are axially symmetrical, one side of the shell 1 (3051) is provided with a plurality of grooves 1 (3052), one side of the shell 1 (3051) is provided with a plurality of grooves 2 (3053), one end of the shell 2 (3071) is provided with a plurality of grooves 1 (3052), and one side of the shell 2 (3071) is provided with a plurality of grooves 2 (3053). A plurality of grooves (3053) are provided on the lower end of one side of the shell one (3051), a groove three (3069) is provided on the lower end of the shell two (3071), a plurality of dampers (3061) are fixedly connected to the upper side of the plurality of grooves (3052), a plurality of springs (3062) are provided on the outer sides of the plurality of dampers (3061), and the plurality of springs (3062) are fixedly connected to the upper ends of the plurality of grooves (3052).
8. The diamond powder drying device according to claim 7, characterized in that: The lower ends of the plurality of dampers (3061) are fixedly connected to the plurality of slide bars (3064), one end of the plurality of springs (3062) is fixedly connected to the plurality of slide bars (3064), the middle parts of the plurality of slide bars (3064) are slidably connected to the plurality of anti-skid wheels (3063), and one end of the plurality of anti-skid wheels (3063) is tightly attached to the diffuser pipe (303) with holes.
9. The diamond powder drying device according to claim 7, characterized in that: A plurality of cylinders (3067) are fixedly connected to the plurality of grooves (3053), a plurality of arc-shaped sliders (3068) are fixedly connected to one end of the plurality of cylinders (3067), and a groove on one side of the plurality of arc-shaped sliders (3068) is slidably connected to the limit bar (304).
10. The diamond powder drying device according to claim 7, characterized in that: One end of the slot three (3069) is fixedly connected to the motor three (3066), and the output end of the motor three (3066) is fixedly connected to the anti-slip wheel two (3065), and one side of the anti-slip wheel two (3065) is closely attached to the perforated air diffusion pipe (303).