Negative oxygen ion armor plate production equipment and process
By designing a negative oxygen ion armor plate production equipment that includes components such as electric heads, connecting rods, side blades, hydraulic rods, etc., the problem of difficulty in synchronizing drilling, reaming, and milling grooves in existing equipment is solved, and high-precision synchronous processing and optimized debris cleaning are achieved, which improves production efficiency and product performance.
Patent Information
- Application Number
- CN202510280999.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-11
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2045-03-11
AI Technical Summary
It is difficult for existing drilling equipment to achieve synchronous completion of drilling, reaming and milling grooves, resulting in increased production costs and difficult to ensure the concentricity of the ring groove and drilling holes. Moreover, wooden boards are prone to collapse or delamination during processing, affecting the negative oxygen ion release performance.
A negative oxygen ion armor plate production equipment is designed, including a drilling machine. Through electric heads, connecting rods, side blades, hydraulic rods and other components, the synchronous operation of drilling, reaming and milling grooves is realized, and debris cleaning is optimized through the air pump cleaning mechanism.
High-precision synchronous processing of drilling, reaming and milling grooves is achieved, ensuring the high precision of the ring groove and the integrity of the plate structure, and improving production efficiency and product performance.
Smart Images

Figure CN119773003B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of drilling equipment, and in particular to a production device and process for a negative oxygen ion armor plate. Background Art
[0002] Negative oxygen ion wood armor plate is an environmentally friendly wood building material. During the production process, it is necessary to achieve bolt fixing and protective buckle cover installation through processes such as drilling, hole expansion and groove milling. However, the existing processing technology has significant defects for wood boards: traditional equipment can only complete a single drilling operation. If the ring groove required for the installation of the protective buckle cover needs to be milled, additional processes or equipment are required, resulting in increased production costs and difficulty in ensuring the concentricity of the ring groove and the drilled hole; the hardness of the wood board is uneven after functional treatment, and it is easy to produce edge collapse or delamination during processing. Especially in the groove milling process, the impact force of the tool may destroy the surface functional structure and affect the negative oxygen ion release performance; wood chip cleaning using high-pressure airflow is easy to peel off the surface of the board, liquid cleaning causes deformation, and dry dust removal is inefficient and easy to clog the pores; multiple processes require manual switching of equipment or tooling, and the cumulative error of repeated clamping of the workpiece is significant, which is difficult to meet the needs of large-scale production. Therefore, there is an urgent need for a negative oxygen ion armor plate production equipment and process to achieve simultaneous completion of drilling, hole expansion, and groove milling, ensure high-precision processing of the groove and the structural integrity of the board, and optimize the debris cleaning mechanism to improve production efficiency and product performance. Summary of the invention
[0003] The purpose of the present invention is to solve the shortcomings existing in the background technology and to propose a negative oxygen ion armor plate production equipment and process.
[0004] To achieve the above purpose, the technical solution adopted by the present invention is: a negative oxygen ion armor plate production equipment, including a drilling machine, the drilling machine includes a frame and an electric head, a connecting rod 1 is installed at the bottom of the electric head, the bottom of the connecting rod 1 is fixedly connected to a mounting column, a plurality of rotating shafts are fixedly connected to the inner upper part of the mounting column, the middle of the rotating shaft is rotatably connected to a connecting rod 2, both ends of the connecting rod 2 are rotatably connected to side blades, the side blades are arranged on both sides of the mounting column, an electric push rod is rotatably connected to one side of the bottom of the middle connecting rod 2, the bottom of the electric push rod is installed in the upper inner part of the mounting column, the upper parts of both sides of the mounting column are fixedly connected to guard plates, the guard plates are arranged on the outside of the connecting rod 2, a positioning drill bit is arranged at the bottom of the mounting column, a top column is fixedly connected to the middle of the top of the positioning drill bit, a limiting column is installed on the top of the top column, a pressure plate is fixedly connected to the top of the limiting column, the top of the pressure plate is against the connecting rod 2, and a spring is sleeved on the upper outer periphery of the limiting column, and the spring is arranged at the lower part of the pressure plate.
[0005] Preferably, a base is provided at the front side of the middle part of the top of the frame. Side frames are provided at the front and rear sides of the top of the base. Electric telescopic rods are installed on the inner sides of the adjacent parts of the side frames. Clamping plates are installed at the telescopic ends of the electric telescopic rods.
[0006] Preferably, a mounting frame is installed at the rear side of the middle part of the top of the frame. A cylinder frame is installed on the top of the mounting frame. A cylinder is installed at the front part of the cylinder frame. A top frame is installed at the bottom of the cylinder.
[0007] Preferably, a fixed clamp is rotatably connected to the inner side of the bottom of the top frame. An electric head is installed on the inner side of the middle part of the fixed clamp. Servo motors are installed on both sides of the lower part of the top frame. The driving ends of the servo motors are fixedly connected to both ends of the fixed clamp.
[0008] Preferably, the top column and the limit column are both slidably connected to the lower part inside the mounting column. Limit grooves are provided at the lower parts of both sides of the mounting column. Limit blocks are fixedly connected to both sides of the top column. The limit blocks and the limit grooves are slidably connected.
[0009] Preferably, a fixed sleeve is fixedly connected to the lower part of the outer periphery of the first connecting rod. A plurality of fixing rings are fixedly connected to the upper part inside the fixed sleeve. Hydraulic rods are fixedly connected to the bottoms of the fixing rings and are evenly distributed. Milling ring cutters are fixedly connected to the bottoms of the hydraulic rods.
[0010] Preferably, a plurality of milling ring cutters are provided. The milling ring cutters are all arranged at the lower part inside the fixed sleeve. Outer spray heads are fixedly connected to the upper part of the outer periphery of the fixed sleeve and are evenly distributed. Inner spray heads are fixedly connected to the upper part of the inner side of the fixed sleeve and are evenly distributed.
[0011] Preferably, a top disc is fixedly connected to the middle part of the outer periphery of the first connecting rod. One ends of the first connecting pipes are connected to both sides of the top of the top disc through the top disc. The ends of the first connecting pipes far away from the rotary joint are fixedly connected to pump chambers. The pump chambers are installed at the lower part of the outer periphery of the electric head.
[0012] Preferably, uniformly distributed second connecting pipes are fixedly connected to the outer periphery of the top disc. The ends of the second connecting pipes far away from the top disc are fixedly connected to the top of the fixed sleeve. The interiors of the fixed sleeves are communicated with the interior of the top disc through the second connecting pipes.
[0013] Preferably, a production process of negative oxygen ion armor plate includes the following production steps:
[0014] S1. Place the wooden board to be drilled on the upper part of the base. Then start the electric telescopic rods inside the side frames to push the clamping plates to clamp and fix the wooden board. Then people deflect the base to adjust the horizontal and deflection directions of the wooden board. When the drilling position of the wooden board is adjusted, start the electromagnet inside the frame to fix the base;
[0015] S2. After the wooden board is fixed, the servo motor drives the electric head and the drill bit to deflect, and cooperates with the base to adjust the drilling direction of the wooden board in multiple directions;
[0016] S3. During processing, the top cylinder of the top frame is first started to lower the top frame, and the wooden board is aligned with the positioning drill bit for positioning. After the positioning is completed, the electric head is started, and the connecting rod 1 is driven by the electric head to rotate at high speed, and the positioning drill bit is driven by the connecting rod 1 to rotate synchronously, and the wooden board is positioned by the positioning drill bit, and then the drilled positioning hole is further expanded by the side blade;
[0017] S4. When preparing to expand the hole, people start the electric push rod, and push the connecting rod 2 to deflect through the extension and contraction of the electric push rod, thereby driving the side blades on both sides to deflect up and down, so as to adjust the processing diameter of the side blades. When the connecting rod 2 deflects, it will simultaneously press down the pressure plate in contact with it, so that the positioning drill bit always maintains a distance from the side blade, so that the drilling and expanding work do not interfere with each other, and avoid the situation where the bottom of the side blade contacts the wooden board during drilling positioning, resulting in positioning deviation;
[0018] S5. When the drilling work is completed, the top frame is further lowered, so that the milling ring cutter is lowered to contact the wooden board, and a ring groove is milled around the drilled hole. During the processing, the drilling and milling work are realized at one time;
[0019] S6. When milling the groove, people start the hydraulic rod to drive each milling ring cutter to rise and fall respectively, and by controlling the rise and fall of different milling ring cutters, the processing of ring grooves with different diameters and groove widths can be realized during processing;
[0020] S7. During the drilling and milling work, people start the small air pump inside the pump compartment, and introduce gas into the through pipe through the work of the air pump. The gas will enter the fixed sleeve through the through pipe and will be discharged through the outer nozzle and the inner nozzle. After being discharged, the gas will clean the wood chips generated by drilling and milling. The synchronous impact cleaning of the inside and the outside can effectively prevent the wood chips from affecting the drilling and milling work.
[0021] Compared with the prior art, the present invention has the following beneficial effects:
[0022] 1. When the present invention is actually used, people can place the wooden board to be drilled on the upper part of the base, and then start the electric telescopic rod inside the side frame, so as to push the clamping plate to clamp and fix the wooden board. Then people can deflect the base to adjust the horizontal and deflection direction of the wooden board. When the drilling position of the wooden board is adjusted, the electromagnet inside the frame is started to fix the base. At the same time, the servo motor can drive the electric head and the drill bit to deflect, and cooperate with the base to realize multi-directional adjustment of the drilling direction of the wooden board, so that multiple processing of straight holes and inclined holes can be more conveniently realized.
[0023] 2. When preparing to expand the hole, people can start the electric push rod. The extension and retraction of the electric push rod can push the connecting rod 2 to deflect, thereby driving the side blades on both sides to deflect up and down, so as to adjust the processing diameter of the side blades. When the connecting rod 2 deflects, the pressure plate in contact with the lower part will be pressed down synchronously, so that the positioning drill bit will always maintain a distance from the side blade, so that the drilling and expanding work will not interfere with each other, and avoid the situation where the bottom of the side blade contacts the wooden board during drilling positioning, resulting in positioning deviation, which is beneficial to practical use.
[0024] 3. When the drilling work is completed, people can further lower the top frame so that the milling ring cutter can be lowered to contact the wooden board and mill a ring groove around the drilled hole, so that the drilling and milling work can be realized at the same time during processing. When milling the groove, people can start the hydraulic rod to drive each milling ring cutter to rise and fall respectively. By controlling the rise and fall of different milling ring cutters, the processing of ring grooves with different diameters and groove widths can be realized during processing.
[0025] 4. During the drilling work, people can start the small air pump inside the pump chamber. Through the work of the air pump, gas can be introduced into the through pipe 1. The gas will enter the fixed sleeve through the through pipe 1 and will be discharged through the outer nozzle and the inner nozzle. After the gas is discharged, the wood chips generated by drilling and milling will be cleaned. The synchronous impact cleaning of the inside and outside can effectively avoid the influence of wood chips on drilling and milling, which is beneficial to improve the processing effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 It is a schematic diagram of the front view of a three-dimensional structure of a negative oxygen ion armor plate production device and process of the present invention;
[0027] Figure 2 It is a schematic diagram of the partial structure of the electric head of a negative oxygen ion armor plate production device and process of the present invention;
[0028] Figure 3 It is a partial structural schematic diagram of a connecting rod of a negative oxygen ion armor plate production equipment and process of the present invention;
[0029] Figure 4 It is a partial structural schematic diagram of a fixed sleeve of a negative oxygen ion armor plate production device and process of the present invention;
[0030] Figure 5 It is a schematic diagram of the local structure of the top column of a negative oxygen ion armor plate production equipment and process of the present invention;
[0031] Figure 6 It is a schematic diagram of the partial structure of the connecting rod 2 and the rotating shaft of a negative oxygen ion armor plate production equipment and process of the present invention;
[0032] Figure 7 It is a schematic diagram of the partial structure of the hydraulic rod of a negative oxygen ion armor plate production equipment and process of the present invention.
[0033] 1. Drilling machine; 101. Frame; 102. Side frame; 103. Clamp; 104. Base; 105. Top frame; 106. Cylinder frame; 107. Servo motor; 108. Electric head; 109. Side blade; 110. Fixed sleeve; 111. Fixed clamp; 112. Pump chamber; 113. Through pipe 1; 114. Connecting rod 1; 115. External nozzle; 116. Milling ring cutter; 117. Limiting groove; 11 8. Limit block; 119. Positioning drill bit; 120. Guard plate; 121. Top plate; 122. Internal nozzle; 123. Second through pipe; 124. Rotary joint; 125. Mounting column; 126. Top column; 127. Spring; 128. Pressure plate; 129. Second connecting rod; 130. Rotating shaft; 131. Limit column; 132. Fixed ring; 133. Hydraulic rod; 134. Electric push rod; 135. Mounting frame. DETAILED DESCRIPTION
[0034] The following description is used to disclose the present invention so that those skilled in the art can implement the present invention. The preferred embodiments described below are only examples, and those skilled in the art may think of other obvious variations.
[0035] like Figure 1-Figure 7 The negative oxygen ion armor plate production equipment and process shown in the figure include a drilling machine 1, the drilling machine 1 includes a frame 101 and an electric head 108, a connecting rod 114 is installed at the bottom of the electric head 108, the bottom of the connecting rod 114 is fixedly connected to a mounting column 125, a plurality of rotating shafts 130 are fixedly connected to the inner upper part of the mounting column 125, the middle part of the rotating shaft 130 is rotatably connected to a connecting rod 2 129, both ends of the connecting rod 2 129 are rotatably connected to side blades 109, the side blades 109 are arranged on both sides of the mounting column 125, one side of the bottom of the middle connecting rod 2 129 is rotatably connected to an electric push rod 134, the bottom of the electric push rod 134 is installed in the upper inner part of the mounting column 125, and the upper parts of both sides of the mounting column 125 are fixedly connected to the guard plate 12 0, the guard plates 120 are all arranged on the outside of the second connecting rod 129, a positioning drill bit 119 is arranged at the bottom of the mounting column 125, a top column 126 is fixedly connected to the middle of the top of the positioning drill bit 119, a limiting column 131 is installed on the top of the top column 126, a pressure plate 128 is fixedly connected to the top of the limiting column 131, the top of the pressure plate 128 is against the second connecting rod 129, a spring 127 is sleeved on the upper part of the outer periphery of the limiting column 131, and the spring 127 is arranged at the lower part of the pressure plate 128, the top column 126 and the limiting column 131 are both slidably connected to the lower part of the inner part of the mounting column 125, and limiting grooves 117 are provided at the lower parts of both sides of the mounting column 125, and limiting blocks 118 are fixedly connected to both sides of the top column 126, and the limiting blocks 118 and the limiting grooves 117 are both slidably connected;
[0036] Furthermore, in the specific implementation, during processing, people can first start the top cylinder of the top frame 105 to lower the top frame 105, align the wooden board with the positioning drill bit 119 for positioning, and after the positioning is completed, people can start the electric head 108, and the electric head 108 can drive the connecting rod 114 to rotate at a high speed, and the connecting rod 114 can drive the positioning drill bit 119 to rotate synchronously, and the positioning drill bit 119 can realize the drilling positioning of the wooden board, and then the side blade 109 can realize the further expansion of the drilled positioning hole. When preparing to expand the hole, people The electric push rod 134 can be started, and the extension and retraction of the electric push rod 134 can push the connecting rod 129 to deflect, thereby driving the side blades 109 on both sides to deflect up and down, so as to adjust the processing diameter of the side blades 109. When the connecting rod 129 is deflected, the pressure plate 128 in contact with the lower part will be pressed down synchronously, so that the positioning drill bit 119 will always maintain a distance from the side blade 109, so that the drilling and reaming work will not interfere with each other, and the bottom of the side blade 109 will not contact the wooden board during drilling positioning, resulting in positioning deviation, which is beneficial to actual use.
[0037] Among them, a base 104 is arranged at the front side of the middle top of the frame 101, and side frames 102 are arranged at the front and rear sides of the top of the base 104, and an electric telescopic rod is installed on the inner side of a part close to the side frame 102, and a clamping plate 103 is installed on the telescopic end of the electric telescopic rod, and a mounting frame 135 is installed at the rear side of the middle top of the frame 101, and a cylinder frame 106 is installed on the top of the mounting frame 135, and a cylinder is installed at the front of the cylinder frame 106, and a top frame 105 is installed at the bottom of the cylinder, and a fixing clamp 111 is rotatably connected to the inner side of the bottom of the top frame 105, and an electric head 108 is installed on the inner side of the middle of the fixing clamp 111, and servo motors 107 are installed on both sides of the lower part of the top frame 105, and the driving ends of the servo motor 107 are fixedly connected to the two ends of the fixing clamp 111;
[0038] Furthermore, in the specific implementation, people can place the wooden board to be drilled on the upper part of the base 104, and then start the electric telescopic rod inside the side frame 102, so as to push the clamp 103 to clamp and fix the wooden board. Then, people can deflect the base 104 to adjust the horizontal and deflection direction of the wooden board. When the drilling position of the wooden board is adjusted, the electromagnet inside the frame 101 is started to fix the base 104. At the same time, the servo motor 107 can drive the electric head 108 and the drill bit to deflect, and cooperate with the base 104 to realize multi-directional adjustment of the drilling direction of the wooden board, so that multiple processing of straight holes and inclined holes can be more conveniently realized.
[0039] Among them, the lower part of the outer periphery of the connecting rod 114 is fixedly connected with a fixed sleeve 110, and the upper part of the fixed sleeve 110 is fixedly connected with a plurality of fixed rings 132, and the bottom of the fixed rings 132 is fixedly connected with evenly distributed hydraulic rods 133, and the bottom of the hydraulic rods 133 is fixedly connected with a milling ring cutter 116, and there are multiple milling ring cutters 116, and the milling ring cutters 116 are all arranged in the lower part of the fixed sleeve 110, and the upper part of the outer periphery of the fixed sleeve 110 is fixedly connected with evenly distributed external nozzles 115, and the upper part of the inner side of the fixed sleeve 110 is fixedly connected with evenly distributed internal nozzles 122;
[0040] Furthermore, in a specific implementation, when the drilling work is completed, people can further lower the top frame 105 so that the ring milling cutter 116 can be lowered to contact the wooden board and mill an annular groove around the drilled hole, so that the drilling and groove milling work can be realized at the same time during processing. When milling the groove, people can start the hydraulic rod 133 to drive each milling ring cutter 116 to rise and fall respectively. By controlling the lifting and lowering of different milling ring cutters 116, the processing of annular grooves with different diameters and groove widths can be realized during processing, which is beneficial to practical use.
[0041] The middle of the outer periphery of the connecting rod 114 is fixedly connected with the top plate 121, and both sides of the top of the top plate 121 are connected with the through pipe 113 through the top plate 121, and the end of the through pipe 113 away from the rotary joint 124 is fixedly connected with the pump chamber 112, and the pump chamber 112 is installed at the lower part of the outer periphery of the electric head 108, and the outer periphery of the top plate 121 is fixedly connected with the through pipe 2 123 evenly distributed, and the end of the through pipe 2 123 away from the top plate 121 is fixedly connected to the top of the fixed sleeve 110, and the interior of the fixed sleeve 110 is connected with the interior of the top plate 121 through the through pipe 2 123;
[0042] Furthermore, in specific implementation, during the drilling work, people can start the small air pump inside the pump chamber 112, and through the work of the air pump, gas can be introduced into the through pipe 113. The gas will enter the fixed sleeve 110 through the through pipe 113, and will be discharged through the outer nozzle 115 and the inner nozzle 122. After being discharged, the gas will clean the wood chips generated by drilling and milling. The synchronous impact cleaning of the inside and the outside can effectively avoid the influence of wood chips on the drilling and milling work, which is beneficial to improving the processing effect.
[0043] Among them, a negative oxygen ion armor plate production process includes the following production steps:
[0044] S1, place the wooden board to be drilled on the upper part of the base 104, then start the electric telescopic rod inside the side frame 102, so as to push the clamping plate 103 to clamp and fix the wooden board, then people deflect the base 104 to adjust the horizontal and deflection direction of the wooden board, and when the drilling position of the wooden board is adjusted, start the electromagnet inside the frame 101 to fix the base 104;
[0045] S2. After the wooden board is fixed, the servo motor 107 drives the electric head 108 and the drill bit to deflect, and cooperates with the base 104 to adjust the drilling direction of the wooden board in multiple directions;
[0046] S3. During processing, the top cylinder of the top frame 105 is first started to lower the top frame 105, and the wooden board is aligned with the positioning drill bit 119 for positioning. After the positioning is completed, the electric head 108 is started, and the connecting rod 114 is driven by the electric head 108 to rotate at a high speed, and the positioning drill bit 119 is driven by the connecting rod 114 to rotate synchronously, and the wooden board is positioned by the positioning drill bit 119, and then the drilled positioning hole is further expanded by the side blade 109;
[0047] S4. When preparing to expand the hole, people start the electric push rod 134, and push the connecting rod 129 to deflect through the extension and contraction of the electric push rod 134, thereby driving the side blades 109 on both sides to deflect up and down, so as to adjust the processing diameter of the side blades 109. When the connecting rod 129 deflects, it will simultaneously press down the pressure plate 128 that contacts with it at the lower part, so that the positioning drill bit 119 always maintains a distance from the side blade 109, so that the drilling and expanding work do not interfere with each other, and avoid the situation that the bottom of the side blade 109 contacts the wooden board during drilling positioning, resulting in positioning deviation;
[0048] S5. When the drilling work is completed, the top frame 105 is further lowered, so that the milling ring cutter 116 is lowered to contact the wooden board, and a ring groove is milled around the drilled hole. During the processing, the drilling and milling work are realized at one time;
[0049] S6. When milling the groove, people start the hydraulic rod 133 to drive each milling ring cutter 116 to move up and down respectively, and by controlling the lifting and lowering of different milling ring cutters 116, the processing of ring grooves with different diameters and groove widths can be achieved during processing;
[0050] S7. During the drilling and milling work, people start the small air pump inside the pump chamber 112, and introduce gas into the through pipe 113 through the work of the air pump. The gas will enter the fixed sleeve 110 through the through pipe 113, and will be discharged through the outer nozzle 115 and the inner nozzle 122. After being discharged, the gas will clean the wood chips generated by drilling and milling. The synchronous impact cleaning of the inside and the outside can effectively prevent the wood chips from affecting the drilling and milling work.
[0051] Working principle:
[0052] In actual use, people can place the wooden board to be drilled on the upper part of the base 104, and then start the electric telescopic rod inside the side frame 102, so as to push the clamping plate 103 to clamp and fix the wooden board. After that, people can deflect the base 104 to adjust the horizontal and deflection direction of the wooden board. When the drilling position of the wooden board is adjusted, the electromagnet inside the frame 101 is started to fix the base 104. At the same time, the servo motor 107 can drive the electric head 108 and the drill bit to deflect, and cooperate with the base 104 to realize multi-directional adjustment of the drilling direction of the wooden board, so that it can more conveniently realize multiple processing of straight holes and inclined holes. During work, people can first start the top cylinder of the top frame 105 to lower the top frame 105, align the wooden board with the positioning drill bit 119 for positioning, and after the positioning is completed, people can start the electric head 108, and the electric head 108 can drive the connecting rod 114 to rotate at a high speed, and the connecting rod 114 can drive the positioning drill bit 119 to rotate synchronously, and the positioning drill bit 119 can realize the drilling positioning of the wooden board, and then the side blade 109 can realize the further expansion of the drilled positioning hole. When preparing to expand the hole, people can start the electric push rod 134, and the extension of the electric push rod 134 can push the connecting rod 2 129 to deflect, thereby driving the side blades on both sides. 109 is deflected up and down, so that the processing diameter of the side blade 109 can be adjusted. When the connecting rod 129 is deflected, the pressure plate 128 in contact with the lower part will be pressed down synchronously, so that the positioning drill bit 119 will always maintain a distance from the side blade 109, so that the drilling and reaming work can not interfere with each other, and avoid the situation that the bottom of the side blade 109 contacts the wooden board during drilling positioning, resulting in positioning deviation, which is beneficial to practical use. When the drilling work is completed, people can further lower the top frame 105, so that the milling ring cutter 116 can be lowered to contact the wooden board, and a ring groove can be milled around the drill hole, so that the drilling and milling work can be realized at one time during processing. When milling the groove, people can By starting the hydraulic rod 133, each milling ring cutter 116 can be driven to rise and fall respectively. By controlling the rise and fall of different milling ring cutters 116, the ring grooves with different diameters and groove widths can be processed during processing, which is beneficial to practical use. During the drilling work, people can start the small air pump inside the pump chamber 112. Through the work of the air pump, gas can be introduced into the through pipe 113. The gas will enter the fixed sleeve 110 through the through pipe 113 and will be discharged through the outer nozzle 115 and the inner nozzle 122. After being discharged, the gas will clean up the wood chips generated by drilling and milling. The synchronous impact cleaning of the inside and outside can effectively prevent the wood chips from affecting the drilling and milling work, which is beneficial to improving the processing effect.
[0053] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions only describe the principles of the present invention. The present invention may be subject to various changes and improvements without departing from the spirit and scope of the present invention. These changes and improvements fall within the scope of the present invention. The scope of protection claimed by the present invention is defined by the attached claims and their equivalents.
Claims
1. A negative oxygen ion armor plate production device, comprising a drilling machine (1), characterized in that: The drilling machine (1) comprises a frame (101) and an electric head (108), wherein a connecting rod 1 (114) is installed at the bottom of the electric head (108), wherein the bottom of the connecting rod 1 (114) is fixedly connected to a mounting column (125), wherein a plurality of rotating shafts (130) are fixedly connected to the inner upper part of the mounting column (125), wherein the middle part of the rotating shaft (130) is rotatably connected to a connecting rod 2 (129), wherein both ends of the connecting rod 2 (129) are rotatably connected to side blades (109), wherein the side blades (109) are arranged on both sides of the mounting column (125), wherein one side of the bottom of the middle part of the connecting rod 2 (129) is rotatably connected to an electric push rod (134), wherein the bottom of the electric push rod (134) is installed The upper inner part of the mounting column (125) is fixedly connected to the upper parts of both sides of the mounting column (125) with guard plates (120), and the guard plates (120) are arranged on the outside of the second connecting rod (129). A positioning drill bit (119) is arranged at the bottom of the mounting column (125), and a top column (126) is fixedly connected to the middle of the top of the positioning drill bit (119). A limiting column (131) is installed on the top of the top column (126), and a pressure plate (128) is fixedly connected to the top of the limiting column (131). The top of the pressure plate (128) is pressed against the second connecting rod (129). A spring (127) is sleeved on the upper outer periphery of the limiting column (131), and the spring (127) is arranged at the bottom of the pressure plate (128).
2. The negative oxygen ion armor plate production equipment according to claim 1, characterized in that: A base (104) is arranged at the front side of the middle part of the top of the frame (101), and side frames (102) are arranged at the front and rear sides of the top of the base (104), and electric telescopic rods are installed on the inner sides of the adjacent parts of the side frames (102), and clamping plates (103) are installed at the telescopic ends of the electric telescopic rods.
3. The negative oxygen ion armor plate production equipment according to claim 1 is characterized in that: A mounting frame (135) is installed at the rear middle of the top end of the frame (101), a cylinder frame (106) is installed at the top of the mounting frame (135), a cylinder is installed at the front of the cylinder frame (106), and a top frame (105) is installed at the bottom of the cylinder.
4. The negative oxygen ion armor plate production equipment according to claim 3 is characterized in that: A fixing clamp (111) is rotatably connected to the inner side of the bottom of the top frame (105), an electric head (108) is installed on the inner side of the middle of the fixing clamp (111), servo motors (107) are installed on both sides of the lower part of the top frame (105), and the driving ends of the servo motors (107) are fixedly connected to both ends of the fixing clamp (111).
5. The negative oxygen ion armor plate production equipment according to claim 1, characterized in that: The top column (126) and the limiting column (131) are both slidably connected to the lower inner portion of the mounting column (125); limiting grooves (117) are provided at the lower portions of both sides of the mounting column (125); limiting blocks (118) are fixedly connected to both sides of the top column (126); and the limiting blocks (118) and the limiting grooves (117) are both slidably connected.
6. The negative oxygen ion armor plate production equipment according to claim 1, characterized in that: The lower portion of the outer periphery of the connecting rod 1 (114) is fixedly connected to a fixing sleeve (110), the upper portion of the inner periphery of the fixing sleeve (110) is fixedly connected to a plurality of fixing rings (132), the bottoms of the fixing rings (132) are all fixedly connected to evenly distributed hydraulic rods (133), and the bottoms of the hydraulic rods (133) are all fixedly connected to a milling ring cutter (116).
7. The negative oxygen ion armor plate production equipment according to claim 6, characterized in that: A plurality of the ring milling cutters (116) are provided, and the ring milling cutters (116) are all provided at the lower inner portion of the fixed sleeve (110). The upper outer portion of the fixed sleeve (110) is fixedly connected to uniformly distributed outer nozzles (115), and the upper inner portion of the fixed sleeve (110) is fixedly connected to uniformly distributed inner nozzles (122).
8. The negative oxygen ion armor plate production equipment according to claim 7, characterized in that: A top plate (121) is fixedly connected to the middle of the outer periphery of the connecting rod (114); both sides of the top of the top plate (121) are connected to a through pipe (113) via the top plate (121); one end of the through pipe (113) away from the rotary joint (124) is fixedly connected to a pump chamber (112); and the pump chamber (112) is mounted on the lower part of the outer periphery of the electric head (108).
9. The negative oxygen ion armor plate production equipment according to claim 8, characterized in that: The outer periphery of the top plate (121) is fixedly connected with evenly distributed second through pipes (123); one end of the second through pipes (123) away from the top plate (121) is fixedly connected to the top of the fixed sleeve (110); the interior of the fixed sleeve (110) is connected to the interior of the top plate (121) via the second through pipes (123).
10. A negative oxygen ion armor plate production process, applied to a negative oxygen ion armor plate production equipment according to any one of claims 1 to 9, characterized in that: The production process includes the following steps: S1, placing the wooden board to be drilled on the upper part of the base (104), then starting the electric telescopic rod inside the side frame (102), thereby pushing the clamping plate (103) to clamp and fix the wooden board, then people deflect the base (104) to adjust the horizontal and deflection direction of the wooden board, and when the drilling position of the wooden board is adjusted, start the electromagnet inside the frame (101) to fix the base (104); S2, after the wooden board is fixed, the servo motor (107) drives the electric head (108) and the drill bit to deflect, and cooperates with the base (104) to adjust the drilling direction of the wooden board in multiple directions; S3. During processing, the top cylinder of the top frame (105) is first started to lower the top frame (105), and the wooden board is aligned with the positioning drill bit (119) for positioning. After the positioning is completed, the electric head (108) is started, and the electric head (108) drives the connecting rod 1 (114) to rotate at a high speed, and the connecting rod 1 (114) drives the positioning drill bit (119) to rotate synchronously, and the positioning drill bit (119) is used to achieve the drilling positioning of the wooden board, and then the side blade (109) is used to further expand the drilled positioning hole; S4. When preparing to expand the hole, people start the electric push rod (134). The electric push rod (134) pushes the second connecting rod (129) to deflect, thereby driving the side blades (109) on both sides to deflect up and down, so as to adjust the processing diameter of the side blades (109). When the second connecting rod (129) deflects, it will simultaneously press down the pressure plate (128) in contact with the lower part, so that the positioning drill bit (119) always maintains a distance from the side blade (109), so that the drilling and expanding work do not interfere with each other, and avoid the situation that the bottom of the side blade (109) contacts the wooden board during drilling positioning, resulting in positioning deviation; S5. After the drilling work is completed, the top frame (105) is further lowered, so that the milling ring cutter (116) is lowered to contact the wooden board, and a ring groove is milled around the drilled hole. During the processing, the drilling and milling work are realized at one time; S6. When milling the groove, people start the hydraulic rod (133) to drive each milling ring cutter (116) to move up and down respectively, and by controlling the lifting and lowering of different milling ring cutters (116), the processing of ring grooves with different diameters and groove widths can be achieved during processing; S7. During the drilling and milling operations, people start the small air pump inside the pump chamber (112) to introduce gas into the through pipe (113) through the operation of the air pump. The gas will enter the interior of the fixed sleeve (110) through the through pipe (113) and will be discharged through the outer nozzle (115) and the inner nozzle (122). After being discharged, the gas will clean up the wood chips generated by the drilling and milling operations. The synchronous impact cleaning of the inside and the outside can effectively prevent the wood chips from affecting the drilling and milling operations.
Citation Information
Patent Citations
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