Explosion-proof lamp shell production equipment
The explosion-proof lamp housing production equipment, which integrates processing, testing, and material handling components, enables automatic identification of defective products and fully automated material handling. This solves the problems of low efficiency and high safety risks in existing equipment, and improves production efficiency and product quality.
Patent Information
- Application Number
- CN202423122189.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2034-12-18
AI Technical Summary
Existing explosion-proof lamp housing production equipment is inefficient and prone to misjudgment or missed detection in defective product screening. Manual material handling is costly, inefficient, and poses safety risks.
Design an explosion-proof lamp housing production equipment that integrates processing components, testing components, and material handling components. It uses vision sensors for real-time quality monitoring and automatic screening, defective product identification, and the material handling component to achieve fully automatic and safe material handling.
It improved the consistency and stability of product quality, reduced labor costs, increased production efficiency, and eliminated the safety hazards of manual material handling.
Smart Images

Figure CN223903395U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of explosion -proof lamp, concretely is a kind of explosion -proof lamp shell production equipment. BACKGROUND
[0002] In modern industrial production, explosion -proof lamps due to its special safety performance, in the industry involving flammable and explosive gas environment, such as chemical industry, petroleum, natural gas, etc., play a vital role. Explosion -proof lamp shell as one of the core components of explosion -proof lamp, its manufacturing process and quality control have direct impact on the safety and reliability of final product. With the development of science and technology, the explosion -proof lamp shell production equipment on the current market can complete the full-process automation from raw material processing to finished product output. Despite this, there are still some problems in the production process of existing equipment. First, the explosion -proof lamp shell produced by existing equipment often needs to be screened by manual operation. This approach not only has low efficiency, but also is prone to misjudgment or omission due to human factors, thereby affecting the consistency and stability of product quality. Secondly, the current equipment needs manual operation to enter the internal part of the equipment for material taking after processing. This approach not only increases labor cost and reduces production efficiency, but also brings potential safety risk to the material taking personnel.
[0003] Therefore, it is necessary to develop an explosion -proof lamp shell production equipment that can realize automatic screening of defective products and fully automatic safe material taking to improve production efficiency and product quality, while ensuring the safety of operators. UTILITY MODEL CONTENT
[0004] In view of the problems of low efficiency, easy misjudgment or omission in manual screening of defective products in the production process of explosion -proof lamp shell, and high cost, low efficiency and large safety risk in manual material taking of existing technology, the technical solution adopted by the utility model to solve its technical problems is:
[0005] An explosion -proof lamp shell production equipment, comprising a device main body, the device main body is provided with an installation inner cavity, wherein the device main body comprises a processing assembly located in the installation inner cavity, a material taking assembly located on one side of the processing assembly, and a detection assembly close to the processing assembly, the explosion -proof lamp shell is fixed in the processing assembly, and the detection assembly is used for detecting the explosion -proof lamp shell during processing of the processing assembly. The explosion -proof lamp shell is taken out by the material taking assembly after processing is completed.
[0006] Further, the explosion -proof lamp shell production equipment according to the scheme, wherein the device main body further comprises a transverse moving assembly located in the installation inner cavity and arranged transversely, the processing assembly and the material taking assembly are installed in the transverse moving assembly, and the processing assembly and the material taking assembly are both in sliding connection with the transverse moving assembly and can move along the direction of the transverse moving assembly.
[0007] Further, the scheme discloses a production equipment for an explosion-proof lamp shell, wherein the material taking assembly comprises a first lifting seat installed at one end of the transverse moving assembly, a rotating assembly installed at the other end of the first lifting seat and a material taking end installed at the rotating assembly.
[0008] Further, the scheme discloses a production equipment for an explosion-proof lamp shell, wherein the material taking end comprises a first rotating seat installed at the rotating assembly and a clamping assembly installed at the first rotating seat, and the clamping assembly is provided with at least two clamping assemblies installed at two sides of the first rotating seat.
[0009] Further, the scheme discloses a production equipment for an explosion-proof lamp shell, wherein the processing assembly comprises a positioning end used for fixing the explosion-proof lamp shell at one end and a processing end used for processing the explosion-proof lamp shell and capable of moving relative to the positioning end at the other end, and the processing end is installed at the transverse moving assembly.
[0010] Further, the scheme discloses a production equipment for an explosion-proof lamp shell, wherein the positioning end comprises a fixing end and a locking piece, the fixing end is provided with a fixing cavity and a fixing part, the explosion-proof lamp shell is installed in the fixing cavity through the fixing part, and the explosion-proof lamp shell is fixed in the fixing cavity through cooperation of the locking piece and the fixing part.
[0011] Further, the scheme discloses a production equipment for an explosion-proof lamp shell, wherein the processing end comprises a second rotating seat, a moving seat installed at one end of the second rotating seat and in sliding connection with the transverse moving assembly and a processing part installed at the other end of the second rotating seat, and the processing part is provided with a processing workpiece used for processing the explosion-proof lamp shell and a fixing workpiece used for locking or loosening the locking piece.
[0012] Further, the scheme discloses a production equipment for an explosion-proof lamp shell, wherein the moving seat comprises a second lifting seat capable of lifting, and the second lifting seat is further provided with a moving assembly connected with the second rotating seat, the moving assembly is installed in a direction perpendicular to the installation direction of the transverse moving assembly, and the second rotating seat is moved along the direction of the moving assembly through the moving assembly.
[0013] Further, the scheme discloses a production equipment for an explosion-proof lamp shell, wherein the processing part is further provided with a switching part used for fixing the processing workpiece and the fixing workpiece, and the switching part is used for switching the positions of the processing workpiece and the fixing workpiece.
[0014] Further, the scheme discloses a production equipment for an explosion-proof lamp shell, wherein the detection assembly is provided with at least two visual sensors.
[0015] The production equipment for the explosion-proof lamp shell has the following beneficial effects:
[0016] The utility model discloses a processing assembly, a material taking assembly and a detection assembly are arranged in the installation inner cavity of the equipment main body, the quality of the explosion -proof lamp shell in the processing process can be monitored in real time by the detection assembly when the explosion -proof lamp shell is fixed and processed by the processing assembly, and the defective product is automatically identified, thereby the subjective error and the low efficiency problem of artificial detection are avoided, the consistency and stability of product quality are improved, in addition, the finished product can be taken out automatically by the material taking assembly after the explosion -proof lamp shell is finished processing, effectively eliminate the security risk existing in the traditional manual material taking process, reduce the dependence on manpower, thereby reduce the labor cost, and the overall production efficiency is improved.
[0017] The utility model will be further described below in combination with the drawings and specific embodiment. DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is an appearance schematic view of the explosion -proof lamp shell production equipment of the utility model.
[0019] Figure 2 It is a local explosion schematic view of the explosion -proof lamp shell production equipment of the utility model.
[0020] Figure 3 It is a material taking assembly schematic view of the explosion -proof lamp shell production equipment of the utility model.
[0021] Figure 4 It is a material taking end schematic view of the explosion -proof lamp shell production equipment of the utility model.
[0022] Figure 5 It is a processing assembly schematic view of the explosion -proof lamp shell production equipment of the utility model.
[0023] Figure 6 It is a positioning end schematic view of the explosion -proof lamp shell production equipment of the utility model.
[0024] Figure 7 It is a processing end schematic view of the explosion -proof lamp shell production equipment of the utility model.
[0025] Figure 8 It is an enlarged schematic view of the processing end I of the explosion -proof lamp shell production equipment of the utility model. SPECIFIC EMBODIMENT
[0026] The embodiment of the utility model will be described in detail below in combination with the drawings.
[0027] As Figures 1-8The diagram shows an explosion-proof lamp housing production equipment, including a main body 1. The main body 1 has an installation cavity 11. The main body 1 includes a processing component 2 located in the installation cavity 11, a material handling component 3 located on one side of the processing component 2, and a detection component 4 located near the processing component 2. The explosion-proof lamp housing 00 is fixed to the processing component 2. During the processing of the processing component 2, the detection component 4 is used to detect the explosion-proof lamp housing 00. After the explosion-proof lamp housing 00 is processed, it is taken out by the material handling component 3.
[0028] This invention, by setting a processing component 2, a material handling component 3, and a detection component 4 in the mounting cavity 11 of the main body 1 of the equipment, allows the processing component 2 to fix and process the explosion-proof lamp housing 00, while the detection component 4 can monitor the quality of the explosion-proof lamp housing 00 in real time during the processing and automatically identify defective products. This avoids the subjective errors and inefficiencies of manual inspection, improving the consistency and stability of product quality. In addition, after the explosion-proof lamp housing 00 is processed, the material handling component 3 can automatically remove the finished product, effectively eliminating the safety hazards existing in the traditional manual material handling process, reducing reliance on manpower, thereby reducing labor costs and improving overall production efficiency. Furthermore, in this embodiment, the detection component 4 is used to detect the outer surface of the explosion-proof lamp housing 00. In other embodiments, the detection component 4 can also be used to detect the processing gap and processing holes of the explosion-proof lamp housing 00.
[0029] Specifically, this invention integrates a processing component 2, a material handling component 3, and a detection component 4 within the mounting cavity 11 of the main body 1 of the equipment. This enables precise and continuous quality monitoring of the explosion-proof lamp housing 00 during the manufacturing process, achieving a high degree of automation at every stage, from fixing and processing to final product removal. Furthermore, during the processing stage, the cooperation between the detection component 4 and the processing component 2 allows for the immediate detection of potential processing problems on the surface of the explosion-proof lamp housing 00 during its forming process. In other embodiments, it can also be used to detect quality issues such as the processing gap dimensions, the size or position of processing holes, etc., of the explosion-proof lamp housing 00. Compared with traditional... Compared to manual inspection, this real-time monitoring mechanism effectively reduces quality problems caused by human error, ensuring stable and reliable product quality. Furthermore, the automated inspection process effectively improves inspection efficiency, freeing the inspection process from the limitations of manual inspection speed and frequency, thereby accelerating the overall production pace. Moreover, once the explosion-proof lamp housing 00 is processed, the material handling component 3 automatically intervenes to safely remove the finished product from the processing component 2. This eliminates the previous need for operators to manually enter the equipment to retrieve materials, protecting workers from potential safety risks, reducing manpower input, and lowering labor costs.
[0030] Furthermore, such as Figures 1-8The device body 1 further comprises a horizontal moving assembly 12 arranged in the installation inner cavity 11, and the processing assembly 2 and the material taking assembly 3 are arranged on the horizontal moving assembly 12.
[0031] The horizontal moving assembly 12 is arranged, and the processing assembly 2 and the material taking assembly 3 are slidably connected with the horizontal moving assembly 12, so that the processing assembly 2 and the material taking assembly 3 can move along the direction of the horizontal moving assembly 12.
[0032] Further, as shown in Figures 1-8 The material taking assembly 3 comprises a first lifting seat 31 arranged at one end of the horizontal moving assembly 12, a rotating assembly 32 arranged at the other end of the first lifting seat 31, and a material taking end 33 arranged on the rotating assembly 32.
[0033] The first lifting seat 31 is arranged at one end of the horizontal moving assembly 12, and the other end is fixed to the rotating assembly 32, and the rotating assembly 32 is further provided with the material taking end 33, so that the material taking assembly 3 can not only move horizontally through the horizontal moving assembly 12, but also can be lifted vertically through the first lifting seat 31, and can be rotated through the rotating assembly 32, so as to adapt to the material taking requirements of the explosion-proof lamp shell 00 of different specifications and shapes.
[0034] Further, as shown in Figures 1-8 The material taking end 33 comprises a first rotating seat 331 arranged on the rotating assembly 32, and a clamping assembly 332 arranged on the first rotating seat 331, and the clamping assembly 332 is provided with at least two, and the two clamping assemblies 332 are arranged on both sides of the first rotating seat 331.
[0035] The utility model discloses a first rotating seat 331 and clamping assembly 332 are set up in the material taking end 33, and can be through rotating assembly 32 drive material taking end 33 to rotate to adjust angle to adapt to different material taking angle to meet the anti -explosion lamp shell 00 taking and placing demand of different size and shape, further, the utility model discloses two clamping assemblies 332 are set up, and make two clamping assemblies 332 install respectively in the both sides of first rotating seat 331, through two clamping assemblies 332 can more stably and firmly hold anti -explosion lamp shell 00, ensure that the situation of falling product does not appear in the material taking process, further, in some embodiments, first rotating seat 331 is the rotary cylinder, and clamping assembly 332 is the finger cylinder.
[0036] Further, as shown in Figures 1-8 An anti -explosion lamp shell production equipment, wherein the machining assembly 2 includes the positioning end 21 for fixing the anti -explosion lamp shell 00 at one end, and the machining end 22 for machining the anti -explosion lamp shell 00 and can move relative to the positioning end 21 at the other end, the machining end 22 is installed on the transverse moving assembly 12.
[0037] The utility model discloses a positioning end 21 and the machining end 22 that can move relative to positioning end 21 are set up in machining assembly 2, and machining end 22 is installed on transverse moving assembly 12, by realizing the fixation of anti -explosion lamp shell 00, so that machining end 22 can adjust its position according to actual demand when carrying out anti -explosion lamp shell 00 processing, and this setting improves the flexibility and adaptability of the processing process, and can adapt to the processing demand of anti -explosion lamp shell 00 of different specifications and shapes, further, the cooperation of machining end 22 and transverse moving assembly 12 effectively reduces manual intervention, and improves the automation level of equipment, to further improve production efficiency.
[0038] Further, as shown in Figures 1-8 An anti -explosion lamp shell production equipment, wherein the positioning end 21 includes the fixed end 211 and the locking piece 212, the fixed end 211 is equipped with fixed cavity 213 and fixed part 214, and the anti -explosion lamp shell 00 is installed in the fixed cavity 213 through the fixed part 214, and is fixed in the fixed cavity 213 through the cooperation of the locking piece 212 and the fixed part 214.
[0039] The utility model discloses a fixing end 211 and locking piece 212 are set in the positioning end 21, wherein the fixing end 211 is equipped with fixed cavity 213 and fixed part 214, makes the explosion -proof lamp shell 00 through the fixed part 214 after being installed in fixed cavity 213, and realizes the final fixing by locking piece 212 and fixed part 214 cooperation, thereby ensuring that the explosion -proof lamp shell 00 is stably fixed in the equipment, and this setting ensures that the explosion -proof lamp shell 00 keeps steady and immobile in the whole processing, avoids the product deviation or damage caused by vibration or external force, thereby effectively improve the processing precision and product quality, further, this setting also helps to reduce the defective rate, improves the consistency and stability of production.
[0040] Further, as shown in Figures 1-8 An explosion -proof lamp shell production equipment, wherein the processing end 22 includes second rotating seat 221, mobile seat 222 located one end of the second rotating seat 221 and slidingly connected with the horizontal moving assembly 12, and processing part 223 located the other end of the second rotating seat 221, the processing part 223 is equipped with processing workpiece 2231 for processing explosion -proof lamp shell 00 and fixed workpiece 2232 for locking or loosening the locking piece 212.
[0041] The utility model discloses a mobile seat 222 and second rotating seat 221 are set in the processing end 22, and the processing part 223 is set on the second rotating seat 221, make the processing part 223 have certain position and angle adjustment ability, can be more flexible to cope with various types of processing demand, further, through setting processing workpiece 2231 and fixed workpiece 2232 on the processing part 223, through processing workpiece 2231 to the explosion -proof lamp shell 00 processing treatment, and fixed workpiece 2232 is used for controlling the locking or loosening of locking piece 212 to facilitate the installation and dismounting of explosion -proof lamp shell 00, this setting allows the processing end 22 to loosen the explosion -proof lamp shell 00 before starting processing or after finishing processing, can also realize automatically, simplifies the operation process, reduces the influence of artificial factor on processing quality, further, in the embodiment, the fixed workpiece 2232 is also equipped with the magnet for taking and placing locking piece 212, when the fixed workpiece 2232 loosens locking piece 212, still can fix locking piece 212 on the fixed workpiece 2232 to facilitate the subsequent material taking assembly 3 to take material, further, in some embodiments, the second rotating seat 221 is the rotating cylinder or realizes the rotating function through motor.
[0042] Further, as shown in Figures 1-8The second lifting seat 2221 can be lifted, and the moving assembly 2222 is connected with the second rotating seat 221 and is vertically arranged with the horizontal moving assembly 12, so that the second rotating seat 221 moves along the direction of the moving assembly 2222.
[0043] The second lifting seat 2221 can be lifted, and the moving assembly 2222 is connected with the second rotating seat 221 and is vertically arranged with the horizontal moving assembly 12, so that the second rotating seat 221 moves along the direction of the moving assembly 2222.
[0044] Further, as shown in Figures 1-8 The processing part 223 is further provided with a switching part 2233 for fixing the processing workpiece 2231 and the fixed workpiece 2232, and the switching part 2233 is used for switching the positions of the processing workpiece 2231 and the fixed workpiece 2232.
[0045] The processing part 223 is further provided with a switching part 2233 for fixing the processing workpiece 2231 and the fixed workpiece 2232, and the switching part 2233 is used for switching the positions of the processing workpiece 2231 and the fixed workpiece 2232.
[0046] Further, as shown in Figures 1-8 The detection assembly 4 is at least two, and the detection assembly 4 is a visual sensor.
[0047] The utility model discloses at least two detection components 4 are set up near the positioning end 21, these detection components 4 are located positioning end 21's both sides respectively, thereby realized the detection of the quality of processing of explosion -proof lamp shell 00 from multiple angles, further, the detection component 4 in the utility model discloses adopts visual sensor technology, can real -time monitoring processing, and effectively identifies the defect or error on explosion -proof lamp shell 00, thereby automatically identifies the inferior product, this setting not only effectively reduced the demand of manual screening, reduced the risk of human error or missed detection, also promoted the consistency and stability of product quality, further, through adopting visual sensor this non - contact detection mode, ensured that will not cause the physical damage to explosion -proof lamp shell 00, further guaranteed the integrity of product.
[0048] As Figures 1-8 The embodiments of the utility model are as follows:
[0049] Embodiment one:
[0050] The embodiment proposes an explosion -proof lamp shell production equipment, and the equipment main body 1 is set up in the equipment main body 1, is equipped with the installation inner chamber 11, and the installation inner chamber 11 is integrated machining assembly 2, take material component 3 and detection component 4 to complete the whole operation process of the explosion -proof lamp shell 00 from fixing, processing until the final product taking out.
[0051] In the embodiment, machining assembly 2 includes positioning end 21 and processing end 22, and positioning end 21 includes fixed end 211 and locking piece 212. In actual operation, first, the explosion -proof lamp shell 00 is placed in the fixed cavity 213 of the fixed end 211 by manual, then, the locking piece 212 is cooperated with the fixed part 214 on the fixed end 211 through the fixed workpiece 2232 on the processing part 223, to ensure that the explosion -proof lamp shell 00 is stably fixed in the fixed cavity 213, which effectively prevents the product position deviation or damage caused by vibration or external force in the subsequent processing process.
[0052] Subsequently, the processing end 22 performs its function. The processing end 22 comprises a second rotating seat 221 and a moving seat 222, and the moving seat 222 further comprises a second lifting seat 2221, so that the processing end 22 can move relative to the positioning end 21. Through the horizontal moving assembly 12 and the moving seat 222, the processing end 22 can be adjusted in position in both horizontal directions, and through the second lifting seat 2221, it can also be adjusted in position in the vertical direction to adapt to the processing needs of the explosion-proof lamp shell 00 of different specifications and shapes. In addition, the second rotating seat 221 on the processing end 22 enables the processing part 223 to be flexibly adjusted in angle to meet diversified processing requirements. The processing part 223 is also provided with a switching part 2233 for fixing and switching the working positions of the processing workpiece 2231 and the fixed workpiece 2232. When the processing part 223 locks the locking piece 212 through the fixed workpiece 2232 to fix the explosion-proof lamp shell 00 in the fixed cavity 213, the processing workpiece 2231 is switched through the switching part 2233 to process the explosion-proof lamp shell 00. This setting effectively improves work efficiency and reduces manual intervention.
[0053] At the same time, the detection assembly 4 can monitor the entire process in real time throughout the entire processing process. In this embodiment, two visual sensors are provided as the detection assembly 4, which are respectively installed on both sides of the positioning end 21 to more comprehensively monitor the quality of the explosion-proof lamp shell 00. In addition, the visual sensors used in this embodiment can automatically identify defective products, thereby reducing the need for manual screening and effectively reducing the risk of misjudgment or missed detection.
[0054] After the processing of the explosion-proof lamp shell 00 is completed, the processing part 223 is switched to the fixed workpiece 2232 through the switching part 2233 to release the locking piece 212, and then the locking piece 212 is attracted to the fixed workpiece 2232 by the magnet on the fixed workpiece 2232 for the fixation of the next explosion-proof lamp shell 00. Subsequently, the taking assembly 3 begins to perform its function. The taking assembly 3 is composed of a first lifting seat 31, a rotating assembly 32, and a taking end 33. The first lifting seat 31 is responsible for realizing the lifting movement in the vertical direction, and the taking end 33 is provided with a first rotating seat 331 and two clamping assemblies 332, which are respectively installed on both sides of the first rotating seat 331. Through the cooperation of the first rotating seat 331 and the rotating assembly 32, the taking assembly 3 can flexibly adjust the taking angle according to different models of explosion-proof lamp shells 00, and at the same time, the two clamping assemblies 332 are fixed on both sides of the first rotating seat 331 to ensure the stability of the explosion-proof lamp shell 00 during the taking process and avoid the risk of falling. In addition, the taking assembly 3 is installed on the horizontal moving assembly 12, so that it can move in the horizontal direction to ensure accurate arrival at the taking position.
[0055] Finally, the finished explosion-proof lamp shell 00 is taken out by the taking component 3 to the outside of the device, and is put into a box by manual, and the setting effectively eliminates the safety hidden danger of traditional manual taking.
[0056] Embodiment two:
[0057] The difference between the embodiment and the embodiment one is that the clamping fingers are used instead of the magnets to take and place the locking pieces 212 on the fixed workpiece 2232 in the embodiment.
[0058] Embodiment three:
[0059] The difference between the embodiment and the embodiment one is that the visual sensor is arranged on the taking component 3, so that the taking component 3 can take the explosion-proof lamp shell 00 outside the device, and after the explosion-proof lamp shell 00 is processed, the taking component 3 can automatically take the explosion-proof lamp shell 00 from the fixed end 211 and send it to the box outside the device.
[0060] Embodiment four:
[0061] The difference between the embodiment and the embodiment one is that three visual sensors are arranged as the detecting component 4 to better detect the processing condition of the explosion-proof lamp shell 00.
[0062] Embodiment five:
[0063] The difference between the embodiment and the embodiment one is that three clamping components 332 are arranged on the taking end 33 to ensure that the explosion-proof lamp shell 00 is taken and placed more stably.
[0064] The above only takes the embodiment to further illustrate the technical content of the utility model, so as to make the reader more easily understand, but not represent the embodiment of the utility model is limited to this, any technical extension or re-creation made according to the utility model is protected by the utility model. The protection scope of the utility model is subject to the patent claim.
Claims
1. An apparatus for producing an explosion-proof lamp housing, comprising an apparatus body (1) provided with a mounting inner cavity (11), characterized in that: The device body (1) includes a processing assembly (2) located in the installation inner cavity (11), a material taking assembly (3) located on one side of the processing assembly (2), and a detection assembly (4) close to the processing assembly (2), the explosion-proof lamp shell (00) is fixed on the processing assembly (2), and the detection assembly (4) is used for detecting the explosion-proof lamp shell (00) during the processing of the processing assembly (2), and the explosion-proof lamp shell (00) is taken out through the material taking assembly (3) after the processing of the explosion-proof lamp shell (00) is completed.
2. The apparatus for producing an explosion-proof lamp housing according to claim 1, wherein: The device body (1) further comprises a transverse moving assembly (12) located in the installation inner cavity (11) and arranged transversely, and the processing assembly (2) and the material taking assembly (3) are installed on the transverse moving assembly (12), and the processing assembly (2) and the material taking assembly (3) are both in sliding connection with the transverse moving assembly (12) and can move along the direction of the transverse moving assembly (12).
3. The apparatus of claim 2, wherein: The material taking assembly (3) comprises a first lifting seat (31) installed at one end of the transverse moving assembly (12), a rotating assembly (32) installed at the other end of the first lifting seat (31), and a material taking end (33) installed on the rotating assembly (32).
4. The apparatus of claim 3, wherein: The material taking end (33) comprises a first rotating seat (331) installed on the rotating assembly (32), and a clamping assembly (332) installed on the first rotating seat (331), and the clamping assembly (332) is provided with at least two, and the two clamping assemblies (332) are installed on both sides of the first rotating seat (331).
5. The apparatus of claim 2, wherein: The processing assembly (2) comprises a positioning end (21) at one end for fixing the explosion-proof lamp shell (00), and a processing end (22) at the other end for processing the explosion-proof lamp shell (00) and capable of moving relative to the positioning end (21), and the processing end (22) is installed on the transverse moving assembly (12).
6. The apparatus of claim 5, wherein: The positioning end (21) comprises a fixed end (211) and a locking piece (212), the fixed end (211) is provided with a fixed cavity (213) and a fixed portion (214), the explosion-proof lamp shell (00) passes through the fixed portion (214) and is installed in the fixed cavity (213), and the locking piece (212) is matched with the fixed portion (214) to fix the explosion-proof lamp shell (00) in the fixed cavity (213).
7. An apparatus for producing an explosion-proof lamp housing according to claim 6, characterized in that: The processing end (22) comprises a second rotating seat (221), a moving seat (222) located at one end of the second rotating seat (221) and in sliding connection with the transverse moving assembly (12), and a processing portion (223) located at the other end of the second rotating seat (221), and the processing portion (223) is provided with a processing workpiece (2231) for processing the explosion-proof lamp shell (00) and a fixing workpiece (2232) for locking or loosening the locking piece (212).
8. The apparatus of claim 7, wherein: The moving seat (222) comprises a second lifting seat (2221) capable of lifting, the second lifting seat (2221) is further provided with a moving assembly (2222) connected with the second rotating seat (221), the installation direction of the moving assembly (2222) is vertically arranged with the installation direction of the transverse moving assembly (12), and the second rotating seat (221) is moved along the direction of the moving assembly (2222) through the moving assembly (2222).
9. The apparatus of claim 7, wherein: The processing part (223) is further provided with a switching part (2233) for fixing the processing workpiece (2231) and the fixed workpiece (2232), and the switching part (2233) is used for switching the positions of the processing workpiece (2231) and the fixed workpiece (2232).
10. The apparatus of claim 1, wherein: The detection assembly (4) is at least provided with two, and the detection assembly (4) is a visual sensor.