Wax dispensing device
By designing a wax-dispensing device that includes a fixed base, a power component, and a wax-dispensing component, and utilizing an auxiliary rotating mechanism and a heating mechanism to realize the rotation and movement of the wax roller, the problems of insufficient wax dot adhesion and inconsistent size are solved, thereby improving wax-dispensing efficiency and process stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2026-03-13
AI Technical Summary
In traditional wax application processes, the wax dots are not firmly adhered and are inconsistent in size, which affects process stability and quality, increases maintenance costs, and may have a negative impact on product performance.
Design a wax application device, including a fixed base, a power component, a horizontal moving component, and a wax application component. The wax roller is rotated and moved by an auxiliary rotating mechanism and a heating mechanism to ensure that the wax is evenly covered on the pen tip.
It improves the firmness and size consistency of wax dots, increases waxing efficiency, reduces maintenance costs, and enhances process stability and product quality.
Smart Images

Figure CN223988673U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of automated mechanical assembly, and more specifically, to a wax application device. Background Technology
[0002] Traditional wax application processes commonly suffer from insufficient wax dot adhesion, causing the wax dots to easily detach during use and affecting the stability and reliability of the process. Furthermore, due to the lack of precise control methods in traditional approaches, the size of the wax dots is often inconsistent, further reducing the quality and consistency of the process. These problems not only increase maintenance and rework costs but may also negatively impact the performance of the final product. Therefore, developing a technology that can improve wax dot adhesion and achieve uniform wax dot size has become an urgent issue to be addressed. Utility Model Content
[0003] The present invention aims to overcome at least one of the defects of the prior art and provide a wax application device for effectively utilizing mechanical mechanisms to achieve uniform wax application and improve wax application efficiency.
[0004] The technical solution adopted by this utility model is as follows:
[0005] This utility model provides a wax application device, which includes a fixed base, a power component, a horizontal movable component, and a wax application component;
[0006] The horizontal movable component is disposed on the fixed base and is capable of moving relative to the fixed base in a first direction and a second direction; the first direction and the second direction are parallel to each other and opposite in direction;
[0007] The power component is disposed at one end of the horizontal movable component in the second direction, and the power component provides power to drive the horizontal movable component and the waxing component to move in the first direction and the second direction;
[0008] The wax dispensing assembly includes a wax dispensing unit and a roller. The wax dispensing unit is disposed at one end of the horizontal movable assembly in the first direction. The roller is disposed inside the wax dispensing unit and is disposed perpendicular to the first direction / second direction, passing through the wax dispensing unit. The roller is capable of rotating relative to the wax dispensing unit in the first direction / second direction within the wax dispensing unit.
[0009] The fixed base is provided with a fixed bracket on each of its two sides perpendicular to the first direction / second direction, and each fixed bracket is provided with an auxiliary rotation mechanism;
[0010] The fixed bracket is connected to the shaft ends at both ends of the roller through two auxiliary rotating mechanisms. When the wax application assembly moves in the first direction, the auxiliary rotating mechanism drives the roller to rotate in the first direction. When the wax application assembly moves in the second direction, the auxiliary rotating mechanism drives the roller to rotate in the second direction.
[0011] The side of the roller is provided with a wax dotting groove, and the contact surface between the wax filling unit and the roller is provided with a wax guide hole that matches the wax dotting groove; the wax filling unit is provided with a pen groove that extends through the roller on one side in the first direction, and the position of the pen groove corresponds to the position of the wax dotting groove.
[0012] The power assembly provides power to the horizontal movable component, enabling it to move in both a first and a second direction on the fixed base. Since the wax-filling unit is located at one end of the horizontal movable component in the first direction, it can move in both directions under the drive of the horizontal movable component. The wax-filling unit includes a wax-filling unit and a roller, and the roller can rotate within the wax-filling unit. Furthermore, the fixed base is equipped with a fixed bracket, and the fixed bracket has an auxiliary rotation mechanism. Through the action of the auxiliary rotation mechanism, the wax-dispensing roller can move along the first direction when the wax-dispensing component moves in the first direction. The first direction is rotated, and the waxing assembly rotates along the second direction when it moves towards the second direction. This ensures that the waxing groove on the roller can receive wax through the wax guide hole during rotation, and then the wax is driven to the pen slot by rotation. At this time, the waxing assembly moves towards the first direction, so that the pen or pen refill that needs to be waxed can be fixed and aligned with the corresponding pen slot, so that the pen tip can directly enter the corresponding waxing groove, thereby making the wax evenly cover the pen tip. At the same time, the waxing operation of the pen or pen refill can be completed by each movement of the horizontal movable assembly in the first and second directions, which greatly improves the waxing efficiency.
[0013] Furthermore, the horizontal movable component includes a sliding base, the lower surface of which is provided with a slide rail parallel to the first direction / second direction; the upper surface of the fixed base is provided with a slider, the slider matching the slide rail, and the horizontal movable component is slidably connected to the slider of the fixed base through the slide rail;
[0014] The power assembly is disposed at one end of the sliding base in the second direction, and the waxing unit is disposed on the upper surface of the sliding base at one end in the first direction.
[0015] By setting the slide rail, the horizontal movable component can slide more smoothly on the fixed base.
[0016] Furthermore, the auxiliary rotation mechanism includes a guide groove, a rolling bearing, and a bearing mounting plate;
[0017] The guide groove is disposed on the side where the fixed bracket is connected to the roller; the rolling bearing is disposed in the guide groove, and the size of the rolling bearing matches the width of the guide groove, so that the rolling bearing can move within the guide groove;
[0018] One end of the bearing mounting plate is rotatably connected to the rolling bearing, and the other end is fixedly connected to the corresponding shaft head of the roller; the rolling bearing and the roller are respectively located on both sides of the corresponding bearing mounting plate, the rolling bearing is located on the side of the bearing mounting plate facing the wax fixing frame, and the fixed connection between the shaft head of the roller and the bearing mounting plate is located on the side of the bearing mounting plate facing the roller.
[0019] By cleverly combining the connection between the rolling bearing, bearing plate, and roller with an L-shaped or arc-shaped guide groove, when the horizontal movable component moves, the roller, being located within the wax-filling unit, can only move along with or rotate within the wax-filling unit. When the horizontal movable component moves and drives the wax-filling unit, it pulls the rolling bearing to move within the guide groove. As the rolling bearing moves within the guide groove, it drives the bearing plate to rotate around the connection between the bearing plate and the roller, thereby causing the roller to rotate within the wax-filling unit. By utilizing the guide groove and the mechanical connection structure of the rolling bearing, bearing plate, and roller, the movement of the horizontal movable component can be effectively converted into the rotation of the roller, thus simultaneously achieving the horizontal movement and rotation of the roller, effectively realizing the wax application operation.
[0020] In addition, the length of the L-shaped or arc-shaped guide groove is set to match the length of a quarter circle of the roller rotation. When the horizontal movable component moves to its farthest end in the second direction, the wax-dispensing groove of the roller can be exactly located at the corresponding position of the wax guide hole. When the horizontal movable component moves to its farthest end in the first direction, the wax-dispensing groove of the roller can rotate to the corresponding position of the pen groove, thereby accurately performing the wax dispensing operation, avoiding unnecessary movement of the horizontal movable component, and improving the efficiency of wax dispensing.
[0021] Furthermore, the wax filling unit includes a wax filling tank and a heating mechanism, the wax filling tank being disposed above the heating mechanism; the heating mechanism being disposed on the upper surface of one end of the sliding base in the first direction.
[0022] The roller is disposed within the heating mechanism and is arranged to penetrate the heating mechanism perpendicular to the first direction / second direction.
[0023] At the corresponding positions of the bottom of the wax filling tank and the top of the heating mechanism, a wax guide hole matching the wax dispensing groove is provided; an electric heating pipe is provided on the heating mechanism, and the electric heating pipe is electrically connected to an external power source.
[0024] The heating mechanism has a pen groove extending through the roller on one side in the first direction.
[0025] By providing the heating mechanism in the wax filling unit, the wax in the wax filling pool can be kept in a liquid state, thereby ensuring that the wax can flow into the wax dispensing groove through the wax guide hole.
[0026] Furthermore, the horizontal movable component includes a connecting bearing, a first connecting rod clamping block, a rotating shaft, a limiting sleeve, and a fixed bearing and a second connecting rod clamping block; the rotating shaft is arranged perpendicular to the plane containing the lower surface of the sliding base;
[0027] The clamping end of the first connecting rod clamping block is fixedly connected to one end of the rotating shaft, and the clamping end of the second connecting rod clamping block is fixedly connected to the other end of the rotating shaft; the non-clamping end of the first connecting rod clamping block, on the side away from the second connecting rod clamping block, is rotatably connected to the connecting bearing.
[0028] The non-clamping end of the second link clamping block is used to connect to an external power mechanism;
[0029] The limiting sleeve is disposed in the middle of the rotating shaft, and the fixed bearing is fixedly disposed inside the limiting sleeve. The fixed bearing is rotatably connected to the rotating shaft. The limiting sleeve is connected to an external fixing mechanism to restrict the rotating shaft from rotating around a fixed axis.
[0030] The bottom of the sliding base is provided with a sliding groove perpendicular to the first direction / second direction, and the connecting bearing is disposed in the rotating groove.
[0031] An external power structure provides power to the non-clamping end of the second connecting rod clamping block. Since the rotating shaft is restricted to rotating on a fixed axis, the power provided by the external power structure can drive the second connecting rod clamping block to swing around the fixed axis. When the second connecting rod clamping block swings, it drives the first connecting rod clamping block to swing accordingly, thereby driving the connecting bearing at the non-clamping end of the first connecting rod clamping block to move. The connecting bearing is disposed in the sliding groove. Therefore, when the connecting bearing moves, under the action of the sliding groove, it drives the horizontal movable component to move, thereby providing power for the movement of the horizontal movable component.
[0032] Furthermore, a heat insulation mechanism is provided at the connection between the heating mechanism and the sliding base.
[0033] By providing the heat insulation mechanism, damage to the sliding base due to heat provided by the heating mechanism is prevented.
[0034] Furthermore, the wax filling tank is provided with a wax filling tank cover, and the wax filling tank cover is provided with a handle.
[0035] The handle allows for convenient manual operation of the wax filling tank cover and the wax filling unit.
[0036] Furthermore, a fan bracket is provided on the fixed base, and a cooling fan is fixedly installed on the fan bracket for dissipating heat from the horizontal movable component.
[0037] By setting the cooling fan to dissipate heat from the horizontal movable component, damage to its mechanical structure due to the heat provided by the heating mechanism and the heat generated by the horizontal movable component during its movement is further avoided, which helps to maintain the normal operation of the waxing device.
[0038] Furthermore, several wax-dip grooves are arranged parallel to each other on the side of the roller.
[0039] Correspondingly, several of the pen groove, the wax guide hole, and the wax application groove are provided, so that the wax application device can simultaneously apply wax to multiple pens or pen refills when the horizontal movable component completes one movement in the first and second directions, thereby further improving the wax application efficiency.
[0040] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0041] This invention, through the auxiliary rotating mechanism, enables the wax-dispensing roller to rotate in the first direction when the horizontal movable component moves in the first direction, and in the second direction when the horizontal movable component moves in the second direction. This ensures that during the rotation of the roller, the wax-dispensing grooves on it can receive wax through the wax guide holes, and then the wax is carried to the pen slot by the rotation. At this time, the wax-dispensing component is moving in the first direction, so that by fixing the pen or pen refill to be waxed and aligning it with the corresponding pen slot, the pen tip can directly enter the corresponding wax-dispensing groove, thereby evenly covering the pen tip with wax. At the same time, each time the horizontal movable component completes the movement in the first and second directions, the wax-dispensing operation of the pen or pen refill is completed, greatly improving the wax-dispensing efficiency. Attached Figure Description
[0042] Figure 1 This is an overall structural diagram of the wax application device of this utility model.
[0043] Figure 2 This is a structural diagram of the fixed base of this utility model.
[0044] Figure 3 The structure of the horizontal movable component of this utility model Figure 1 .
[0045] Figure 4 The structure of the horizontal movable component of this utility model Figure 2 .
[0046] Figure 5 This is a structural diagram of the power component of this utility model.
[0047] Figure 6 This is a structural diagram of the wax application component of this utility model.
[0048] Figure 7 This is a structural diagram of the roller of this utility model.
[0049] Figure 8 This is a structural diagram of the heating mechanism of this utility model.
[0050] Figure 9 This is a structural diagram of the fixed bracket of this utility model.
[0051] Figure 10 This is an exploded view of the auxiliary rotating mechanism of this utility model.
[0052] Figure 11 This is a schematic diagram showing the connection between the wax application component and the horizontal movable component of this utility model.
[0053] Figure labels: Fixed base 100, power component 200, horizontal moving component 300, wax dispensing component 400, fixed bracket 500, slider 110, fan bracket 120, cooling fan 121, connecting bearing 210, first connecting rod clamp 220, rotating shaft 230, limiting sleeve 240, fixed bearing 250, second connecting rod clamp 260, sliding base 310, sliding groove 311, slide rail 320, wax filling unit 410, wax filling pool 411, heating mechanism 412, wax guide hole 4121, electric heating pipe 4122, pen groove 413, heat insulation mechanism 413, wax filling pool cover 414, handle 415, roller 420, wax dispensing groove 421, auxiliary rotation mechanism 510, guide groove 511, rolling bearing 512, bearing mounting plate 513. Detailed Implementation
[0054] The accompanying drawings are for illustrative purposes only and should not be construed as limiting the scope of this invention. To better illustrate the following embodiments, some components in the drawings may be omitted, enlarged, or reduced, and do not represent the actual dimensions of the product. It is understandable to those skilled in the art that some well-known structures and their descriptions may be omitted in the drawings.
[0055] Example 1
[0056] like Figure 1 As shown, this embodiment provides a wax dispensing device, which includes a fixed base 100, a power component 200, a horizontal movable component 300, and a wax dispensing component 400;
[0057] The horizontal movable component 300 is disposed on the fixed base 100 and is capable of moving relative to the fixed base 100 in a first direction and a second direction; the first direction and the second direction are parallel to each other and opposite in direction;
[0058] Specifically, such as Figure 2 , Figure 3 and Figure 4 As shown, the horizontal movable component 300 includes a sliding base 310, the lower surface of which is provided with a slide rail 320 parallel to the first direction / second direction; the upper surface of the fixed base 100 is provided with a slider 110, which matches the slide rail 320, and the horizontal movable component 300 is slidably connected to the slider 110 of the fixed base 100 through the slide rail 320; so that the horizontal movable component 300 can move in the first direction / second direction.
[0059] Understandably, the movement of the horizontal movable component 300 requires external power. In this embodiment, the power for the horizontal movable component 300 is provided by the power component 200; as... Figure 1As shown, the power component 200 is disposed at one end of the horizontal movable component 300 in the second direction, and the power component 200 provides power to drive the horizontal movable component 300 and the waxing component 400 to move in the first direction and the second direction.
[0060] Specifically, such as Figure 5 As shown, the power assembly 200 includes a connecting bearing 210, a first connecting rod clamping block 220, a rotating shaft 230, a limiting sleeve 240, a fixed bearing 250, and a second connecting rod clamping block 260; the rotating shaft 230 is arranged perpendicular to the plane of the lower surface of the sliding base 310.
[0061] The clamping end of the first connecting rod clamping block 220 is fixedly connected to one end of the rotating shaft 230, and the clamping end of the second connecting rod clamping block 260 is fixedly connected to the other end of the rotating shaft 230; the non-clamping end of the first connecting rod clamping block 220, on the side away from the second connecting rod clamping block 260, is rotatably connected to the connecting bearing 210.
[0062] The non-clamping end of the second link clamping block 260 is used to connect to an external power mechanism; the external power mechanism provides direct power for the movement of the second link clamping block 260, enabling the non-clamping end of the second link clamping block 260 to reciprocate.
[0063] The limiting sleeve 240 is disposed in the middle of the rotating shaft 230, and the fixed bearing 250 is fixedly disposed inside the limiting sleeve 240. The fixed bearing 250 is rotatably connected to the rotating shaft 230. The limiting sleeve 240 is connected to an external fixing mechanism, which fixes the limiting sleeve 240 so that the limiting sleeve 240 remains in a fixed position. Meanwhile, the rotating shaft 230, which is rotatably connected to the fixed bearing 250, can rotate around a fixed axis. At the same time, since the rotating shaft 230 is restricted to rotating around a fixed axis, when the connecting rod clamping block swings, it drives the rotating shaft 230 to rotate, thereby driving the non-clamping end of the first connecting rod clamping block 220 to swing accordingly.
[0064] The bottom of the sliding base 310 is provided with a sliding groove 311 perpendicular to the first direction / second direction, and the connecting bearing 210 is disposed in the sliding groove 311.
[0065] Understandably, the sliding groove 311 is located at the bottom of the sliding base 310 and is linear. When the non-connecting end of the first connecting rod clamp 220 reciprocates, the connecting bearing 210 reciprocates accordingly with the non-connecting end of the first connecting rod clamp 220. This reciprocating motion is the same as the reciprocating swing of the first connecting rod clamp 220, and its trajectory is arc-shaped. Since the connecting bearing 210 is located in the sliding groove 311 and the sliding groove 311 is linear, when the connecting bearing 210 moves, it is restricted by the sliding groove 311, thus generating the power for the movement of the horizontal movable component 300.
[0066] Simultaneously, by setting the relative angle between the first connecting rod clamp 220 and the second connecting rod clamp 260, and the swing angle of the second connecting rod clamp 260, the reciprocating swing of the second connecting rod clamp 260 corresponds to the reciprocating motion of the connecting bearing 210 in the sliding groove 311, thereby converting it into the reciprocating motion of the horizontal movable component 300 between the first and second directions. Specifically, in this embodiment, the swing amplitude of the second connecting rod clamp 260 can be set to match the length of the sliding groove 311. When the connecting bearing 210 moves towards one end of the sliding groove 311, the horizontal sliding mechanism moves in the first direction; when the connecting bearing 210 moves towards the other end of the sliding groove 311, the horizontal sliding mechanism moves in the second direction.
[0067] In a specific implementation, an external power structure provides power to the non-clamping end of the second connecting rod clamp 260. Since the rotating shaft 230 is restricted to rotating on a fixed axis, the power provided by the external power structure can drive the second connecting rod clamp 260 to reciprocate around the fixed axis. Simultaneously, when the second connecting rod clamp 260 swings, it drives the rotating shaft 230 to rotate, thereby driving the first connecting rod clamp 220 to swing accordingly, which in turn drives the connecting bearing 210 at the non-clamping end of the first connecting rod clamp 220 to reciprocate. The connecting bearing 210 is disposed in the sliding groove 311. Therefore, when the connecting bearing 210 reciprocates, under the action of the sliding groove 311, it drives the horizontal movable component 300 to move, thereby providing power for the movement of the horizontal movable component 300, so that the horizontal movable component 300 performs corresponding reciprocating movements in the first and second directions.
[0068] like Figure 6As shown, the wax dispensing assembly 400 includes a wax dispensing unit 410 and a roller 420. The wax dispensing unit 410 is disposed at one end of the horizontal movable assembly 300 in the first direction. The roller 420 is disposed inside the wax dispensing unit 410 and is disposed perpendicular to the first direction / second direction through the wax dispensing unit 410. The roller 420 is capable of rotating relative to the wax dispensing unit 410 in the first direction / second direction within the wax dispensing unit 410.
[0069] like Figure 9 As shown, a fixed bracket 500 is respectively provided on both sides of the fixed base 100 perpendicular to the first direction / second direction, and an auxiliary rotation mechanism 510 is provided on each fixed bracket 500;
[0070] The fixed bracket 500 is connected to the shaft heads at both ends of the roller 420 through two auxiliary rotation mechanisms 510 respectively. When the wax application assembly 400 moves in the first direction, the auxiliary rotation mechanism 510 drives the roller 420 to rotate in the first direction. When the wax application assembly 400 moves in the second direction, the auxiliary rotation mechanism 510 drives the roller 420 to rotate in the second direction.
[0071] like Figure 6 , Figure 7 and Figure 8 As shown, the side of the roller 420 is provided with a wax-spraying groove 421, and the contact surface between the wax-filling unit 410 and the roller 420 is provided with a wax guide hole 4121 that matches the wax-spraying groove 421.
[0072] The wax-filling unit 410 has a pen groove 413 extending through to the roller 420 on one side in the first direction, and the opening of the pen groove 413 extends to the bottom of the wax-filling unit 410. The position of the pen groove 413 corresponds to the position of the wax-dispensing groove 421. In this embodiment, the pen or pen refill is fixed by an external pen fixing mechanism located on one side of the wax-dispensing device in the first direction, so that the pen or pen refill is facing the pen groove 413. When the horizontal movable component 300 moves in the first direction, the pen or pen refill can extend into the pen groove 413 to dispense wax.
[0073] In this embodiment, by providing the auxiliary rotation mechanism 510, the wax application operation can be achieved more effectively by utilizing the movement of the horizontal movable component 300. Specifically, as shown... Figure 10 As shown, the auxiliary rotation mechanism 510 includes a guide groove 511, a rolling bearing 512, and a bearing mounting plate 513;
[0074] The guide groove 511 is disposed on the side where the fixed bracket 500 is connected to the roller 420; wherein, the guide groove 511 is configured as L-shaped or arc-shaped; the rolling bearing 512 is disposed in the guide groove 511, and the size of the rolling bearing 512 matches the width of the guide groove 511, so that the rolling bearing 512 can move within the guide groove 511;
[0075] One end of the bearing mounting plate 513 is rotatably connected to the rolling bearing 512, and the other end is fixedly connected to the corresponding shaft head of the roller 420; the rolling bearing 512 and the roller 420 are respectively located on both sides of the corresponding bearing mounting plate 513, the rolling bearing 512 is disposed on the side of the bearing mounting plate 513 facing the wax fixing frame, and the fixed connection between the shaft head of the roller 420 and the bearing mounting plate 513 is located on the side of the bearing mounting plate 513 facing the roller 420;
[0076] By setting the rolling bearing 512 within the guide groove 511, and since the rolling bearing 512 is rotatably connected to the bearing mounting plate 513, while the bearing mounting plate 513 is fixedly connected to the roller 420, when the horizontal movable component 300 reciprocates, it will drive the rolling bearing 512 to reciprocate within the guide groove 511. The guide groove 511 is set in an L-shape or arc shape, so that when the rolling bearing 512 reciprocates within the guide groove 511, it drives the bearing mounting plate 513 to reciprocate following the shape of the guide groove 511. The reciprocating rotation of the bearing mounting plate 513 will drive the roller 420 to reciprocate within the wax application unit 410. Similarly, with the reciprocating rotation of the roller 420, the wax application groove 421 located on the side of the roller 420 can carry the wax flowing out through the wax guide hole 4121 to the pen groove 413 for wax application during the reciprocating rotation.
[0077] As described above, the horizontal movable component reciprocates in the first and second directions. Therefore, the length of the L-shaped or arc-shaped guide groove 511 can be set to match the length of a quarter circle of rotation of the roller 420. Simultaneously, the L-shaped or arc-shaped configuration of the guide groove 511 matches the direction in which the roller 420 needs to rotate. Specifically, the guide groove 511 can be configured as shown in the figure. When the horizontal movable component moves to its farthest point in the second direction, the rolling bearing 512 is located at one end of the guide groove 511 in the second direction. Correspondingly, when the horizontal movable component moves to its farthest point in the first direction, the rolling bearing 512 is located at one end of the guide groove 511 in the first direction.
[0078] Based on this, when the horizontal movable component moves to its farthest point in the second direction, the wax-dispensing groove 421 of the roller 420 is aligned with the wax guide hole 4121. Since the length of the guide groove 511 matches the length of the roller 420 rotating a quarter circle, when the horizontal movable component moves to its farthest point in the first direction, the roller 420 can rotate a quarter circle so that the wax-dispensing groove 421 is aligned with the pen groove 413.
[0079] Furthermore, in this embodiment, as Figure 6 , Figure 7 and Figure 8 As shown, the wax loading unit 410 includes a wax loading tank 411 and a heating mechanism 412. The wax loading tank 411 is disposed above the heating mechanism 412 and is used to hold wax for applying wax. The heating mechanism 412 is disposed on the upper surface of one end of the sliding base 310 in the first direction and is used to heat the wax in the wax loading tank 411 to ensure that the wax in the wax loading tank 411 remains in a liquid state.
[0080] Preferably, the wax filling tank 411 is provided with a wax filling tank cover 414, and the wax filling tank cover 414 is provided with a handle 415. By providing the wax filling tank cover 415, the wax filling tank 414 can be sealed well, and it is also convenient to add / recover wax into the wax filling tank 414; the handle 415 allows for better manual operation of the wax filling tank cover 415 and the wax filling unit 410.
[0081] Specifically, in this embodiment, the roller 420 is disposed inside the heating mechanism 412, and the roller 420 is disposed perpendicular to the first direction / second direction and passes through the heating mechanism 412;
[0082] At the corresponding positions of the bottom of the wax filling pool 411 and the top of the heating mechanism 412, a wax guide hole 4121 matching the wax dispensing groove 421 is provided. When the roller 420 rotates to align the wax dispensing groove 421 with the wax guide hole 4121, the liquid wax in the wax filling pool 411 can enter the wax dispensing groove 421 through the wax guide hole 4121 at the bottom of the wax filling pool 411.
[0083] The heating mechanism 412 is provided with an electric heating pipe 4122, which is electrically connected to an external power source. The external power source provides electrical energy to the electric heating pipe, which converts the electrical energy into heat energy to provide heat to the heating mechanism. For better heating of the heating mechanism, preferably, the electric heating pipe 4122 extends through the heating mechanism, and multiple electric heating pipes 4122 can be provided.
[0084] Understandably, in this embodiment, since the horizontal movable component 300 continuously reciprocates on the fixed base 100, it generates heat during its movement. Excessive heat can affect the movement of the horizontal movable component 300. Simultaneously, since the heating mechanism 412 is disposed on the sliding base 310 of the horizontal movable component 300, to prevent the heat generated by the heating mechanism 412 from being transferred to the horizontal movable component 300 and thus affecting its movement, in this embodiment, as... Figure 11 As shown, a heat insulation mechanism 413 is provided at the connection between the heating mechanism 412 and the sliding base 310.
[0085] Furthermore, in this embodiment, as Figure 1 As shown, fan brackets 120 are provided on both sides of the fixed base 100, perpendicular to the first direction / second direction. Specifically, the fan brackets 120 can be configured as "U"-shaped and are mounted above the horizontal movable component 300 via the fixed base 100. A cooling fan 121 is fixedly installed on the fan brackets 120 to dissipate heat and cool the horizontal movable component 300, thereby ensuring that the waxing device can operate normally and stably.
[0086] The heating mechanism 412 has a pen groove 413 extending through to the roller 420 on one side in the first direction, and the opening of the pen groove 413 extends through to the bottom of the heating mechanism 412.
[0087] Preferably, in this embodiment, several wax-dispensing grooves 421 are arranged parallel to each other on the side of the roller 420. Correspondingly, several wax-guiding holes 4121 are arranged on the top of the wax tank 411 and the heating mechanism 412, and several pen grooves 413 are arranged on one side of the heating mechanism 412 in the first direction. By providing several wax-dispensing grooves 421, wax-guiding holes 4121, and pen grooves 413, multiple pens or pen refills can be waxed simultaneously in one reciprocating motion of the horizontal movable component 300.
[0088] In this embodiment, by setting the auxiliary rotation mechanism 510 on the wax application device, the connection relationship between the guide groove 511, rolling bearing 512, bearing mounting plate 513, and the horizontal movable component 300 and the fixed base 100 in the auxiliary rotation mechanism 510 is used to convert the horizontal reciprocating motion of the horizontal movable component 300 into the reciprocating rotation of the roller 420. The reciprocating rotation drives the wax to the pen groove 413 for wax application. Furthermore, under the drive of the horizontal movable component 300, the roller 420 also reciprocates in the horizontal direction, allowing the pen or pen tip to penetrate into the pen groove 413 during the reciprocating motion and the pen tip to penetrate into the corresponding wax application groove 421, thereby achieving precise and uniform wax application.
[0089] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating the technical solution of this utility model, and are not intended to limit the specific implementation of this utility model. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the claims of this utility model should be included within the protection scope of the claims of this utility model.
Claims
1. A wax spotting device, characterized in that, The wax marking assembly comprises a fixed base, a power assembly, a horizontal movable assembly and a wax marking assembly; The horizontal movable assembly is arranged on the fixed base and can move in the first direction and the second direction relative to the fixed base; the first direction and the second direction are parallel to each other and opposite in direction; The power assembly is arranged at one end of the horizontal movable assembly in the second direction, and the power assembly provides power to drive the horizontal movable assembly and the wax marking assembly to move in the first direction and the second direction; The wax marking assembly comprises a wax loading unit and a roller, the wax loading unit is arranged at one end of the horizontal movable assembly in the first direction, the roller is arranged in the wax loading unit, and the roller is arranged through the wax loading unit perpendicular to the first direction / second direction; the roller can rotate in the wax loading unit relative to the wax loading unit along the first direction / second direction; The fixed base is provided with a fixed support on each side perpendicular to the first direction / second direction, and each fixed support is provided with an auxiliary rotating mechanism; The fixed support is connected with the shaft head of the two ends of the roller through the two auxiliary rotating mechanisms, when the wax marking assembly moves towards the first direction, the auxiliary rotating mechanism drives the roller to rotate along the first direction, when the wax marking assembly moves towards the second direction, the auxiliary rotating mechanism drives the roller to rotate along the second direction; The side surface of the roller is provided with a wax marking groove, and the contact surface of the wax loading unit and the roller is provided with a wax guide hole matched with the wax marking groove; the wax loading unit is provided with a pen slot penetrating to the roller on one side in the first direction, and the position of the pen slot corresponds to the position of the wax marking groove.
2. A wax marking device according to claim 1, wherein The horizontal movable assembly comprises a sliding base, and the lower surface of the sliding base is provided with a sliding rail parallel to the first direction / second direction; the upper surface of the fixed base is provided with a sliding block matched with the sliding rail, and the horizontal movable assembly is connected with the sliding block of the fixed base through the sliding rail; The power assembly is arranged at one end of the sliding base in the second direction, and the wax loading unit is arranged on the upper surface of the sliding base at one end in the first direction.
3. A wax marking device according to claim 1, wherein The auxiliary rotating mechanism comprises a guide sliding groove, a rolling bearing and a bearing mounting plate; The guide sliding groove is arranged on the side where the fixed support is connected with the roller; the rolling bearing is arranged in the guide sliding groove, and the size of the rolling bearing is matched with the width of the guide sliding groove, so that the rolling bearing can move in the guide sliding groove; One end of the bearing mounting plate is rotationally connected with the rolling bearing, and the other end is fixedly connected with the corresponding shaft head of the roller; the rolling bearing and the roller are respectively located on the two sides of the corresponding bearing mounting plate, the rolling bearing is arranged on the side of the bearing mounting plate facing the wax marking fixed support, and the fixed connection position of the shaft head of the roller and the bearing mounting plate is located on the side of the bearing mounting plate facing the roller connection.
4. A wax marking device according to claim 2, wherein The wax loading unit comprises a wax loading pool and a heating mechanism, the wax loading pool is arranged above the heating mechanism; the heating mechanism is arranged on the upper surface of the first direction end of the sliding base; The roller is arranged in the heating mechanism, and the roller is arranged through the heating mechanism perpendicular to the first direction / second direction; The bottom of the wax loading pool and the corresponding position of the top of the heating mechanism are provided with the wax guide hole matched with the wax dotting groove; the heating mechanism is provided with an electric heating pipe, and the electric heating pipe is electrically connected with an external power supply; The heating mechanism is provided with the pen slot penetrating to the roller on one side of the first direction.
5. A wax marking device according to claim 2, wherein The horizontal movable assembly comprises a connecting bearing, a first connecting rod clamping block, a rotating shaft, a limiting sleeve, a fixed bearing and a second connecting rod clamping block; the rotating shaft is arranged perpendicular to the plane of the lower surface of the sliding base; The clamping end of the first connecting rod clamping block is fixedly connected with one end of the rotating shaft, and the clamping end of the second connecting rod clamping block is fixedly connected with the other end of the rotating shaft; the non-clamping end of the first connecting rod clamping block is rotatably connected with one side of the connecting bearing away from the second connecting rod clamping block; The non-clamping end of the second connecting rod clamping block is used for being connected with an external power mechanism; The limiting sleeve is arranged in the middle part of the rotating shaft, the fixed bearing is fixedly arranged in the limiting sleeve, and the fixed bearing is rotatably connected with the rotating shaft; the limiting sleeve is connected with an external fixing mechanism, and is used for limiting the rotation of the rotating shaft around the fixed axis; The bottom of the sliding base is provided with a sliding groove perpendicular to the first direction / second direction, and the connecting bearing is arranged in the rotating groove.
6. A wax marking device according to claim 4, wherein The connection part of the heating mechanism and the sliding base is provided with a heat insulation mechanism.
7. A wax marking device according to any one of claims 2 to 6, wherein The wax loading pool is provided with a wax loading pool cover, and the wax loading pool cover is provided with a handle.
8. A wax marking device according to any one of claims 1 to 6, wherein The fixed base is provided with a fan frame, and a heat dissipation fan is fixedly installed on the fan frame, which is used for heat dissipation of the horizontal movable assembly.
9. A wax marking device according to any one of claims 1-6, characterized in that The wax dotting grooves are arranged in parallel on the side surface of the roller.