Tooth-shaped spiral rotor and air compressor with tooth-shaped spiral rotor
By combining the support mechanism, adjustment mechanism, and connection mechanism, the heat and noise problems of the air compressor are solved, temperature regulation and rapid rotor engagement are achieved, and the efficiency and maintenance convenience of the equipment are improved.
Patent Information
- Application Number
- CN202511317606.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-16
- Publication Date
- 2025-11-04
AI Technical Summary
Existing air compressors generate a lot of heat and noise during operation, which can lead to damage to structural components and abnormal cold start. In addition, the toothed helical rotor is difficult to maintain.
It employs a support mechanism, an adjustment mechanism, and a connection mechanism. Through the combination of support rods, top frame, bottom frame, liquid guiding components, and heat guiding components, a temporary storage space and a sealed structure are formed. A micro fan and electric heating wire are used to regulate temperature and noise, and the rotor is quickly engaged by positioning plates.
It effectively reduces noise, regulates temperature, ensures the normal operation of the air compressor, and simplifies the rotor maintenance process.
Smart Images

Figure CN120889746A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the technical field of air compressor equipment, specifically a toothed helical rotor and an air compressor having a toothed helical rotor. Background Technology
[0002] An air compressor is a device that increases the pressure of compressed air by increasing the density of gas molecules; it is a power device that converts mechanical energy into gas pressure energy.
[0003] However, existing air compressors generate a lot of heat during operation, which can easily lead to excessively high ambient temperatures and damage to key structural components. At the same time, excessively low ambient temperatures can also cause abnormalities in the lubricating fluid inside the existing air compressor during cold starts, thus affecting the actual performance of the existing air compressor. In addition, existing air compressors tend to generate a lot of noise during operation, which can affect the surrounding construction environment. Furthermore, the existing toothed spiral rotor requires a relatively precise fit to achieve efficient air compression, making the positioning process cumbersome when replacing or maintaining the rotor, resulting in poor actual performance of the existing toothed spiral rotor. Summary of the Invention
[0004] The purpose of this invention is to provide a toothed helical rotor and an air compressor having the toothed helical rotor.
[0005] The technical solution adopted in this invention is as follows: an air compressor with a toothed helical rotor, comprising: an air compressor body, and further comprising: a support mechanism for providing a stable mounting base, wherein the support mechanism is disposed on the air compressor body; An adjustment mechanism for providing temporary storage space, the adjustment mechanism being disposed on the support mechanism; and A connecting mechanism is used to cooperate with the adjusting mechanism to form a temporary storage space, and the connecting mechanism is disposed on the adjusting mechanism.
[0006] The support mechanism includes a support rod, two support plates, and a support component. Two support rings are threaded to the outer surface of the support rod. The two support plates are slidably sleeved on the outer surface of the support rod. The support component is disposed on the two support plates and the support rod.
[0007] The supporting component includes two support bolts, two push plates, and two pull bars. The two support bolts are rotatably connected to the outer surface of one side of the corresponding support plate, the two push plates are threadedly connected to the outer surface of the corresponding support bolt, and the two pull bars are slidably sleeved on one end of the corresponding push plate. One end of each pull bar is slidably sleeved on the outer surface of the support rod.
[0008] The adjusting mechanism includes a top frame, a bottom frame, a liquid guiding component, and a heat conducting component. The top frame is slidably sleeved on the outer surface of the support rod. A limit bolt is rotatably connected to the top of the top frame. A limit block is threadedly connected to the outer surface of the limit bolt. One side of the outer surface of the limit block is in contact with the outer surface of the support rod. The bottom frame is fixedly connected to the bottom of the top frame. A placement frame is fixedly connected to the inner wall of one side of the bottom frame. Liquid guiding holes are opened on both outer surfaces of the bottom frame. A connecting groove is opened on one side of the outer surface of the bottom frame. A first sealing strip is fixedly connected to one side of the outer surface of the bottom frame by bolts. One side of the first sealing strip extends into the connecting groove. A retaining frame is connected to the other side of the outer surface of the bottom frame. The first sealing frame is slidably inserted into the top of the retaining frame. The liquid guiding component is disposed on the bottom frame. The heat conducting component is disposed on the top frame and the bottom frame.
[0009] The heat-conducting component includes a mounting frame, a micro fan, a heat-conducting sheet, and an electric heating wire. The mounting frame is fixedly connected to the outer surface of one side of the top frame. Multiple micro fans are provided, and all of the micro fans are located inside the mounting frame. Multiple heat-conducting sheets are provided, and all of the heat-conducting sheets extend through the outer surface of the bottom frame. The electric heating wire is fixedly connected to the bottom of the placement frame.
[0010] The liquid guiding component includes a drain frame, a liquid guiding bracket, a spacer ring, and a sound insulation sheet. The drain frame is fixedly connected to the inside of the bottom frame. A drain hole is provided on one side of the drain frame, and the inside of the drain hole is connected to the inside of one of the liquid guiding holes. A drain pipe is provided on the other side of the drain frame, and one end of the drain pipe passes through another liquid guiding hole. The liquid guiding bracket is slidably inserted between the two opposite inner surface walls of the bottom frame, and the top of the liquid guiding bracket is attached to the bottom of the drain frame. The spacer ring is fixedly connected between the two opposite inner surface walls of the bottom frame, and the sound insulation sheet is fixedly connected to the inside of the spacer ring.
[0011] The connecting mechanism includes an extension frame, an extension plate, a bottom tube, a second sealing strip, and a second sealing frame. The extension frame and the extension plate are both fixedly connected to the bottom of the bottom frame by bolts. The bottom tube is fixedly connected between the bottom of the extension frame and the bottom of the extension plate by bolts. The second sealing strip is fixedly connected to the bottom of the first sealing strip by bolts. The second sealing frame is fixedly connected to the bottom of the first sealing frame by bolts.
[0012] The outer surface of one side of the second sealing strip is attached to one end of the extension frame, the outer surface of the other side of the second sealing strip is attached to one end of the extension plate, and the second sealing frame is slidably sleeved between the other end of the extension frame and the extension plate.
[0013] The bottom tube is threaded to a first side plate and a second side plate at both ends, and two liquid guide valves are connected to the bottom of the bottom tube.
[0014] A toothed helical rotor, comprising: The rotor mechanism includes a female rotor, a male rotor, and a positioning plate. A positioning groove is formed on one side of the outer surface of the female rotor, and a positioning groove is also formed on one side of the outer surface of the male rotor. The positioning plate is slidably inserted between the two positioning grooves.
[0015] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are: (1) In this invention, during use, according to the specifications of the air compressor body, the number of support rods is increased or decreased so that the support plates can be located on both sides of the air compressor body. Then, by rotating the support ring, the support ring can squeeze the support plates tightly against both sides of the air compressor body. Then, by rotating the support bolt, the support bolt can cooperate with the push plate and pull bar to pull the support rod close to the air compressor body, so that the support rod can squeeze the top frame to fit against the air compressor body to fix and restrict the position of the support mechanism. At the same time, according to the heat dissipation surface of the air compressor body, the support mechanism, adjustment mechanism and connection mechanism are added so that the interior of the adjacent bottom frame can be connected by the connecting groove and the snap frame, so that the two ends of the adjacent bottom tube can be connected by the snap frame. At the same time, under the action of the extension frame, extension plate and bottom tube, the bottom frame can form a temporary storage space. Then, the first sealing strip, the second sealing strip, the first sealing frame and the second sealing frame connect the connecting groove and the snap frame located on both sides of the bottom frame. The sealing process creates a temporary sealed space between the bottom frame, the first sealing strip, the first sealing frame, the extension frame, the extension plate, the second sealing strip, the second sealing frame, and the bottom pipe. At this point, the existing drainage pipe is connected to the liquid guide valve. Simultaneously, the connection between the liquid guide hole, the drain hole, and the drain pipe allows communication between adjacent drain frames. The existing injection pipe connects the unconnected drain holes and drain pipes on both sides, allowing water to slowly fill the drain frame. The water level inside the drain frame gradually submerges above the top of the drain frame, allowing water to flow along the outer surface of the drain frame to the liquid guide frame. Guided by the liquid guide frame, the overflowing water forms a continuous water curtain. This water curtain reduces noise diffused from the heat dissipation surface of the air compressor body, which has many openings. Furthermore, the sound insulation sheet further reduces noise, preventing a noisy construction environment and improving the actual performance of the air compressor body.
[0016] (2) In this invention, when the internal temperature of the air compressor body is high, the micro fan is started by controlling the flow of air generated by the micro fan, which can quickly remove the excess heat when it flows between adjacent heat-conducting plates. At the same time, under the action of the heat-conducting plates, the excess heat can be transferred to the bottom frame. Then, under the action of the flowing water, the excess heat can be removed simultaneously. When the internal temperature of the air compressor body is low, the liquid valve is closed at the same time, so that the water in the bottom pipe cannot be discharged normally. Then, the water can be stored in the temporary storage space formed between the bottom frame, the first sealing strip, the first sealing frame, the extension frame, the extension plate, the second sealing strip, the second sealing frame, the first side plate, the second side plate and the bottom pipe. Then, the electric heating wire is started by controlling the electric heating wire to heat the water. Then, the heat generated can be transferred to the air compressor body through the heat-conducting plates. At the same time, under the action of the micro fan, the hot air can quickly heat the air around the air compressor body, ensuring that the air compressor body can start and run normally, and enabling the equipment to perform its intended functions efficiently.
[0017] (3) In this invention, the meshing sides of the female rotor and the male rotor can be quickly determined by the position of the positioning groove. Then, the positioning plate allows the female rotor and the male rotor to be closely attached to both sides of the positioning plate through the positioning groove, thereby enabling the female rotor and the male rotor to be quickly and fully meshed and placed, facilitating the maintenance and replacement of the female rotor and the male rotor, and enabling the equipment to efficiently realize its intended functions. Attached Figure Description
[0018] Figure 1 This is a first-view perspective view of an air compressor with a toothed helical rotor according to the present invention. Figure 2 This is a second-view perspective view of the air compressor with a toothed helical rotor according to the present invention; Figure 3 This is a perspective view of the support mechanism of the present invention; Figure 4 This is a first-view sectional perspective view of the adjustment mechanism of the present invention; Figure 5 For the present invention Figure 4 Enlarged view of point A in the middle; Figure 6 For the present invention Figure 4 Enlarged view at point B in the middle; Figure 7 This is a first-view sectional perspective view of the adjustment mechanism of the present invention. Figure 8 For the present invention Figure 7 Enlarged view at point C; Figure 9 This is a cross-sectional perspective view of the adjustment mechanism of the present invention from a second perspective. Figure 10 For the present invention Figure 9 Enlarged view at point D; Figure 11 For the present invention Figure 9 Enlarged view at point E in the middle; Figure 12 This is a perspective view of the connecting mechanism portion of the present invention; Figure 13 For the present invention Figure 12 Enlarged view at point F; Figure 14 For the present invention Figure 12 Enlarged view at point G; Figure 15 For the present invention Figure 12 Enlarged view at point H; Figure 16 This is a perspective view of the rotor mechanism of the present invention; Figure 17 This is a perspective view of the rotor mechanism of the present invention.
[0019] Marked in the image: 1. Support mechanism; 101. Support plate; 102. Support rod; 103. Support ring; 104. Support bolt; 105. Push plate; 106. Tie rod; 2. Adjustment mechanism; 201. Top frame; 202. Bottom frame; 203. Limit bolt; 204. Limit block; 205. Mounting frame; 206. Miniature fan; 207. Drainage frame; 208. Placement frame; 209. Electric heating wire; 210. Liquid guide frame; 211. Heat-conducting sheet; 212. First sealing strip; 213. First sealing frame; 214. Spacer ring; 215. Sound insulation sheet; 3. Connecting mechanism; 301. Extension frame; 302. Bottom tube; 303. Extension plate; 304. Second sealing frame; 305. Second sealing strip; 306. Liquid guide valve; 307. First side plate; 308. Second side plate; 4. Rotor mechanism; 401. Female rotor; 402. Male rotor; 403. Positioning plate; 5. Air compressor body. Detailed Implementation
[0020] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.
[0021] For examples, please refer to [link / reference]. Figure 1 and Figure 2 An air compressor with a toothed helical rotor is composed of an air compressor body 5, a support mechanism 1, an adjustment mechanism 2, and a connecting mechanism 3.
[0022] The details are as follows: Please see Figure 3 Support mechanism 1 provides a stable installation foundation. Support mechanism 1 is mounted on the air compressor body 5 and includes a support rod 102, two support plates 101, and support components. Two support rings 103 are threadedly connected to the outer surface of the support rod 102. The two support plates 101 are slidably fitted onto the outer surface of the support rod 102. Support components are mounted on the two support plates 101 and the support rod 102. Support components include two support bolts 104, two push plates 105, and two pull rods 106. The two support bolts 104 are rotatably connected to the outer surface of one side of the corresponding support plate 101. The two push plates 105 are threadedly connected to the outer surface of the corresponding support bolts 104. The two pull rods 106 are... Each push plate 105 is slidably sleeved at one end, and each pull bar 106 is slidably sleeved at one end on the outer surface of the support rod 102. According to the specifications of the air compressor body 5, the number of support rods 102 used can be increased or decreased so that the support plate 101 can be located on both sides of the air compressor body 5. Then, by rotating the support ring 103, the support ring 103 can squeeze the support plate 101 tightly against both sides of the air compressor body 5. Then, by rotating the support bolt 104, the support bolt 104 can cooperate with the push plate 105 and the pull bar 106 to pull the support rod 102 closer to the air compressor body 5, so that the support rod 102 can squeeze the top frame 201 to fit against the air compressor body 5 to fix and limit the position of the support mechanism 1. Please see Figures 4-11The adjusting mechanism 2 is used to provide temporary storage space. The adjusting mechanism 2 is mounted on the supporting mechanism 1 and includes a top frame 201, a bottom frame 202, a liquid guiding component, and a heat conducting component. The top frame 201 is slidably sleeved on the outer surface of the supporting rod 102. A limit bolt 203 is rotatably connected to the top of the top frame 201. A limit block 204 is threadedly connected to the outer surface of the limit bolt 203. One side of the outer surface of the limit block 204 is in contact with the outer surface of the supporting rod 102. The bottom frame 202 is fixedly connected to the bottom of the top frame 201. A placement frame 208 is fixedly connected to the inner wall of one side of the bottom frame 202. Liquid guiding holes are provided on both outer surfaces of the bottom frame 202. A connecting groove is provided on one side of the outer surface of the bottom frame 202. A first sealing strip 212 is fixedly connected to one side of the outer surface of the bottom frame 202 by bolts. The first sealing strip 212 extends into the connecting groove on one side. A retaining frame is provided on the outer surface of the other side of the bottom frame 202. The first sealing frame 213 is slidably inserted into the top of the retaining frame. The liquid guiding component is provided on the bottom frame 202. The heat guiding component is provided on the top frame 201 and the bottom frame 202. The heat guiding component includes a mounting frame 205, a micro fan 206, a heat-conducting plate 211, and an electric heating wire 209. The mounting frame 205 is fixedly connected to the outer surface of one side of the top frame 201. Multiple micro fans 206 are provided, and multiple micro fans 206 are provided inside the mounting frame 205. Multiple heat-conducting plates 211 are provided, and multiple heat-conducting plates 211 penetrate through the outer surface of the bottom frame 202. The electric heating wire 209 is fixedly connected to the bottom of the placement frame 208. The liquid guiding component includes a drain... The system comprises a liquid frame 207, a liquid guide frame 210, a spacer ring 214, and a sound insulation sheet 215. The liquid frame 207 is fixedly connected to the inside of the base frame 202. A drain hole is provided on one side of the liquid frame 207, and the interior of the drain hole communicates with the interior of one of the liquid guide holes. A drain pipe is connected to the other side of the liquid frame 207, with one end of the drain pipe passing through another liquid guide hole. The liquid guide frame 210 is slidably inserted between the two opposing inner walls of the base frame 202, with its top fitting against the bottom of the liquid frame 207. The spacer ring 214 is fixedly connected between the two opposing inner walls of the base frame 202. The sound insulation sheet 215 is fixedly connected inside the spacer ring 214. The system is connected to the liquid guide valve 306 via an existing drainage pipe. Simultaneously, the connection of the liquid guide hole, drain hole, and drain pipe allows adjacent liquid frames 207 to... The internal components are interconnected. At this point, the existing injection pipes connect the unconnected drain holes and drain pipes on both sides, allowing water to slowly fill the drain frame 207. This gradually submerges the top of the drain frame 207, allowing the water to flow along the outer surface of the drain frame 207 to the guide frame 210. Guided by the guide frame 210, the overflowing water forms a continuous water curtain. This water curtain reduces noise diffused from the heat dissipation surface of the air compressor body 5, which has many openings. Furthermore, the sound insulation sheet 215 further reduces noise, preventing a noisy construction environment and improving the actual performance of the air compressor body 5. When the internal temperature of the air compressor body 5 is high…By controlling the activation of the micro fan 206, the airflow generated by the micro fan 206 can quickly remove excess heat as it flows between adjacent heat-conducting plates 211. Simultaneously, under the action of the heat-conducting plates 211, excess heat can be transferred to the interior of the base frame 202, and then, with the help of flowing water, the excess heat can be simultaneously removed. Please see Figures 12-15The connecting mechanism 3 is used to cooperate with the adjusting mechanism 2 to form a temporary storage space. The connecting mechanism 3 is set on the adjusting mechanism 2 and includes an extension frame 301, an extension plate 303, a bottom tube 302, a second sealing strip 305, and a second sealing frame 304. The extension frame 301 and the extension plate 303 are both fixedly connected to the bottom of the bottom frame 202 by bolts. The bottom tube 302 is fixedly connected between the bottom of the extension frame 301 and the bottom of the extension plate 303 by bolts. The second sealing strip 305 is fixedly connected to the bottom of the first sealing strip 212 by bolts. The second sealing frame 304 is fixedly connected to the bottom of the first sealing frame 213 by bolts. The outer surface of one side of the second sealing strip 305 and the extension plate 304 are connected together. One end of the extension frame 301 is fitted, and the outer surface of the other side of the second sealing strip 305 is fitted with one end of the extension plate 303. The second sealing frame 304 is slidably sleeved between the other end of the extension frame 301 and the extension plate 303. The two ends of the bottom tube 302 are respectively threaded with the first side plate 307 and the second side plate 308. Two liquid guide valves 306 are connected to the bottom of the bottom tube 302. A support mechanism 1, an adjustment mechanism 2, and a connecting mechanism 3 are added according to the heat dissipation surface of the air compressor body 5, so that the interiors of adjacent bottom frames 202 can be connected by connecting grooves and clip frames, and the two ends of adjacent bottom tubes 302 can be connected by clips. At the same time, the extension frame 301, the extension plate 303, and the bottom tube 302 are connected by clips. Under the action of the bottom frame 202, a temporary storage space can be formed. Then, the first sealing strip 212, the second sealing strip 305, the first sealing frame 213, and the second sealing frame 304 seal the unconnected connecting grooves and clip frames on both sides of the bottom frame 202. This creates a temporary sealed space between the bottom frame 202, the first sealing strip 212, the first sealing frame 213, the extension frame 301, the extension plate 303, the second sealing strip 305, the second sealing frame 304, and the bottom pipe 302. When the internal starting temperature of the air compressor body 5 is low, the liquid guide valve 306 is simultaneously closed, preventing the water inside the bottom pipe 302 from draining properly, thus allowing the bottom frame 202 to... The temporary storage space formed between the first sealing strip 212, the first sealing frame 213, the extension frame 301, the extension plate 303, the second sealing strip 305, the second sealing frame 304, the first side plate 307, the second side plate 308, and the bottom pipe 302 can store water resources. Then, by controlling the start of the electric heating wire 209, the electric heating wire 209 can heat the water resources. The heat generated can be transferred to the air compressor body 5 through the heat conduction plate 211. At the same time, under the action of the micro fan 206, the hot air can quickly heat the air around the air compressor body 5, ensuring that the air compressor body 5 can start and operate normally. Please see Figure 16 and Figure 17A toothed helical rotor includes a rotor mechanism 4, which includes a female rotor 401, a male rotor 402, and a positioning plate 403. A positioning groove is formed on one outer surface of the female rotor 401, and a positioning groove is also formed on one outer surface of the male rotor 402. The positioning plate 403 is slidably inserted between the two positioning grooves. The meshing sides of the female rotor 401 and male rotor 402 can be quickly determined by the position of the positioning grooves. Furthermore, the positioning plate 403 allows the female rotor 401 and male rotor 402 to be tightly attached to both sides of the positioning plate 403 through the positioning grooves, enabling the female rotor 401 and male rotor 402 to be quickly and fully meshed and positioned. This facilitates the maintenance and replacement of the female rotor 401 and male rotor 402, allowing the equipment to efficiently perform its intended functions.
[0023] The following provides a detailed description of a toothed helical rotor and its method of use in an air compressor, as provided in the embodiments of the present invention. The method of use includes the following steps: Step 1, Noise Reduction: Based on the specifications of the air compressor body 5, the number of support rods 102 is adjusted to ensure that the support plates 101 are positioned on both sides of the air compressor body 5. Then, by rotating the support ring 103, the support ring 103 presses the support plates 101 tightly against both sides of the air compressor body 5. Next, by rotating the support bolt 104, the support bolt 104, in conjunction with the push plate 105 and the pull strip 106, pulls the support rods 102 closer to the air compressor body 5, allowing the support rods 102 to press the top frame 201 against the air compressor body 5. The position of the support mechanism 1 is fixed and restricted. Simultaneously, the support mechanism 1, adjustment mechanism 2, and connecting mechanism 3 are added according to the heat dissipation surface of the air compressor body 5, allowing the interiors of adjacent bottom frames 202 to be connected via connecting grooves and clip frames, and allowing the two ends of adjacent bottom tubes 302 to be connected via clip frames. Furthermore, under the action of the extension frame 301, extension plate 303, and bottom tubes 302, a temporary storage space can be formed in conjunction with the bottom frames 202. Then, the first sealing strip 212, the second sealing strip 305, the first sealing frame 213, and the second sealing frame 304 connect the bottom frames 202 on both sides. 02. The unconnected connecting grooves and frames are sealed, thereby forming a temporary sealed space between the bottom frame 202, the first sealing strip 212, the first sealing frame 213, the extension frame 301, the extension plate 303, the second sealing strip 305, the second sealing frame 304, and the bottom pipe 302. At this time, the existing drainage pipe is connected to the liquid guiding valve 306. Simultaneously, with the connection of the liquid guiding hole, the liquid drain hole, and the liquid drain pipe, the interiors of adjacent liquid drain frames 207 can be connected. At this time, the existing liquid injection pipe is connected to the unconnected liquid drain holes and liquid drain pipes on both sides, allowing water resources to be released gradually. Slowly fill the drain frame 207, so that the water level inside the drain frame 207 gradually submerges the top of the drain frame 207, allowing the water to flow along the outer surface of the drain frame 207 to the guide frame 210. Under the guidance of the guide frame 210, the overflowing water can form a continuous water curtain. The water curtain can reduce the noise diffused through the heat dissipation surface of the air compressor body 5 with many openings. At the same time, the noise can be further reduced by the sound insulation sheet 215, avoiding a noisy construction environment and improving the actual use effect of the air compressor body 5. Step 2, Temperature Regulation: When the internal temperature of the air compressor body 5 is high, the micro fan 206 is activated. The airflow generated by the micro fan 206 quickly carries away excess heat as it passes between adjacent heat-conducting plates 211. Simultaneously, the heat-conducting plates 211 transfer excess heat to the bottom frame 202, where it is further removed by the flowing water. When the internal temperature of the air compressor body 5 is low, the liquid valve 306 is closed, preventing the water in the bottom pipe 302 from draining properly. This, in turn, prevents the water from flowing through the bottom frame 202, the first sealing strip 212, and the first sealing frame 213 from discharging. The temporary storage space formed between the extension frame 301, extension plate 303, second sealing strip 305, second sealing frame 304, first side plate 307, second side plate 308 and bottom pipe 302 can store water resources. Then, by controlling the start of the electric heating wire 209, the electric heating wire 209 can heat the water resources. The generated heat can be transferred to the air compressor body 5 through the heat conduction plate 211. At the same time, under the action of the micro fan 206, the hot air can quickly heat the air around the air compressor body 5, ensuring that the air compressor body 5 can start and run normally, and enabling the equipment to efficiently realize its intended functions. Step 3, Maintenance Positioning: The positioning slot position allows for quick determination of the meshing sides of the female rotor 401 and male rotor 402. Then, the positioning plate 403 ensures that the female rotor 401 and male rotor 402 are tightly attached to both sides of the positioning plate 403 via the positioning slot. This allows for quick and full meshing and placement of the female rotor 401 and male rotor 402, facilitating maintenance and replacement, and enabling the equipment to efficiently perform its intended functions.
[0024] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. An air compressor having a toothed helical rotor, comprising: The air compressor body (5) is characterized in that it further includes: A support mechanism (1) is provided to provide a stable installation base, the support mechanism (1) being disposed on the air compressor body (5). An adjustment mechanism (2) for providing temporary storage space, the adjustment mechanism (2) being disposed on the support mechanism (1); and A connecting mechanism (3) is used to cooperate with the adjusting mechanism (2) to form a temporary storage space. The connecting mechanism (3) is disposed on the adjusting mechanism (2).
2. An air compressor with a toothed helical rotor as described in claim 1, characterized in that: The support mechanism (1) includes a support rod (102), two support plates (101) and a support component. The outer surface of the support rod (102) is threaded with two support rings (103). The two support plates (101) are slidably sleeved on the outer surface of the support rod (102). The support component is disposed on the two support plates (101) and the support rod (102).
3. An air compressor with a toothed helical rotor as described in claim 2, characterized in that: The support component includes two support bolts (104), two push plates (105), and two pull bars (106). The two support bolts (104) are rotatably connected to the outer surface of one side of the corresponding support plate (101). The two push plates (105) are threadedly connected to the outer surface of the corresponding support bolts (104). The two pull bars (106) are slidably sleeved on one end of the corresponding push plate (105). One end of each pull bar (106) is slidably sleeved on the outer surface of the support rod (102).
4. An air compressor with a toothed helical rotor as described in claim 3, characterized in that: The adjustment mechanism (2) includes a top frame (201), a bottom frame (202), a liquid guiding component, and a heat guiding component. The top frame (201) is slidably sleeved on the outer surface of the support rod (102). A limit bolt (203) is rotatably connected to the top of the top frame (201). A limit block (204) is threadedly connected to the outer surface of the limit bolt (203). The outer surface of one side of the limit block (204) is in contact with the outer surface of the support rod (102). The bottom frame (202) is fixedly connected to the bottom of the top frame (201). A placement frame (2) is fixedly connected to the inner wall of one side of the bottom frame (202). 08), liquid guiding holes are provided on both outer surfaces of the bottom frame (202), a connecting groove is provided on one outer surface of the bottom frame (202), a first sealing strip (212) is fixedly connected to one outer surface of the bottom frame (202) by bolts, one side of the first sealing strip (212) extends into the connecting groove, a card frame is provided on the other outer surface of the bottom frame (202), a first sealing frame (213) is slidably inserted into the top of the card frame, the liquid guiding component is provided on the bottom frame (202), and the heat conducting component is provided on the top frame (201) and the bottom frame (202).
5. An air compressor with a toothed helical rotor as described in claim 4, characterized in that: The heat-conducting components include a mounting frame (205), a miniature fan (206), a heat-conducting sheet (211), and an electric heating wire (209). The mounting frame (205) is fixedly connected to the outer surface of one side of the top frame (201). Multiple miniature fans (206) are provided, and all of the miniature fans (206) are located inside the mounting frame (205). Multiple heat-conducting sheets (211) are provided, and all of the heat-conducting sheets (211) extend through the outer surface of the bottom frame (202). The electric heating wire (209) is fixedly connected to the bottom of the placement frame (208).
6. An air compressor with a toothed helical rotor as described in claim 5, characterized in that: The liquid guiding component includes a drain frame (207), a liquid guiding bracket (210), a spacer (214), and a sound insulation plate (215). The drain frame (207) is fixedly connected to the inside of the bottom frame (202). A drain hole is provided on one side of the drain frame (207), and the inside of the drain hole is connected to the inside of one of the liquid guiding holes. A drain pipe is provided on the other side of the drain frame (207), and one end of the drain pipe passes through another liquid guiding hole. The liquid guiding bracket (210) is slidably inserted between the two inner walls of the bottom frame (202), and the top of the liquid guiding bracket (210) is attached to the bottom of the drain frame (207). The spacer (214) is fixedly connected between the two inner walls of the bottom frame (202), and the sound insulation plate (215) is fixedly connected inside the spacer (214).
7. An air compressor with a toothed helical rotor as described in claim 6, characterized in that: The connecting mechanism (3) includes an extension frame (301), an extension plate (303), a bottom tube (302), a second sealing strip (305), and a second sealing frame (304). The extension frame (301) and the extension plate (303) are both fixedly connected to the bottom of the bottom frame (202) by bolts. The bottom tube (302) is fixedly connected between the bottom of the extension frame (301) and the bottom of the extension plate (303) by bolts. The second sealing strip (305) is fixedly connected to the bottom of the first sealing strip (212) by bolts. The second sealing frame (304) is fixedly connected to the bottom of the first sealing frame (213) by bolts.
8. An air compressor with a toothed helical rotor as described in claim 7, characterized in that: The outer surface of one side of the second sealing strip (305) is attached to one end of the extension frame (301), the outer surface of the other side of the second sealing strip (305) is attached to one end of the extension plate (303), and the second sealing frame (304) is slidably sleeved between the other end of the extension frame (301) and the extension plate (303).
9. An air compressor with a toothed helical rotor as described in claim 8, characterized in that: The bottom tube (302) is threaded to both ends with a first side plate (307) and a second side plate (308), and two liquid guide valves (306) are connected to the bottom of the bottom tube (302).
10. A toothed helical rotor, characterized in that, Applied to an air compressor with a toothed helical rotor as described in claim 9, comprising: The rotor mechanism (4) includes a female rotor (401), a male rotor (402) and a positioning plate (403). A positioning groove is provided on one side of the outer surface of the female rotor (401), and a positioning groove is also provided on one side of the outer surface of the male rotor (402). The positioning plate (403) is slidably inserted between the two positioning grooves.
Citation Information
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