Drying device for steel ball machining
By designing the rotating motor and diverter plate structure in the drying box, we ensure that the steel balls come into contact with the drying gas one by one, solving the problem of incomplete drying of steel balls in the existing device, and achieving efficient steel ball drying effect.
Patent Information
- Application Number
- CN202421794113.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-26
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-07-26
AI Technical Summary
The existing steel ball processing and drying equipment cannot guarantee the overall drying quality of the steel balls, and cannot achieve orderly drying one by one, resulting in low drying efficiency.
A device including a drying box, inner concave plate, ventilation duct, hot air fan, rotary electric machine and diverter plate is designed. Dry gas is sprayed through the hot air fan, and the rotary electric machine is used to drive the diverter plate to rotate, so that the steel balls pass through the ventilation duct one by one and fully contact with the drying gas. Combined with the design of the slope and baffle, it ensures that each steel ball can be fully dried and discharged easily.
The complete drying of steel balls is achieved one by one, the drying efficiency is improved, the uniform contact and efficient drying of each steel ball is ensured, and the easiest discharge is provided.
Smart Images

Figure CN223307246U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of steel ball processing, in particular to a drying device used for steel ball processing. Background Art
[0002] Steel balls are important basic components, especially precision industrial steel balls, which play a huge role in the development of the national economy. Under some special conditions, steel balls made of special materials are often needed to complete the functions required in different environments. Some of these special steel balls have been widely used in various fields of the national economy. Their promotion and application have not only promoted the development of the steel ball production industry, but also promoted the technological development and scientific and technological progress of related industries. In the processing of steel balls, the surface of the steel balls is often cleaned and descaled. After cleaning, a drying device is needed to carry out timely drying treatment; some existing drying devices for steel ball processing are to move the steel balls in the drying box to make them contact with the drying gas, which cannot guarantee the overall drying quality of the steel balls and cannot dry the steel balls one by one in an orderly manner, which is not conducive to the drying efficiency of the steel balls. Utility Model Content
[0003] In view of this, the utility model provides a drying device for steel ball processing, which can realize the drying operation of steel balls one by one, ensure that the steel balls are dried thoroughly, and improve the drying efficiency of the steel balls.
[0004] In order to solve the above technical problems, the utility model provides a drying device for steel ball processing, comprising a drying box, wherein a drying assembly is provided inside the drying box;
[0005] The drying assembly includes an inner concave plate arranged inside the drying box, a ventilation pipe is connected to the bottom end of the inner concave plate, and ventilation holes are evenly distributed on the surface of the ventilation pipe. A hot air blower is arranged on the outer side of the drying box, and a connecting pipe is arranged on the inner side wall of the drying box. The connecting pipe is connected to the hot air blower, and a plurality of blowing ports are evenly arranged on the inner side surface of the connecting pipe. A rotating motor is arranged on the outer side of the drying box, and a rotating rod is fixedly connected to the output rod of the rotating motor. A uniformly distributed diverter plate is arranged on the surface of the rotating rod. The diverter plate is located on the bottom side of the ventilation pipe. When the steel balls are being dried, the staff can start the hot air blower to allow the drying gas to pass through The blowing port on the connecting pipe sprays out air to preheat and dry the inside of the drying box. The steel balls will fall down into the ventilation pipe one by one through the middle of the inner concave plate. The drying gas ejected from the blowing port can fully contact the steel balls through the ventilation holes to dry the surface of the steel balls. As the steel balls continue to fall into the ventilation pipe, the staff can start the rotating motor to make the rotating rod drive the diverter plate to rotate, push out the steel balls on the upper side of the diverter plate, and make the steel balls in the ventilation pipe continue to fall between the two upper diverter plates after rotation, so that the steel balls can be pushed out one by one, ensuring that each steel ball can be fully contacted by the drying gas, which is conducive to the thorough drying of the steel balls.
[0006] A feed pipe is provided at the upper end of the drying box, and the staff can pour the steel balls into the drying box through the feed pipe. A discharge pipe is provided at the bottom end of the drying box, and a discharge valve is provided on the surface of the discharge pipe. The staff can open the discharge valve and the steel balls will be discharged outward through the discharge pipe.
[0007] Two baffles are provided on the surface of the rotating rod, and the diverter plate is located between the two baffles. The baffles can prevent the steel balls from rolling out through both sides of the diverter plate and can limit the steel balls on the diverter plate.
[0008] An inclined platform is provided on the bottom side of the drying box. The dried steel balls will fall onto the inclined plate, which facilitates the discharge of the steel balls.
[0009] The inclined platform and the concave plate are both set inward, and the surface of the concave plate is provided with evenly distributed grooves. The steel balls fall onto the surface of the concave plate, and the drying gas will pass through the grooves to perform preliminary drying operations on the steel balls.
[0010] Support legs are provided at the four corners of the bottom of the drying box.
[0011] In summary, compared with the prior art, this application has at least one of the following beneficial technical effects:
[0012] 1. When the utility model is used, the steel balls can be dried one by one, which ensures that the steel balls are dried thoroughly and improves the drying efficiency of the steel balls.
[0013] 2. When the utility model is used, two baffles are provided on the surface of the rotating rod, and the diverter plate is located between the two baffles. The baffles can prevent the steel balls from rolling out through both sides of the diverter plate and can limit the steel balls on the diverter plate.
[0014] 3. When the utility model is used, an inclined platform is provided on the bottom side of the drying box. The dried steel balls will fall onto the inclined plate, which facilitates the discharge of the steel balls.
[0015] 4. When the utility model is used, the inclined platform and the inner concave plate are both set to be concave inward, and the surface of the inner concave plate is provided with evenly distributed grooves. The steel balls fall onto the surface of the inner concave plate, and the drying gas will pass through the grooves to perform preliminary drying operations on the steel balls. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a structural diagram of the utility model;
[0017] Figure 2 It is a schematic structural diagram of the front side section of the present invention;
[0018] Figure 3 This is a detailed cross-sectional structural diagram of the drying component of the present invention;
[0019] Figure 4 It is a schematic structural diagram of the upper side section of the present invention.
[0020] Explanation of the accompanying reference numerals: 100, drying box; 201, feed pipe; 202, discharge pipe; 203, discharge valve; 300, drying assembly; 301, concave plate; 302, ventilation pipe; 303, ventilation hole; 304, hot air blower; 305, connecting pipe; 306, blowing port; 307, rotating motor; 308, rotating rod; 309, diverter plate; 400, baffle; 500, groove; 600, inclined platform; 700, supporting leg. DETAILED DESCRIPTION
[0021] In order to make the purpose, technical solutions and advantages of the embodiment of the present invention clearer, the following will be combined with the appended drawings of the embodiment of the present invention. Figure 1-4 , clearly and completely describing the technical solutions of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. Based on the described embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field fall within the scope of protection of the present invention.
[0022] According to one embodiment of the present invention, Figure 2 、 Figure 3 and Figure 4As shown: This embodiment provides a drying device for steel ball processing, including a drying box 100, wherein a drying assembly 300 is provided inside the drying box 100;
[0023] The drying assembly 300 includes an inner concave plate 301 arranged inside the drying box 100, the bottom end of the inner concave plate 301 is connected to a ventilation pipe 302, the surface of the ventilation pipe 302 is provided with evenly distributed ventilation holes 303, a hot air blower 304 is provided on the outer surface of the drying box 100, a connecting pipe 305 is provided on the inner side wall of the drying box 100, the connecting pipe 305 is connected to the hot air blower 304, a plurality of blowing ports 306 are evenly provided on the inner side surface of the connecting pipe 305, a rotating motor 307 is provided on the outer surface of the drying box 100, a rotating rod 308 is fixedly connected to the output rod of the rotating motor 307, and a uniformly distributed diverter plate 309 is provided on the surface of the rotating rod 308. The diverter plate 309 is located on the bottom side of the ventilation pipe 302. When the steel balls are being dried, the staff can start The hot air blower 304 is driven to eject drying gas through the nozzle 306 on the connecting pipe 305, preheating and drying the interior of the drying box 100. The steel balls will fall down one by one into the ventilation pipe 302 through the middle of the inner concave plate 301. The drying gas ejected from the nozzle 306 can fully contact the steel balls through the ventilation holes 303, drying the surface of the steel balls. As the steel balls continue to fall into the ventilation pipe 302, the staff can start the rotating motor 307 to make the rotating rod 308 drive the diverter plate 309 to rotate, pushing out the steel balls on the upper side of the diverter plate 309, and making the steel balls in the ventilation pipe 302 continue to fall between the two upper diverter plates 309 after rotation, so that the steel balls can be pushed out one by one, ensuring that each steel ball can be fully contacted by the drying gas, which is conducive to thorough drying of the steel balls.
[0024] According to another embodiment of the present invention, Figure 1 、 Figure 2 and Figure 3As shown, the upper end of the drying box 100 is provided with a feed pipe 201, and the staff can pour the steel balls into the drying box 100 through the feed pipe 201. The bottom end of the drying box 100 is provided with a discharge pipe 202, and the surface of the discharge pipe 202 is provided with a discharge valve 203. The staff can open the discharge valve 203, and the steel balls will be discharged outward through the discharge pipe 202. The surface of the rotating rod 308 is provided with two baffles 400, and the diverter plate 309 is located between the two baffles 400. The baffle 400 can prevent the steel balls from passing through the diverter plate The two sides of 309 roll out to limit the steel balls on the diverter plate 309. An inclined platform 600 is provided on the bottom side of the interior of the drying box 100. The dried steel balls will fall on the inclined plate, which facilitates the discharge of the steel balls. The inclined platform 600 and the concave plate 301 are both recessed inward. The surface of the concave plate 301 is provided with evenly distributed grooves 500. The steel balls fall onto the surface of the concave plate 301, and the drying gas will pass through the grooves 500 to perform preliminary drying operations on the steel balls. Support legs 700 are provided at the four corners of the bottom end of the drying box 100.
[0025] The utility model uses the method as follows: when performing the drying operation of the steel balls, the staff can start the hot air blower 304 to make the drying gas ejected through the nozzle 306 on the connecting pipe 305 to preheat and dry the inside of the drying box 100. Then the staff can pour the steel balls into the drying box 100 through the feeding pipe 201. The steel balls fall to the surface of the inner concave plate 301. The drying gas will pass through the groove 500 to perform a preliminary drying operation on the steel balls. After that, the steel balls will fall down one by one into the ventilation pipe 302 through the middle of the inner concave plate 301. The drying gas ejected from the nozzle 306 can fully contact the steel balls through the ventilation holes 303 to dry the surface of the steel balls. As the steel balls continue to fall into the ventilation pipe 302, the staff can start the rotating motor 307. , so that the rotating rod 308 drives the diverter plate 309 to rotate, pushing out the steel balls on the upper side of the diverter plate 309, and making the steel balls in the ventilation pipe 302 continue to fall between the two upper diverter plates 309 after rotation, so that the steel balls can be pushed out one by one, ensuring that each steel ball can be fully exposed to the drying gas, which is conducive to the thorough drying of the steel balls. The dried steel balls will fall above the inclined plate, and the staff can open the discharge valve 203. With the tilting effect of the inclined plate, the steel balls will be discharged outward through the discharge pipe 202. The baffle 400 can prevent the steel balls from rolling out through the two sides of the diverter plate 309, and can limit the steel balls on the diverter plate 309. The utility model can realize the drying operation of the steel balls one by one, ensure the thorough drying of the steel balls, and improve the drying efficiency of the steel balls.
[0026] The above is a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles described in the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.
Claims
1. A drying device for steel ball processing, comprising a drying box (100), characterized in that: A drying assembly (300) is provided inside the drying box (100); The drying assembly (300) comprises an inner concave plate (301) arranged inside the drying box (100), the bottom end of the inner concave plate (301) is connected to a ventilation pipe (302), the surface of the ventilation pipe (302) is provided with evenly distributed ventilation holes (303), a hot air blower (304) is arranged on the outer surface of the drying box (100), a connecting pipe (305) is arranged on the inner side wall of the drying box (100), the connecting pipe (305) is connected to the hot air blower (304), a plurality of blowing ports (306) are evenly arranged on the inner side surface of the connecting pipe (305), a rotating motor (307) is arranged on the outer surface of the drying box (100), a rotating rod (308) is fixedly connected to the output rod of the rotating motor (307), the surface of the rotating rod (308) is provided with evenly distributed diverter plates (309), and the diverter plates (309) are located on the bottom side of the ventilation pipe (302).
2. A drying device for steel ball processing according to claim 1, characterized in that: The upper end of the drying box (100) is provided with a feed pipe (201), the bottom end of the drying box (100) is provided with a discharge pipe (202), and the surface of the discharge pipe (202) is provided with a discharge valve (203).
3. A drying device for steel ball processing according to claim 1, characterized in that: Two baffles (400) are provided on the surface of the rotating rod (308), and the diverter plate (309) is located between the two baffles (400).
4. A drying device for steel ball processing according to claim 1, characterized in that: An inclined platform (600) is provided on the inner bottom side of the drying box (100).
5. A drying device for steel ball processing according to claim 4, characterized in that: The inclined platform (600) and the inner concave plate (301) are both arranged to be concave inwards, and the surface of the inner concave plate (301) is provided with evenly distributed grooves (500).
6. A drying device for steel ball processing according to claim 1, characterized in that: Support legs (700) are provided at the four corners of the bottom end of the drying box (100).