<span id="fpn9h"><noframes id="fpn9h"><span id="fpn9h"></span>
<span id="fpn9h"><noframes id="fpn9h">
<th id="fpn9h"></th>
<strike id="fpn9h"><noframes id="fpn9h"><strike id="fpn9h"></strike>
<th id="fpn9h"><noframes id="fpn9h">
<span id="fpn9h"><video id="fpn9h"></video></span>
<ruby id="fpn9h"></ruby>
<strike id="fpn9h"><noframes id="fpn9h"><span id="fpn9h"></span>

四足打擊平臺多工況力學特性及射擊擾動

Mechanical characteristics and firing disturbances of quadruped combat platforms under multiple shooting modes

  • 摘要: 足式打擊平臺在現代戰爭中具有巨大的軍事潛力和作戰效能. 為探究發射載荷作用下足式打擊平臺的力學特性和射擊擾動情況,以四足運動平臺作為機動平臺,在對其火力打擊載荷進行結構設計的基礎上,構建了平臺的剛柔耦合發射動力學模型,并就不同射擊工況下四足打擊平臺的發射過程進行了仿真分析,最后對四足打擊平臺進行了實彈試驗驗證. 結果表明:靜載工況下,四足打擊平臺的關節力矩分布均呈現出不均勻態勢,平臺載彈量對各關節的力矩分配有著直接影響;動載工況下,發射載荷的作用給關節造成了較大的力矩沖擊和振蕩,并產生了射擊槍口擾動,其中,連發工況由于多發振動的耦合作用,相較單發工況沖擊力矩增長了25.8%,平均射擊槍口擾動量達到2.15 mm;采用雙向阻振緩沖器可有效地抑制打擊平臺連發射擊擾動,平均射擊槍口擾動量為1.02 mm;實彈試驗表明相較于剛性連接,采用雙向阻振緩沖器的四足打擊平臺其百米半數散布圓半徑減小了47.0%.

     

    Abstract: Urban operations such as counterterrorism, hostage rescue, and building clearance are the primary forms of modern warfare. The large scale of unstructured terrain makes quadruped combat platforms have great military potential and combat effectiveness in modern warfare. To explore the mechanical characteristics and firing disturbances of quadruped combat platforms under multiple shooting modes, the structure of the quadruped combat platform strike system was developed. Then, the rigid–flexible coupling launch dynamics model was built using ANSYS and ADAMS; in addition, simulations under single and continuous shooting modes were conducted by changing loads. According to the dynamic model, the launching process of the quadruped combat platform was simulated, the joint torque characteristics and firing disturbance of the quadruped combat platform were examined, and the method for suppressing the firing disturbance was explored. At last, the quadruped combat platform was confirmed by a live firing experiment in a 100-m indoor shooting range. Findings revealed that the joint torque distribution of the quadruped combat platform presents an uneven trend under static load conditions. The effect of the launching load resulted in a significant torque impact and oscillation to the joint of the quadruped combat platform. Moreover, firing disturbances were produced. Under the single shooting mode, the maximum amplitude of the muzzle center point of the quadruped combat platform along the z-axis direction is 8.42 mm, the maximum amplitude along the y-axis direction is 1.87 mm, and the firing disturbance momentum is 0.39 mm. Under the continuous shooting mode, the impact torque and firing disturbance of the first shooting are near the single shooting mode, whereas the impact torque of the subsequent firing increases by 25.8% compared with the first shooting. Meanwhile, with the superposition effect of the continuous firing vibration, the average firing disturbance also increases to 2.15 mm. Considering the reduction in firing disturbance, the effects of various buffers were discussed. The suppression effect of the unidirectional buffer was found not obvious due to the presence of the impact force during the return and forward processes, whereas the bidirectional buffer with damping can effectively lower the firing disturbance, and its average firing disturbance is 1.02 mm, decreased by 52.56% compared with the rigid connection. The live firing experiment confirmed the possibility of the quadruped combat platform, and the R50 of the platform with a bidirectional buffer was reduced by 47.0% compared with that with a rigid connection, demonstrating its effectiveness in suppressing the firing disturbance and enhancing the firing accuracy.

     

/

返回文章
返回
<span id="fpn9h"><noframes id="fpn9h"><span id="fpn9h"></span>
<span id="fpn9h"><noframes id="fpn9h">
<th id="fpn9h"></th>
<strike id="fpn9h"><noframes id="fpn9h"><strike id="fpn9h"></strike>
<th id="fpn9h"><noframes id="fpn9h">
<span id="fpn9h"><video id="fpn9h"></video></span>
<ruby id="fpn9h"></ruby>
<strike id="fpn9h"><noframes id="fpn9h"><span id="fpn9h"></span>
www.77susu.com