High-precision embedded heater embedding and pressing device

By designing a high-precision embedded heater clamping device, the heating strip is precisely embedded using an electric lead screw and slider system, solving the problems of narrow operating field of view and poor parallelism, and improving the flatness and applicability of the heater's outer diameter.

CN223681347UActive Publication Date: 2025-12-16SHAOXING HAOTE THERMAL ENERGY TECH CO LTD
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Patent Information

Application Number
CN202422818698.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2025-12-16
Estimated Expiration
2034-11-19

AI Technical Summary

Technical Problem

Existing embedded heater clamping devices have a narrow operating field of view and poor parallelism during insertion, resulting in reduced flatness of the heater's outer diameter and making it impossible to perform complex insertion operations.

Method used

The embedding system, consisting of a base, electric lead screw, slider, slide plate, and active mechanism, achieves precise embedding of the heating strip through motor drive and transmission switching components. The cooperation of the support base and rolling roller ensures the flatness and applicability of the heater pipe.

Benefits of technology

It improves the field of view for embedding, enabling complex embedding operations, avoiding the problem of poor parallelism after pipe clamping, and enhancing the flatness of the heater's outer diameter and its applicability.

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Abstract

The utility model discloses a high-precision embedded heater embedding and pressing device which comprises a base and further comprises two electric guide rails arranged on the base in parallel. Two sliding blocks are arranged on the two electric guide rails respectively, the two corresponding sliding blocks are parallel to each other, the multiple sliding blocks are jointly provided with a bottom plate, and a driving mechanism is arranged on the bottom plate; according to the heater embedding and pressing device, the embedding visual field of the heater embedding and pressing device can be improved, the supporting base is arranged in a semi-development mode, the visual field is better during embedding operation, complex embedding trend operation can be carried out, and the flatness of the outer diameter of an embedding and pressing heater is improved; and the shape of the pipeline is kept unchanged, so that the embedding pressure is improved, and the flatness of the outer diameter of the embedded heater is further improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to embedded heater embedded pressure technical field, concretely relates to a high accuracy embedded heater embedded pressure device. BACKGROUND

[0002] The high accuracy embedded heater embedded pressure device is a kind of equipment for realizing accurate temperature control, is widely used in electronic, aerospace, automobile and medical fields, and the device is usually composed of heating element, sensor, control system and embedded pressure structure.

[0003] The existing embedded heater embedded pressure device, when embedding operation, because the operation field of vision is small, cannot realize complex embedding operation, and when embedding operation, since the parallelism of pipeline after clamping is poor, the flatness of embedded heater outer diameter is reduced, so a high accuracy embedded heater embedded pressure device is required to solve the above problems. UTILITY MODEL CONTENT

[0004] The utility model relates to a high accuracy embedded heater embedded pressure device aims at providing high accuracy embedded heater embedded pressure device to solve the above-mentioned deficiencies in prior art.

[0005] In order to realize the above-mentioned purpose, the utility model provides the following technical scheme: a kind of high accuracy embedded heater embedded pressure device, including base, rectangular slot is set up on the base, multiple guide rods are provided on the base, further including: two electric leadscrews, which are arranged in parallel on the base;Two electric leadscrews are respectively provided with two sliding blocks, and the corresponding two sliding blocks are parallel to each other, multiple sliding blocks are commonly provided with bottom plate, and active mechanism is provided on the bottom plate;Active mechanism is arranged on the bottom plate, and the active mechanism is moved on electric leadscrew by sliding block, to control the trend of embedding, and carry out complex embedding operation;Support seat is arranged on multiple guide rods;Pipeline is arranged on active mechanism;Heating strip is arranged on pipeline;Embedding mechanism is arranged on support seat, and heating strip is extruded, to realize the rapid embedding of heating strip in pipeline, and the flatness of embedded heater pipeline outer diameter is improved by transverse fixation.

[0006] Preferably, the active mechanism includes an outer shell fixedly installed on the bottom plate, a support block is arranged in the outer shell, a motor one is arranged on the support block, a rotating shaft is arranged on the driving end of the motor one, a transmission switching assembly is arranged on the rotating shaft, a fixed tooth roller is arranged on the rotating shaft, a plurality of connecting rods one are arranged on the fixed tooth roller, an arc-shaped hole is formed in the outer shell, and a fixed clamping assembly is arranged at the other end of the plurality of connecting rods one, and the connecting rod one penetrates the arc-shaped hole.

[0007] Preferably, the transmission switching mechanism comprises two electric push rods fixedly installed on the support block, a shift fork is arranged on the two electric push rods, a sliding gear roller is arranged on the shift fork, two sliding grooves are formed on the rotating shaft, the sliding gear roller is in sliding connection with the two sliding grooves on the rotating shaft, a plurality of connecting rods II are arranged on the sliding gear roller, and the other ends of the connecting rods II are provided with external tooth rings.

[0008] Preferably, the fixed clamping assembly comprises a gear set engaged with the external tooth ring, an inner ring sleeve is arranged in the external tooth ring, the inner ring sleeve is in sliding connection with the plurality of connecting rods I, an internal tooth ring is arranged in the inner ring sleeve, the internal tooth ring is engaged with the other end of the gear set, threads are arranged on the internal tooth ring, a plurality of threaded blocks are arranged on the threads, fixed claws are arranged on the plurality of threaded blocks, a plurality of grooves are formed in the inner ring sleeve, two limiting blocks are arranged in each of the plurality of grooves, and the limiting blocks are in sliding connection with the corresponding threaded blocks.

[0009] Preferably, a square groove is formed in the support base, two moving grooves are arranged in the square groove, moving blocks are arranged on the two moving grooves, racks are arranged on the two moving blocks, a rotating rod is arranged in the square groove, a spur gear engaged with the two racks is arranged on the rotating rod, a second motor is arranged on the support base, and the driving end of the second motor is connected with the rotating rod, a trapezoidal groove corresponding to the rectangular groove is formed in the bottom of the support base, a wedge block is arranged in the trapezoidal groove, a threaded hole is arranged on the support base, a threaded knob is arranged on the threaded hole, and the threaded knob is in rotary connection with the wedge block.

[0010] Preferably, the two moving blocks are respectively connected with corresponding calipers through the moving grooves, cushion blocks for buffering are arranged on the two calipers, two supporting blocks are arranged on the two cushion blocks, and the supporting blocks are connected with the embedding mechanism.

[0011] Preferably, the embedding mechanism comprises rotating rollers arranged between the corresponding two supporting blocks, rolling wheels are arranged on the two rotating rollers, a base for limiting the calipers is arranged on the support base, pipes are arranged between the two rolling wheels and the plurality of fixed claws, an inner support assembly is arranged on the support base and located in the pipes.

[0012] Preferably, the inner support assembly comprises an electric telescopic rod arranged on the support base, a plurality of fixed sleeves at equal intervals are arranged on the electric telescopic rod, and a plurality of pressure resistance mechanisms are arranged between the plurality of fixed sleeves and the electric telescopic rod.

[0013] Preferably, the pressure resistance mechanism comprises a plurality of rotating bases arranged on the fixed sleeves and the electric telescopic rod, supporting rods are arranged on the plurality of rotating bases, the corresponding two supporting rods are in rotary cross connection, and pressure resistance blocks are arranged at the other ends of the plurality of supporting rods.

[0014] In the above technical solution, the utility model has the advantages that:

[0015] 1、The high-precision embedded heater embedding and pressing device has the advantages of improving the embedding field of view, taking the pipeline as the driving mechanism, and taking the rolling wheel as the driven mechanism, and cooperating with the fixing claw to fix the pipeline and the rolling wheel extrusion, so that the embedded strip is embedded more conveniently, and the support seat is provided in a half development mode, so that the field of view is better during embedding operation, and complex embedding operation can be performed.

[0016] 2、The high-precision embedded heater embedding and pressing device has the advantages of improving the embedding flatness of the heating strip, taking the pipeline as the self-centering opening and closing mode, being suitable for the inlaying process of heating pipes of different sizes, and having wider applicability, without the need to adjust the center height, and through the base of the clamp, the problem of poor parallelism after the pipeline is clamped can be avoided, so that the flatness of the outer diameter of the embedded and pressed heater is improved.

[0017] 3、The high-precision embedded heater embedding and pressing device has the advantages of improving the embedding and pressure bearing of the pipeline, through the setting of the pressure-resistant block, the pipeline of the heater can keep its original shape when being extruded by the rolling wheel, so as to improve the embedding pressure and further improve the flatness of the outer diameter of the embedded and pressed heater, and through the setting of the supporting rod, it can be suitable for the inlaying of heating pipes of different sizes, so as to improve the application range.

[0018] In summary, the utility model can improve the embedding field of view of the heater embedding and pressing device, through the setting of the support seat in a half development mode, the field of view is better during embedding operation, and complex embedding operation can be performed, through the base of the clamp, the problem of poor parallelism after the pipeline is clamped can be avoided, so that the flatness of the outer diameter of the embedded and pressed heater is improved, through the setting of the pressure-resistant block, the heating pipeline can keep its original shape when being extruded by the rolling wheel, so as to improve the embedding pressure and further improve the flatness of the outer diameter of the embedded and pressed heater.

[0019] It should be understood that the foregoing general description and the following detailed description are only exemplary and illustrative, but not for limiting the present disclosure.

[0020] The present application provides an overview of various implementations or examples of the technology described in the present disclosure, and is not a comprehensive disclosure of the full scope or all features of the disclosed technology. BRIEF DESCRIPTION OF DRAWINGS

[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments will be briefly introduced as follows. Obviously, the drawings in the following description only represent some embodiments described in the present application, and other drawings can also be obtained by those skilled in the art based on these drawings.

[0022] Figure 1 The overall structure schematic diagram provided by the embodiment of the present application is shown in the figure.

[0023] Figure 2 The overall structure schematic diagram provided by the embodiment of the present application is shown in the figure. Figure 1 The internal structure schematic diagram of the outer shell is shown in the figure.

[0024] Figure 3 The overall structure schematic diagram provided by the embodiment of the present application is shown in the figure. Figure 2 The side view of the fixed clamping structure is shown in the figure.

[0025] Figure 4 The overall structure schematic diagram provided by the embodiment of the present application is shown in the figure. Figure 3 The sectional structure plan view of A-A is shown in the figure.

[0026] Figure 5 The overall structure schematic diagram provided by the embodiment of the present application is shown in the figure. Figure 4 The three-dimensional structure schematic diagram is shown in the figure.

[0027] Figure 6 The internal structure schematic diagram of the support seat provided by the embodiment of the present application is shown in the figure.

[0028] Figure 7 The structure schematic diagram of the heating strip provided by the embodiment of the present application is shown in the figure.

[0029] Figure 8 The internal support structure schematic diagram provided by the embodiment of the present application is shown in the figure.

[0030] Explanation of reference signs:

[0031] 1, base; 2, electric screw; 3, sliding block; 4, bottom plate; 5, outer shell; 6, outer gear ring; 7, caliper; 8, support seat; 9, pipeline; 10, rolling wheel; 11, support block; 12, inner ring sleeve; 13, fixed claw; 14, motor one; 15, rotating shaft; 16, electric push rod; 17, shift fork; 18 sliding gear roller; 19, fixed gear roller; 20, limiting block; 21, heating strip; 22, gear set; 23, inner gear ring; 24, thread; 25, square groove; 26, motor two; 27, straight gear; 28, rack; 29, pressure-resistant block; 30, support rod; 31, electric telescopic rod; 32, rotating roller; 33, guide rod; 34, wedge block; 35, threaded knob. DETAILED DESCRIPTION

[0032] To make the purposes, technical solutions, and advantages of the embodiments of the present disclosure clearer, the technical solutions of the embodiments of the present disclosure will be described clearly and completely below with reference to the drawings of the embodiments of the present disclosure. Obviously, the described embodiments are some, but not all, of the embodiments of the present disclosure. Based on the described embodiments of the present disclosure, all other embodiments obtained by a person of ordinary skill in the art without creative effort belong within the scope of the present disclosure.

[0033] With reference to Figures 1-8 The high-precision embedded heater embedding device provided by the embodiment of the present utility model, including base 1, the bottom of base 1 is provided with rubber pad, the bottom of rubber pad is provided with frosted grain, this rubber pad can reduce the corrosion and oxidation speed of base 1, the frosted grain can enhance the friction between base 1 and ground, rectangular slot is opened on base 1, a plurality of guide rods 33 are arranged on base 1, the guide rod 33 is arranged, and the support seat 8 is positioned, further comprising: two electric leadscrews 2 are arranged in parallel on base 1; two sliding blocks 3 are arranged on two electric leadscrews 2 respectively, and the corresponding two sliding blocks are parallel to each other, a plurality of sliding blocks 3 are commonly provided with a bottom plate 4, and a driving mechanism is arranged on the bottom plate 4; the driving mechanism is arranged on the bottom plate 4, the driving mechanism is driven by the sliding block 3 to move on the electric leadscrew 2, so as to control the embedding direction and carry out complex embedding operation; the support seat 8 is arranged on the base 1; the pipeline 9 is arranged on the driving mechanism; the heating strip 21 is arranged on the pipeline 9; the embedding mechanism is arranged on the support seat 8, the heating strip 21 is quickly embedded in the pipeline 9 by extruding the heating strip 21, and the flatness of the outer diameter of the embedded heater pipeline 9 is improved by transverse fixation.

[0034] As a preferred technical solution of the present embodiment, the driving mechanism comprises an outer shell 5 fixedly installed on the bottom plate 4, a support block is arranged in the outer shell 5, a motor 14 is arranged on the support block, a rotating shaft 15 is arranged on the driving end of the motor 14, a transmission switching assembly is arranged on the rotating shaft 15, a fixed tooth roller 19 is arranged on the rotating shaft 15, a plurality of connecting rods 1 are arranged on the fixed tooth roller 19, an arc-shaped hole is opened on the outer shell 5, the other ends of the plurality of connecting rods 1 are commonly provided with a fixed clamping assembly, and the connecting rod 1 penetrates through the arc-shaped hole.

[0035] Through the arrangement of the electric leadscrew 2, the device running and conveying can be further stabilized, a damping pad is installed on the support block, this arrangement can reduce the vibration amplitude of the motor 14 during operation, further improve the precision of the heating strip 21 during embedding, and improve the flatness of the outer diameter of the embedded water heater.

[0036] As a preferred technical scheme of the embodiment, the transmission switching mechanism comprises two electric push rods 16 fixedly installed on the support block, a shift fork 17 is arranged on the two electric push rods 16, a sliding gear roller 18 is arranged on the shift fork 17, two sliding grooves are formed on the rotating shaft 15, the sliding gear roller 18 is in sliding connection with the two sliding grooves on the rotating shaft 15, a plurality of connecting rods II are arranged on the sliding gear roller 18, and outer gear rings 6 are arranged at the other ends of the connecting rods II.

[0037] The fixed clamping assembly comprises a gear set 22 in mesh with the outer gear ring 6, an inner ring sleeve 12 is arranged in the outer gear ring 6, the inner ring sleeve 12 is in sliding connection with the plurality of connecting rods I, an inner gear ring 23 is arranged in the inner ring sleeve 12, the inner gear ring 23 is in mesh with the other end of the gear set 22, a screw thread 24 is arranged on the inner gear ring 23, a plurality of screw blocks are arranged on the screw thread 24, a fixed claw 13 is arranged on each of the plurality of screw blocks, a plurality of grooves are formed on the inner ring sleeve 12, two limiting blocks 20 are arranged in each of the plurality of grooves, and the limiting blocks 20 are in sliding connection with the corresponding screw blocks.

[0038] Through the arrangement of the electric push rod 16 and the shift fork 17, the sliding gear roller 18 can be quickly moved on the rotating shaft 15, so that the fixed claw 13 can quickly fix the pipeline 9, and through the adjustment of the spacing between the fixed claws 13, the pipelines 9 with different diameters can be fixed, the application range of the device is improved, the limiting blocks 20 are arranged, the fixed claw 13 can freely change in size within a limited range, the flexibility of the device is improved, and the trigger clamping block is arranged between the sliding gear roller 18 and the fixed gear roller 19. When the sliding gear roller 18 is meshed with the fixed gear roller 19, the trigger clamping block is retracted, the sliding gear roller 18 drives the fixed gear roller 19 to rotate, if the fixed gear roller 19 is separated from the sliding gear roller 18, the trigger clamping block is clamped in the slot hole on the rotating shaft 15, so as to prevent the fixed claw 13 from loosening and improve the stability thereof.

[0039] The support seat 8 is provided with a square groove 25, two moving grooves are arranged in the square groove 25, a moving block is arranged on each of the two moving grooves, a rack 28 is arranged on each of the two moving blocks, a rotating rod is arranged in the square groove 25, a spur gear 27 in mesh with the two racks 28 is arranged on the rotating rod, a second motor 26 is arranged on the support seat 8, and a driving end of the second motor 26 is connected with the rotating rod, a trapezoidal groove corresponding to the rectangular groove is formed in the bottom of the support seat 8, a wedge block 34 is arranged in the trapezoidal groove, a threaded hole is arranged on the support seat 8, a threaded knob 35 is arranged on the threaded hole, and the threaded knob 35 is in rotating connection with the wedge block 34.

[0040] The two moving blocks are respectively connected with the corresponding clamps 7 through the moving grooves, a cushion block for buffering is arranged on each of the two clamps 7, two supporting blocks 11 are arranged on each of the two cushion blocks, and the supporting blocks 11 are connected with the embedding mechanism.

[0041] The embedding mechanism comprises a rotating roller 32 arranged between the two corresponding supporting blocks 11, the two rotating rollers 32 are each provided with a rolling wheel 10, the supporting seat 8 is provided with a base for limiting the clamp 7, the two rolling wheels 10 and the plurality of fixing claws 13 are provided with the pipe 9, the supporting seat 8 is provided with an inner supporting assembly, and the inner supporting assembly is located in the pipe 9.

[0042] Through the arrangement of the straight gear 27 and the rack 28, the clamp can be opened and closed in the self-centering mode of the pipe 9, so that it is suitable for the pipe 9 embedding process of the heater of different sizes, has wider applicability, and does not need to adjust the center height. At the same time, through the arrangement of the base of the clamp, the problem of poor parallelism after the pipe 9 is clamped can be avoided, the flatness of the outer diameter of the embedded heater is improved, through the arrangement between the threaded knob 35 and the wedge block 34, the supporting seat 8 can move along the guide rod 33, so that the height of the supporting seat 8 is adjusted, the assembly angle is adjusted, and the field of view is improved.

[0043] The inner supporting assembly comprises an electric telescopic rod 31 arranged on the supporting seat 8, a plurality of equally spaced fixing sleeves arranged on the electric telescopic rod 31, and a plurality of pressure-resistant mechanisms arranged between the fixing sleeves and the electric telescopic rod 31; the pressure-resistant mechanism comprises a plurality of rotating seats arranged on the fixing sleeve and the electric telescopic rod 31, a plurality of supporting rods 30 arranged on the rotating seats, and a pressure-resistant block 29 arranged at the other end of the plurality of supporting rods 30.

[0044] Through the arrangement of the pressure-resistant block 29, the pipe 9 of the heater can maintain its original pipe shape when being extruded by the rolling wheel 10, so as to improve the embedding pressure and further improve the flatness of the outer diameter of the embedded heater. At the same time, through the arrangement of the supporting rod 30, the pipe 9 of the heater of different sizes can be embedded, and the application range is improved.

[0045] The high-precision embedded heater embedding device machining process comprises the following steps:

[0046] S1: selecting a pipe 9, a copper sleeve and a heating strip 21 for a heater;

[0047] S2: starting the motor one 14, the driving end of the motor one 14 drives the sliding gear roller 18 to rotate, the sliding gear roller 18 drives the outer gear ring 6 to rotate through the connecting rod two, the outer gear ring 6 drives the inner gear ring 23 to rotate through the gear set 22, the inner gear ring 23 drives the fixing claw 13 to clamp and tighten the pipe 9 through the thread 24, and the electric screw rod 2 is started to drive the sliding block 3 to move the device to a suitable position;

[0048] S3: sleeve into the prepared copper sleeve and fasten, and then start the motor two 26, the driving end of the motor two 26 is driven by the spur gear 27 to move the rack 28, two racks 28 move the caliper 7, so that the rolling wheel 10 is clamped to the pipe 9, and the electric telescopic rod 31 is sleeved in the pipe 9, rotate the threaded knob 35, push the wedge block 34, make the support seat 8 move along the guide rod 33, so as to adjust the angle according to the pipe 9;

[0049] S4: start the electric telescopic rod 31, the angle between the support rods 30 is reduced, so that the pressure block 29 is attached to the inner wall of the pipe 9 and is pressed;

[0050] S5: put the heating strip 21 into the starting position of the groove, start the electric push rod 16, the electric push rod 16 drives the sliding gear 18 to engage with the fixed gear 19 through the fork 17, start the motor one 14, the motor one 14 drives the pipe 9 to rotate and starts the embedding operation, along the direction of the groove, control the part of the heating strip 21 about to be embedded, until the embedding is completed.

[0051] The above only describes some exemplary embodiments of the utility model by way of illustration, without doubt, for ordinary skilled in the art, under the condition that without deviating from the spirit and scope of the utility model, the described embodiments can be modified in various different ways. Therefore, the above drawings and description are illustrative in nature and should not be understood as limiting the scope of protection of the utility model claims.

Claims

1. A high-precision embedded heater embedding device, comprising a base (1), a rectangular slot is formed on the base (1), a plurality of guide rods (33) are arranged on the base (1), characterized in that, Also include: Two electric screw (2) is arranged in parallel on the base (1); Two said electric screw (2) is respectively provided with two sliders (3), and the corresponding two sliders are parallel to each other, a plurality of said slider (3) is commonly provided with a bottom plate (4), the bottom plate (4) is provided with a driving mechanism; Driving mechanism, which is arranged on the bottom plate (4), drives the driving mechanism to move on the electric screw (2) through the slider (3), so as to control the embedded direction and carry out complex embedding operation; Support seat (8), which is arranged on a plurality of guide rods (33); Pipeline (9), which is arranged on the driving mechanism; Heating strip (21), which is arranged on the pipeline (9); Embedding mechanism, which is arranged on the support seat (8), extrudes the heating strip (21), so as to realize the rapid embedding of the heating strip (21) in the pipeline (9), and improves the flatness of the outer diameter of the embedded heater pipeline (9) through transverse fixation.

2. The high-precision embedded heater press-fitting device according to claim 1, characterized in that, The said driving mechanism includes a shell (5) fixedly installed on the bottom plate (4), a support block is arranged in the shell (5), a motor (14) is arranged on the support block, a rotating shaft (15) is arranged on the driving end of the motor (14), a transmission switching assembly is arranged on the rotating shaft (15), a fixed tooth roller (19) is arranged on the rotating shaft (15), a plurality of connecting rods (1) are arranged on the fixed tooth roller (19), an arc hole is formed in the shell (5), and a plurality of the other ends of the connecting rods (1) are commonly provided with a fixed clamping assembly, and the connecting rods (1) penetrate through the arc hole.

3. The high-precision embedded heater press-in device according to claim 2, wherein, The said transmission switching assembly includes two electric push rods (16) fixedly installed on the support block, a fork (17) is commonly arranged on the two electric push rods (16), a sliding tooth roller (18) is arranged on the fork (17), two sliding grooves are formed in the rotating shaft (15), and the sliding tooth roller (18) is slidably connected with the two sliding grooves in the rotating shaft (15), a plurality of connecting rods (2) are arranged on the sliding tooth roller (18), and the other ends of the connecting rods (2) are provided with an external tooth ring (6).

4. The high-precision embedded heater press-in device according to claim 3, characterized in that, The said fixed clamping assembly includes a gear set (22) engaged with the external tooth ring (6), an inner ring sleeve (12) is arranged in the external tooth ring (6), and the inner ring sleeve (12) is slidably connected with the plurality of connecting rods (1), an inner tooth ring (23) is arranged in the inner ring sleeve (12), and the inner tooth ring (23) is engaged with the other end of the gear set (22), a screw thread (24) is arranged on the inner tooth ring (23), a plurality of threaded blocks are arranged on the screw thread (24), a fixed claw (13) is arranged on each of the plurality of threaded blocks, a plurality of recesses are formed in the inner ring sleeve (12), two limiting blocks (20) are arranged in each of the plurality of recesses, and the limiting blocks (20) are slidably connected with the corresponding threaded blocks.

5. The high-precision embedded heater press-in device of claim 1, wherein, The support seat (8) is provided with a square groove (25) in it, two moving grooves are arranged in the square groove (25), two moving blocks are arranged on the two moving grooves, two rack gears (28) are arranged on the two moving blocks, a rotating rod is arranged in the square groove (25), a spur gear (27) engaged with the two rack gears (28) is arranged on the rotating rod, a motor two (26) is arranged on the support seat (8), and the driving end of the motor two (26) is connected with the rotating rod, a trapezoidal groove corresponding to the rectangular groove is formed in the bottom of the support seat (8), a wedge block (34) is arranged in the trapezoidal groove, a threaded hole is arranged on the support seat (8), a threaded knob (35) is arranged on the threaded hole, and the threaded knob (35) is rotatably connected with the wedge block (34).

6. The high-precision embedded heater press-in device of claim 5, wherein, The two moving blocks are connected with the corresponding calipers (7) through the moving grooves, the two calipers (7) are provided with a cushion block for buffering, two supporting blocks (11) are arranged on the two cushion blocks, and the supporting blocks (11) are connected with the embedding mechanism.

7. The high-precision embedded heater press-in device of claim 6, wherein, The embedding mechanism comprises rotating rollers (32) arranged between the two corresponding supporting blocks (11), rolling wheels (10) are arranged on the two rotating rollers (32), a base for limiting the calipers (7) is arranged on the support seat (8), a pipe (9) is arranged between the two rolling wheels (10) and the plurality of fixed claws (13), an inner support assembly is arranged on the support seat (8), and the inner support assembly is located in the pipe (9).

8. The high-precision embedded heater press-in device of claim 7, wherein, The inner support assembly comprises an electric telescopic rod (31) arranged on the support seat (8), a plurality of equidistant fixing sleeves are arranged on the electric telescopic rod (31), and a plurality of pressure resistance mechanisms are arranged between the fixing sleeves and the electric telescopic rod (31).

9. The high-precision embedded heater press-in device of claim 8, wherein, The pressure resistance mechanism comprises a plurality of rotating seats arranged on the fixing sleeves and the electric telescopic rod (31), a supporting rod (30) is arranged on each of the plurality of rotating seats, and the corresponding two supporting rods (30) are rotatably and crossly connected, and the other ends of the plurality of supporting rods (30) are commonly provided with a pressure resistance block (29).

Citation Information

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