Fixture heating device for rhinestone processing equipment
By designing a fixture heating device to preheat the fixture to near the working temperature of the water drilling equipment, the problem of expansion or contraction caused by fixture temperature changes was solved, thus improving the accuracy and quality of water drilling.
Patent Information
- Application Number
- CN202520079489.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-14
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-01-14
AI Technical Summary
During the water drilling process, temperature changes in the fixture cause the pin column to expand or contract, affecting the drilling accuracy and quality.
Design a fixture heating device, including an oven and a placement tray, to preheat the fixture to near the working temperature of the water drilling equipment, thereby reducing the expansion or contraction of the fixture material caused by temperature changes and improving machining accuracy and quality.
By preheating the fixture to near the operating temperature of the water drilling equipment, the expansion or contraction of the fixture caused by temperature changes is reduced, thereby improving the accuracy and quality of water drilling.
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Figure CN223749376U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to water drill processing equipment technical field, specifically is a clamp heating device for water drill processing equipment. BACKGROUND
[0002] The water drill is connected stably in the mounting hole of the needle column on the clamp through hot melt glue, so that the water drill processing equipment carries out simultaneous fine grinding to the water drill row on the clamp. After a plurality of water drill polishing procedures, the needle column row will be gradually abraded, leading to the change of its size and shape, thereby affecting the fixing effect and processing precision of the subsequent water drill. Therefore, before placing the water drill, the needle column row on the clamp needs to be polished flat by using the polisher.
[0003] When the water drill processing equipment carries out a series of fine grinding to the water drill row on the clamp, the water drill processing equipment generates a certain amount of heat during operation, forming heat transfer, so that the temperature of the clamp is 50-55 DEG C. When the polisher polishes the needle column row on the clamp, the heat generated during the operation of the polisher is negligible, and the temperature of the clamp is close to normal temperature (room temperature or working environment temperature), and the temperature of the clamp is 15-25 DEG C. Therefore, after the clamp is polished by the polisher, the top of the needle column row on the clamp is in a flush state, at this time, when the clamp is placed in the water drill processing equipment from the low temperature state (15-25 DEG C) after polishing, the clamp will swell slightly (specifically, the two ends of the clamp swell more obviously) due to the temperature rise (the temperature of the clamp rises to 50-55 DEG C). This swelling will cause the top of the needle column row to be no longer completely flush, thereby affecting the water drill processing precision. CONTENT OF THE UTILITY MODEL
[0004] The utility model aims at providing a clamp heating device for water drill processing equipment to solve the problems in the background art.
[0005] In order to achieve the above-mentioned purpose, the utility model provides a clamp heating device for water drill processing equipment, which comprises an oven, a support and a placing disc.
[0006] The inside of the oven has a containing cavity, which is used to contain the support and the placing disc.
[0007] The placing disc is arranged on the support, and a first containing cavity is formed on the placing disc, which is used to place the clamp.
[0008] Optionally, the support comprises a mounting frame.
[0009] The mounting frame is connected to the oven in the first direction and can be axially rotated, and the mounting frame has an inclined state and a horizontal state.
[0010] The mounting rack is provided with a second accommodating cavity having opposite first and second ends, the first end of the second accommodating cavity is an open end, and the second end of the second accommodating cavity is a closed end;
[0011] The placement disc is movably arranged in the second accommodating cavity and has a first position away from the closed end and a second position close to the closed end.
[0012] Optionally, the clamp heating device further comprises a positioning assembly, and the bracket further comprises two support frames and two connecting pieces;
[0013] The two connecting pieces are respectively arranged on opposite sides of the mounting rack;
[0014] The two support frames are arranged at intervals along the first direction, the bottoms of the two support frames are connected with the bottom wall of the accommodating cavity, and the tops of the two support frames are respectively hingedly connected with the corresponding connecting pieces;
[0015] The positioning assembly is located in the accommodating cavity and is used to switch the mounting rack between the inclined state and the horizontal state.
[0016] Optionally, the positioning assembly comprises a fixed plate, a buckle and a clasp which are connected with each other.
[0017] The two ends of the fixed plate are respectively connected to the cavity wall of the accommodating cavity, and the side of the fixed plate facing the mounting rack is provided with the clasp.
[0018] The side of the mounting rack facing the fixed plate is provided with the buckle.
[0019] In the horizontal state, the buckle is connected with the clasp in a clamping manner, so that the mounting rack can be horizontally arranged in the accommodating cavity; in the inclined state, the buckle is separated from the clasp, so that the mounting rack can be inclinedly arranged in the accommodating cavity.
[0020] Optionally, the distance between the connecting piece and the open end is less than the distance between the connecting piece and the closed end.
[0021] Optionally, the mounting rack comprises a bottom plate and a plurality of side plates surrounding the bottom plate.
[0022] The plurality of side plates and the bottom plate jointly define the second accommodating cavity.
[0023] The opposite sides of the placement disc are respectively provided with sliding blocks, the opposite side cavity walls of the second accommodating cavity are respectively formed with sliding grooves extending between the open end and the closed end, and the sliding blocks are slidingly fitted in the sliding grooves.
[0024] Optionally, the placing disc comprises a disc body, a first clamping part and a second clamping part;
[0025] The first clamping part and the second clamping part are formed on the top surface of the disc body;
[0026] The first clamping part and the second clamping part both extend along a second direction, and the first clamping part, the second clamping part and the disc body jointly enclose the first accommodating cavity;
[0027] The first direction and the second direction are perpendicular.
[0028] Optionally, a plurality of placing discs are provided side by side, and the disc bodies of every two adjacent placing discs are connected by a connecting part;
[0029] The disc body of the placing disc at the head end of the plurality of placing discs and the disc body of the placing disc at the tail end of the plurality of placing discs are both provided with the sliding block.
[0030] Optionally, the clamp heating device further comprises a push-pull piece;
[0031] The side of the placing disc close to the open end is provided with the push-pull piece.
[0032] Optionally, the mounting frame is configured as a hollow piece.
[0033] Through the above technical solution, by setting the oven and the placing disc, before the clamp is polished flat, the clamp can be first placed in the first accommodating cavity of the placing disc, and then the placing disc together with the clamp is placed on the support in the oven. Start the oven, preheat the clamp according to the set time and temperature, so that its temperature gradually rises to close to the working temperature of the water drill processing equipment. After preheating is completed, the clamp is taken out from the oven, and the needle column row on the clamp is quickly polished flat using the polisher when the clamp is still at a high temperature. That is, by preheating the clamp in the oven, the temperature of the clamp can gradually rise to close to the working temperature of the water drill processing equipment, so that the polisher can polish the needle column row on the clamp at this temperature, thereby reducing the expansion or shrinkage of the clamp material due to temperature changes in the subsequent fine grinding process, and thus improving the precision and quality of the water drill processing.
[0034] Other features and advantages of the present disclosure will be described in detail in the following specific embodiments. BRIEF DESCRIPTION OF DRAWINGS
[0035] The accompanying drawings are included to provide a further understanding of the present disclosure and constitute a part of the specification, and are used together with the following specific embodiments to explain the present disclosure, but do not constitute a limitation on the present disclosure. In the drawings:
[0036] Figure 1 is a structural schematic view of a clamp heating device for a rhinestone processing equipment provided by an exemplary embodiment of the present disclosure, wherein the mounting frame is in a horizontal state;
[0037] Figure 2 is a structural schematic view of a clamp heating device for a rhinestone processing equipment provided by an exemplary embodiment of the present disclosure, wherein the mounting frame is in an inclined state;
[0038] Figure 3 is a structural schematic view of a support and a placement disc connection of a clamp heating device for a rhinestone processing equipment provided by an exemplary embodiment of the present disclosure, wherein the mounting frame is in a horizontal state;
[0039] Figure 4 is a structural schematic view of a support and a placement disc connection of a clamp heating device for a rhinestone processing equipment provided by an exemplary embodiment of the present disclosure, wherein the mounting frame is in an inclined state;
[0040] Figure 5 is a structural schematic view of a placement disc of a clamp heating device for a rhinestone processing equipment provided by an exemplary embodiment of the present disclosure.
[0041] Explanation of reference signs
[0042] 10, oven; 11, containing cavity; 12, oven main body; 13, oven door; 14, opening; 20, support; 21, mounting frame; 211, second containing cavity; 212, bottom plate; 213, side plate; 214, sliding groove; 22, support frame; 23, connecting piece; 30, placement disc; 31, first containing cavity; 32, disc body; 33, first clamping part; 34, second clamping part; 35, sliding block; 36, connecting part; 40, clamp; 50, positioning assembly; 51, fixed plate; 52, buckle; 53, clasp; 60, push-pull piece. DETAILED DESCRIPTION
[0043] The specific embodiments of the present disclosure are described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are merely intended to illustrate and explain the present disclosure, and are not intended to limit the present disclosure.
[0044] In the present disclosure, the orientation words such as "up, down, left, right" are generally defined as the direction of the drawing surface, and "inner, outer" refers to the inner and outer contours of the relevant components. In addition, the terms "first", "second", etc. are only used to distinguish the description, and cannot be understood as indicating or implying relative importance.
[0045] In the description of the present disclosure, it also needs to be explained that, unless otherwise explicitly specified and limited, the terms "set", "connected" should be understood broadly, for example, can be fixedly connected, can also be detachably connected, or integrally connected; can be directly connected, can also be indirectly connected through an intermediate medium, can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present disclosure can be understood according to the specific circumstances.
[0046] As shown in Figures 1 to 5 The present disclosure provides a kind of water drill processing equipment with clamp heating device, including oven 10, support 20 and placement tray 30, the inside of oven 10 has accommodating cavity 11, accommodating cavity 11 is used to accommodate support 20 and placement tray 30, placement tray 30 is set on support 20, first receiving cavity 31 is formed on placement tray 30, and first receiving cavity 31 is used to place clamp 40.
[0047] Wherein, oven 10 can provide a controlled heating environment, for preheating clamp 40, can make clamp 40 reach the temperature (50 ℃-55 ℃) similar to water drill processing equipment operation, to reduce the influence that the whole clamp 40 appears expansion or shrinkage due to temperature change.
[0048] Through the above technical solution, by setting oven 10 and placement tray 30, before polishing flat clamp 40, clamp 40 can be first placed into the first receiving cavity 31 of placement tray 30, then placement tray 30 is placed together with clamp 40 in the support 20 in oven 10. Oven 10 is started, and clamp 40 is preheated according to the set time and temperature, so that its temperature gradually rises to approach the working temperature of water drill processing equipment. After preheating, clamp 40 is taken out from oven 10, and the needle column row on clamp 40 is polished flat quickly using polisher when clamp 40 is still at a higher temperature. That is, by preheating clamp 40 through oven 10, the temperature of clamp 40 can gradually rise to approach the working temperature of water drill processing equipment, so that the needle column row on clamp 40 at the temperature is polished flat by polisher, thereby the material expansion or shrinkage of clamp 40 due to temperature change in subsequent fine grinding process can be reduced, and the precision and quality of water drill processing are improved.
[0049] Optionally, as shown in Figures 1 to 2 Oven 10 includes box body 12 and box door 13, box body 12 has opening 14, and box door 13 is rotatably connected to opening 14 and can expose or cover opening 14.
[0050] As an embodiment, as shown in Figures 1 to 4As shown, the bracket 20 comprises a mounting frame 21, which is connected to the oven 10 in an axially rotatable manner along a first direction, and has an inclined state and a horizontal state. The mounting frame 21 is formed with a second receiving cavity 211 having opposite first and second ends, the first end of the second receiving cavity 211 is provided as an open end, and the second end of the second receiving cavity 211 is provided as a closed end. The placement disc 30 is movably arranged in the second receiving cavity 211 and has a first position away from the closed end and a second position close to the closed end.
[0051] The second receiving cavity 211 is formed on the mounting frame 21 for accommodating the placement disc 30. The second receiving cavity 211 has opposite first (open) and second (closed) ends, so that the placement disc 30 can move in the second receiving cavity 211. The open end can facilitate the insertion and removal of the placement disc 30. The closed end can prevent the placement disc 30 from sliding out and provide a fixed point to ensure that the placement disc 30 remains stable during heating.
[0052] Specifically, the operator first adjusts the mounting frame 21 to the inclined state, so that the open end of the second receiving cavity 211 of the mounting frame 21 faces the operator. Then, the placement disc 30 is moved to the first position (away from the closed end) together with the unpolished clamp 40, which can easily slide into the second receiving cavity 211 under the action of its own gravity until the second position close to the closed end. Then, the mounting frame 21 is adjusted from the inclined state (as shown in Figure 4 to the horizontal state (as shown in Figure 3 ), to ensure uniform heat transfer and help avoid temperature unevenness due to angle problems. Then, the oven 10 is started, and the clamp 40 is preheated according to the set time and temperature, so that its temperature gradually rises close to the working temperature of the diamond processing equipment. After preheating is completed, the operator directly pulls out the placement disc 30 to the first position, and quickly uses a polisher to polish the needle column row on the clamp 40. The bracket 20 of this design not only provides the function of preheating the clamp 40 before polishing, but also increases the flexibility and convenience of operation through the rotatable mounting frame 21 and the movable placement disc 30.
[0053] In order to achieve the purpose of safe and stable switching of the mounting frame 21 between the inclined state and the horizontal state, as an embodiment, the mounting frame 21 is provided with a first rotating mechanism 212 and a second rotating mechanism 213. Figures 3 to 4As shown, the clamp 40 heating device further comprises a positioning assembly 50, and the support 20 further comprises two support frames 22 and two connecting pieces 23, the two connecting pieces 23 are respectively arranged on opposite sides of the mounting frame 21, and the two support frames 22 are spaced apart along the first direction, the bottoms of the two support frames 22 are connected with the bottom wall of the containing cavity 11, the tops of the two support frames 22 are respectively hinged with corresponding connecting pieces 23, and the positioning assembly 50 is located in the containing cavity 11 and used to switch the mounting frame 21 between the inclined state and the horizontal state.
[0054] By means of the hinged design, the mounting frame 21 can be switched from the inclined state to the horizontal state while the flexibility and stability of the structure are maintained.
[0055] With the positioning assembly 50, the mounting frame 21 can be kept stable in the set state, and the angle change that may occur during operation can be avoided.
[0056] As an embodiment of the positioning assembly 50, as shown in Figures 1 to 4 The positioning assembly 50 comprises a fixed plate 51, and a clasp 52 and a clasp ring 53 connected with each other, the two ends of the fixed plate 51 are respectively connected with the cavity wall of the containing cavity 11, the side of the fixed plate 51 facing the mounting frame 21 is provided with the clasp ring 53, and the side of the mounting frame 21 facing the fixed plate 51 is provided with the clasp 52; in the horizontal state, the clasp 52 is connected with the clasp ring 53 in a clamped manner, so that the mounting frame 21 can be horizontally arranged in the containing cavity 11; and in the inclined state, the clasp 52 is separated from the clasp ring 53, so that the mounting frame 21 can be inclinedly arranged in the containing cavity 11.
[0057] Through the interaction of the fixed plate 51, the clasp 52 and the clasp ring 53, the mounting frame 21 can be stably switched between the horizontal state and the inclined state. This design not only simplifies the operation process, but also ensures the stability of the mounting frame 21 in different working states.
[0058] Specifically, the operator first adjusts the mounting frame 21 from the horizontal state to the inclined state. At this time, the clasp 52 on the mounting frame 21 is separated from the clasp ring 53 on the fixed plate 51 (as shown in Figure 4 ), so that the mounting frame 21 can be freely inclined. Then, the placing disc 30 and the clamp 40 are slid into the second containing cavity 211 until the second position close to the closed end by means of the gravity of the placing disc 30 and the clamp 40. Then, the operator manually or using auxiliary tools adjusts the mounting frame 21 to the horizontal state, and in this process, the clasp 52 on the mounting frame 21 is aligned with and connected with the clasp ring 53 on the fixed plate 51 in a clamped manner (as shown in Figure 3As shown, the distance between the connecting piece 23 and the open end is shorter than the distance between the connecting piece 23 and the closed end. Thus, when the mounting rack 21 is freely tilted, the open end will naturally tilt up (i.e. the position of the open end is higher than the position of the closed end) and face the operator. With this design, the operator can easily aim and operate the placement disc 30 and the clamp 40 without additional angle adjustment, which can reduce the operation time and difficulty.
[0059] As an embodiment, as shown, the distance between the connecting piece 23 and the open end is shorter than the distance between the connecting piece 23 and the closed end. Figure 4
[0060] As an embodiment, as shown, the distance between the connecting piece 23 and the open end is shorter than the distance between the connecting piece 23 and the closed end. Thus, when the mounting rack 21 is freely tilted, the open end will naturally tilt up (i.e. the position of the open end is higher than the position of the closed end) and face the operator. With this design, the operator can easily aim and operate the placement disc 30 and the clamp 40 without additional angle adjustment, which can reduce the operation time and difficulty.
[0061] As an embodiment, as shown, the distance between the connecting piece 23 and the open end is shorter than the distance between the connecting piece 23 and the closed end. Figures 1 to 4 As an embodiment, as shown, the mounting rack 21 includes a bottom plate 212 and a plurality of side plates 213 surrounding the bottom plate 212, the plurality of side plates 213 and the bottom plate 212 together define the second receiving cavity 211, the opposite sides of the placement disc 30 are respectively provided with a sliding block 35, and the opposite side cavity walls of the second receiving cavity 211 are respectively formed with a sliding groove 214 extending between the open end and the closed end, and the sliding block 35 is slidingly fitted in the sliding groove 214.
[0062] As an embodiment, as shown, the distance between the connecting piece 23 and the open end is shorter than the distance between the connecting piece 23 and the closed end. Thus, when the mounting rack 21 is freely tilted, the open end will naturally tilt up (i.e. the position of the open end is higher than the position of the closed end) and face the operator. With this design, the operator can easily aim and operate the placement disc 30 and the clamp 40 without additional angle adjustment, which can reduce the operation time and difficulty.
[0063] As an embodiment, as shown, the distance between the connecting piece 23 and the open end is shorter than the distance between the connecting piece 23 and the closed end. Thus, when the mounting rack 21 is freely tilted, the open end will naturally tilt up (i.e. the position of the open end is higher than the position of the closed end) and face the operator. With this design, the operator can easily aim and operate the placement disc 30 and the clamp 40 without additional angle adjustment, which can reduce the operation time and difficulty. Figure 5 As an embodiment, as shown, the placement disc 30 includes a disc body 32, a first clamping part 33 and a second clamping part 34, the first clamping part 33 and the second clamping part 34 are formed on the top surface of the disc body 32, the first clamping part 33 and the second clamping part 34 both extend along a second direction, and the first clamping part 33, the second clamping part 34 and the disc body 32 together enclose the first receiving cavity 31, wherein the first direction and the second direction are perpendicular.
[0064] The design of the first clamping part 33 and the second clamping part 34 allows the clamp 40 to slide smoothly and accurately into or out of the first receiving cavity 31. On the other hand, it allows the clamp 40 to be firmly fixed in the first receiving cavity 31 during the heating process, which can improve the convenience and efficiency of operation.
[0065] In addition, the size and shape of the first clamping part 33 and the second clamping part 34 can be reasonably designed according to the overall shape of the clamp 40 to increase the adaptability of the placement tray 30.
[0066] As one implementation method, such as Figure 5 As shown, there are multiple placement trays 30 arranged side by side. The tray bodies 32 of each pair of adjacent placement trays 30 are connected by a connecting part 36. Slider 35 is provided on the tray body 32 of the placement trays 30 at the beginning and the tray body 32 of the placement trays 30 at the end. In this way, multiple fixtures 40 can be processed simultaneously, which can significantly improve production efficiency.
[0067] To make the insertion and removal of the placement tray 30 smoother, as one implementation method, such as Figures 1 to 4 As shown, the heating device of the clamp 40 also includes a push-pull member 60, which is provided on the side of the placement plate 30 near the open end.
[0068] The push-pull member 60 can be configured as an operating handle or lever to allow the operator to easily push the placement tray 30 into or pull out of the second receiving cavity 211.
[0069] Optionally, the push-pull component 60 may be made of a high-temperature resistant, wear-resistant and easy-to-grip material, such as engineering plastic, metal, or composite material, and this disclosure does not impose any restrictions on it.
[0070] As one implementation, the mounting bracket 21 is constructed as a hollow component. This design not only reduces the overall weight and manufacturing cost, but also reduces the material's obstruction of heat, allowing heat to be transferred more evenly to the placement tray 30 and the clamp 40, improving heat transfer efficiency and enhancing the structure's ventilation.
[0071] The preferred embodiments of this disclosure have been described in detail above with reference to the accompanying drawings. However, this disclosure is not limited to the specific details of the above embodiments. Within the scope of the technical concept of this disclosure, various simple modifications can be made to the technical solutions of this disclosure, and these simple modifications all fall within the protection scope of this disclosure.
[0072] It should be further noted that various specific technical features described in the above specific embodiments can be combined in any suitable manner, and the disclosure will not be repeated here for various possible combinations.
[0073] In addition, various different embodiments of the disclosure can also be combined with each other as long as they do not contradict the idea of the disclosure, and they should also be considered as disclosed by the disclosure.
Claims
1. A fixture heating device for water drilling equipment, characterized in that, The oven (10), the support (20) and the placing disc (30); The oven (10) has a containing cavity (11) in the inside, the containing cavity (11) is used for containing the support (20) and the placing disc (30); The placing disc (30) is arranged on the support (20), and a first containing cavity (31) is formed on the placing disc (30), and the first containing cavity (31) is used for placing a clamp (40).
2. The simulated diamond processing apparatus jig heating device according to claim 1, characterized by, The support (20) comprises a mounting frame (21); The mounting frame (21) is connected to the oven (10) in the first direction and has an inclined state and a horizontal state; The mounting frame (21) has a second containing cavity (211) with opposite first and second ends, the first end of the second containing cavity (211) is open, and the second end of the second containing cavity (211) is closed; The placing disc (30) is movably arranged in the second containing cavity (211) and has a first position away from the closed end and a second position close to the closed end.
3. The simulated diamond processing apparatus jig heating device according to claim 2, characterized by, The clamp heating device further comprises a positioning assembly (50), and the support (20) further comprises two support frames (22) and two connecting pieces (23); Two connecting pieces (23) are arranged on opposite sides of the mounting frame (21); Two support frames (22) are arranged in the first direction, the bottoms of the two support frames (22) are connected to the bottom wall of the containing cavity (11), and the tops of the two support frames (22) are hingedly connected to the corresponding connecting pieces (23); The positioning assembly (50) is located in the containing cavity (11), and the positioning assembly (50) is used for switching the mounting frame (21) between the inclined state and the horizontal state.
4. The simulated diamond processing apparatus jig heating device according to claim 3, characterized by, The positioning assembly (50) comprises a fixed plate (51), a buckle (52) and a clasp (53) connected to each other; Two ends of the fixed plate (51) are connected to the cavity wall of the containing cavity (11), and one side of the fixed plate (51) facing the mounting frame (21) is provided with the clasp (53); One side of the mounting frame (21) facing the fixed plate (51) is provided with the buckle (52); In the horizontal state, the buckle (52) is connected to the clasp (53) in a clamped manner, so that the mounting frame (21) can be arranged horizontally in the containing cavity (11); in the inclined state, the buckle (52) is separated from the clasp (53), so that the mounting frame (21) can be arranged obliquely in the containing cavity (11).
5. The simulated diamond processing apparatus jig heating device according to claim 3, characterized by, The distance between the connecting piece (23) and the open end is less than the distance between the connecting piece (23) and the closed end.
6. The simulated diamond processing apparatus jig heating device according to claim 2, wherein The mounting frame (21) comprises a bottom plate (212) and a plurality of side plates (213) surrounding the bottom plate (212); A plurality of side plates (213) and the bottom plate (212) together define the second containing cavity (211); Opposite sides of the placement disc (30) are respectively provided with sliding blocks (35), and opposite side cavity walls of the second receiving cavity (211) are respectively formed with sliding grooves (214) extending between the open end and the closed end, and the sliding blocks (35) are slidingly fitted in the sliding grooves (214).
7. The simulated diamond processing apparatus jig heating device according to claim 6, wherein The placement disc (30) comprises a disc body (32), a first clamping portion (33) and a second clamping portion (34). The first clamping portion (33) and the second clamping portion (34) are formed on a top surface of the disc body (32). The first clamping portion (33) and the second clamping portion (34) both extend along a second direction, and the first clamping portion (33), the second clamping portion (34) and the disc body (32) jointly enclose the first receiving cavity (31). The first direction and the second direction are perpendicular.
8. The simulated diamond processing apparatus jig heating device according to claim 7, characterized by, A plurality of placement discs (30) are provided side by side, and disc bodies (32) of every two adjacent placement discs (30) are connected through connecting portions (36). The disc body (32) of the placement disc (30) at the head end of the plurality of placement discs (30) and the disc body (32) of the placement disc (30) at the tail end of the plurality of placement discs (30) are both provided with the sliding blocks (35).
9. The simulated diamond processing apparatus jig heating device according to claim 2, wherein The clamp heating device further comprises a push-pull piece (60). The placement disc (30) is provided with the push-pull piece (60) on a side close to the open end.
10. The simulated diamond processing apparatus jig heating device according to claim 2, characterized by, The mounting rack (21) is configured as a hollow piece.