Heating holding-up hammer structure of diamond press

By introducing the design of insert rods, side blocks and mounting components into the diamond press, the problems of unstable installation of the top hammer and difficulty in rapid cooling are solved, stable installation and rapid heating of the top hammer are achieved, and processing efficiency is improved.

CN223312032UActive Publication Date: 2025-09-09YINGKOU XINYU TECH CO LTD
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Patent Information

Application Number
CN202422749790.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2025-09-09
Estimated Expiration
2034-11-12

AI Technical Summary

Technical Problem

The heated top hammer of the existing diamond press is difficult to cool down quickly during use due to structural design problems, resulting in low processing efficiency. In addition, the installation stability of the top hammer is limited by the use angle and is prone to loosening.

Method used

The design of insert rod, side block and installation assembly is adopted. Through the cooperation of insert rod and side block, combined with the locking mechanism of telescopic spring and locking piece, stable installation of top hammer is achieved. Heat is quickly transferred by heating element, which solves the problem of loosening of top hammer during use.

Benefits of technology

The installation stability and reliability of the top hammer are improved, the standby time of the top hammer during processing is reduced, and the processing efficiency is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of diamond processing, in particular to a heating holding-up hammer structure of a diamond press, which comprises a holding-up hammer body, an insertion rod, a side block and a mounting component, the insertion rod is fixedly connected with the holding-up hammer body, and the side block is fixedly connected with the insertion rod. The mounting assembly comprises a mounting block, a lower pressing plate, two telescopic rods, two telescopic springs, a heating piece and a locking piece, the mounting block is detachably connected with the side block, the lower pressing plate is slidably connected with the mounting block, the two telescopic rods are fixedly connected with the mounting block, the telescopic springs are arranged on the outer sides of the telescopic rods, the heating piece is fixedly connected with the mounting block, and the locking piece is in threaded connection with the side block. In this way, the holding-up hammer can be stably and rapidly installed, loosening of the holding-up hammer in the using process is effectively avoided, and the using stability and firmness of equipment are improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of diamond processing, in particular to a heating top hammer structure of a diamond press. Background Art

[0002] Diamond, commonly known as "diamond drill," is the original form of diamond we usually refer to. Currently, diamond presses are used to produce diamonds. During the diamond synthesis process, a heated top hammer plays a conductive heating role. In some processes with relatively fine processing requirements, to ensure the processing quality of the diamond, the heated top hammer will be cooled during the processing to prevent the top hammer temperature from being too high and affecting the processing quality of the diamond. Although the heat conduction speed of the top hammer is very fast, the top hammer itself is difficult to cool down quickly due to structural design issues. Therefore, it is difficult to quickly cool the heated top hammer during the processing process, which in turn increases the standby time during diamond processing, which will undoubtedly affect the overall processing efficiency.

[0003] To solve the above problems, the existing technology patent (CN220111016U) discloses a heating top hammer structure of a diamond press, which belongs to the field of diamond processing technology, including a top hammer, a pad and a base, the outer side of the base is wrapped with an electric heating wire, the pad is fixedly arranged at the front end of the base, the top hammer is located at the side end of the pad, a first clamping block is provided on the side of the pad facing the top hammer, and a second clamping block is fixedly provided on the first clamping block, and the bottom end of the top hammer is provided with a clamping groove adapted to the first clamping block and the second clamping block. After a period of conductive heating, the top hammer can be removed and replaced with a new top hammer of the same structure, and the removed top hammer is subjected to a separate cooling treatment, the first clamping block and the second clamping block on the pad can be used for docking and installation with the clamping groove at the bottom end of the top hammer, and the clamping groove and the limit groove provided at the bottom end of the top hammer are also conducive to heat dissipation and cooling of the inside of the top hammer.

[0004] However, in the above-mentioned prior art, the stability of the top hammer installation is limited by the use angle, which easily causes the top hammer to become loose during use, resulting in greater limitations in use. Utility Model Content

[0005] The purpose of the utility model is to provide a heating top hammer structure for a diamond press, which solves the technical problem in the prior art that the stability of the top hammer installation is limited by the use angle, which easily causes the top hammer to loosen during use, resulting in greater limitations in use.

[0006] To achieve the above-mentioned purpose, the utility model adopts a heated top hammer structure of a diamond press, comprising a top hammer body, an insert rod, a side block and a mounting assembly, the insert rod is fixedly connected to the top hammer body and is located on the outside of the top hammer body, the side block is fixedly connected to the insert rod and is located on the outside of the insert rod, the mounting assembly comprises a mounting block, a lower pressure plate, two telescopic rods, two telescopic springs, a heating element and a locking element, the mounting block is detachably connected to the side block and is located below the top hammer body, the lower pressure plate is slidably connected to the mounting block and is located below the side block, the two telescopic rods are fixedly connected to the mounting block and are located below the lower pressure plate, the telescopic spring is arranged on the outside of the telescopic rod, the heating element is fixedly connected to the mounting block and is located below the mounting block, the locking element is threadedly connected to the side block and passes through the mounting block.

[0007] Wherein, the mounting assembly further comprises two sliding blocks, the mounting block has a sliding groove adapted to the sliding block, the sliding block is slidably connected to the mounting block and is located on the outer side of the lower pressing plate.

[0008] In which, the heating element includes a connecting rod, a heating wire and a base, the connecting rod is fixedly connected to the mounting block and is located below the mounting block, the heating wire is fixedly connected to the connecting rod and is located on the outside of the connecting rod, and the base is fixedly connected to the connecting rod and is located below the connecting rod.

[0009] Wherein, the locking member includes a fixing bolt and a mounting nut, the fixing bolt is connected to the side block bolt and passes through the mounting block, and the mounting nut is fixedly connected to the fixing bolt and is located on the outside of the fixing bolt.

[0010] The mounting block has an insertion groove adapted to the side block, the mounting block also has a limiting groove adapted to the side block, and the side block has a threaded groove adapted to the fixing bolt.

[0011] The utility model provides a heated top hammer structure for a diamond press. When in use, the top hammer body drives the insertion rod to be inserted into the mounting block, the side block presses down the lower pressure plate, the telescopic rod and the telescopic spring are compressed, the top hammer body is rotated, and the side block rotates in the mounting block. After the rotation is completed, the side block is locked by the locking piece, and the lower pressure plate continuously presses upward against the side block through the retraction of the telescopic spring. This method can effectively solve the problem that the stability of the top hammer installation is limited by the use angle. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0013] Figure 1 The utility model is a structural schematic diagram of a heating top hammer structure of a diamond press.

[0014] Figure 2 This is a front view of a heated top hammer structure of a diamond press according to the present invention.

[0015] Figure 3 This utility model Figure 2 AA line structural cross-sectional view.

[0016] Figure 4 The utility model is a partial structural diagram of a heating top hammer structure of a diamond press.

[0017] 101-top hammer body, 102-insertion rod, 103-side block, 104-mounting block, 105-lower pressure plate, 106-telescopic rod, 107-telescopic spring, 108-sliding block, 109-connecting rod, 110-heating wire, 111-base, 112-fixing bolt, 113-mounting nut, 114-sliding groove, 115-insertion groove, 116-limiting groove, 117-thread groove. DETAILED DESCRIPTION

[0018] The embodiments of the present invention are described in detail below, and examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present invention, but should not be understood as limiting the present invention.

[0019] See also Figures 1 to 4 ,in Figure 1 This is a schematic diagram of the structure of a heated top hammer structure of a diamond press of the present invention. Figure 2 This is a front view of the heating top hammer structure of a diamond press of the utility model. Figure 3 This utility model Figure 2 AA line structural cross-sectional view, Figure 4 The utility model is a partial structural diagram of a heating top hammer structure of a diamond press.

[0020] The present invention provides a heating top hammer structure for a diamond press, comprising a top hammer body 101, an insert rod 102, a side block 103 and a mounting assembly, wherein the mounting assembly comprises a mounting block 104, a lower pressing plate 105, two telescopic rods 106, two telescopic springs 107, two sliding blocks 108, a heating element and a locking element, wherein the heating element comprises a connecting rod 109, a heating wire 110 and a base 111, and the locking element comprises a fixing bolt 112 and a mounting nut 113. The above-mentioned solution solves the problem that the stability of the top hammer installation is limited by the use angle, which easily causes the top hammer to loosen during use, resulting in greater limitations on use.

[0021] According to this specific embodiment, the insertion rod 102 is fixedly connected to the top hammer body 101 and is located on the outside of the top hammer body 101. The side block 103 is fixedly connected to the insertion rod 102 and is located on the outside of the insertion rod 102. The mounting assembly includes a mounting block 104, a lower pressure plate 105, two telescopic rods 106, two telescopic springs 107, a heating element and a locking element. The mounting block 104 is detachably connected to the side block 103 and is located below the top hammer body 101. The lower pressure plate 105 is slidably connected to the mounting block 104 and is located below the side block 103. The two telescopic rods 106 are fixedly connected to the mounting block 104 and are located below the lower pressure plate 105. The telescopic spring 107 is arranged on the outside of the telescopic rod 106. The heating element is connected to the mounting The block 104 is fixedly connected and is located below the mounting block 104. The locking piece is threadedly connected to the side block 103 and passes through the mounting block 104. The top hammer body 101 drives the insertion rod 102 to be inserted into the mounting block 104. The side block 103 presses down the lower pressure plate 105. The telescopic rod 106 and the telescopic spring 107 are compressed, and the top hammer body 101 is rotated. The side block 103 rotates in the mounting block 104. After the rotation is completed, the side block 103 is locked by the locking piece, and the lower pressure plate 105 is continuously pressed upward against the side block 103 by the retraction of the telescopic spring 107. The heating piece is used to connect with the equipment and heat the top hammer body 101. This method can effectively solve the problem that the stability of the top hammer installation is limited by the use angle.

[0022] Among them, the mounting block 104 has a sliding groove 114 adapted to the sliding block 108. The sliding block 108 is slidingly connected to the mounting block 104 and is located on the outside of the lower pressure plate 105. When the lower pressure plate 105 slides in the mounting block 104, the lower pressure plate 105 drives the sliding block 108 to slide in the sliding groove 114, thereby effectively preventing the lower pressure plate 105 from deviating during sliding, thereby improving the stability of the equipment during use.

[0023] Secondly, the connecting rod 109 is fixedly connected to the mounting block 104 and is located below the mounting block 104. The heating wire 110 is fixedly connected to the connecting rod 109 and is located on the outside of the connecting rod 109. The base 111 is fixedly connected to the connecting rod 109 and is located below the connecting rod 109. The connecting rod 109 connects the mounting block 104 and the base 111. The base 111 facilitates the installation of the equipment. The heating wire 110 is used to heat the connecting rod 109 and transfer the heat to the top hammer body 101 through the connecting rod 109.

[0024] At the same time, the fixing bolt 112 is bolted to the side block 103 and passes through the mounting block 104. The mounting nut 113 is fixedly connected to the fixing bolt 112 and is located on the outside of the fixing bolt 112. The fixing bolt 112 is threadedly connected to the side block 103 through the mounting nut 113, and the mounting nut 113 is hidden in the mounting block 104 after being installed in place, thereby improving the stability of the installation of the top hammer body 101.

[0025] In addition, the mounting block 104 has an insertion groove 115 adapted to the side block 103, and the mounting block 104 also has a limiting groove 116 adapted to the side block 103. The side block 103 has a threaded groove 117 adapted to the fixing bolt 112. The side block 103 is inserted into the mounting block 104 through the insertion groove 115, and the top hammer body 101 drives the side block 103 to rotate in the mounting block 104. The side block 103 rotates in the limiting groove 116. After the side block 103 is rotated and installed in place, the fixing bolt 112 limits the side block 103 through the threaded groove 117.

[0026] The heated top hammer structure of a diamond press using the present embodiment is provided with the insert rod 102, the side block 103 and the mounting assembly. When in use, the top hammer body 101 drives the insert rod 102 to be inserted into the mounting block 104, and the side block 103 is inserted into the mounting block 104 through the insertion groove 115. The side block 103 presses down the lower pressing plate 105, and the telescopic rod 106 and the telescopic spring 107 are compressed. The top hammer body 101 is rotated, and the side block 103 is rotated in the limiting groove 116. After the side block 103 is rotated and installed in place, the mounting assembly is opened. The nut 113 is installed to threadably connect the fixing bolt 112 to the side block 103. The fixing bolt 112 limits the side block 103 through the threaded groove 117, and the retraction of the telescopic spring 107 enables the lower pressure plate 105 to continuously press the side block 103 upward. The base 111 facilitates the installation of the equipment. The heating wire 110 is used to heat the connecting rod 109 and transfer the heat to the top hammer body 101 through the connecting rod 109, so that the top hammer can be installed stably and quickly, effectively avoiding the top hammer from loosening during use, and improving the stability and reliability of the equipment.

[0027] The above disclosure is only a preferred embodiment of the present invention, and certainly cannot be used to limit the scope of rights of the present invention. Ordinary technicians in this field can understand that all or part of the processes of the above embodiment and equivalent changes made in accordance with the claims of the present invention are still within the scope of the utility model.

Claims

1. A heating top hammer structure for a diamond press, comprising a top hammer body, characterized in that: It also includes an insertion rod, a side block and a mounting assembly, the insertion rod is fixedly connected to the top hammer body and is located on the outside of the top hammer body, the side block is fixedly connected to the insertion rod and is located on the outside of the insertion rod, the mounting assembly includes a mounting block, a lower pressure plate, two telescopic rods, two telescopic springs, a heating element and a locking element, the mounting block is detachably connected to the side block and is located below the top hammer body, the lower pressure plate is slidably connected to the mounting block and is located below the side block, the two telescopic rods are fixedly connected to the mounting block and are located below the lower pressure plate, the telescopic spring is arranged on the outside of the telescopic rod, the heating element is fixedly connected to the mounting block and is located below the mounting block, the locking element is threadedly connected to the side block and passes through the mounting block.

2. The heating top hammer structure of the diamond press according to claim 1, characterized in that: The mounting assembly further comprises two sliding blocks, wherein the mounting block has a sliding groove adapted to the sliding block, the sliding block is slidably connected to the mounting block and is located on the outer side of the lower pressing plate.

3. The heating top hammer structure of the diamond press according to claim 2, characterized in that: The heating element includes a connecting rod, a heating wire and a base. The connecting rod is fixedly connected to the mounting block and is located below the mounting block. The heating wire is fixedly connected to the connecting rod and is located on the outside of the connecting rod. The base is fixedly connected to the connecting rod and is located below the connecting rod.

4. The heating top hammer structure of the diamond press according to claim 3, characterized in that: The locking member includes a fixing bolt and a mounting nut. The fixing bolt is connected to the side block bolt and passes through the mounting block. The mounting nut is fixedly connected to the fixing bolt and is located outside the fixing bolt.

5. The heating top hammer structure of the diamond press according to claim 4, characterized in that: The mounting block has an insertion groove adapted to the side block, the mounting block also has a limiting groove adapted to the side block, and the side block has a thread groove adapted to the fixing bolt.

Citation Information

Patent Citations

  • Heating holding-up hammer structure of diamond press

    CN220111016U