Production process and device of thin non-woven fabric for cable water-blocking tape
By combining the batching mechanism, mixing mechanism, and tilting mechanism, the problems of inconvenient operation and low mixing efficiency of the thin nonwoven fabric production device for cable water-blocking tape are solved, realizing efficient and uniform impregnation liquid treatment and convenient export, thus improving production efficiency.
Patent Information
- Application Number
- CN202310655415.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-05
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2043-06-05
AI Technical Summary
Existing production equipment for thin nonwoven fabrics used in cable water-blocking tape suffers from problems such as inconvenient operation, low work efficiency, low mixing efficiency of impregnation solution, poor mixing uniformity, and difficulty in exporting.
The feeding mechanism works in conjunction with the second vibration mechanism to achieve simultaneous quantitative feeding and feeding introduction. The mixing mechanism enables rapid and uniform mixing, and the tilting mechanism facilitates the discharge of the impregnation liquid. Combined with the first vibration mechanism, material adhesion is prevented.
It improves work efficiency, enables convenient quantitative batching, enhances mixing efficiency and uniformity, facilitates rapid extraction of impregnation solution, and avoids material adhesion.
Smart Images

Figure CN117026539B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of non-woven fabric production, in particular to a production process and device of thin non-woven fabric for cable water-blocking tape. BACKGROUND
[0002] Non-woven fabric products have the advantages of light weight, environmental protection and recyclability. Thin non-woven fabric is used in cable water-blocking tape. The thin non-woven fabric needs to be treated by immersion and dyeing during production and processing. However, the production device used in the production and processing of the thin non-woven fabric for cable water-blocking tape still has some shortcomings.
[0003] The existing production device needs to perform quantitative dosing before moving and guiding the dosed materials when configuring the immersion liquid. This not only makes it inconvenient for users to operate and use, but also reduces work efficiency. In addition, the existing production device also has the problems of low immersion liquid mixing efficiency, poor mixing uniformity and inconvenience for export.
[0004] In view of the above problems, the present application provides a production process and device of thin non-woven fabric for cable water-blocking tape to solve the above problems. SUMMARY
[0005] In order to solve the problems of inconvenience for users to operate and use, low work efficiency, low immersion liquid mixing efficiency, poor mixing uniformity and inconvenience for export of the existing production device, the purpose of the present application is to provide a production process and device of thin non-woven fabric for cable water-blocking tape.
[0006] To solve the above technical problems, the present application adopts the following technical scheme: a production process of thin non-woven fabric for cable water-blocking tape, comprising the following steps:
[0007] Step one, using a production device to perform dispensing treatment on pigments;
[0008] Step two, immersing and coloring raw fibers;
[0009] Step three, removing impurities and removing velvet from the immersed and dyed raw fibers.
[0010] A production device of thin non-woven fabric for cable water-blocking tape, comprising a mounting bracket, two inclined mechanisms are arranged on the two sides of the mounting bracket, a dosing tank is fixedly installed between the two inclined mechanisms, a discharge pipe is communicated at one end of the dosing tank close to the mounting bracket, a control valve is fixedly installed on the discharge pipe, a first vibration mechanism is arranged on the dosing tank and cooperates with the mounting bracket, a dosing mechanism and a second vibration mechanism are arranged at the other end of the dosing tank away from the mounting bracket and cooperate with each other, and a mixing mechanism is arranged in the inner cavity of the dosing tank and cooperates with the mounting bracket.
[0011] Preferably, the tilting mechanism comprises an electric telescopic rod and a first rotating rod, the electric telescopic rod is fixedly installed on both sides of the mounting bracket, the electric telescopic rods are symmetrically distributed, the end of the output end of the electric telescopic rod is fixedly installed with a first rack, symmetrically distributed mounting through holes are provided through the mounting bracket, the first rotating rod is rotatably inserted into the mounting through hole, the ingredient tank is fixedly installed between the two first rotating rods, the opposite ends of the two first rotating rods are fixedly sleeved with a first gear, the first gear is engaged with the first rack, the first vibration mechanism comprises a first sleeve ring and a mounting ring, the first sleeve ring is fixedly installed on the mounting bracket, the first sleeve rings are symmetrically distributed, the first sleeve ring is rotatably sleeved on the first rotating rod, and an array of first flaps is integrally formed on the outer wall of the first sleeve ring, the mounting ring is fixedly installed on the ingredient tank, the mounting ring has a symmetric structure, an array of first elastic sheets is fixedly installed on the inner side of the mounting ring, and the first elastic sheets are in movable contact with the first flaps.
[0012] Preferably, the ingredient mechanism comprises a first motor, a second rotating rod and a third rotating rod, the first motor is fixedly installed at one end of the ingredient tank away from the mounting bracket, and the end of the output end of the first motor is fixedly sleeved with a first bevel gear, the one end of the ingredient tank away from the mounting bracket is fixedly installed with a first support, and the first motor is fixedly installed on the first support, the second rotating rod and the third rotating rod are both rotatably installed at one side of the ingredient tank away from the mounting bracket, one end of the second rotating rod is fixedly sleeved with a second bevel gear, the second bevel gear is engaged with the first bevel gear, the other end of the second rotating rod is fixedly sleeved with a half-face gear, and an arc limiting plate is fixedly installed on the half-face gear, one end of the third rotating rod close to the ingredient tank is fixedly sleeved with a driven gear and a driven rotating plate, the driven gear is engageable with the half-face gear, both ends of the driven rotating plate are both provided with arc limiting grooves, the arc limiting plate is rotatably inserted into the arc limiting grooves, one end of the third rotating rod away from the ingredient tank is fixedly sleeved with a mounting rotating plate, symmetrically arranged ingredient buckets are fixedly inserted on the mounting rotating plate, scale lines are arranged on the outer wall of the ingredient buckets, symmetrically distributed side connecting blocks are fixedly installed at one end of the ingredient buckets close to the ingredient tank, rotating shafts are rotatably inserted on the adjacent side connecting blocks, rotating blocks are fixedly sleeved on the rotating shafts, the one end of the rotating blocks is integrally formed with a blocking plate, the blocking plate is abuttable with the ingredient buckets, symmetrically arranged reset torsional springs are movably sleeved on the rotating shafts, one end of the reset torsional springs is fixedly connected with the rotating blocks, the other end of the reset torsional springs is fixedly connected with the side connecting blocks, and a limiting rotating plate is fixedly installed on the rotating block, the one end of the ingredient tank away from the mounting bracket is communicated with a feeding pipe, a side connecting bracket is fixedly installed on the feeding pipe, an installation sleeve is fixedly connected to the end of the side connecting bracket, the installation sleeve is rotatably sleeved on the third rotating rod, a limiting disc is fixedly connected to the one end of the installation sleeve away from the ingredient tank, the limiting disc is rotatably sleeved on the third rotating rod, a limiting ring groove and an auxiliary penetrating groove are formed on the limiting disc in cooperation, and the limiting rotating plate is slidably clamped in the limiting ring groove and the auxiliary penetrating groove.
[0013] Preferably, the mixing mechanism comprises a second motor and a fifth rotating rod, the second motor is fixedly installed at one end of the ingredient tank close to the mounting bracket, a second support is fixedly installed at one end of the ingredient tank close to the mounting bracket, the second motor is fixedly inserted into the second support, a driving rotating plate is fixedly sleeved at the end of the output end of the second motor, a driving push rod is rotatably inserted into the driving rotating plate, a second rack is slidably installed on one side of the ingredient tank close to the mounting bracket, a connecting side rod is fixedly installed on the second rack, a driving push ring is fixedly connected to the end of the connecting side rod, the driving push rod is movably inserted into the driving push ring, the fifth rotating rod is rotatably inserted into the ingredient tank, a second gear is fixedly sleeved at one end of the fifth rotating rod close to the mounting bracket, the second gear is engaged with the second rack, and arrayed fixing rings are fixedly sleeved on the fifth rotating rod, and arrayed mixing rotating plates are integrally formed on the fixing rings.
[0014] Compared with the prior art, the present application has the following advantages:
[0015] 1. By cooperating the ingredient mechanism with the second vibration mechanism, the two ingredient barrels can be driven to make intermittent rotation of 180 degrees, so that the quantitative ingredient operation and the ingredient introduction operation can be simultaneously carried out, thereby effectively improving the work efficiency. Moreover, the quantitative ingredient operation and the ingredient introduction operation are combined, so that the user can operate and use without moving the ingredient after the ingredient is introduced, and the practicability is higher. In addition, the second elastic sheet can drive the ingredient barrel to make intermittent vibration, so that the ingredient in the ingredient barrel can be conveniently guided out.
[0016] 2. By using the mixing mechanism, the second gear can be driven to make cyclic reciprocating rotation, so that the fifth rotating rod can be driven to make cyclic reciprocating rotation, and then the fixing rings can drive the mixing rotating plates to make cyclic reciprocating rotation, so that the additive and the ingredient can be quickly and uniformly mixed, thereby effectively improving the mixing efficiency and the mixing uniformity.
[0017] 3. By cooperating the tilting mechanism with the first vibration mechanism, the ingredient tank can be conveniently tilted, so that the mixed impregnation liquid can be quickly guided out, and the ingredient tank can be driven to make intermittent vibration, thereby effectively avoiding the phenomenon that the material adheres to the inner wall of the ingredient tank. BRIEF DESCRIPTION OF DRAWINGS
[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained without creative labor on the basis of these drawings.
[0019] Figure 1 It is a structural schematic diagram of the present application.
[0020] Figure 2 The installation schematic diagram of the first vibrating mechanism in the application.
[0021] Figure 3 The installation schematic diagram of the first vibrating mechanism in the application. Figure 2
[0022] Figure 4 The installation schematic diagram of the first vibrating mechanism in the application. Figure 2
[0023] The installation schematic diagram of the first vibrating mechanism in the application. Figure 5
[0024] The installation schematic diagram of the first vibrating mechanism in the application. Figure 6 Figure 5 The installation schematic diagram of the first vibrating mechanism in the application.
[0025] Figure 7 The installation schematic diagram of the first vibrating mechanism in the application. Figure 5
[0026] The installation schematic diagram of the first vibrating mechanism in the application. Figure 8
[0027] The installation schematic diagram of the first vibrating mechanism in the application. Figure 9 Figure 8 The installation schematic diagram of the first vibrating mechanism in the application.
[0028] Figure 10 The installation schematic diagram of the first vibrating mechanism in the application. Figure 9
[0029] In the figure: 1, mounting bracket; 11, mounting hole; 2, tilt mechanism; 21, electric telescopic rod; 22, first rotating rod; 23, first rack; 24, first gear; 3, ingredient tank; 31, feeding pipe; 32, discharging pipe; 33, control valve; 4, first vibration mechanism; 41, first ring; 42, mounting ring; 43, first paddle; 44, first elastic sheet; 5, ingredient mechanism; 51, first motor; 52, second rotating rod; 53, third rotating rod; 54, first bevel gear; 55, second bevel gear; 56, half-face gear; 57, arc-shaped limiting plate; 58, driven gear; 59, driven rotating plate; 510, arc-shaped limiting groove; 511, mounting rotating plate; 512, ingredient bucket; 513, scale line; 514, side connecting block; 515, rotating shaft; 516, rotating block; 517, blocking plate; 518, reset torsional spring; 519, limiting rotating plate; 520, side connecting bracket; 521, mounting sleeve; 522, limiting disc; 523, limiting ring groove; 524, auxiliary slot; 525, first support; 6, second vibration mechanism; 61, second ring; 62, fourth rotating rod; 63, second paddle; 64, third ring; 65, second elastic sheet; 7, mixing mechanism; 71, second motor; 72, fifth rotating rod; 73, driving rotating plate; 74, driving push rod; 75, second rack; 76, connecting side rod; 77, driving push ring; 78, second gear; 79, fixed ring; 710, mixing rotating plate; 711, second support. DETAILED DESCRIPTION
[0030] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.
[0031] Embodiment: as shown in the figure, the present application provides a production process of thin non-woven fabric for cable water-blocking tape, comprising the following steps: Figures 1-10
[0032] Step one, using the production device to prepare the pigment;
[0033] Step two, impregnating the raw fiber with color;
[0034] Step three, removing impurities and fuzz from the impregnated raw fiber.
[0035] The utility model provides a kind of production device of thin nonwoven fabric for cable water-blocking tape, including installation support 1, both sides of installation support 1 are equipped with inclination mechanism 2, and two inclination mechanism 2 are fixedly installed with batching tank 3 between, batching tank 3 is communicated with discharge pipe 32 in the end close to installation support 1, and control valve 33 is fixedly installed on discharge pipe 32, batching tank 3 is equipped with the first vibration mechanism 4 used in cooperation with installation support 1, and batching tank 3 is equipped with batching mechanism 5 and second vibration mechanism 6 used in cooperation in the end away from installation support 1, and the inner chamber of batching tank 3 is equipped with the mixing mechanism 7 used in cooperation.
[0036] Inclination mechanism 2 includes electric telescopic rod 21 and first rotary rod 22, electric telescopic rod 21 is fixedly installed on both sides of installation support 1, and electric telescopic rod 21 is symmetrically distributed, the end of the output of electric telescopic rod 21 is fixedly installed with first rack 23, symmetrically distributed installation through-hole 11 is passed through being provided on installation support 1, and first rotary rod 22 is rotatably inserted into installation through-hole 11, the setting of installation through-hole 11 provides guarantee for the stable rotation of first rotary rod 22, batching tank 3 is fixedly installed between two first rotary rods 22, and the opposite ends of two first rotary rods 22 are fixedly sleeved with first gear 24, first gear 24 is engaged with first rack 23, first vibration mechanism 4 includes first collar 41 and installation annular ring 42, first collar 41 is fixedly installed on installation support 1, and first collar 41 is symmetrically distributed, first collar 41 is rotatably sleeved on first rotary rod 22, and first collar 41 is integrally formed with the array distribution of first tab 43 on the outer wall, installation annular ring 42 is fixedly installed on batching tank 3, and installation annular ring 42 is symmetrically structured, the inboard of installation annular ring 42 is fixedly installed with the array distribution of first elastic sheet 44, and first elastic sheet 44 can be in contact with first tab 43.
[0037] By adopting the above technical scheme, when using, electric telescopic rod 21 will pull corresponding first rack 23 to move to the side close to corresponding electric telescopic rod 21, so as to drive corresponding first gear 24 to rotate, further drive corresponding first rotary rod 22 to rotate, further drive batching tank 3 to rotate, so as to make the end of batching tank 3 close to discharge pipe 32 gradually rotate downward, in turn facilitate the mixed impregnation liquid to be quickly discharged, during this period, batching tank 3 will drive corresponding installation annular ring 42 to rotate, so as to drive corresponding first elastic sheet 44 to rotate, in turn make first elastic sheet 44 alternately contact corresponding first tab 43 and produce deformation, and when the two are separated, first elastic sheet 44 will vibrate, so as to drive batching tank 3 to vibrate, in turn effectively avoid the phenomenon that material adheres to the inner wall of batching tank 3.
[0038] The ingredient mechanism 5 comprises a first motor 51, a second rotating rod 52 and a third rotating rod 53, the first motor 51 is fixedly installed at one end of the ingredient tank 3 away from the mounting bracket 1, and the end of the output end of the first motor 51 is fixedly sleeved with a first bevel gear 54, the one end of the ingredient tank 3 away from the mounting bracket 1 is fixedly installed with a first support 525, and the first motor 51 is fixedly installed on the first support 525, the first support 525 is arranged to provide protection for the stable installation of the first motor 51, the second rotating rod 52 and the third rotating rod 53 are both rotatably installed at one side of the ingredient tank 3 away from the mounting bracket 1, one end of the second rotating rod 52 is fixedly sleeved with a second bevel gear 55, the second bevel gear 55 is engaged with the first bevel gear 54, the other end of the second rotating rod 52 is fixedly sleeved with a half-face gear 56, and an arc limiting plate 57 is fixedly installed on the half-face gear 56, one end of the third rotating rod 53 is fixedly sleeved with a driven gear 58 and a driven rotating plate 59, the driven gear 58 can be engaged with the half-face gear 56, both ends of the driven rotating plate 59 are provided with arc limiting grooves 510, and the arc limiting plate 57 can be rotatably inserted into the arc limiting grooves 510, one end of the third rotating rod 53 away from the ingredient tank 3 is fixedly sleeved with an installation rotating plate 511, and the installation rotating plate 511 is fixedly inserted with symmetrically arranged ingredient buckets 512, the outer wall of the ingredient bucket 512 is provided with a scale line 513, one end of the ingredient bucket 512 close to the ingredient tank 3 is fixedly installed with symmetrically distributed side connecting blocks 514, adjacent side connecting blocks 514 are rotatably inserted with rotating shafts 515, the rotating shafts 515 are fixedly sleeved with rotating blocks 516, one end of the rotating block 516 is integrally formed with a blocking plate 517, the blocking plate 517 can be attached to the ingredient bucket 512, the rotating shafts 515 are movably sleeved with symmetrically arranged reset torsional springs 518, one end of the reset torsional spring 518 is fixedly connected with the rotating block 516, the other end of the reset torsional spring 518 is fixedly connected with the side connecting block 514, and the rotating block 516 is fixedly installed with a limiting rotating plate 519, one end of the ingredient tank 3 away from the mounting bracket 1 is communicated with a feeding pipe 31, the feeding pipe 31 is provided with a cooperating electromagnetic valve, thereby facilitating the opening and closing of the feeding pipe 31, and the feeding pipe 31 is fixedly installed with a side connecting bracket 520, the end of the side connecting bracket 520 is fixedly connected with an installation sleeve 521, the installation sleeve 521 is rotatably sleeved on the third rotating rod 53, one end of the installation sleeve 521 away from the ingredient tank 3 is fixedly connected with a limiting disc 522, and the limiting disc 522 is rotatably sleeved on the third rotating rod 53, the cooperation of the side connecting bracket 520 and the installation sleeve 521 provides protection for the stable installation of the limiting disc 522, the limiting disc 522 is provided with a limiting ring groove 523 and an auxiliary slot 524, and the limiting rotating plate 519 can be slidably clamped in the limiting ring groove 523 and the auxiliary slot 524,And the outer wall of the second ring 61 is integrally formed with an array of second tabs 63, the fourth rotating rod 62 is fixedly installed on the ingredient tank 3, and the fourth rotating rod 62 is of a symmetrical structure, the end of the fourth rotating rod 62 is fixedly sleeved with a third ring 64, and the third ring 64 is fixedly installed with a second elastic sheet 65, and the second elastic sheet 65 can be in movable contact with the second tab 63.
[0039] By adopting the above technical scheme, in use, the user can open the electromagnetic valve and the first motor 51, then the user can put the corresponding ingredients into the ingredient barrel 512 close to the first motor 51 according to the amount of the fiber to be dyed and the required color, and the user can control the amount of the ingredients according to the corresponding scale line 513, and stop the ingredient introduction when the corresponding ingredient barrel 512 is filled with the appropriate amount of ingredients. At the same time, the first motor 51 drives the first bevel gear 54 to rotate, so that the second rotating rod 52 can be driven to rotate through the second bevel gear 55, and the second ring 61 and the half-face gear 56 can be driven to rotate, and the arc-shaped limiting plate 57 can be further driven to rotate, and when the arc-shaped limiting plate 57 is separated from the corresponding arc-shaped limiting groove 510, the half-face gear 56 will engage with the driven gear 58, thereby driving the driven gear 58 to rotate, and the third rotating rod 53 can be further driven to rotate, and the driven rotating plate 59 and the installation rotating plate 511 can be driven to rotate, thereby driving the two ingredient barrels 512 to rotate. During this period, the limiting rotating plate 519 will slide along the limiting ring groove 523, and when the two ingredient barrels 512 are replaced, the half-face gear 56 will be separated from the driven gear 58, and the arc-shaped limiting plate 57 will be clamped into the corresponding arc-shaped limiting groove 510. At this time, the corresponding blocking plate 517 will be driven to rotate under the action of the gravity of the ingredients, thereby enabling the corresponding limiting rotating plate 519 to rotate in the auxiliary slot 524, and the corresponding reset torsional spring 518 can be twisted. Then the corresponding ingredients will be introduced into the ingredient tank 3 through the feed pipe 31, and when the ingredients in the corresponding ingredient barrel 512 are completely discharged, the reset torsional spring 518 will reset the corresponding blocking plate 517. At the same time, the user can introduce another appropriate amount of required ingredients into the corresponding ingredient barrel 512 according to the above steps, and then repeat the above steps until all the required ingredients are introduced into the ingredient tank 3, and then the first motor 51 is turned off. Then the user can introduce an appropriate amount of auxiliary agent into the ingredient tank 3 through the feed pipe 31 and close the electromagnetic valve. During this period, the second ring 61 will drive the second tab 63 to rotate, thereby intermittently pushing the second elastic sheet 65 to deform, and when the second tab 63 and the second elastic sheet 65 are separated, the second elastic sheet 65 will vibrate, thereby driving the ingredient barrel 512 to vibrate, thereby facilitating the discharge of the ingredients in the ingredient barrel 512.
[0040] The mixing mechanism 7 comprises a second motor 71 and a fifth rotating rod 72. The second motor 71 is fixedly installed at one end of the ingredient tank 3 close to the mounting support 1. A second support 711 is fixedly installed at one end of the ingredient tank 3 close to the mounting support 1. The second motor 71 is fixedly inserted into the second support 711. The second support 711 is arranged to ensure stable installation of the second motor 71. A driving rotating plate 73 is fixedly sleeved at the output end of the second motor 71. A driving push rod 74 is rotatably inserted into the driving rotating plate 73. A second rack 75 is slidingly installed at one side of the ingredient tank 3 close to the mounting support 1. A connecting side rod 76 is fixedly installed on the second rack 75. A driving push ring 77 is fixedly connected to the end of the connecting side rod 76. The driving push rod 74 is movably inserted into the driving push ring 77. The fifth rotating rod 72 is rotatably inserted into the ingredient tank 3. A second gear 78 is fixedly sleeved at one end of the fifth rotating rod 72 close to the mounting support 1. The second gear 78 is engaged with the second rack 75. An array of fixed sleeve rings 79 are fixedly sleeved on the fifth rotating rod 72. An array of mixing rotating plates 710 are integrally formed on the fixed sleeve rings 79.
[0041] When the second motor 71 is used, the driving rotating plate 73 is driven to rotate, thereby driving the driving push rod 74 to rotate, and further driving the driving push rod 74 to cyclically and reciprocally roll along the inner wall of the driving push ring 77, thereby driving the driving push ring 77 to cyclically and reciprocally move, and further driving the second rack 75 to cyclically and reciprocally move through the connecting side rod 76, thereby driving the second gear 78 to cyclically and reciprocally rotate, and further driving the fifth rotating rod 72 to cyclically and reciprocally rotate, and further driving the mixing rotating plates 710 to cyclically and reciprocally rotate through the fixed sleeve rings 79, thereby quickly and uniformly mixing the additives and the ingredients, and further effectively improving the mixing efficiency and the mixing uniformity.
[0042] Working principle: in use, the user can open the electromagnetic valve and the first motor 51, then the user can according to the quantity of the fiber to be dyed and the required color in turn into the corresponding ingredients into the ingredients barrel 512 close to the first motor 51, and the user can control the amount of ingredients according to the corresponding scale line 513, when the corresponding ingredients barrel 512 is placed in the right amount of ingredients, stop the effect of ingredients import, at the same time, the first motor 51 will drive the first bevel gear 54 rotation, so that the second bevel gear 55 can drive the second rotating rod 52 rotation, further can drive the second ring 61 and half face gear 56 rotation, further can drive the arc limit plate 57 rotation, when the arc limit plate 57 and the corresponding arc limit groove 510 is separated, half face gear 56 will be engaged with the driven gear 58, so that the driven gear 58 can be driven to rotate, further can drive the third rotating rod 53 rotation, further can drive the driven plate 59 and installation rotating plate 511 rotation, so that the two ingredients barrel 512 rotation, during the period, the limit rotating plate 519 will slide along the limit ring groove 523, when the two ingredients barrel 512 position replacement, half face gear 56 will be separated from the driven gear 58, and the arc limit plate 57 will be inserted into the corresponding arc limit groove 510, at this time under the action of gravity of the ingredients will drive the corresponding blocking plate 517 rotation, so that the corresponding limit rotating plate 519 in the auxiliary slot 524 rotation, and can twist the corresponding reset torsional spring 518, then the corresponding ingredients will be guided into the ingredients tank 3 through the feed pipe 31, and when the ingredients in the corresponding ingredients barrel 512 is completely guided out, the reset torsional spring 518 will drive the corresponding blocking plate 517 reset, at the same time, the user can according to the above steps will be another amount of required ingredients into the corresponding ingredients barrel 512, then repeat the above steps, until all the required ingredients are guided into the ingredients tank 3, turn off the first motor 51, then the user can guide the appropriate amount of auxiliary into the ingredients tank 3 through the feed pipe 31 and close the electromagnetic valve, during the period, the second ring 61 will drive the second paddle 63 rotation, so that the second elastic sheet 65 can be pushed to deformation intermittently, and when the second paddle 63 and the second elastic sheet 65 is separated, the second elastic sheet 65 will produce vibration, so that the ingredients barrel 512 can be driven to vibrate, further facilitate the export of ingredients in the ingredients barrel 512;
[0043] Then the user can start the second motor 71, at this time the second motor 71 will drive the drive rotating plate 73 to rotate, so that it can drive the drive push rod 74 to rotate, and then it can make the drive push rod 74 roll along the inner wall of the drive push ring 77, so that it can drive the drive push ring 77 to move back and forth, and then it can drive the second rack 75 to move back and forth through the connecting side rod 76, so that it can drive the second gear 78 to rotate back and forth, and then it can drive the fifth rotating rod 72 to rotate back and forth, further it can drive the mixing rotating plate 710 to rotate back and forth through the fixed sleeve ring 79, so that it can quickly and uniformly mix the additives with the ingredients, and then it can effectively improve the mixing efficiency and mixing uniformity, and after mixing, turn off the second motor 71.
[0044] After that, the user can start the control valve 33 and the electric telescopic rod 21, at this time the mixed dip liquid will be guided out through the discharge pipe 32, at the same time, the electric telescopic rod 21 will pull the corresponding first rack 23 to move towards the side close to the corresponding electric telescopic rod 21, so that it can drive the corresponding first gear 24 to rotate, and then it can drive the corresponding first rotating rod 22 to rotate, further it can drive the ingredient tank 3 to rotate, so that it can make the end of the ingredient tank 3 close to the discharge pipe 32 gradually rotate downward, and then it is convenient to quickly guide out the mixed dip liquid, during which, the ingredient tank 3 will drive the corresponding mounting ring 42 to rotate, so that it can drive the corresponding first elastic sheet 44 to rotate, and then it can make the first elastic sheet 44 alternately contact and deform with the corresponding first tab 43, and when they are separated, the first elastic sheet 44 will vibrate, so that it can drive the ingredient tank 3 to vibrate, and then it can effectively avoid the phenomenon of material adhering to the inner wall of the ingredient tank 3, when the dip liquid is completely guided out, the user can carry out subsequent steps such as dip dyeing.
[0045] Obviously, those skilled in the art can make various modifications and variations to the present application without departing from the spirit and scope of the present application. Thus, if these modifications and variations of the present application fall within the scope of the claims of the present application and their equivalent technologies, the present application also intends to include these modifications and variations.
Claims
1. An apparatus for producing a thin nonwoven fabric for a water-blocking tape for an electric cable, comprising a mounting bracket (1), characterized in that, Both sides of the mounting bracket (1) are provided with an inclined mechanism (2), and two inclined mechanisms (2) are fixedly provided with a batching tank (3), the batching tank (3) is provided with a first vibrating mechanism (4) matched with the mounting bracket (1), and the end of the batching tank (3) away from the mounting bracket (1) is provided with a batching mechanism (5) and a second vibrating mechanism (6) matched with each other, and the inner cavity of the batching tank (3) is provided with a mixing mechanism (7) matched with each other. The dosing mechanism (5) comprises a first motor (51), a second rotating rod (52) and a third rotating rod (53), the first motor (51) is fixedly installed at one end of the dosing tank (3) away from the mounting bracket (1), and the end of the output end of the first motor (51) is fixedly sleeved with a first bevel gear (54), the second rotating rod (52) and the third rotating rod (53) are both rotatably installed at one side of the dosing tank (3) away from the mounting bracket (1), and one end of the second rotating rod (52) is fixedly sleeved with a second bevel gear (55), the second bevel gear (55) is engaged with the first bevel gear (54), the other end of the second rotating rod (52) is fixedly sleeved with a half-face gear (56), and an arc limiting plate (57) is fixedly installed on the half-face gear (56), one end of the third rotating rod (53) close to the dosing tank (3) is fixedly sleeved with a driven gear (58) and a driven rotating plate (59), and the driven gear (58) can be engaged with the half-face gear (56), both ends of the driven rotating plate (59) are provided with arc limiting grooves (510), and the arc limiting plate (57) can be rotatably inserted into the arc limiting grooves (510), one end of the third rotating rod (53) away from the dosing tank (3) is fixedly sleeved with a mounting rotating plate (511), and the mounting rotating plate (511) is fixedly inserted with symmetrically arranged dosing barrels (512), the outer wall of the dosing barrel (512) is provided with a scale line (513), one end of the dosing barrel (512) close to the dosing tank (3) is fixedly installed with symmetrically distributed side connecting blocks (514), adjacent side connecting blocks (514) are rotatably inserted with rotating shafts (515), the rotating shafts (515) are fixedly sleeved with rotating blocks (516), one end of the rotating block (516) is integrally formed with a blocking plate (517), the blocking plate (517) can be attached to the dosing barrel (512), the rotating shafts (515) are movably sleeved with symmetrically arranged reset torsional springs (518), one end of the reset torsional springs (518) is fixedly connected with the rotating block (516), the other end of the reset torsional springs (518) is fixedly connected with the side connecting blocks (514), and the rotating block (516) is fixedly installed with a limiting rotating plate (519), one end of the dosing tank (3) away from the mounting bracket (1) is communicated with a feeding pipe (31), the feeding pipe (31) is fixedly installed with a side connecting bracket (520), the end of the side connecting bracket (520) is fixedly connected with a mounting sleeve (521), the mounting sleeve (521) is rotatably sleeved on the third rotating rod (53), one end of the mounting sleeve (521) away from the dosing tank (3) is fixedly connected with a limiting disc (522), the limiting disc (522) is rotatably sleeved on the third rotating rod (53), the limiting disc (522) is provided with a limiting ring groove (523) and an auxiliary through groove (524) matched in use, and the limiting rotating plate (519) can be slidably clamped in the limiting ring groove (523) and the auxiliary through groove (524). The first support (525) is fixedly installed at one end of the ingredient tank (3) away from the mounting support (1), and the first motor (51) is fixedly installed on the first support (525); The second vibration mechanism (6) comprises a second collar (61) and a fourth rotating rod (62), the second collar (61) is fixedly sleeved on the second rotating rod (52), and a plurality of second pokers (63) are integrally formed on the outer wall of the second collar (61) in an array, the fourth rotating rod (62) is fixedly installed on the ingredient tank (3), and the fourth rotating rod (62) is in a symmetrical structure, a third collar (64) is fixedly sleeved on the end of the fourth rotating rod (62), and a second elastic sheet (65) is fixedly installed on the third collar (64), and the second elastic sheet (65) is in movable contact with the second poker (63).
2. An apparatus for producing a thin nonwoven fabric for a water-blocking tape for an electric cable according to claim 1, characterized in that, The tilting mechanism (2) comprises an electric telescopic rod (21) and a first rotating rod (22), the electric telescopic rod (21) is fixedly installed on both sides of the mounting support (1), and the electric telescopic rod (21) is in a symmetrical distribution, a first rack (23) is fixedly installed on the end of the output end of the electric telescopic rod (21), the mounting support (1) is provided with a plurality of mounting through holes (11) in a symmetrical distribution, and the first rotating rod (22) is rotatably inserted into the mounting through hole (11), the ingredient tank (3) is fixedly installed between the two first rotating rods (22), and the opposite ends of the two first rotating rods (22) are fixedly sleeved with first gears (24), and the first gears (24) are engaged with the first rack (23).
3. An apparatus for producing a thin nonwoven fabric for a water-blocking tape for an electric cable according to claim 2, characterized in that, The first vibration mechanism (4) comprises a first collar (41) and a mounting ring (42), the first collar (41) is fixedly installed on the mounting support (1), and the first collar (41) is in a symmetrical distribution, the first collar (41) is rotatably sleeved on the first rotating rod (22), and a plurality of first pokers (43) are integrally formed on the outer wall of the first collar (41) in an array, the mounting ring (42) is fixedly installed on the ingredient tank (3), and the mounting ring (42) is in a symmetrical structure, a plurality of first elastic sheets (44) are fixedly installed on the inner side of the mounting ring (42) in an array, and the first elastic sheets (44) are in movable contact with the first pokers (43).
4. An apparatus for producing a thin nonwoven fabric for a water-blocking tape for an electric cable as defined in claim 1, characterized in that, The mixing mechanism (7) comprises a second motor (71) and a fifth rotating rod (72), the second motor (71) is fixedly installed on one end of the ingredient tank (3) close to the mounting support (1), and the tail end of the output end of the second motor (71) is fixedly sleeved with a driving rotating plate (73), the driving rotating plate (73) is rotatably inserted with a driving push rod (74), one side of the ingredient tank (3) close to the mounting support (1) is slidably installed with a second rack (75), and the second rack (75) is fixedly installed with a connecting side rod (76), the tail end of the connecting side rod (76) is fixedly connected with a driving push ring (77), and the driving push rod (74) is movably inserted in the driving push ring (77), the fifth rotating rod (72) is rotatably inserted in the ingredient tank (3), and one end of the fifth rotating rod (72) close to the mounting support (1) is fixedly sleeved with a second gear (78), the second gear (78) is engaged with the second rack (75), and the fifth rotating rod (72) is fixedly sleeved with arrayed fixing sleeve rings (79), and the fixing sleeve rings (79) are integrally formed with arrayed mixing rotating plates (710).
5. An apparatus for producing a thin nonwoven fabric for a water-blocking tape for an electric cable as defined in claim 4, characterized in that, One end of the ingredient tank (3) close to the mounting support (1) is fixedly installed with a second support (711), and the second motor (71) is fixedly inserted in the second support (711).
6. An apparatus for producing a thin nonwoven fabric for a water-blocking tape for an electric cable as defined in claim 1, characterized by One end of the ingredient tank (3) close to the mounting support (1) is communicated with a discharge pipe (32), and the discharge pipe (32) is fixedly installed with a control valve (33).
Citation Information
Patent Citations
Production process of thin nonwoven fabric for cable water blocking tape
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