Vibration-based hot melt nut runner
Patent Information
- Application Number
- CN202211658722.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-22
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2042-12-22
AI Technical Summary
[0003]本发明的主要目的在于解决人工摆放热熔螺母导致螺母植入位置精度较差工件质量下降,适应性较差,使用局限性较低的的技术问题
[0019]In this embodiment of the invention, a hot-melt nut forming machine is provided, which reduces manual labor, increases the accuracy of nut insertion, improves work stability, enhances workpiece quality, and reduces usage limitations. The hot-melt nut forming machine, which uses a vibratory feeder for automatic loading and unloading, is rationally designed, easy to operate, and highly automated, achieving automated loading and unloading of the hot-melt nut forming machine, improving processing efficiency, and reducing labor costs.
Smart Images

Figure CN115805713B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of hot melt machines, and more particularly to a vibration-based hot melt nut machine. Background Technology
[0002] Existing hot melt nut forming machines are auxiliary devices used to insert nuts into plastic parts. They are widely used in the field of hot melt nut forming machines. However, they require manual handling of injection-molded products to the hot melt nut forming machine for nut melting. Furthermore, these machines suffer from high labor costs, low automation, and low processing efficiency, failing to meet industry demands. Additionally, existing hot melt nut forming machines require manual handling of parts, increasing labor costs. Manual placement is prone to errors, leading to poor insertion accuracy, decreased workpiece quality, poor adaptability, and limited applicability. Summary of the Invention
[0003] The main objective of this invention is to solve the technical problems of poor nut placement accuracy, decreased workpiece quality, poor adaptability, and limited applicability caused by manually placing thermoplastic nuts.
[0004] The first aspect of the present invention provides a vibration-based hot melt nut machine, the vibration-based hot melt nut machine comprising:
[0005] Nut delivery pipe, the nut delivery pipe being used to transport nuts;
[0006] A nut vibratory feeder, comprising a vibratory feeder guide rail connected to a nut delivery tube, wherein the nut vibratory feeder is used to vibrate a nut that enters the nut delivery tube through the vibratory feeder guide rail;
[0007] A nut hot-embedding machine, which is connected to a nut delivery pipe, includes a hot-embedding drill bit for hot-melting and implanting the nut.
[0008] A fixing mechanism, wherein the nut thermal embedding machine is vertically mounted on the fixing mechanism;
[0009] A vibration mechanism is vertically mounted on the fixed mechanism. The vibration mechanism has a vibration motor connected to a vertical swing arm. The vibration motor drives the vertical swing arm to vibrate so as to resonate with the fixed mechanism and drive the nut of the nut embedding machine to vibrate and enter the nut embedding drill bit.
[0010] Optionally, in a first implementation of the first aspect of the present invention, the fixing mechanism includes a fixing bracket, the fixing bracket includes a guide rail bracket, a guide rail is provided on the guide rail bracket, an upper bracket is installed at one end of the guide rail bracket, the upper bracket is used to install a vibration motor, and a limit base is installed at the other end of the guide rail bracket.
[0011] Optionally, in a second implementation of the first aspect of the present invention, the guide rail is provided with a first slider and a second slider, and the fixing mechanism includes a first guide rod and a second guide rod, wherein the first guide rod passes through the first slider and the second slider and the second guide rod passes through the first slider and the second slider.
[0012] Optionally, in a third implementation of the first aspect of the present invention, the vertical pendulum includes a transmission rod and a fixed rod. The transmission rod is hammer-shaped, with one hammer-shaped end connected to a vibration motor for transmitting vibration, and the other cylindrical end connected to the fixed rod.
[0013] Optionally, in a fourth implementation of the first aspect of the invention, the transmission rod passes through the upper bracket and connects to the fixed rod, and the fixed rod is snapped onto the first slider for transmitting vibration.
[0014] Optionally, in a fifth implementation of the first aspect of the present invention, the first slider is provided with a hinge, the hinge is connected to a fixing block, and the hinge is used to rotate and adjust the fixing block in order to fix the position of the nut heat-embedding machine.
[0015] Optionally, in a sixth implementation of the first aspect of the present invention, a first fixing pin is provided on the fixing block, the first fixing pin being used to fasten the fixing block to the first slider.
[0016] Optionally, in a seventh implementation of the first aspect of the present invention, the second slider is provided with a first clamping block and a second clamping block, the first clamping block and the second clamping block forming a hot-melt hole, and the hot-embedded drill bit is inserted into the hot-melt hole.
[0017] Optionally, in an eighth implementation of the first aspect of the present invention, the second slider is provided with a second fixing pin, which passes through the second slider to fix the position of the second slider.
[0018] Optionally, in a ninth implementation of the first aspect of the present invention, the nut vibratory plate is positioned higher than the fixing mechanism so that the nut vibrates and falls into the nut hot-embedding machine under the action of gravity.
[0019] In this embodiment of the invention, a hot-melt nut forming machine is provided, which reduces manual labor, increases the accuracy of nut insertion, improves work stability, enhances workpiece quality, and reduces usage limitations. The hot-melt nut forming machine, which uses a vibratory feeder for automatic loading and unloading, is rationally designed, easy to operate, and highly automated, achieving automated loading and unloading of the hot-melt nut forming machine, improving processing efficiency, and reducing labor costs. Attached Figure Description
[0020] Figure 1 This is an overall schematic diagram of the first embodiment of the present invention;
[0021] Figure 2 This is the first exploded view of the fixing mechanism in an embodiment of the present invention;
[0022] Figure 3 This is the second exploded view of the fixing mechanism in an embodiment of the present invention;
[0023] Figure 4 This is the third exploded view of the fixing mechanism in an embodiment of the present invention. Detailed Implementation
[0024] This invention provides a vibration-based hot melt nut machine.
[0025] This invention is illustrated in many different forms. The accompanying drawings show and describe embodiments of the invention in detail herein. It should be understood that the invention is intended to be interpreted in a way that is far removed from the intended scope and is not intended to limit the broad scope of the invention to the illustrated embodiments. Therefore, elements and limitations disclosed in the abstract, summary, and detailed description but not defined in the claims are not to be construed, individually or collectively, by implication, inference, etc., as included in the claims. For the purposes of this detailed description, unless specifically indicated: the singular includes multiples and vice versa; the words “and” and “or” are both combined and singular; the word “all” means “any and all”; the word “any” means “any and all”; and the words “comprising”, “including”, and “having” mean “including but not limited to”. Furthermore, words with approximate meanings, such as “about,” “almost,” “substantially,” “approximately,” etc., may herein mean “equal to, close to, or nearly equal to,” or “within the range of 3-5%” or “within acceptable manufacturing tolerances,” or such combinations, for example, any logical combination.
[0026] <First Embodiment>
[0027] Please refer to Figure 1 , Figure 1 This is a schematic diagram of the overall structure of the first embodiment of the present invention. The vibration-based hot melt nut machine includes:
[0028] Nut delivery pipe 101, nut delivery pipe 101 is used to transport nuts;
[0029] A nut vibratory feeder 102 includes a vibratory feeder guide rail 1021, which is connected to the nut delivery pipe 101. The nut vibratory feeder 102 is used to vibrate the nut through the vibratory feeder guide rail 1021 into the nut delivery pipe 101.
[0030] Nut hot embedding machine 103 is connected to nut delivery pipe 101. Nut hot embedding machine 103 includes hot embedding drill bit 1031, which is used for hot melting and embedding nuts.
[0031] The fixing mechanism 104, on which the nut hot embedding machine 103 is vertically mounted;
[0032] A vibration mechanism 105 is vertically mounted on the fixing mechanism 104. The vibration mechanism 105 has a vibration motor 1051, which is connected to a vertical swing arm 1052. The vibration motor 1051 drives the vertical swing arm 1052 to vibrate so as to resonate with the fixing mechanism 1052 and drive the nut of the nut hot embedding machine 103 to vibrate and enter the hot embedding drill bit 1031.
[0033] Nuts are automatically fed by a nut vibratory feeder 102. The nut hopper is driven by the nut vibratory feeder 102, vibrating vertically and torsionally. Nuts inside the nut vibratory feeder 102 rise along a spiral track due to this vibration. During the ascent, after a series of screenings or posture changes by the vibratory feeder guide rail 1021, the nuts enter the nut conveying pipe 101 in an orderly manner according to their embedding posture. The nuts entering the nut conveying pipe 101 are in the same order. The nut conveying pipe 101 connects the nut vibratory feeder 102 and the nut hot embedding machine 103, allowing the nut hot embedding machine 103 to move within a certain range relative to the nut vibratory feeder 102.
[0034] <Specific Implementation Example 1>
[0035] In one specific embodiment, please refer to Figure 2 , Figure 2 The first exploded view of the fixing mechanism shows that the fixing mechanism 104 includes a fixing bracket 1041, the fixing bracket 1041 includes a guide rail bracket 1041a, the guide rail bracket 1041a is provided with a guide rail 1041ab, one end of the guide rail bracket 1041a is equipped with an upper bracket 1041b, the upper bracket 1041b is used to install a vibration motor 1051, and the other end of the guide rail bracket 1041a is equipped with a limiting base 1041c.
[0036] The guide rail 1041ab is provided with a first slider 1042a and a second slider 1042b. The fixing mechanism 104 includes a first guide rod 1042c and a second guide rod 1042d. The first guide rod 1042c passes through the first slider 1042a and the second slider 1042b and connects them. The second guide rod 1042d passes through the first slider 1042a and the second slider 1042b and connects them.
[0037] <Specific Implementation Example 2>
[0038] Based on a specific embodiment 1, please refer to Figure 3 , Figure 3 The second exploded view of the fixing mechanism shows that the vertical swing arm 1052 includes a transmission rod 1052a and a fixing rod 1052b. The transmission rod 1052a is hammer-shaped, and the hammer-shaped end of the transmission rod 1052a is connected to the vibration motor 1051 for transmitting vibration. The cylindrical end of the transmission rod 1052a is connected to the fixing rod 1052b.
[0039] The transmission rod 1052a passes through the upper bracket 1041b and connects to the fixed rod 1052b. The fixed rod 1052b is snapped onto the first slider 1042a for transmitting vibration.
[0040] <Specific Implementation Example 3>
[0041] Based on a specific embodiment 2, please refer to Figure 3 , Figure 3 The second exploded view shows the fixing mechanism. The first slider 1042a is equipped with a hinge 1042a1, which connects to a fixing block 1042a2. The hinge 1042a1 is used to rotate and adjust the fixing block 1042a2 to fix the position of the nut embedding machine 103. A first fixing pin 1042a3 is provided on the fixing block, which is used to engage the fixing block 1042a1 with the first slider 1042a.
[0042] <Specific Implementation Example 4>
[0043] Please refer to Figure 4 , Figure 4 The third exploded view of the fixing mechanism shows that the second slider 1042b is provided with a first clamping block 1042b1 and a second clamping block 1042b2. The first clamping block 1042b1 and the second clamping block 1042b2 form a hot-melt hole, and the hot-embedded drill bit 1031 is inserted into the hot-melt hole.
[0044] The second slider 1042b is provided with a second fixing pin 1042b3, which passes through the second slider 1042b to fix the position of the second slider 1042b.
[0045] <Specific Implementation Example 5>
[0046] The nut vibratory plate 102 is positioned higher than the fixing mechanism 104 so that the nut vibrates and falls into the nut thermal embedding machine 103 under the action of gravity.
[0047] In this embodiment of the invention, a hot-melt nut forming machine is provided, which reduces manual labor, increases the accuracy of nut insertion, improves work stability, enhances workpiece quality, and reduces usage limitations. The hot-melt nut forming machine, which uses a vibratory feeder for automatic loading and unloading, is rationally designed, easy to operate, and highly automated, achieving automated loading and unloading of the hot-melt nut forming machine, improving processing efficiency, and reducing labor costs.
[0048] Although some aspects of the invention have been described in detail with reference to the illustrated embodiments, those skilled in the art will understand that many changes can be made to the invention without departing from its scope. The invention is not limited to the exact construction and composition disclosed herein; any and all modifications, alterations, and variations learned from the foregoing description are within the spirit and scope of the invention as defined by the appended claims. Furthermore, the principles of the invention explicitly include any and all combinations and sub-combinations of the foregoing elements and features.
Claims
1. A vibration-based hot melt nut machine, characterized in that, The vibration-based hot melt nut machine includes: Nut delivery pipe, the nut delivery pipe being used to transport nuts; A nut vibratory feeder, comprising a vibratory feeder guide rail connected to a nut delivery tube, wherein the nut vibratory feeder is used to vibrate a nut that enters the nut delivery tube through the vibratory feeder guide rail; A nut hot-embedding machine, which is connected to a nut delivery pipe, includes a hot-embedding drill bit for hot-melting and implanting the nut. A fixing mechanism, wherein the nut thermal embedding machine is vertically mounted on the fixing mechanism; A vibration mechanism is vertically mounted on the fixed mechanism. The vibration mechanism has a vibration motor connected to a vertical swing arm. The vibration motor drives the vertical swing arm to vibrate so as to resonate with the fixed mechanism and drive the nut of the nut embedding machine to vibrate and enter the nut embedding drill bit. The fixing mechanism includes a fixing bracket, which includes a guide rail bracket. A guide rail is provided on the guide rail bracket. An upper bracket is installed at one end of the guide rail bracket for mounting a vibration motor. A limit base is installed at the other end of the guide rail bracket. The guide rail is provided with a first slider and a second slider, and the fixing mechanism includes a first guide rod and a second guide rod. The first guide rod passes through the first slider and the second slider and connects them. The second guide rod passes through the first slider and connects them. The vertical swing arm includes a transmission rod and a fixed rod. The transmission rod is hammer-shaped, with one hammer-shaped end connected to a vibration motor for transmitting vibration, and the other cylindrical end connected to the fixed rod. The transmission rod passes through the upper bracket and connects to the fixed rod, and the fixed rod is snapped into the first slider to transmit vibration; The first slider is equipped with a hinge, which is connected to a fixing block. The hinge is used to rotate and adjust the fixing block in order to fix the position of the nut heat-embedding machine. The fixing block is provided with a first fixing pin, which is used to fasten the fixing block to the first slider. The second slider is provided with a first clamping block and a second clamping block, the first clamping block and the second clamping block forming a hot-melt hole, and the hot-embedded drill bit is inserted into the hot-melt hole.
2. The vibration-based hot melt nut machine according to claim 1, characterized in that, The second slider is provided with a second fixing pin, which passes through the second slider to fix the position of the second slider.
3. The vibration-based hot melt nut machine according to claim 1, characterized in that, The nut vibratory plate is positioned higher than the fixing mechanism so that the nut vibrates and falls into the nut hot-embedding machine under the action of gravity.
Citation Information
Patent Citations
Machine is implanted to nut hot melt
CN208035415U