Glass fiber yarn drawing and oiling device with multiple components capable of being rapidly disassembled and assembled
By designing a glass fiber yarn drawing oiler that can be quickly disassembled and installed with multiple components, the problems of clumsy assembly and inconvenient disassembly of traditional oiler components are solved, and workers' labor intensity is reduced and component replacement time is shortened.
Patent Information
- Application Number
- CN202421723452.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-20
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-07-20
AI Technical Summary
The assembly method of traditional glass fiber yarn drawing oilers is clumsy and inconvenient to disassemble, which leads to high labor intensity and difficulty in operation.
A multi-component quick-disassembled glass fiber yarn drawing oiler is designed, adopting a pin design, quick joint and adjustable structure, including the main body frame, lower base plate, thermal insulation plate support rod, oil roller support arm, synchronization wheel, bearing seat, motor cover shell, oil roller, oil coupling box, main body cover plate, small baffle plate and thermal insulation plate and other components.
The rapid installation and disassembly of each component of the oiling applicator is realized, which reduces the labor intensity of workers and shortens the component replacement time. The position of the heat insulation plate and oiling box can be quickly adjusted according to different process needs.
Smart Images

Figure CN222935329U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of fiber manufacturing, and specifically discloses an oil applicator for drawing glass fiber yarns with multiple components that can be quickly disassembled and installed. Background Art
[0002] The oil applicator is usually located at a specific position in the glass fiber production line. When the glass fiber passes through the oil applicator, the device evenly applies the preset grease or lubricant on the fiber surface. This process helps to reduce the friction between the fibers and prevent the fibers from breaking or being damaged during subsequent processing.
[0003] According to different production requirements and process requirements, there are various types of oil applicators for glass fibers on the market. For example, some oil applicators use an immersion oiling method, immersing the glass fiber in grease; while some use a spray oiling method, spraying the grease on the fiber through a nozzle.
[0004] During the production and maintenance process of drawing glass fiber yarns, the assembly methods of the various components of the traditional oil applicator are clumsy, inconvenient to disassemble, and the labor intensity of workers is high. For example, the main frame of the traditional oil applicator has no drain outlet, and spray water often seeps in and cannot be discharged. After long-term operation, it causes equipment damage. Since it is in the core main body position of the equipment, it is inconvenient to disassemble and replace; the oil applicator motor is generally externally installed on the side of the oil applicator, making the overall size of the oil applicator wide and inconvenient for drawing operations; the main body cover plate is connected by hinges and can only be folded but not disassembled; the heat insulation plate is fixedly connected by bolts or welding and cannot be turned to adjust the position and angle. The drain outlet and the flexible water pipe are tied with buckles, which is inconvenient to disassemble when blocked. The connection with the main body is welded by a support rod and cannot be disassembled; the oil application roller shaft is integrally connected with the graphite roller and is inconvenient to disassemble. The oil application roller shaft and the support arm are connected by bearing insertion and are inconvenient to disassemble; the small baffle is connected by hinges and can only be folded but not disassembled; the oil receiving box often sprays oil when the oil supply pressure is too high. The single-layer design causes the return oil temperature of the sizing agent to be too high. The fixed position cannot adjust the position and height, and there is no return oil filter or the filter is not easy to clean and often blocks the return oil pipe; the installation cross beam is welded to the lower bottom plate and the main frame and is inconvenient to disassemble; the beam of the cluster hanging plate and the cluster support is welded and is inconvenient to disassemble, etc. The traditional oil applicator has the problems of clumsy assembly methods of various components, inconvenient disassembly, high labor intensity of workers, and difficult operation for workers.
[0005] Therefore, it is necessary to develop an oil applicator for drawing glass fiber yarns with multiple components that can be quickly disassembled and installed to overcome the above technical problems. Summary of the Utility Model
[0006] The technical solution adopted by the utility model is as follows:
[0007] The utility model provides a glass fiber yarn drawing oiler with multi-components that can be quickly disassembled and installed, including a main body frame 1, a lower bottom plate 2, a heat insulation plate support rod 3, an oiling roller support arm 6, a first synchronous pulley 9, a second synchronous pulley 10, a bearing seat 12, a motor cover 13, an oiling roller 14, an oil receiving box 15, a main body cover plate 20, a small baffle 21, a heat insulation plate 26, and a three-phase asynchronous motor 28;
[0008] The main body frame 1 is of an h shape and includes a straight plate 1-1 and an L-shaped plate 1-2; a motor hole 1-4 and a bearing seat hole 1-5 are respectively provided on the straight plate 1-1; the three-phase asynchronous motor 28 is connected to the inner side of the motor hole 1-4, and the other end of the three-phase asynchronous motor 28 passes through the straight plate 1-1 and is connected to the first synchronous pulley 9 on the outer side; the bearing seat 12 is installed in the bearing seat hole 1-5, the second synchronous pulley 10 is installed on the outer side of the bearing seat 12, and the inner side of the bearing seat 12 is connected to the oiling roller 14; the oiling roller support arm 6 is installed on the plate surface of the L-shaped plate 1-2 opposite to the straight plate 1-1; the first synchronous pulley 9 and the second synchronous pulley 10 are connected by a transmission belt for transmission; a water guide groove 1-3 structure is provided on the top sides of the straight plate 1-1 and the L-shaped plate 1-2, so that the spray water flows out along the water guide groove to prevent water from accumulating inside the main body;
[0009] An oil receiving box 15 is provided below the oiling roller 14; the oil receiving box 15 is designed with two layers, including an upper shell 15-2 and a lower shell 15-1, both layers are of a U-shaped structure, the lower shell 15-1 wraps around the outer side of the upper shell 15-2, the sizing agent located in the upper shell 15-2 is applied through the oiling roller 14, and then the excess sizing agent reaches the lower shell 15-1 through the notch of the upper shell 15-2. This design increases the flow area of the sizing agent and enables better cooling of the sizing agent; a return oil box 15-4 is provided at one end of the lower shell 15-1 for the circulation of the sizing agent; an oil inlet 15-7 is provided below the other end of the lower shell 15-1, and an oil inlet baffle 15-3 is fixed above the oil inlet 15-7 to prevent the sizing agent from spraying out when the pressure is too high; a small circulation tank 15-5 is provided below the return oil box 15-4 and is connected to the oil inlet 15-7 to complete the circulation;
[0010] The lower bottom plate 2 is installed below the main body frame 1; the motor cover 13 is installed on the outer side of the straight plate 1-1 to wrap the first synchronous pulley 9 and the second synchronous pulley 10;
[0011] The main body cover plate 20 is connected above the straight plate 1-1 and the L-shaped plate 1-2; the main body cover plate 20 is a semi-circular cover plate and is designed with three bends to prevent the spray water falling on the main body cover plate from flowing forward into the oil receiving box; a main body cover plate plug 20-1 is welded on the inner edge of the main body cover plate to cooperate with the main body frame 1 for easy opening and closing, and a threaded hole piece 20-3 is provided on the inner side of the panel to cooperate with the lower connecting block of the heat insulation plate 26; a round tube 20-2 that cooperates with the plug 21-3 of the small baffle 21 is provided on the outer edge of the panel;
[0012] The heat insulation plate 26 is connected to the main body cover plate 20 through a heat insulation plate connecting piece; the main body plate 26-1 of the heat insulation plate is a rectangular plate-like structure with three sides folded, forming a trough shape to collect the spray water above; the plate surface of the main body plate 26-1 of the heat insulation plate inclines towards a corner of the opposite side without folding edges, so that the collected spray water converges at the inclined corner. At the same time, a hole is provided at the corner where the spray water converges and a quick connector 26-7 is connected. The lower end of the quick connector 26-7 is connected to a water pipe to realize the recycling of the spray water. At the same time, the quick connector 26-7 is applied to achieve quick disassembly when the heat insulation plate 26 is replaced; a heat insulation plate support rod 3 is connected below the plate surface of the main body plate 26-1 of the heat insulation plate towards the opposite side without folding edges. The heat insulation plate support rod 3 passes through the lower bottom plate 2 and is adjustably connected to the lower bottom plate 2, so that the position of the heat insulation plate 26 is adjusted by adjusting the height of the heat insulation plate support rod 3; a slide rail structure with one end open and one end closed is provided at the bottom of the trough of the main body plate 26-1 of the heat insulation plate, and the heat insulation plate connecting piece is connected to the slide rail structure;
[0013] The heat insulation plate connecting piece includes a fixed base 23, a rotating block 24 and a slider 25; the fixed base 23 is fixedly connected to the main body cover plate 20; the slider 25 is connected to the side of the fixed base 23, and the slider 25 cooperates with the slide rail structure on the main body plate 26-1 of the heat insulation plate to complete sliding; the rotating block 24 is rotatably connected to the side of the slider 25 and rotates to block the sliding of the heat insulation plate 26 on the slide rail after the slider 25 determines the position;
[0014] The small baffle 21 is connected to the main body cover plate 20 and has a gap with the oiling roller 14 in the horizontal direction, so that the spray water cannot flow into the lower oil receiving box 15; the small baffle 21 includes an upper plate 21-1 with a flat plate structure and a hook plate 21-2; the hook plate 21-2 is vertically connected to the edge of the upper plate 21-1 to form a U-shaped groove; the hook plate 21-2 is longer than the oiling roller 14, and the spray water received by the hook plate 21-2 will not flow into the oil receiving box 15 from both ends; insertion pins 21-3 are provided at the edges of the opposite sides of the hook plate 21-2 to facilitate the installation and replacement of the small baffle 21; a baffle 21-4 is provided on the plate surface of the small baffle 21 and cooperates with the matching limiting device on the oiling roller support arm 6, so that the small baffle 21 will not fall off without uncovering the small baffle 21 upward.
[0015] Preferably, the lower bottom plate 2 is a rectangular plate, and lower bottom plate baffles 2-1 are provided on three sides of the rectangular plate. A rectangular pipe 2-2 with a waist-shaped hole is connected below; a steel plate 2-3 with holes is connected to the outside of the lower bottom plate 2 for cooperating with and fixing the heat insulation plate support rod 3.
[0016] Further, the glass fiber yarn drawing oiler further includes an oiler installation cross beam 4, and the oiler installation cross beam 4 is connected to the waist-shaped hole on the rectangular pipe 2-2 through a cross beam buckle 5;
[0017] The installation cross beam 4 includes a main beam 4-2, L-shaped corner plates 4-1 located on both sides of the main beam 4-2, and an angle steel 4-3 connected to the main beam 4-2. The angle steel 4-3 is at a horizontal and vertical 90°, and fits the plane of the rectangular pipe; the cross beam buckle 5 matches the outer shape of the main beam 4-2, and has small holes at both ends for matching the waist holes of the rectangular pipe 2-2.
[0018] Furthermore, the glass fiber yarn drawing oiler is also provided with a first beam hanging plate 27. There are two small waist holes above the first beam hanging plate 27, which are connected to the cross beam buckle 5 to connect the first beam hanging plate 27 to the oiler; there are three large waist holes below, where the middle large waist hole is used for passing the beam spray, and the two side waist holes are used for connecting with the first beam support 27-1;
[0019] The first beam support 27-1 includes a beam wheel mounting seat 27-2 and a beam wheel support rod 27-3; the beam wheel mounting seat 27-2 includes a flat steel plate and a steel pipe vertically connected to the steel plate surface; the beam wheel support rod 27-3 includes a fixed rod and a movable rod. The fixed rod passes through the steel pipe of the beam wheel mounting seat 27-2 and is connected to the flat steel plate, and one end of the movable rod is rotatably connected to the end of the fixed rod and the other end is connected to the beam wheel.
[0020] Preferably, there is a motor mounting plate 8 between the three-phase asynchronous motor 28 and the straight plate 1-1. The motor mounting plate 8 matches the outer shape of the three-phase asynchronous motor 28 to facilitate the fixation of the three-phase asynchronous motor 28.
[0021] Preferably, there is a milling groove on the oiling roller support arm 6, and a bushing 7 is placed in the milling groove. The end of the oiling roller 14 passes through the bushing 7;
[0022] The matching limiting device on the oiling roller support arm 6 and the oiling roller support arm 6 is a limiting bolt 5-2, and there is a threaded hole 5-1 for matching the adjustment height below the limiting bolt 5-2.
[0023] Preferably, a pair of heat insulation plate connectors are symmetrically arranged, including a left heat insulation plate mounting part 22 and a right heat insulation plate mounting part.
[0024] Preferably, the side of the oil receiving box 15 is fixed through the cooperation of an oil receiving box mounting part 16 and an oil receiving box fixing bolt 18; the lower part is connected through an oil receiving box lower clamp 17;
[0025] A connecting plate 15-6 is arranged below the oil receiving box 15; an opening groove is provided at the end of the connecting plate 15-6, the lower clamping block 17 of the oil receiving box is located on the opening groove, and a clamping block fastening piece 15-10 is arranged on the side of the lower clamping block 17 of the oil receiving box; the clamping block fastening piece 15-10 is connected to the main body frame 1, and a slotted opening is provided on the contact surface between the clamping block fastening piece 15-10 and the lower clamping block 17 of the oil receiving box; openings are provided on the surfaces of the lower clamping block 17 of the oil receiving box opposite to the opening groove at the end of the connecting plate 15-6 and the slotted opening of the clamping block fastening piece 15-10, and they are connected by a wing bolt 15-11 to achieve the function of quickly adjusting the position of the lower clamping block 17 of the oil receiving box.
[0026] Preferably, an oil receiving box filter screen 19 is arranged in the oil return box 15-4 to prevent impurities from entering the small circulation tank 15-5 through the oil return box, and it is also convenient for cleaning.
[0027] Preferably, a small threaded plate is provided at the end of the heat insulation plate support rod 3 for adjusting the heat insulation plate support rod 3. The lower half of the heat insulation plate support rod 3 is tapped and equipped with a nut to achieve the height adjustment and fixation of the heat insulation plate support rod. By adjusting the height of the heat insulation plate support rod, the quick disassembly and adjustment of the heat insulation plate can be changed.
[0028] The beneficial effects achieved by the present utility model are as follows:
[0029] The present utility model can reduce the labor intensity of workers, shorten the replacement time of the components of the oiler, and has made a structural design for the quick installation and disassembly of the components of the oiler to the greatest extent possible. The diameters of the oiling rollers used in different wire drawing processes also change accordingly. In order to meet different process requirements, the designed heat insulation plate and oil receiving box can be quickly disassembled and adjusted back and forth, up and down. Moreover, the heat insulation plate, small baffle, and main body cover plate adopt a pin design for quick disassembly. The main body cover plate and the lower bottom plate have a quick-opening design for hemming. The fixing holes for the motor and the main body frame are placed inside, and the motor can be quickly disassembled and repaired. The first cluster sleeve design can quickly complete the disassembly and adjustment at various angles. Description of the Drawings
[0030] Figure 1 It is a schematic structural diagram of a glass fiber yarn drawing oiler with multi-component quick disassembly and installation according to the present utility model;
[0031] (a) Front view, (b) Cross-sectional view of the aa plane, (c) Cross-sectional view of the bb plane, (d) Cross-sectional view of the cc plane;
[0032] Figure 2 It is a three-dimensional structural diagram of a glass fiber yarn drawing oiler with multi-component quick disassembly and installation according to the present utility model;
[0033] Figure 3 It is a schematic structural diagram of the main body frame of the present utility model;
[0034] Figure 4Schematic diagram of the lower base plate structure of the present utility model;
[0035] Figure 5 Schematic diagram of the main body cover plate structure of the present utility model;
[0036] Figure 6 Schematic diagram of the heat insulation plate structure of the present utility model;
[0037] Figure 7 Schematic diagram of the heat insulation plate connecting piece structure of the present utility model;
[0038] Figure 8 Schematic diagram of the oiling roller structure of the present utility model;
[0039] Figure 9 Schematic diagram of the oiler bushing structure of the present utility model;
[0040] Figure 10 Schematic diagram of the small baffle structure of the present utility model;
[0041] Figure 11 Schematic diagram of the oil receiving box structure of the present utility model;
[0042] Figure 12 Schematic diagram of the lower clamping block structure of the oil receiving box of the present utility model;
[0043] Figure 13 Schematic diagram of the oiler installation cross beam structure of the present utility model;
[0044] Figure 14 Schematic diagram of the first cluster hanging plate structure of the present utility model;
[0045] Figure 15 Schematic diagram of the first cluster support structure of the present utility model. Detailed implementation manners
[0046] In order to make the objectives, technical solutions and advantages of the present utility model clearer and more definite, the present utility model will be further described in detail below in combination with the following embodiments. It should be noted that the present utility model is not limited to the following embodiments.
[0047] Embodiment 1
[0048] A glass fiber yarn drawing oiler with multi-components that can be quickly disassembled and installed, including a main body frame 1, a lower base plate 2, a heat insulation plate support rod 3, an oiling roller support arm 6, a first synchronous pulley 9, a second synchronous pulley 10, a bearing seat 12, a motor housing 13, an oiling roller 14, an oil receiving box 15, a main body cover plate 20, a small baffle 21, a heat insulation plate 26, and a three-phase asynchronous motor 28;
[0049] The main body frame 1 is in an H shape and includes a straight plate 1-1 and an L-shaped plate 1-2; a motor hole 1-4 and a bearing seat hole 1-5 are respectively provided on the straight plate 1-1; a three-phase asynchronous motor 28 is connected to the inner side of the motor hole 1-4, and the other end of the three-phase asynchronous motor 28 passes through the straight plate 1-1 and is connected to a first synchronous pulley 9 on the outside. A key 11 is provided in the outer direction of the first synchronous pulley 9 to facilitate positioning in cooperation with the motor housing 13; a bearing seat 12 is installed in the bearing seat hole 1-5, a second synchronous pulley 10 is installed on the outside of the bearing seat 12, and an oiling roller 14 is connected to the inner side of the bearing seat 12; an oiling roller support arm 6 is installed on the plate surface of the L-shaped plate 1-2 opposite to the straight plate 1-1; a milling groove is provided on the oiling roller support arm 6, a bushing 7 is placed in the milling groove, and the end of the oiling roller 14 passes through the bushing 7; the matching limit device on the oiling roller support arm 6 is a limit bolt 5-2, and a threaded hole 5-1 for adjusting the height in cooperation is provided below the limit bolt 5-2. The first synchronous pulley 9 and the second synchronous pulley 10 are connected by a transmission belt for transmission; a water guide groove 1-3 structure is provided on the top sides of the straight plate 1-1 and the L-shaped plate 1-2, so that the sprayed water flows out along the water guide groove to prevent water from accumulating inside the main body;
[0050] An oil receiving box 15 is provided below the oiling roller 14; the oil receiving box 15 is designed in two layers and includes an upper shell 15-2 and a lower shell 15-1. Both layers are in a U-shaped structure, and the lower shell 15-1 is wrapped outside the upper shell 15-2. The sizing agent on the upper shell 15-2 is applied through the oiling roller 14, and then the excess sizing agent reaches the lower shell 15-1 through the notch of the upper shell 15-2. This design increases the flow area of the sizing agent and enables better cooling of the sizing agent; a return oil box 15-4 is provided at one end of the lower shell 15-1 for the circulation of the sizing agent; an oil inlet 15-7 is provided below the other end of the lower shell 15-1, and an oil inlet baffle 15-3 is fixed above the oil inlet 15-7 to prevent the sizing agent from spraying out when the pressure is too high; a small circulation tank 15-5 is provided below the return oil box 15-4 and is connected to the oil inlet 15-7 to complete the circulation; the side of the oil receiving box 15 is fixed by cooperation of an oil receiving box mounting part 16 and an oil receiving box fixing bolt 18; it is connected below through an oil receiving box lower clamp 17; a connecting plate 15-6 is provided below the oil receiving box 15; an opening groove is provided at the end of the connecting plate 15-6, and the oil receiving box lower clamp 17 is located on the opening groove. A clamp fastening piece 15-10 is provided on the side of the oil receiving box lower clamp 17; the clamp fastening piece 15-10 is connected to the main body frame 1, and a slotted groove is provided on the contact surface between the clamp fastening piece 15-10 and the oil receiving box lower clamp 17; openings are provided on the surfaces of the oil receiving box lower clamp 17 opposite to the opening groove at the end of the connecting plate 15-6 and the slotted groove of the clamp fastening piece 15-10, and they are connected by a wing bolt 15-11 to achieve the function of quickly adjusting the position of the oil receiving box lower clamp 17. An oil receiving box filter screen 19 is provided in the return oil box 15-4 to prevent impurities from entering the small circulation tank 15-5 through the return oil box and is convenient for cleaning at the same time.
[0051] The lower bottom plate 2 is installed below the main body frame 1; the motor cover 13 is installed outside the straight plate 1-1 to wrap the first synchronous pulley 9 and the second synchronous pulley 10; the lower bottom plate 2 is a rectangular plate, and lower bottom plate baffles 2-1 are provided on three sides of the rectangular plate. A rectangular pipe 2-2 with slotted holes is connected below; a perforated steel plate 2-3 is connected to the outside of the lower bottom plate 2 for cooperating with and fixing the heat insulation plate support rod 3. The glass fiber yarn drawing oiler further includes an oiler installation cross beam 4, and the oiler installation cross beam 4 is connected to the slotted holes on the rectangular pipe 2-2 through a cross beam buckle 5; the installation cross beam 4 includes a main beam 4-2, L-shaped corner plates 4-1 on both sides of the main beam 4-2, and an angle steel 4-3 is connected to the main beam 4-2. The angle steel 4-3 is at a horizontal and vertical 90°, and fits with the plane of the rectangular pipe; the cross beam buckle 5 fits the outer shape of the main beam 4-2, and fine holes for cooperating with the slotted holes of the rectangular pipe 2-2 are provided at both ends. The glass fiber yarn drawing oiler further includes a first beam hanging plate 27. Two small slotted holes are provided above the first beam hanging plate 27 and are connected to the cross beam buckle 5 to connect the first beam hanging plate 27 to the oiler; three large slotted holes are provided below, and the middle large slotted hole is used for passing the beam spray, and the slotted holes on both sides are used for connecting with the first beam support 27-1; the first beam support 27-1 includes a beam wheel mounting seat 27-2 and a beam wheel support rod 27-3; the beam wheel mounting seat 27-2 includes a flat steel plate and a steel pipe vertically connected to the steel plate surface; the beam wheel support rod 27-3 includes a fixed rod and a movable rod. The fixed rod passes through the steel pipe of the beam wheel mounting seat 27-2 and is connected to the flat steel plate. One end of the movable rod is rotatably connected to the end of the fixed rod, and the other end is connected to the beam wheel.
[0052] The oiling roller 14 includes an oiling roller shaft 14-1. A first thrust ring 14-2 and a second thrust ring 14-3 are arranged on both sides of the oiling roller shaft 14-1 to fix the oiling roller to the shaft; one end of the oiling roller shaft 14-1 is connected to a bearing seat. When disassembling the oiling roller, first lift one end of the roller together with the bearing seat, pull out the connecting part between the oiling roller shaft 14-1 and the bearing seat to realize disassembly, then remove the first thrust ring 14-2 and the second thrust ring 14-3, and then take out the oiling roller 14-1 for polishing.
[0053] The main body cover plate 20 is connected above the straight plate 1-1 and the L-shaped plate 1-2; the main body cover plate 20 is a semi-circular arc cover plate, which is designed with three bends to prevent the spray water falling on the main body cover plate from flowing forward into the oil receiving box; the inner edge of the main body cover plate 20 is designed and welded with a main body cover plate plug 20-1 to cooperate with the main body frame 1 for easy opening and closing. A threaded hole plate 20-3 is provided on the inner side of the panel to cooperate with the lower connecting clamp block of the heat insulation plate 26; a round pipe 20-2 for cooperating with the plug 21-3 of the small baffle 21 is provided on the outer edge of the panel.
[0054] The heat insulation plate 26 is connected to the main body cover plate 20 through a connecting piece; the main board body 26-1 of the heat insulation plate is a rectangular plate-like structure with three sides folded, forming a trough shape to collect the spray water above; the plate surface of the main board body 26-1 of the heat insulation plate is inclined towards a corner of the opposite side that is not folded, so that the collected spray water converges at the inclined angle. At the same time, a hole is provided at the corner where the spray water converges and a quick connector 26-7 is connected. The lower end of the quick connector 26-7 is connected to a water pipe to realize the recycling of the spray water. At the same time, the application of the quick connector 26-7 enables quick disassembly when the heat insulation plate 26 is replaced; a heat insulation plate support rod 3 is connected below the plate surface of the main board body 26-1 of the heat insulation plate towards the opposite side that is not folded. The heat insulation plate support rod 3 passes through the lower bottom plate 2 and is adjustably connected to the lower bottom plate 2, so that the position of the heat insulation plate 26 can be adjusted by adjusting the height of the heat insulation plate support rod 3; a slide rail structure with one end open and one end closed is provided at the bottom of the trough of the main board body 26-1 of the heat insulation plate, and the heat insulation plate connecting piece is connected to the slide rail structure;
[0055] The heat insulation plate connecting piece includes a fixed base 23, a rotating block 24 and a slider 25; the fixed base 23 is fixedly connected to the main body cover plate 20; the slider 25 is connected to the side of the fixed base 23, and the slider 25 cooperates with the slide rail structure on the main board body 26-1 of the heat insulation plate to complete sliding; the rotating block 24 is rotatably connected to the side of the slider 25 and rotates to block the sliding of the heat insulation plate 26 on the slide rail after the slider 25 determines the position;
[0056] The slide rail structure includes a left slide rail 26-2, a right slide rail 26-3 and a slide rail baffle 26-5; an L-shaped handle 26-4 is welded to the upper right corner of the heat insulation plate, which can facilitate the operation of rotating the heat insulation plate; a reinforcing plate 26-6 is welded to the contact part between the heat insulation plate and the support rod to prevent the support rod from deforming the heat insulation plate.
[0057] A pair of the heat insulation plate connecting pieces are symmetrically arranged, including a left heat insulation plate mounting piece 22 and a right heat insulation plate mounting piece.
[0058] The small baffle 21 is connected to the main body cover plate 20 and has a gap with the oiling roller 14 in the horizontal direction, so that the spray water cannot flow into the lower oil receiving box 15; the small baffle 21 includes an upper plate 21-1 with a flat plate structure and a hook plate 21-2; the hook plate 21-2 is vertically connected to the edge of the upper plate 21-1 to form a U-shaped groove; the hook plate 21-2 is longer than the oiling roller 14, and the spray water caught by the hook plate 21-2 will not flow into the oil receiving box 15 from both ends; insertion pins 21-3 are provided at the edges of the opposite sides of the hook plate 21-2 to facilitate the installation and replacement of the small baffle; a baffle 21-4 is provided on the plate surface of the small baffle 21 and cooperates with the matching limiting device on the oiling roller support arm 6, so that the small baffle 21 will not fall off without lifting the small baffle 21 upwards.
[0059] There is a motor mounting plate 8 between the three-phase asynchronous motor 28 and the straight plate 1-1. The motor mounting plate 8 matches the outer shape of the three-phase asynchronous motor 28 to facilitate the fixation of the three-phase asynchronous motor 28.
[0060] At the end of the heat insulation plate support rod 3, there is a small threaded plate for adjusting the heat insulation plate support rod 3. The lower half of the heat insulation plate support rod 3 is tapped and equipped with a nut to achieve the height adjustment and fixation of the heat insulation plate support rod, and the quick disassembly adjustment of the heat insulation plate is changed by adjusting the height of the heat insulation plate support rod.
Claims
1. A glass fiber yarn drawing oiler with multiple components that can be quickly disassembled and installed, characterized in that: It comprises a main frame (1), a lower bottom plate (2), a heat shield support rod (3), an oiling roller support arm (6), a first synchronous wheel (9), a second synchronous wheel (10), a bearing seat (12), a motor cover (13), an oiling roller (14), an oil receiving box (15), a main body cover plate (20), a small baffle plate (21), a heat shield (26), and a three-phase asynchronous motor (28); The main frame (1) is H-shaped and includes a straight plate (1-1) and an L-shaped plate (1-2); the straight plate (1-1) is provided with a motor hole (1-4) and a bearing seat hole (1-5); the inner side of the motor hole (1-4) is connected to a three-phase asynchronous motor (28), and the other end of the three-phase asynchronous motor (28) passes through the straight plate (1-1) and is connected to a first synchronous wheel (9) on the outer side; a bearing seat (12) is installed in the bearing seat hole (1-5), and the bearing seat (12 ) is installed on the outside of the second synchronous wheel (10), and the inside of the bearing seat (12) is connected to the oiling roller (14); the oiling roller support arm (6) is installed on the plate surface of the L-shaped plate (1-2) opposite to the straight plate (1-1); the first synchronous wheel (9) and the second synchronous wheel (10) are connected by a transmission belt for transmission; the top sides of the straight plate (1-1) and the L-shaped plate (1-2) are provided with a water guide groove (1-3) structure, so that the spray water flows out along the water guide groove to prevent water accumulation inside the main body; An oil receiving box (15) is provided below the oiling roller (14); the oil receiving box (15) is designed in two layers, including an upper shell (15-2) and a lower shell (15-1), both of which are U-shaped structures, and the lower shell (15-1) is wrapped around the outer side of the upper shell (15-2); an oil return box (15-4) is provided at one end of the lower shell (15-1) for circulating the impregnant; an oil inlet (15-7) is provided below the other end of the lower shell (15-1), and an oil inlet baffle (15-3) is fixed above the oil inlet (15-7) to prevent the impregnant from spraying out when the pressure is too high; a small circulation tank (15-5) is provided below the oil return box (15-4) and connected to the oil inlet (15-7) to complete the circulation; The lower base plate (2) is installed below the main frame (1); the motor cover (13) is installed outside the straight plate (1-1) to wrap the first synchronous wheel (9) and the second synchronous wheel (10); The main body cover plate (20) is connected to the upper part of the straight plate (1-1) and the L-shaped plate (1-2); the main body cover plate (20) is a semicircular arc cover plate with a three-section bending design to prevent the spray water falling on the main body cover plate from flowing forward into the oil receiving box; the inner edge of the main body cover plate (20) is provided with a main body cover plate latch (20-1) which cooperates with the main body frame (1) for easy opening and closing, and the inner side of the panel is provided with a threaded hole sheet (20-3) which cooperates with the lower connecting clamp block of the heat insulation plate (26); the outer edge of the panel of the main body cover plate (20) is provided with a round tube (20-2) which cooperates with the latch (21-3) of the small baffle (21); The heat insulation board (26) is connected to the main body cover (20) through the heat insulation board connector; the heat insulation board main body (26-1) is a rectangular plate structure with three folded edges, so that the heat insulation board main body (26-1) forms a groove shape to collect the spray water above; the plate surface of the heat insulation board main body (26-1) is inclined toward a corner of the opposite side without the folded edge, so that the collected spray water is gathered at the inclined angle, and at the same time, a hole is set at the corner where the spray water is gathered and connected to a quick connector (26-7), and the quick connector (26-7) is lower The end is connected to a water pipe to realize the recovery of spray water; a heat insulation board support rod (3) is connected to the lower side of the plate surface of the heat insulation board main body (26-1) opposite to the non-folded edge, and the heat insulation board support rod (3) passes through the lower bottom plate (2) and is adjustably connected to the lower bottom plate (2), so that the position of the heat insulation board (26) can be adjusted by adjusting the height of the heat insulation board support rod (3); a slide rail structure with one end open and the other end closed is provided at the grooved bottom of the heat insulation board main body (26-1), and the heat insulation board connecting piece is connected to the slide rail structure; The heat insulation board connecting member comprises a fixed base (23), a rotating stopper (24) and a sliding block (25); the fixed base (23) is fixedly connected to the main body cover (20); the sliding block (25) is connected to the side of the fixed base (23), and the sliding block (25) cooperates with the slide rail structure on the heat insulation board main body (26-1) to complete sliding; the rotating stopper (24) is rotatably connected to the side of the sliding block (25), and after the sliding block (25) determines the position, it rotates to the slide rail to block the heat insulation board (26) from sliding; The small baffle (21) is connected to the main body cover plate (20) and has a gap with the oiling roller (14) in the horizontal direction, so that the spray water cannot flow into the oil receiving box (15) below; the small baffle (21) comprises an upper plate (21-1) and a hook plate (21-2) of a flat plate structure; the hook plate (21-2) is vertically connected to the edge of the upper plate (21-1) to form a U-shaped groove; the hook plate (21-2) is longer than the oiling roller (14), and the spray water received by the hook plate (21-2) will not flow into the oil receiving box (15) from both ends; a latch (21-3) is provided at the edge of the opposite side of the hook plate (21-2) to facilitate the installation and replacement of the small baffle; a baffle (21-4) is provided on the plate surface of the small baffle (21) to cooperate with a matching limit device provided on the oiling roller support arm (6) so that the small baffle (21) will not fall off when the small baffle (21) is not lifted upward.
2. The multi-component glass fiber yarn drawing oiler that can be quickly disassembled and installed according to claim 1 is characterized in that: The lower base plate (2) is a rectangular plate, and the three sides of the rectangular plate are provided with a lower base plate baffle (2-1) and a rectangular tube (2-2) with a waist hole is connected below; the outer side of the lower base plate (2) is connected with a steel plate (2-3) with holes for cooperating with and fixing the heat insulation board support rod (3).
3. The multi-component glass fiber yarn drawing oiler that can be quickly disassembled and installed according to claim 2 is characterized in that: The glass fiber yarn drawing oiler is also provided with an oiler mounting crossbeam (4), and the oiler mounting crossbeam (4) is connected with the waist hole on the rectangular tube (2-2) through a crossbeam buckle (5); The installation crossbeam (4) comprises a main beam (4-2), L-shaped angle plates (4-1) located on both sides of the main beam (4-2), and an angle steel (4-3) connected to the main beam (4-2). The angle steel (4-3) is horizontally vertical at 90 degrees and fits with the plane of the rectangular tube; the crossbeam buckle (5) matches the shape of the main beam (4-2), and fine holes matching the waist holes of the rectangular tube (2-2) are provided at both ends.
4. The multi-component glass fiber yarn drawing oiler that can be quickly disassembled and installed according to claim 3 is characterized in that: The glass fiber yarn drawing oiler is also provided with a first clustering hanging plate (27), and two small waist holes are provided above the first clustering hanging plate (27), which are connected with the crossbeam buckle (5) so that the first clustering hanging plate (27) is connected with the oiler; three large waist holes are provided below, wherein the middle large waist hole is used for passing the clustering spray, and the waist holes on both sides are used for connecting with the first clustering bracket (27-1); The first clustering bracket (27-1) comprises a clustering wheel mounting seat (27-2) and a clustering wheel support rod (27-3); the clustering wheel mounting seat (27-2) comprises a flat steel plate and a steel pipe vertically connected to the steel plate surface; the clustering wheel support rod (27-3) comprises a fixed rod and a movable rod, the fixed rod passes through the steel pipe of the clustering wheel mounting seat (27-2) and is connected to the flat steel plate, one end of the movable rod is rotatably connected to the fixed rod end, and the other end is connected to the clustering wheel.
5. The multi-component glass fiber yarn drawing oiler that can be quickly disassembled and installed according to claim 1 is characterized in that: A motor mounting plate (8) is provided between the three-phase asynchronous motor (28) and the straight plate (1-1); the motor mounting plate (8) matches the appearance of the three-phase asynchronous motor (28) and facilitates the fixing of the three-phase asynchronous motor (28).
6. The multi-component glass fiber yarn drawing oiler that can be quickly disassembled and installed according to claim 1 is characterized in that: The oil coating roller support arm (6) is provided with a milling groove, a shaft sleeve (7) is placed in the milling groove, and the end of the oil coating roller (14) passes through the shaft sleeve (7); The matching limiting device on the oiling roller supporting arm (6) is a limiting bolt (5-2), and a threaded hole (5-1) for matching height adjustment is arranged under the limiting bolt (5-2).
7. The multi-component glass fiber yarn drawing oiler that can be quickly disassembled and installed according to claim 1 is characterized in that: The heat insulation board connecting pieces are symmetrically arranged in a pair, including a left heat insulation board mounting piece (22) and a right heat insulation board mounting piece.
8. The multi-component glass fiber yarn drawing oiler that can be quickly disassembled and installed according to claim 1 is characterized in that: The oil receiving box (15) is fixed at the side by means of an oil receiving box mounting member (16) and an oil receiving box fixing bolt (18); and is connected at the bottom by means of an oil receiving box lower clamping block (17); A connecting plate (15-6) is arranged below the oil receiving box (15); an open groove is arranged at the end of the connecting plate (15-6); the lower clamping block (17) of the oil receiving box is located on the open groove; a clamping block fastening sheet (15-10) is arranged on the side of the lower clamping block (17); the clamping block fastening sheet (15-10) is connected to the main frame (1); a groove is arranged on the contact surface between the clamping block fastening sheet (15-10) and the lower clamping block (17) of the oil receiving box; holes are arranged on the surface of the lower clamping block (17) of the oil receiving box relative to the open groove at the end of the connecting plate (15-6) and the groove of the clamping block fastening sheet (15-10); the lower clamping block (17) of the oil receiving box is connected by butterfly bolts (15-11) to realize the function of quickly adjusting the position of the lower clamping block (17) of the oil receiving box.
9. The multi-component glass fiber yarn drawing oiler that can be quickly disassembled and installed according to claim 1, characterized in that: An oil receiving box filter (19) is arranged inside the oil return box (15-4) to prevent impurities from entering the small circulation tank (15-5) through the oil return box and facilitate cleaning.
10. The multi-component glass fiber yarn drawing oiler that can be quickly disassembled and installed according to claim 1, characterized in that: A small plate with threads is provided at the end of the insulation board support rod (3) for adjusting the insulation board support rod (3); the lower half of the insulation board support rod (3) is tapped and equipped with a nut to achieve height adjustment and fixation of the insulation board support rod; the quick disassembly adjustment of the insulation board is changed by adjusting the height of the insulation board support rod.